WO2025001848A1 - Réfrigérateur, procédé de commande de réfrigérateur et support de stockage - Google Patents
Réfrigérateur, procédé de commande de réfrigérateur et support de stockage Download PDFInfo
- Publication number
- WO2025001848A1 WO2025001848A1 PCT/CN2024/098730 CN2024098730W WO2025001848A1 WO 2025001848 A1 WO2025001848 A1 WO 2025001848A1 CN 2024098730 W CN2024098730 W CN 2024098730W WO 2025001848 A1 WO2025001848 A1 WO 2025001848A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- door
- chamber
- storage
- automatic water
- refrigerator
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25D—REFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
- F25D11/00—Self-contained movable devices, e.g. domestic refrigerators
Definitions
- the present application relates to a refrigerator, a refrigerator control method, and a storage medium.
- a dispenser chamber is provided, and the dispenser chamber is provided on the storage chamber door used to open and close the storage chamber.
- the dispenser chamber opening is directly open to the outside, and an ice outlet or a water outlet is provided in the dispenser chamber. Users can directly take ice cubes from the ice outlet of the dispenser chamber or take water from the water outlet without opening the storage chamber door.
- this design has the following defects: the utilization rate of the dispenser chamber is low.
- the purpose of the present application is to provide a refrigerator, a refrigerator control method, and a storage medium.
- one embodiment of the present invention provides a refrigerator, comprising a box body, a storage chamber formed in the box body, a storage chamber door for opening and closing the storage chamber, and a dispenser chamber arranged on the storage chamber door, wherein the opening of the dispenser chamber faces outward
- the refrigerator further comprises a sub-door arranged on the outer side of the storage chamber door, a heat preservation material is arranged in the sub-door, the sub-door is used to open and close the dispenser chamber opening, the dispenser chamber wall is provided with an air inlet and a return air outlet communicated with the cold air in the storage chamber, the cold air in the storage chamber enters the dispenser chamber through the air inlet, and the cold air in the dispenser chamber enters the storage chamber through the return air outlet;
- the refrigerator further comprises a storage chamber door fan arranged on the storage chamber door, and the storage chamber door fan is used to promote the flow of cold air between the storage chamber and the dispenser chamber.
- an embodiment of the present invention provides a refrigerator control method, which is characterized by comprising:
- the storage room door fan is controlled to operate.
- the storage room door fan causes the cold air in the storage room to enter the distributor room from the air inlet of the distributor room.
- one embodiment of the present invention provides a computer-readable storage medium, and when the computer program is executed by a processor, the steps in the refrigerator control method described in any one of the above-mentioned embodiments are implemented.
- the beneficial effect of the present application is that it can reduce the temperature of the distributor chamber and improve the utilization rate of the distributor chamber.
- FIG1 is a schematic structural diagram of a refrigerator in a specific embodiment of the present application.
- FIG2 is a schematic diagram of the relevant structure of the storage room door in FIG1;
- FIG3 is an exploded view of the auxiliary door, sealing strip, ice-making door, storage compartment door and related structures in FIG1 ;
- FIG4 is a schematic diagram of the matching structure of the sealing strip, the ice-making door, and the storage compartment door in FIG3 when the auxiliary door is in a closed state;
- FIG5 is an exploded view of the auxiliary door in FIG1 ;
- FIG6 is a schematic structural diagram of the filter element in FIG3 ;
- FIG7 is a schematic structural diagram of the bracket in FIG3 ;
- FIG8 is a schematic diagram of the coordination structure of the fan and the cover of the storage room door in FIG3;
- FIG9 is a schematic structural diagram of the cover body in FIG3 ;
- FIG10 is a schematic structural diagram of the door shell in FIG3;
- FIG11 is a schematic diagram of the structure in which the auxiliary door in FIG1 is closed on the storage chamber door;
- FIG12 is a cross-sectional view of FIG11
- FIG13 is a schematic diagram of the relevant structure of the storage room door in FIG1 from another angle;
- FIG14 is a schematic structural diagram of the brake member in FIG4 ;
- FIG15 is a schematic structural diagram of the door lining in FIG3 ;
- 16 is a schematic diagram of the coordination height of the first liquid level sensor, the second liquid level sensor, the third liquid level sensor and the automatic water filling kettle in FIG. 1 ;
- FIG. 17 is a schematic structural diagram of a refrigerator in another specific embodiment of the present application.
- a refrigerator 100 which may include a housing 1, a storage chamber 2 formed in the housing 1, The storage chamber door 3 for opening and closing the storage chamber 2 and the dispenser chamber 6 arranged on the storage chamber door 3.
- the storage chamber 2 can be a cold storage chamber of a refrigerator, a freezing chamber, a temperature-changing chamber, etc.
- the storage chamber 2 is a cold storage chamber of a refrigerator.
- the dispenser chamber 6 is provided with a water outlet 62 or an ice outlet 61.
- the dispenser chamber 6 opens outward.
- the up-down direction may refer to the height direction of the cabinet 1
- the front-back direction may refer to the depth direction of the cabinet 1
- the left-right direction may refer to the width direction of the cabinet 1.
- the refrigerator 100 may also include a refrigeration system, which may include an evaporator, a condenser, a compressor, etc.
- the evaporator may be arranged at the back of the storage chamber 2 to cool the storage chamber 2 by direct cooling.
- the evaporator may also be arranged in the evaporator chamber, and a refrigerated air inlet duct and a refrigerated air return duct that allow cold air to circulate may be provided between the storage chamber 2 and the evaporator chamber to achieve cooling of the storage chamber 2 by air cooling.
- the refrigerator 100 may further include a sub-door 4 disposed outside the storage chamber door 3.
- a heat-insulating material may be disposed inside the sub-door 4.
- the sub-door 4 may be used to open and close the opening of the dispenser chamber 6. When the sub-door 4 closes the opening of the dispenser chamber 6, the dispenser chamber 6 can form a relatively closed space.
- the sub-door 4 closing the dispenser chamber 6 can also clean the dispenser chamber 6 and prevent dust from the outside from contaminating the dispenser chamber 6.
- the refrigerator 100 may further include an ice-making chamber 5 provided on the storage chamber door 3, and an ice-making door 7 provided on the storage chamber door 3 and used to open and close the opening of the ice-making chamber 5.
- the ice-making door 7 may also be installed on the auxiliary door 4, and it is sufficient to be able to open and close the ice-making chamber 5.
- the ice-making chamber 5 opens outward, and a heat-insulating material is provided inside the ice-making door 7. By providing the ice-making door 7 with the heat-insulating material, the cold transfer between the ice-making chamber 5 and the external space can be isolated, and the cold air leakage of the ice-making chamber 5 can be avoided.
- the auxiliary door 4 can be arranged outside the ice-making door 7. When the auxiliary door 4 is in a closed state, the auxiliary door 4 can shield the ice-making door 7. Such an arrangement can ensure the cleanliness of the ice-making door 7, prevent the external environment from polluting the ice-making door 7, and further isolate the ice-making chamber 5 from the external space through the auxiliary door 4, thereby preventing the cold air in the ice-making chamber 5 from leaking.
- the appearance of the storage chamber door 3 can be made simpler and neater.
- an ice maker 51 and an ice storage box 52 placed below the ice maker 51 may be provided in the ice making chamber 5 , and an ice guide channel 31 may be provided between the ice outlet 61 in the dispenser chamber 6 and the ice storage box 52 .
- the ice cubes stored in the ice storage box 52 can be discharged from the ice outlet 61 through the ice guide channel 31.
- the user can take the ice cubes through the ice outlet 61 of the dispenser chamber 6 without opening the storage chamber door 3 and the ice making door 7, which is convenient for the user to take ice cubes in daily life.
- the ice storage box 52 can be removably disposed below the ice maker 51. When the user needs to take a large amount of ice cubes, the user can open the ice making door 7 and take out the ice storage box 52 to take the ice cubes.
- the storage chamber door 3 may include a door shell 32 and a door lining 33 that are arranged opposite to each other.
- a heat-insulating material may be arranged between the door shell 32 and the door lining 33. In this way, by closing the storage chamber door 3, the cold transfer between the storage chamber 2 and the external environment can be isolated, thereby preventing the cold leakage in the storage chamber 2.
- the dispenser chamber 6 may be provided in the door shell 32.
- the dispenser chamber 6 may be formed by the door shell 32 being recessed toward the door lining 33.
- the ice making chamber 5 may also be provided in the door shell 32.
- the ice making chamber 5 may also be recessed toward the door lining 33 by the door shell 32.
- the dispenser chamber 6 may be provided below the ice making chamber 5.
- the refrigerator 100 supplies cold to the distribution chamber 6.
- the temperature of the distribution chamber 6 is a refrigeration temperature capable of providing a refrigerated environment.
- the temperature of the distribution chamber 6 can be maintained between 1-5 degrees Celsius.
- the refrigerator 100 supplies cold to the distributor chamber 6.
- the refrigerator supplies cold to the distributor chamber 6 through the storage chamber 2, and utilizes the coldness of the storage chamber 2 to cool the distributor chamber 6 and reduce the temperature of the distributor chamber 6.
- the wall of the distributor chamber 6 may be provided with an air inlet 63 and an air return port 64 that communicate with the cold air of the storage chamber 2.
- the cold air in the storage chamber 2 may enter the distributor chamber 6 through the air inlet 63.
- the cold air in the distributor chamber 6 may enter the storage chamber 2 through the air return port 64.
- this cooling method of the distributor chamber 6 can ensure the cooling effect of the distributor chamber 6, avoid the air duct arrangement of the distributor chamber 6 being too complicated, and achieve the purpose of lowering the temperature of the distributor chamber 6 while having a simpler structure and being easy to implement.
- a heat-insulating material may be provided between the rear wall of the distributor chamber 6 and the door lining 33. This arrangement enables the temperature distribution in the distributor chamber 6 to be more uniform.
- the distributor chamber 6 is connected to the storage chamber 2 for coldness, and a refrigeration and fresh-keeping environment similar to that of the storage chamber 2 can be formed.
- the distributor chamber 6 can be used to place a kettle to cool the water in the kettle, so that the user can take cold water daily.
- the distributor chamber 6 can also be used to provide a certain space for placing items, so that the user can use the distributor chamber 6 to store a certain amount of items without opening the storage chamber door 3, which can increase the storage space of the refrigerator 100 and facilitate the user's daily use.
- the refrigerator 100 further includes a sealing strip 8, which at least closes around the periphery of the ice-making door 7 when the sub-door 4 is in a closed state.
- the sealing strip 8 seals at least the gap between the front wall of the ice-making chamber 5 and the sub-door 4 at the periphery of the ice-making door 7, and prevents the cold air in the dispenser chamber 6 from flowing between the ice-making door 7 and the sub-door 4.
- the ice-making door may include an ice-making door shell 71 and an ice-making door lining 72 which are arranged opposite to each other.
- a heat-insulating space may be formed between the ice-making door shell 71 and the ice-making door lining 72, and an ice-making heat-insulating material 73 may be arranged in the heat-insulating space.
- the ice-making door 7 and the ice-making chamber 5 may be provided with a door seal of the ice-making door 7.
- the door seal of the ice-making door 7 may be a closed type surrounding the opening of the ice-making chamber 5.
- the door seal of the ice-making door 7 may seal the gap between the ice-making door 7 and the ice-making chamber 5 to prevent the cold air in the ice-making chamber 5 from leaking.
- the ice-making door 7 when the ice-making door 7 is in a closed state, since the temperature in the ice-making chamber 5 is relatively low, generally about 10 degrees below zero, it is inevitable that some cold energy will be transmitted to the outside of the ice-making door 7 through the ice-making door 7 or the seal of the ice-making door 7, and the temperature of the ice-making door 7, especially the upper, lower, left and right side walls of the ice-making door 7, will be relatively low, thereby causing condensation on the surface of the ice-making door.
- the auxiliary door 4 shields the outside of the ice-making door 7, and the ice-making door 7 is placed in the sealing area formed by the seal 8, which is equivalent to adding a heat-insulating layer on the outside of the ice-making door 7, improving the heat-insulating effect of the ice-making chamber 5, reducing the leakage of cold air in the ice-making chamber 5, reducing the thickness of the ice-making door 7, and being conducive to realizing the thin and light design of the ice-making door 7. At the same time, it can prevent the ice-making door 7 from directly contacting the external environment, and can effectively prevent condensation on the surface of the ice-making door 7.
- the temperature of the dispenser chamber 6 is generally much lower than that of the ice-making chamber 5, and the humidity in the dispenser chamber 6 is generally high, by setting the sealing strip 8 to prevent the cold air in the dispenser chamber 6 from flowing between the ice-making door 7 and the auxiliary door 4, the air in the dispenser chamber 6 can be effectively prevented from causing condensation on the ice-making door 7, thereby effectively preventing condensation from appearing on the surface of the ice-making door 7.
- the front surface of the ice-making door 7 and the rear surface of the auxiliary door 4 are not closely fitted, but are spaced a certain distance apart. Such arrangement facilitates the opening and closing of the ice-making door 7 and the auxiliary door 4, and avoids interference between the ice-making door 7 and the auxiliary door 4.
- the sealing strip 8 can be an existing refrigerator door sealing strip with an air bag in the middle made of PVC or other materials.
- the sealing strip 8 will deform to a certain extent under the pressure on both sides of the front wall of the storage chamber door 3 and the rear wall of the auxiliary door 4, so that both sides are closely attached to the front wall of the storage chamber door 3 and the rear wall of the auxiliary door 4, thereby achieving the sealing of the ice-making door 7 and the dispenser chamber 6 in the sealed area, and preventing the ice-making door 7 and the dispenser chamber 6 from contacting the outside when the auxiliary door 4 is closed.
- a certain amount of spacing gap is provided between the ice-making door 7 and the auxiliary door 4 , which can also ensure that the sealing strip 8 has sufficient deformation space and ensure the sealing effect of the sealing strip 8 .
- the sealing strip 8 when the auxiliary door 4 is in a closed state, the sealing strip 8 simultaneously closes the opening of the dispenser chamber 6, and the sealing strip 8 simultaneously seals the gap between the front wall of the dispenser chamber 6 and the auxiliary door 4 at the periphery of the opening of the dispenser chamber 6 to prevent the dispenser chamber 6 from direct contact with the external environment.
- Placing the distributor chamber 6 in the sealing area of the sealing strip 8 can improve the closing effect of the sub-door 4 on the distributor chamber 6 and avoid the loss of cold energy in the distributor chamber 6 .
- the sealing strip 8 is in the shape of a Chinese character " ⁇ " as a whole, so as to respectively and simultaneously close the surrounding ice-making door 7 and the opening of the dispenser chamber 6 .
- the sealing strip 8 can be configured to be composed of a U-shaped sealing strip 81 connected end to end and a single straight-shaped sealing strip 82.
- the U-shaped sealing strip 81 can surround the outer side of the opening of the ice-making door 7 and the dispenser chamber 6 to prevent the ice-making door 7 or the dispenser chamber 6 from contacting the external environment.
- the straight-shaped sealing strip 82 can be provided on the front wall of the partition wall 321 between the ice-making door 7 and the dispenser chamber 6 to prevent the cold air of the dispenser chamber 6 from overflowing from the opening to the front side of the ice-making door 7.
- Such an arrangement can achieve the sealing of the ice-making door 7 and the dispenser chamber 6 at the same time, can effectively prevent the cold air in the dispenser chamber 6 from entering between the ice-making door 7 and the auxiliary door 4, can simplify the structure and installation of the sealing strip 8, and facilitate the mutual coordination between the auxiliary door 4 and the storage chamber door 3.
- the secondary door 4 may be recessed to form a mounting groove 44 that matches the sealing strip 8, and the sealing strip 8 is inserted into the mounting groove 44.
- Such a configuration has a simple structure and is easy to install.
- the sealing strip 8 may also be installed on the front wall of the storage chamber door 3.
- the insulation material of the sub-door 4 may include a VIP panel 43 and a foam insulation material.
- the VIP panel 43 is disposed at a position corresponding to the dispenser chamber 6 of the sub-door 4.
- the foam insulation material is foamed and filled around the VIP panel 43 and at a position corresponding to the ice making chamber 5 of the sub-door 4.
- the sub-door may include a sub-door shell 41 and a sub-door lining 42 which are arranged relatively to each other.
- the sub-door shell 41 and the sub-door lining 42 form an insulation space.
- the VIP panel 43 may be arranged at a position corresponding to the distributor chamber 6 in the insulation space, and the foam insulation material may be foamed and filled in the rest of the insulation space.
- the mounting groove 44 can be formed by the auxiliary door lining 42 being recessed toward the auxiliary door shell 41.
- the mounting groove 44 can be in a shape of a Chinese character " ⁇ ".
- the mounting groove 44 can include a Chinese character " ⁇ ” sealing groove 441 that cooperates with the Chinese character “ ⁇ ” sealing strip 81, and can also include a Chinese character “ ⁇ ” sealing groove 442 that cooperates with the Chinese character “ ⁇ ” sealing strip 82.
- the Chinese character " ⁇ ” sealing groove 441 and the Chinese character “ ⁇ ” sealing groove 442 can be connected to each other.
- the heat-insulating requirement of the area of the auxiliary door 4 corresponding to the ice making door 7 is relatively low.
- the dispenser chamber 6 is only insulated by the heat-insulating material in the auxiliary door 4, so the heat-insulating requirement of the area of the auxiliary door 4 corresponding to the dispenser chamber 6 is relatively high.
- the VIP panel 43 is thinner and has better thermal insulation effect.
- the VIP panel 43 can be set at the corresponding position of the distributor chamber 6 of the sub-door 4, which can improve the thermal insulation effect of the distributor chamber 6 and avoid cold air leakage in the distributor chamber 6.
- Different thermal insulation materials are set in different areas of the sub-door 4, and the foamed thermal insulation material is filled around the VIP panel 43 to fix the VIP panel 43. This can ensure the thermal insulation effect of the sub-door 4, simplify the structural design of the sub-door 4, reduce the production cost of the sub-door 4, and reduce the thickness of the sub-door 4.
- air cooling can be used to cool the storage chamber 2 and promote uniform temperature distribution in the storage chamber 2, that is, by setting a storage chamber fan to make the cold air flow in the storage chamber 2.
- the storage chamber fan can be set in the air duct between the storage chamber 2 and the evaporator chamber, and can also be set in the storage chamber 2.
- the air flow in the storage room 2 can be promoted, and the cold air circulation and cold energy exchange between the storage room 2 and the distributor room 6 can also be promoted, which can improve the cooling efficiency of the distributor room 6.
- the refrigerator 100 may further include a filter 9 disposed on the storage chamber door 3 .
- the filter 9 may be opposite to the air inlet 63 and may be used to filter the cold air from the storage chamber 2 into the dispenser chamber 6 .
- the storage room 2 generally has a large storage space and stores many items, such as fruits, vegetables, meat, etc., so it is easy for the storage room 2 to produce odor.
- the distributor room 6 is generally used to take ice or water, and generally does not have odor. Since the cold air between the storage room 2 and the distributor room 6 circulates through the air inlet 63 and the return air outlet 64 on the distributor room 6, the odor in the storage room 2 can easily flow into the distributor room 6 and mix with the odor of the distributor room 6, causing the distributor room 6 to also have odor.
- a filter element 9 on the storage chamber door 3 for filtering the cold air from the storage chamber 2 entering the dispenser chamber 6, it is possible to effectively prevent the odor in the storage chamber 2 from flowing into the dispenser chamber 6, and to prevent the storage chamber 2 and the dispenser chamber 6 from mixing odors. This improves the cooling efficiency of the dispenser chamber 6 while ensuring the cleanliness of the internal environment and odor of the dispenser chamber 6, thereby improving the user experience of the dispenser chamber 6.
- the filter element 9 is arranged opposite to the air inlet 63. Specifically, the filter element 9 can be arranged at the front side, the rear side, or the inner side of the air inlet 63, as long as the filter element 9 can fully cover the air inlet 63.
- Such a configuration can ensure the filtering effect of the filter element 9, improve the filtering efficiency, and fully filter the cold air from the storage chamber 2 entering the dispenser chamber 6, thereby avoiding poor odor removal effect due to part of the cold air not being filtered out. It can also facilitate the installation and setting of the filter element 9, avoid the filter element 9 being too large in size, and reduce the space occupied by the filter element 9 on the storage chamber door 3.
- the refrigerator 100 may further include a storage compartment door fan 11 disposed on the storage compartment door 3.
- the storage compartment door fan 11 may be used to promote the flow of cold air between the storage compartment 2 and the dispenser compartment 6.
- the storage compartment door fan 11 may be opposite to the air inlet 63 and used to promote the cold air in the storage compartment 2 to enter the dispenser compartment 6 from the air inlet 63.
- the storage compartment door fan 11 and the air inlet 63 are arranged opposite to each other. Specifically, the storage compartment door fan 11 can be arranged at the front side, the rear side, or the inner side of the air inlet 63 .
- the cold air in the storage room 2 can be promoted to enter the distributor room 6 from the air inlet 63, thereby accelerating the air circulation between the distributor room 6 and the storage room 2, so that the distributor room 6 can be cooled as quickly as possible, which can effectively improve the cooling efficiency of the distributor room 6 and make the temperature distribution inside the distributor room 6 more uniform.
- the cold air circulation inside the distributor room 6 and between the distributor room 6 and the storage room 2 can be promoted, the humidity and temperature in the distributor room 6 can be evenly distributed, the humidity and temperature in the distributor room 6 can be effectively reduced, and condensation in the distributor room 6 can be avoided as much as possible.
- the air inlet 63 and the air return 64 are arranged on the rear wall of the distributor chamber 6. Since the rear wall of the distributor chamber 6 is closer to the storage chamber 2, it is more convenient to arrange the air inlet 63 and the air return 64, which can save space and make the structure of the storage chamber door 3 more compact and easy to implement.
- the air inlet 63 and the air return 64 can also be arranged on the left and right side walls or the upper wall of the distributor chamber 6.
- the filter 9 can be arranged behind the air inlet 63. Such an arrangement can realize a concealed arrangement of the filter 9, facilitate the matching of the filter 9 and the air inlet 63, and avoid the filter 9 occupying the space of the distributor chamber 6.
- the storage compartment door fan 11 is disposed at the rear side of the air inlet 63. This arrangement enables the storage compartment door fan 11 to be concealed, facilitates the coordination of the storage compartment door fan 11 and the air inlet 63, avoids the storage compartment door fan 11 from occupying the space of the distributor chamber 6, and improves the space utilization rate of the distributor chamber 6.
- the storage compartment door fan 11 can be arranged at the rear side of the filter element 9.
- the storage compartment door fan 11 blows out cold air from the rear side of the filter element 9 from the back to the front, and the cold air enters the distributor chamber 6 from the air inlet 63 after being filtered by the filter element 9.
- Such an arrangement can facilitate the mutual cooperation of the storage compartment door fan 11, the filter element 9, and the air inlet 63, can improve the filtering efficiency, avoid the cross-smell between the distributor chamber 6 and the storage chamber 2, and ensure the cleanliness of the environment of the distributor chamber 6.
- a manual water outlet 621 and a brake member 13 for controlling water outlet from the manual water outlet 621 are provided in the dispenser chamber 6 .
- the brake member 13 may be swingably disposed below the manual water outlet 621 .
- the brake member 13 may be configured so that when the user uses a cup or presses the brake member 13 inwardly by hand, the manual water outlet 621 opens and water flows out of the manual water outlet 621 .
- the manual water outlet 621 can be connected to a water storage box through a water pipe.
- the water storage box can be arranged in a storage room, and drinkable water or beverages can be stored in the water storage box.
- the cold air in the storage room can cool the water in the water storage box.
- the cup When the user needs to take a small amount of ice water, the cup can be placed under the manual water outlet 621, and the cup can push the brake member 13 backward to open the manual water outlet 621 and fill the cup with water. In this way, the user can manually take water, and a certain amount of water can flow out according to the user's manual control, meeting the user's daily needs for drinking ice water.
- the air inlet 63 can be arranged behind the brake member 13, and a gap is arranged between at least the left and right sides of the brake member 13 and the wall of the distributor chamber 6.
- the cold air entering from the air inlet 63 can flow into the distributor chamber 6 from the left gap and the right gap between the brake member 13 and the wall of the distributor chamber 6.
- gaps may be provided between the upper and lower sides of the brake member 13 and the wall of the distributor chamber 6.
- the cold air entering from the air inlet 63 may also flow into the distributor chamber 6 through the gaps between the brake member 13 and the upper and lower sides of the wall of the distributor chamber 6.
- the brake member 13 may include a brake plate 131 extending vertically up and down.
- the rear wall of the distributor chamber 6 directly behind the brake plate 131 may be recessed backward to form an accommodating space 601.
- the brake plate 131 may be at least partially placed in the accommodating space 601.
- the top of the brake plate 131 may be provided with a rotating shaft 132 arranged in the distributor chamber so that the brake member can pivot.
- the air inlet 63 may be arranged on the rear wall of the accommodating space 601, and at the same time may extend to the left and right side walls of the accommodating space 601 to increase the area of the air inlet 63.
- the air inlet 63 may be provided with a grille to increase the structural strength at the air inlet 63 and to guide the air.
- the rear surface of the brake plate 131 may be provided with a micro switch, and the front surface of the grille of the air inlet 63 may be provided with a protrusion that cooperates with the micro switch.
- the rear surface of the brake plate 131 may also be provided with an elastic member, and the rear surface of the elastic member may abut against the front surface of the rear wall of the accommodating space 601.
- the middle portion of the brake plate 131 can be recessed toward the interior of the accommodating space 601, and the left edge, right edge and lower edge of the brake plate 131 can be inclined away from the rear wall of the distributor chamber 6, so that the left gap, right gap and lower gap between the brake plate 131 and the wall of the distributor chamber 6 gradually increase along the flow direction of the cold air entering from the air inlet 63, so as to facilitate the flow of cold air and better play a role in diverting and guiding the cold air.
- Such an arrangement enables the brake member 13 to block the air inlet 63 from the front side, thereby realizing a concealed arrangement of the air inlet 63. It also enables the brake member 13 to divert and guide the cold air flowing in from the air inlet 63, thereby making the wind circulation in the entire distributor chamber 6 more reasonable and the temperature distribution in the distributor chamber 6 more uniform.
- an automatic water outlet 622 and an automatic water filling kettle 14 that can be taken and placed below the automatic water outlet 622 are provided in the dispenser chamber 6.
- the return air outlet 64 can be provided behind the automatic water filling kettle 14.
- the cold air in the distributor chamber 6 can flow into the return air port 64 through the left and right gaps between the automatic water filling kettle 14 and the wall of the distributor chamber 6.
- a gap can also be provided between the upper side of the automatic water filling kettle 14 and the wall of the distributor chamber 6, and the cold air in the distributor chamber 6 can also flow into the return air port 64 through the upper gap between the automatic water filling kettle 14 and the wall of the distributor chamber 6.
- the rear wall of the dispenser chamber 6 can be recessed backward to form a placement space 65, and the automatic water filling kettle 14 can be at least partially placed in the placement space 65.
- the return air vent 64 can be arranged on the rear wall of the placement space 65.
- a grille can be arranged in the return air vent 64 to enhance the structural strength of the return air vent 64 and play a role in guiding wind.
- the automatic water filling kettle 14 and the rear wall, left and right side walls, and upper wall of the placement space 65 can be spaced apart.
- the front side of the automatic water filling kettle 14 can be spaced apart from the auxiliary door 4, so that the cold air in the dispenser chamber 6 can flow through the front side, left and right sides, and upper side of the automatic water filling kettle 14 and then flow into the return air port 64 from the rear side of the automatic water filling kettle 14.
- Such an arrangement can make the automatic water filling kettle 14 block the return air outlet 64 from the front side, thereby realizing a concealed arrangement of the return air outlet 64. It can also realize the diversion and guidance of the cold air convected back to the return air outlet 64 through the automatic water filling kettle 14, so that the cold air can fully cool the automatic water filling kettle 14, and at the same time, it can make the wind circulation in the entire dispenser chamber 6 more reasonable and the temperature distribution in the dispenser chamber 6 more uniform.
- the automatic water outlet 622 can be connected to a water storage box placed in the storage chamber through a water pipe assembly, or can be connected to a water source outside the refrigerator through a water pipe assembly.
- the dispenser chamber 6 may be provided with a placement slot 66 matching the bottom of the automatic water filling kettle 14 below the automatic water filling kettle 14.
- the dispenser chamber 6 may be provided with a kettle detection device, which may be used to detect whether the automatic water filling kettle 14 is placed in the placement slot 66 and transmit a signal to the control module of the refrigerator.
- the kettle detection device may be a switch device triggered by contacting the automatic water filling kettle.
- the top of the automatic water filling kettle 14 is provided with a water filling port 141 which cooperates with the automatic water outlet 622 .
- the refrigerator 100 may further include a water temperature detection device.
- the water temperature detection device may be used to detect the water temperature of the automatic water filling kettle 14.
- the water temperature detection device may be communicatively connected to the control module of the refrigerator.
- the water temperature detection device may detect the water temperature in the automatic water filling kettle 14 in real time and transmit it to the control module of the refrigerator.
- the water temperature detection device can be arranged in the dispenser chamber 6.
- the water temperature detection device can be arranged in a non-contact manner with the automatic water filling kettle 14.
- the water temperature detection device can be an infrared temperature sensor.
- the water temperature detection device can also use other types of temperature sensors other than infrared temperature sensors.
- the water temperature detection device can also be arranged on the automatic water filling kettle 14, for example, arranged in the automatic water filling kettle 14, or arranged to be attached to the automatic water filling kettle 14, so as to detect the water temperature of the automatic water filling kettle 14.
- the refrigerator 100 may further include a display device.
- the display device may be in communication connection with the control module.
- the display device may include a display screen. Under the control of the control module of the refrigerator, the display device may display the water temperature of the automatic water filling kettle 14 detected by the water temperature detection device, so that the user can accurately and timely understand the water temperature in the automatic water filling kettle 14 without opening the door.
- the refrigerator 100 may further include a water volume detection device.
- the water volume detection device is used to detect the water volume of the automatic water filling kettle 14.
- the water volume detection device may be communicatively connected to the control module of the refrigerator, and transmit the detected water volume information of the automatic water filling kettle 14 to the control module.
- the display device can display the water level of the automatic water filling kettle 14 detected by the water level detection device, so that the user can accurately and timely understand the water level in the automatic water filling kettle 14 without opening the refrigerator door.
- the water level detection device may include a first liquid level sensor 121, a second liquid level sensor 122, and a third liquid level sensor 123.
- the height of the first liquid level sensor 121 may be located at the upper part of the automatic water filling kettle 14, and the first liquid level sensor 121 is located below the water injection port 141 of the automatic water filling kettle 14.
- the water injection port 141 cooperates with the automatic water outlet 622.
- the height of the second liquid level sensor 122 may be located in the middle of the automatic water filling kettle 14.
- the height of the third liquid level sensor 123 may be located at the lower part of the automatic water filling kettle 14.
- the water amount detection device can be arranged in the distribution chamber.
- the water amount detection device can be arranged in a non-contact manner with the automatic water filling kettle 14.
- the water amount detection device can also be arranged on the automatic water filling kettle 14, for example, arranged in the automatic water filling kettle 14, or arranged to be attached to the automatic water filling kettle 14, so as to detect the water amount of the automatic water filling kettle 14.
- the control module can control the display device to display whether the water level in the automatic water filling kettle 14 is too much or full according to the signal transmitted by the water level detection device.
- the second liquid level sensor 122 and the third liquid level sensor 123 can detect that there is water in the automatic water filling kettle 14 and send a signal to the control module.
- the control module can control the display device to display that the water level in the automatic water filling kettle 14 is medium according to the signal transmitted by the water level detection device.
- the control module can control the display device to display that the amount of water in the automatic water filling kettle 14 is a small amount according to the signal transmitted by the water level detection device.
- the automatic water outlet 622 can be controlled to be closed to prevent the automatic water outlet 622 from continuing to inject water into the automatic water filling kettle 14 and causing the water in the automatic water filling kettle 14 to overflow.
- a bracket may be provided in the dispenser chamber 6.
- the bracket may extend along the height direction of the automatic water filling kettle 14.
- the bracket may be provided in cooperation with the side wall of the automatic water filling kettle 14.
- the first liquid level sensor 121, the second liquid level sensor 122, and the third liquid level sensor 123 may all be provided on the bracket.
- the water temperature detection device can also be arranged on support.
- the water quantity detection device can be arranged on support away from the automatic water filling kettle 14 sides, to realize the hidden arrangement of the water quantity detection device, while avoiding the water quantity detection device water inlet as far as possible.
- the water volume detection device may only include a liquid level sensor.
- the water volume detection device may be disposed on the upper portion of the automatic water filling kettle 14 and below the water filling port 141 of the automatic water filling kettle 14 .
- the control module can control the display device to display that the water level in the automatic water filling kettle 14 is full according to the signal transmitted by the water level detection device.
- the automatic water outlet 622 can be controlled to be closed to prevent the automatic water outlet 622 from continuing to inject water into the automatic water filling kettle 14 and causing the water in the automatic water filling kettle 14 to overflow.
- the bottom surface of the placement groove 66 may be recessed downward to form a water storage groove 67. If the water in the automatic water filling kettle 14 overflows, it may first flow downward into the placement groove 66, then flow in the placement groove 66 and accumulate in the water storage groove 67.
- the dispenser chamber 6 may be provided with a water storage detection device at the water storage groove 67. The water storage detection device may be used to detect whether there is water in the water storage groove 67.
- the water storage detection device 67 may be a sensor capable of detecting whether there is water.
- the control module can control the automatic water outlet 622 to open to inject water into the automatic water filling kettle 14 until the water level in the automatic water filling kettle 14 reaches the preset water level.
- Such an arrangement can realize automatic water filling into the automatic water filling kettle 14.
- the cold air in the dispenser chamber 6 can cool the water in the automatic water filling kettle 14.
- the user can directly take out the automatic water filling kettle 14 from the dispenser chamber 6 for use, which can facilitate the user to take a large amount of ice water, save the user's water fetching time, and improve the user's experience.
- the manual water inlet may be disposed near the right side of the dispenser chamber 6
- the automatic water outlet 622 may be disposed near the left side of the dispenser chamber 6 .
- a portion of the cold air entering from the air inlet 63 can flow into the return air outlet 64 from the right side gap between the brake part 13 and the rear wall of the dispenser chamber 6, along the rear wall of the dispenser chamber 6, the right side wall of the dispenser chamber 6, the auxiliary door 4, the front side of the automatic water filling kettle 14, the left side of the automatic water filling kettle 14 (the left side wall of the dispenser chamber 6, the left side wall of the placement space 65), and the rear side of the automatic water filling kettle 14 (the rear wall of the dispenser chamber 6, the rear wall of the placement space 65).
- Another part of the cold air entering from the air inlet 63 can flow into the return air outlet 64 from the left gap between the brake part 13 and the rear wall of the dispenser chamber 6, along the rear wall of the dispenser chamber 6, the right side of the automatic water filling kettle 14 (the right side wall of the placement space 65), and the rear side of the automatic water filling kettle 14 (the rear wall of the placement space 65).
- Such arrangement enables the brake member 13 and the automatic water filling kettle 14 to divert and guide the cold air flowing in the dispenser chamber 6, making the wind circulation in the entire dispenser chamber 6 more reasonable and the temperature distribution in the dispenser chamber 6 more uniform.
- the refrigerator 100 further includes a door lock.
- the door lock may be provided on the secondary door 4, and the door lock may be used to lock the secondary door 4 in a position to close the dispenser chamber 6.
- the door lock may be a push-type door lock, and when the door lock is pressed, the door lock opens to enable the secondary door 4 to be opened.
- the refrigerator 100 may further include a pressure detection device, which may be provided in conjunction with a door lock, and is used to detect whether the door lock is pressed, so that the refrigerator 100 can control the opening and closing of the automatic water outlet 622 according to a signal output by the pressure detection device.
- a pressure detection device which may be provided in conjunction with a door lock, and is used to detect whether the door lock is pressed, so that the refrigerator 100 can control the opening and closing of the automatic water outlet 622 according to a signal output by the pressure detection device.
- the control module of the refrigerator can control the automatic water outlet 622 to close according to the signal transmitted by the pressure detection device, so that the automatic water outlet 622 stops injecting water into the automatic water filling kettle 14. In this way, when the auxiliary door 4 is opened, the automatic water outlet 622 is always closed to prevent water from splashing out of the automatic water outlet 622, or the automatic water outlet 622 injects water into the automatic water filling kettle 14, which affects the user's use of the dispenser chamber 6, such as taking the automatic water filling kettle 14.
- the pressure detection device may be a pressure sensor, or an electrical switch triggered when the door lock is pressed, which can output a corresponding signal to the control module of the refrigerator when the door lock is pressed.
- the door lock may be an automatic door lock.
- the user does not need to manually press the door lock, and can input a door lock opening command to the refrigerator through a display screen or voice or the like.
- the control module of the refrigerator can first detect whether the automatic water outlet 622 is closed. If the automatic water outlet 622 is in an open state, the automatic water outlet 622 can be controlled to be closed first, and then the door lock can be controlled to be opened, so that the automatic water outlet 622 is closed before the auxiliary door 4 is opened, and the automatic water outlet 622 is ensured to be in a closed state when the auxiliary door 4 is opened.
- the door lining 33 is recessed toward the air inlet 63 to form a mounting portion 331, and the mounting portion 331 can be provided with an opening corresponding to the air inlet 63, and the storage compartment door fan 11 can be provided in the mounting portion 331.
- the storage compartment door fan 11 can be completely placed in the installation portion 331.
- the installation portion 331 can be opened toward the opening side of the storage compartment 2, and the storage compartment door fan 11 can be installed in the installation portion 331 of the door lining 33 from the opening side of the storage compartment 2.
- the opening of the installation portion 331 toward the air inlet 63 can be larger than the air inlet 63, so that the storage compartment door fan 11 can blow the cold air in the storage compartment 2 into the air inlet 63.
- Such an arrangement can ensure the mutual cooperation between the storage compartment door fan 11 and the air inlet 63, and can facilitate the installation of the storage compartment door fan 11.
- a cover 12 for shielding the mounting portion 331 may be provided on the inner side of the door lining 33.
- the inner side of the door lining 33 is the side of the door lining 33 that opens toward the storage chamber 2.
- the cover 12 may shield the mounting portion 331 and the storage chamber door fan 11 from the inner side of the door lining 33, thereby realizing a concealed arrangement of the mounting portion 331 and the storage chamber door fan 11.
- the cover body 12 may be connected to the mounting portion 331 .
- the cover body 12 can be mounted on the mounting portion 331 by snapping.
- the cover body 12 may include a cover plate 121 that matches the open opening of the mounting portion 331, and the cover body 12 may also include a connecting arm 122 extending from the cover plate 121 into the mounting portion 331.
- a plurality of connecting arms 122 may be provided on both the upper side and the lower side of the cover body 12.
- the mounting portion 331 may be provided with a buckle 3311 that cooperates with the connecting arm 122.
- the cover body 12 When installing, the cover body 12 may be placed from the inner side of the door lining 33 to the open opening of the mounting portion 331, and the connecting arm 122 of the cover body 12 may be extended into the interior of the mounting portion 331 and engaged with the buckle 3311 of the mounting portion 331, thereby The cover body 12 and the mounting portion 331 are connected to each other.
- the storage compartment door fan 11 may be connected to the cover body 12 .
- the cover body 12 may further include a clamping arm 124 extending from the cover plate 121 to the inside of the mounting portion 331.
- the clamping arm 124 can fix and limit the storage room door fan 11.
- the cover body 12 may have a plurality of clamping arms 124.
- the left and right sides of the cover body 12 may be provided with a plurality of clamping arms 124.
- the ends of the clamping arms 124 protrude inward to form a convex block, and the storage room door fan 11 is placed between the clamping arms 124 on the left and right sides.
- the convex block of the clamping arm 124 is clamped to the front wall of the storage room door fan 11, so that the rear wall of the storage room door fan 11 and the cover plate 121 are in contact.
- the storage room door fan 11 can also be placed between the connecting arms 122 on the upper and lower sides of the cover body 12, which can further limit the storage room door fan 11.
- the storage room door fan 11 can be first installed on the cover body 12 through the clamping arm 124, and then the cover body 12 can be installed on the installation part 331 through the cooperation of the buckle 3311 of the installation part 331 and the slot 123 of the connecting arm 122 of the cover body 12.
- the cover body 12 can be detachably connected to the mounting portion 331.
- the cover body 12 can be made of a plastic material that can be elastically deformed to a certain extent.
- a tool to pry the cover body 12 to deform the cover body 12 so that the cover body 12 can be separated from the mounting portion 331.
- Such a configuration has a simple structure and is easy to disassemble and assemble.
- the refrigerator 100 may include a bracket 10 disposed on the storage chamber door 3 .
- the filter 9 may be detachably disposed in the bracket 10 .
- the bracket 10 may include a main board 101 and an upper edge 102, a lower edge 103, a left edge 104 and a right edge 105 that protrude from the main board 101 toward the air inlet 63 and are connected end to end.
- the upper edge 102, the lower edge 103, the left edge 104 and the right edge 105 of the bracket 10 may all contact the wall of the distributor chamber 6 at the periphery of the air inlet 63.
- the filter element 9 can be detachably mounted in the space formed by the main board 101, the upper edge 102, the lower edge 103, the left edge 104, and the right edge 105 of the bracket 10. Such a configuration can achieve a stable installation of the filter element 9, a simple structure, and convenient assembly and disassembly.
- the main board 101 of the bracket 10 may be provided with an opening for allowing cold air from the storage chamber 2 to pass through.
- the opening of the main board 101 of the bracket 10 may be provided with a grille to conduct cold air while increasing the structural strength of the bracket 10.
- the filter element 9 in this embodiment can be a plate-shaped filter screen with activated carbon particles.
- the filter element 9 can also be a filter bag filled with activated carbon particles or other filter materials.
- the bracket 10 may be at least partially disposed between the side opening of the air inlet 63 of the mounting portion 331 and the air inlet 63. In some embodiments, the bracket 10 may be configured to be removed from the side opening of the air inlet 63 of the mounting portion 331.
- the filter element 9 is disposed in the bracket 10, and when the bracket 10 is removed from the side opening of the air inlet 63 of the mounting portion 331, the filter element 9 is removed from the side opening of the air inlet 63 of the mounting portion 331 simultaneously with the bracket 10.
- the user can open the storage chamber door 3, reach into the mounting portion 331 from the door lining 33 side, and take out the bracket 10 connected to the filter element 9 from the opening on the side of the air inlet 63 of the mounting portion 331.
- the user can reinstall the bracket 10 together with the new filter element 9 from the side of the door lining 33 through the opening on the side of the air inlet 63 of the mounting portion 331, so that the bracket 10 contacts the rear wall of the distributor chamber 6, and the new filter element 9 faces the air inlet 63.
- Such a configuration can facilitate the replacement of the filter element 9, avoid the poor filtering effect of the filter element 9 due to long use, and has a simple structure and convenient disassembly and assembly of the filter element 9.
- the bracket 10 can be abutted between the grille of the air inlet 63 and the storage compartment door fan 11. In this way, the bracket 10 can be fixed by abutment without setting an additional connection structure, which can facilitate the disassembly and assembly of the bracket 10 and the filter element 9.
- the user can remove the cover body 12 together with the storage room door fan 11 from the mounting portion 331 from the door lining 33 side, and then take out the bracket 10 and the filter 9 from the opening on the side of the air inlet 63 of the mounting portion 331.
- the user can first install the bracket 10 and the filter 9 from the opening on the side of the air inlet 63 of the mounting portion 331, so that the bracket 10 abuts against the rear wall of the distributor chamber 6, and then install the interconnected cover body 12 and the storage room door fan 11 into the mounting portion 331 together, so that the storage room door fan 11 abuts against the bracket 10, and the cover body 12 and the mounting portion 331 are mutually engaged, so as to achieve mutual cooperation and stable installation of the cover body 12, the storage room door fan 11, the bracket 10, and the filter 9.
- Such a configuration has a simple structure and is easy to disassemble and assemble.
- the bracket 10 can at least partially extend into the opening on the side of the air inlet 63 of the mounting portion 331.
- Such a configuration can play a role in positioning and limiting the bracket 10, can facilitate the abutment and cooperation between the bracket 10 and the storage compartment door fan 11, and can also facilitate the disassembly and assembly of the bracket 10.
- the rear wall of the distributor chamber 6 can extend toward the door lining 33 to form a first flange 68, the first flange 68 can be closed around the air inlet 63, the first flange 68 can be externally closed and surrounded by a first seal, and the front wall of the mounting portion 331 is connected to the first seal to prevent the insulation material between the rear wall of the distributor chamber 6 and the door lining 33 from entering the air inlet 63 or the mounting portion 331.
- the rear wall of the distributor chamber 6 can extend toward the door lining 33 to form a second flange 69, and the second flange 69 can surround the return air outlet 64 in a closed manner.
- the second flange 69 can be externally closed and surrounded by a second seal, and the front wall of the door lining 33 is connected to the second seal to prevent the insulation material between the rear wall of the distributor chamber 6 and the door lining 33 from entering the return air outlet 64 or the inner side of the door lining 33.
- the first sealing member and the second sealing member may both be sealing sponges.
- the door lining may be provided with an opening corresponding to the return air port 64.
- the opening corresponding to the return air port 64 provided on the door lining is placed inside the second flange 69. This arrangement can prevent the insulation material from overflowing from the interval space between the rear wall of the distributor chamber 6 and the door lining 33 to the air inlet 63 or the inside of the mounting portion 331 or the inside of the door lining 33 when the insulation material is foamed and filled.
- the bracket 10 can be placed inside the first flange 68.
- the upper edge 102, the lower edge 103, the left edge 104, the right edge 105 of the bracket 10 and the first flange 68 can be arranged in a coordinated manner. Such an arrangement can limit and position the bracket 10, prevent the bracket 10 from shifting after installation, and ensure the mutual coordination between the filter element 9 in the bracket 10 and the air inlet 63.
- a wiring space 60 is formed on the upper part of the distributor chamber 6, and a wiring terminal is arranged in the wiring space 60.
- the air inlet 63, the return air inlet 64, the automatic water filling kettle 14 and the brake 13 can all be arranged below the wiring space 60.
- a wire can be connected between the wiring terminal and the storage room door fan 11. The wire extends from the wiring terminal to the rear side of the brake 13 and is connected to the storage room door fan 11 through the air inlet 63. In this way, the centralized and concealed arrangement of the wiring terminals and wires in the distributor chamber 6 can be realized, which can facilitate the wiring and control of the storage room door fan 11.
- the refrigerator 100 of the present invention can solve the technical problems in the prior art such as the high temperature in the dispenser chamber 6, the easy condensation on the surface of the ice-making door 7, and the easy odor mixing between the dispenser chamber 6 and the storage chamber 2.
- the coldness of the storage chamber 2 can be used to cool the dispenser chamber 6, the temperature of the dispenser chamber can be reduced, the utilization of the dispenser chamber can be improved, the humidity of the dispenser chamber 6 can be reduced, the condensation in the dispenser chamber 6 can be avoided as much as possible, the odor in the storage chamber 2 can be effectively prevented from flowing into the dispenser chamber 6, the odor mixing between the storage chamber 2 and the dispenser chamber 6 can be avoided, and the cooling efficiency of the dispenser chamber 6 can be improved while ensuring the cleanliness of the internal environment and odor of the dispenser chamber 6, improving the user's experience of the dispenser chamber 6, preventing the ice-making door 7 from contacting the external environment, preventing the cold air in the dispenser chamber 6 from flowing between the ice-making door 7 and the auxiliary door 4, and effectively
- an embodiment of the present invention provides a control method for a refrigerator 100 , which includes:
- the storage room door fan 11 is controlled to run.
- the storage room door fan 11 causes the cold air in the storage room 2 to enter the distributor room 6 from the air inlet 63 of the distributor room 6;
- the storage compartment door fan 11 is controlled to be turned off.
- the refrigerator 100 may be provided with a control module.
- the storage compartment door fan 11 can be connected to the control module for communication, and the control module can control the start, stop and running time of the storage compartment door fan 11 .
- the storage compartment fan may be communicatively connected to a control module of the refrigerator 100.
- the control module may control the start, stop, and running time of the storage compartment fan.
- the refrigerator 100 may be provided with a door switch detection device for detecting the opening and closing of the door of the refrigerator 100.
- the door switch detection device may be communicatively connected to the control module, and the door switch detection device may transmit the information of the door opening and closing to the control module.
- the door switch detection device can send a door opening signal to the control module; when the door is detected to be closed, the door switch detection device can send a door closing signal to the control module.
- the door switch detection device can adopt an existing structure capable of realizing the door switch detection function, for example, a Hall sensor and a magnet matched and arranged in the door body and the door body opening and closing chamber can be adopted.
- Each independently openable and closable door of the refrigerator 100 may be provided with a corresponding door switch detection device.
- the door switch detection device may include a storage compartment door 3 switch detection device for detecting the opening and closing of the storage compartment door 3, and a sub-door 4 switch detection device for detecting the opening and closing of the sub-door 4.
- the operation of the storage chamber fan can promote the heat exchange between the evaporator chamber and the storage chamber 2, and reduce the temperature of the storage chamber 2.
- the operation of the storage chamber door fan 11 can promote the heat exchange between the storage chamber 2 and the distributor chamber 6, and reduce the temperature of the distributor chamber 6.
- Controlling the storage room fan and the storage room fan to operate synchronously can achieve a balance between the temperature of the storage room 2 and the temperature of the distributor room 6, avoid a large temperature difference between the storage room 2 and the distributor room 6, ensure that the distributor room 6 can provide a refrigerated and heat-insulating environment similar to that of the storage room 2, and improve the utilization rate of the distributor room 6.
- control method of the refrigerator 100 further includes:
- the storage compartment door fan 11 is controlled to be closed.
- the storage room door fan 11 is controlled to stop running, which can reduce the cold air leakage of the distributor room 6 and the storage room 2 and reduce the temperature fluctuation of the distributor room 6 and the storage room 2.
- control method of the refrigerator 100 further includes:
- the storage chamber fan is controlled to start.
- control method of the refrigerator 100 may further include:
- the storage chamber fan is controlled to be closed.
- the refrigerator 100 may include a refrigeration temperature sensor disposed in the storage chamber 2.
- the refrigeration temperature sensor may be communicatively connected to the control module of the refrigerator 100.
- the control module may control the storage chamber fan to start to lower the temperature of the storage chamber 2.
- the control module can control the storage chamber fan to stop.
- the storage chamber door fan 11 can be started or stopped synchronously while the storage chamber fan is started or stopped.
- the operation of the storage chamber fan can be controlled according to the temperature of the storage chamber 2, and the synchronous operation of the storage chamber fan and the storage chamber door fan 11 can be controlled, so that the temperature of the storage chamber 2 and the temperature of the dispenser chamber 6 are always within a specific temperature range, thereby achieving effective control of the temperature of the storage chamber 2 and the temperature of the dispenser chamber 6, reducing the temperature fluctuation of the storage chamber 2 and the dispenser chamber 6, and enabling the storage chamber 2 and the dispenser chamber 6 to provide a good refrigeration and preservation environment.
- the refrigerator of the present invention can solve the technical problem of low utilization of the dispenser chamber 6, can control the synchronous operation of the fans of the storage chamber 2 and the storage chamber 3, achieve the balance of the temperature of the storage chamber 2 and the temperature of the dispenser chamber 6, avoid a large temperature difference between the storage chamber 2 and the dispenser chamber 6, ensure that the dispenser chamber 6 can provide a refrigerated and heat-insulating environment similar to that of the storage chamber 2, and improve the utilization of the dispenser chamber 6.
- the storage chamber door fan 11 is controlled to stop running, which can reduce the leakage of cold air from the dispenser chamber 6 and the storage chamber 2, and reduce the temperature fluctuation of the dispenser chamber 6 and the storage chamber 2.
- a control method of a refrigerator 100 includes:
- the automatic water outlet 622 When it is detected that the conditions for opening the automatic water outlet 622 are met, the automatic water outlet 622 is opened to fill water into the automatic water filling kettle 14, and the storage room door fan 11 is controlled to run for a preset time. When the storage room door fan 11 is running, the storage room door fan 11 causes the cold air in the dispenser chamber 6 to flow through the automatic water filling kettle 14.
- the duration of controlling the operation of the storage compartment door fan 11 may be a specific value preset before the refrigerator 100 leaves the factory, such as 2 minutes. Specifically, the longest duration required for the water in the automatic water filling kettle 14 to be cooled to a certain temperature, such as 2°C, from opening the automatic water outlet to fill water into the automatic water filling kettle 14, to filling the automatic water filling kettle 14 with water, and finally to the full automatic water filling kettle 14 can be determined by experiment, and this duration can be determined as the duration of the storage compartment door fan 11 to be operated each time the automatic water outlet 622 is opened to fill water into the automatic water filling kettle 14.
- the cold air in the dispenser chamber 6 can flow quickly around the automatic water filling kettle 14, thereby accelerating the speed of heat exchange between the water in the automatic water filling kettle 14 and the cold air in the dispenser chamber 6, and then accelerating the cooling efficiency of the water in the automatic water filling kettle 14.
- the storage room door fan 11 when the storage room door fan 11 is turned on, it can also prompt the cold air in the storage room 2 to enter the dispenser room 6 through the air inlet 63 of the dispenser room 6, and prompt the low-temperature cold air entering from the storage room 2 to flow quickly around the automatic water filling kettle 14, thereby further accelerating the cooling efficiency of the water in the automatic water filling kettle 14.
- the technical solution of the present invention can increase the heat exchange speed between the automatic water filling kettle 14 and the cold air, improve the cold water efficiency of the automatic water filling kettle 14, shorten the cooling time of the water in the automatic water filling kettle 14, and quickly reduce the water temperature in the automatic water filling kettle 14, so as to provide users with a large amount of cold water that is easy to use in a timely manner.
- control method of the refrigerator 100 may further include:
- the automatic water outlet 622 is controlled to be closed.
- the dispenser chamber 6 is arranged on the storage chamber door 3, when the storage chamber door 3 is detected to be in an open state, that is, when the storage chamber door 3 is detected to be open and the closing signal of the storage chamber door 3 has not been obtained, it indicates that the storage chamber door 3 is in an unstable active state and the dispenser chamber 6 is not suitable for use.
- the active storage chamber door 3 may have an adverse effect on the operation of the functional components in the dispenser chamber 6. Therefore, the function of the dispenser chamber 6 can be turned off while the storage chamber door 3 is open.
- this embodiment can realize closing the automatic water filling function of the dispenser chamber 6 during the opening of the storage chamber door 3, avoiding the automatic water filling function from being triggered by mistake. Closing the automatic water outlet when the secondary door 4 is detected to be opened can avoid affecting the user's use of the automatic water filling kettle 14.
- the dispenser chamber 6 is generally provided with other water outlets 62, such as a manual water outlet 621, in addition to the automatic water outlet 622.
- the different water outlets 62 are generally connected to the same water source through a diverter valve, etc.
- the automatic water outlet function is turned off to prevent the automatic water filling function from being triggered by mistake, thereby preventing the normal use of other water outlets 62 in the dispenser chamber 6 from being affected.
- control method of the refrigerator 100 further includes:
- the conditions for opening the automatic water outlet 622 include:
- the automatic water outlet 622 is controlled to be closed.
- the dispenser chamber 6 may be provided with a position detection device which may be connected to the control module of the refrigerator 100 for communication and may transmit a signal to the control module of the refrigerator 100 indicating whether the automatic water filling kettle 14 is in a preset placement position.
- the automatic water filling kettle 14 being in the preset placement position may mean that the automatic water filling kettle 14 is in the placement slot 66 for the dispenser chamber 6.
- the placement slot 66 may be specifically used to hold the automatic water filling kettle 14.
- the position detection device can be arranged in or above the placement groove 66, and can cooperate with the automatic water filling kettle 14.
- the position detection device can be a switch component or a sensor etc. triggered by the automatic water filling kettle 14 through contact or shielding.
- the position detection device detects the automatic water filling kettle 14 and can send a signal to the control module that the automatic water filling kettle 14 is in the preset position; when the automatic water filling kettle 14 is taken out of the placement slot 66, the position detection device cannot detect the automatic water filling kettle 14 and can send a signal to the control module that the automatic water filling kettle 14 is not in the preset placement position.
- Such an arrangement can achieve that the automatic water outlet 622 is opened to inject water into the automatic water filling kettle 14 only when the automatic water filling kettle 14 is in the preset placement position, thereby ensuring the coordination between the automatic water filling kettle 14 and the automatic water outlet 622 and preventing water from the automatic water outlet 622 from dripping into the dispenser chamber 6.
- control method of the refrigerator 100 may further include:
- the conditions for opening the automatic water outlet 622 include:
- the automatic water outlet 622 is controlled to be closed.
- a liquid level detection device may be provided in the distributor chamber 6.
- the liquid level detection device may be connected to the control module for communication, and may transmit the liquid level information of the water in the automatic water filling kettle 14 to the control module.
- the preset liquid level of the water in the automatic water filling kettle 14 can be a liquid level at a certain distance below the water filling port 141 , for example, 2 cm below the water filling port 141 .
- the liquid level detection device can be flush with the preset liquid level height of the water in the automatic water filling kettle 14.
- the liquid level detection device can adopt an existing water level sensor.
- the liquid level detection device detects that the water in the automatic water filling kettle 14 has not reached the preset liquid level, and the position detection device can send a signal to the control module that the water in the automatic water filling kettle 14 has not reached the preset liquid level; when the automatic water filling kettle 14 is full of water, the position detection device detects that the water in the automatic water filling kettle 14 has reached the preset liquid level, and the liquid level detection device can send a signal to the control module that the water in the automatic water filling kettle 14 is at the preset liquid level.
- the conditions for opening the automatic water outlet 622 include: detecting that there is no water in the tank containing the automatic water filling kettle 14;
- the automatic water outlet 622 is controlled to be closed.
- the dispenser chamber 6 may be provided with a water storage detection device.
- the water storage detection device may be used to detect whether there is water in the tank containing the automatic water filling kettle 14. If water is detected, it indicates that the water in the automatic water filling kettle 14 may be full and may have overflowed.
- the water storage detection device can be connected to the control module for communication, and can transmit information to the control module as to whether there is water in the tank containing the automatic water filling kettle 14 .
- the water storage detection device can be arranged on the side wall of the water storage groove 67 formed by the recess of the placement groove 66, so as to more accurately detect whether water overflows from the automatic water filling kettle 14.
- the water storage detection device can be an existing sensor capable of detecting whether water exists.
- the water storage detection device When there is water in the water storage tank 67, the water storage detection device detects the presence of water and can send water information to the control module; when there is no water in the water storage tank 67, the water storage detection device detects the absence of water and can send water information to the control module.
- Such arrangement can prevent a large amount of water from accumulating in the dispenser chamber 6 due to the opening of the automatic water outlet 622 , and can timely control the automatic water outlet 622 to close when water overflows from the automatic water filling kettle 14 .
- the water storage sensor and the liquid level detection device are used simultaneously, which can also prevent the automatic water outlet 622 from being continuously opened or a large amount of water from overflowing from the automatic water filling kettle 14 due to failure of the liquid level detection device.
- control method of the refrigerator 100 further includes:
- the manual water outlet 621 in the dispenser chamber 6 is controlled to be closed.
- Such an arrangement can realize closing the manual water outlet function of the dispenser chamber 6 while the storage chamber door 3 is open, and can prevent the manual water outlet 621 from being accidentally opened.
- control method of the refrigerator 100 further includes:
- the storage compartment door fan 11 is controlled to be closed.
- the storage room door fan 11 is controlled to stop running, which can reduce the cold air leakage of the distributor room 6 and the storage room 2 and reduce the temperature fluctuation of the distributor room 6 and the storage room 2.
- control method of the refrigerator 200 may further include:
- the storage chamber fan is controlled to be closed.
- the storage chamber 2 of the refrigerator 200 can adopt a double door, that is, the refrigerator 200 not only includes a storage chamber door 3 for opening and closing the storage chamber 2, but also includes a second storage chamber door for opening and closing the storage chamber 2.
- the second storage chamber door and the storage chamber door 3 can be arranged side by side and can be pivoted in opposite directions to open and close the storage chamber 2.
- the door switch detection device of the refrigerator 200 may further include a second storage compartment door switch detection device for detecting the opening and closing of the second storage compartment door.
- a second storage compartment door switch detection device for detecting the opening and closing of the second storage compartment door.
- the storage compartment door fan 11 can be synchronously controlled to stop while stopping the storage compartment fan. Avoid the cold air leakage from the storage room 2 or the distributor room 6 caused by the operation of the storage room door fan 11.
- the water outlet function and ice outlet function of the dispenser compartment 6 are still operating normally. That is, when the storage compartment door 3 is closed and the user only opens the second storage compartment door, the automatic water outlet 622, the manual water outlet 621, and the ice outlet 61 can still be opened, and the user can open the auxiliary door 4 to take water from the manual water outlet 621 in the dispenser compartment 6 or take ice from the ice outlet 61 of the dispenser compartment 6.
- the automatic water outlet 622 can be controlled to open to fill water into the automatic water filling kettle 14.
- the condition for starting the storage compartment door fan 11 should also include detecting that the second storage compartment door is closed. If it is detected that the second storage compartment door is open, the storage compartment door fan 11 is not started or is controlled to stop.
- control method for controlling the storage room door fan 11 to run for a preset time each time the auxiliary door 4 is opened and closed to supplement the cold air leaked from the distributor room 6 may be:
- the storage room door fan 11 is controlled to start and run for a preset time.
- the storage room door fan 11 causes the cold air in the storage room 2 to enter the distributor room 6 from the air inlet 63 of the distributor room 6.
- each time the automatic water outlet 622 is opened to fill water into the automatic water filling kettle 14 the control method for controlling the storage room door fan 11 to run for a preset time to accelerate the cooling of water in the automatic water filling kettle 14 may be:
- the storage room door fan 11 is controlled to run for a preset time.
- the storage room door fan 11 causes the cold air in the dispenser chamber 6 to flow through the automatic water filling kettle 14 .
- control method of the refrigerator 100 may further include:
- the display device of the refrigerator is controlled to display the water volume and/or water temperature of the automatic water filling kettle.
- the refrigerator 100 may further include a water temperature detection device.
- the water temperature detection device may be used to detect the water temperature of the automatic water filling kettle 14.
- the water temperature detection device may be communicatively connected to the control module of the refrigerator.
- the water temperature detection device may detect the water temperature in the automatic water filling kettle 14 in real time and transmit it to the control module of the refrigerator.
- the water temperature detection device can be arranged in the dispenser chamber 6.
- the water temperature detection device can be arranged in a non-contact manner with the automatic water filling kettle 14.
- the water temperature detection device can be an infrared temperature sensor.
- the water temperature detection device can also use other types of temperature sensors other than infrared temperature sensors.
- the water temperature detection device can also be arranged on the automatic water filling kettle 14, for example, arranged in the automatic water filling kettle 14, or arranged to be attached to the automatic water filling kettle 14, so as to detect the water temperature of the automatic water filling kettle 14.
- the refrigerator 100 may further include a display device.
- the display device may be in communication connection with the control module.
- the display device may include a display screen. Under the control of the control module of the refrigerator, the display device may display the water temperature of the automatic water filling kettle 14 detected by the water temperature detection device, so that the user can accurately and timely understand the water temperature in the automatic water filling kettle 14 without opening the door.
- the refrigerator 100 may further include a water volume detection device.
- the water volume detection device is used to detect the water volume of the automatic water filling kettle 14.
- the water volume detection device may be communicatively connected to the control module of the refrigerator, and transmit the detected water volume information of the automatic water filling kettle 14 to the control module.
- the display device can display the water level of the automatic water filling kettle 14 detected by the water level detection device, so that the user can accurately and timely understand the water level in the automatic water filling kettle 14 without opening the refrigerator door.
- the water level detection device may include a first liquid level sensor 121, a second liquid level sensor 122, and a third liquid level sensor 123.
- the height of the first liquid level sensor 121 may be located at the upper part of the automatic water filling kettle 14, and the first liquid level sensor 121 is located below the water injection port 141 of the automatic water filling kettle 14.
- the water injection port 141 cooperates with the automatic water outlet 622.
- the height of the second liquid level sensor 122 may be located in the middle of the automatic water filling kettle 14.
- the height of the third liquid level sensor 123 may be located at the lower part of the automatic water filling kettle 14.
- the water amount detection device can be disposed in the distribution chamber.
- the water amount detection device can be disposed in a non-contact manner with the automatic water filling kettle 14.
- the water amount detection device can also be disposed on the automatic water filling kettle 14, for example, disposed in the automatic water filling kettle 14, or disposed to be attached to the automatic water filling kettle 14, so as to detect the water amount of the automatic water filling kettle 14.
- the control module can control the display device to display whether the water level in the automatic water filling kettle 14 is too much or full according to the signal transmitted by the water level detection device.
- the second liquid level sensor 122 and the third liquid level sensor 123 can detect that there is water in the automatic water filling kettle 14 and send a signal to the control module.
- the control module can control the display device to display that the water level in the automatic water filling kettle 14 is medium according to the signal transmitted by the water level detection device.
- the control module can control the display device to display that the amount of water in the automatic water filling kettle 14 is a small amount according to the signal transmitted by the water level detection device.
- the automatic water outlet 622 can be controlled to be closed to prevent the automatic water outlet 622 from continuing to inject water into the automatic water filling kettle 14 and causing the water in the automatic water filling kettle 14 to overflow.
- a bracket may be provided in the dispenser chamber 6.
- the bracket may extend along the height direction of the automatic water filling kettle 14.
- the bracket may be provided in cooperation with the side wall of the automatic water filling kettle 14.
- the first liquid level sensor 121, the second liquid level sensor 122, and the third liquid level sensor 123 may all be provided on the bracket.
- the water temperature detection device can also be arranged on support.
- the water quantity detection device can be arranged on support away from the automatic water filling kettle 14 sides, to realize the hidden arrangement of the water quantity detection device, while avoiding the water quantity detection device water inlet as far as possible.
- control method of the refrigerator 100 further includes:
- the automatic water outlet 622 is controlled to be closed, and when the door lock of the auxiliary door is pressed, the door lock of the auxiliary door is opened.
- the refrigerator 100 further includes a door lock.
- the door lock may be provided on the secondary door 4, and the door lock may be used to lock the secondary door 4 in a position to close the dispenser chamber 6.
- the door lock may be a push-type door lock, and when the door lock is pressed, the door lock opens to enable the secondary door 4 to be opened.
- the refrigerator 100 may further include a pressure detection device, which may be provided in conjunction with a door lock, and is used to detect whether the door lock is pressed, so that the refrigerator 100 can control the opening and closing of the automatic water outlet 622 according to a signal output by the pressure detection device.
- a pressure detection device which may be provided in conjunction with a door lock, and is used to detect whether the door lock is pressed, so that the refrigerator 100 can control the opening and closing of the automatic water outlet 622 according to a signal output by the pressure detection device.
- the control module of the refrigerator can control the automatic water outlet 622 to close according to the signal transmitted by the pressure detection device, so that the automatic water outlet 622 stops filling water into the automatic water filling kettle 14.
- Such arrangement can ensure that the automatic water outlet 622 is always closed when the auxiliary door 4 is opened, so as to prevent water from splashing out of the automatic water outlet 622 or the automatic water outlet 622 from injecting water into the automatic water filling kettle 14, thereby affecting the user's use of the dispenser chamber 6, such as taking the automatic water filling kettle 14.
- the pressure detection device may be a pressure sensor, or an electrical switch triggered when the door lock is pressed, which can output a corresponding signal to the control module of the refrigerator when the door lock is pressed.
- control method of the refrigerator 100 further includes:
- the automatic water outlet 622 is controlled to be closed, and then the sub-door 4 is controlled to be opened.
- the door lock may be an automatic door lock.
- the user does not need to manually press the door lock, and can input a door lock opening command to the refrigerator through a display screen or voice or the like.
- the control module of the refrigerator can first detect whether the automatic water outlet 622 is closed. If the automatic water outlet 622 is in an open state, the automatic water outlet 622 can be controlled to be closed first, and then the door lock can be controlled to be opened, so that the automatic water outlet 622 is closed before the auxiliary door 4 is opened, and the automatic water outlet 622 is ensured to be in a closed state when the auxiliary door 4 is opened.
- control method of the refrigerator 100 further includes:
- the ice-making door 7 Detecting whether the ice-making door 7 is closed, the ice-making door 7 is used to open and close the ice-making chamber 5 provided on the storage chamber door 3;
- the ice outlet 61 of the dispenser chamber 6 is controlled to be closed;
- the ice outlet 61 of the dispenser compartment 6 is controlled to be closed.
- the ice dispensing function of the dispenser chamber 6 can be turned off while the storage chamber door 3 is open, thereby preventing the ice dispensing port 61 from being accidentally opened.
- the ice outlet 61 of the dispenser chamber 6 is connected to the ice storage box 52 of the dispenser chamber 6 through the ice guide channel 31, and the ice storage box 52 is arranged in the ice making chamber 5 in a removable manner.
- the ice making door 7 may be opened to take the ice storage box 52. Therefore, if the ice dispensing function of the dispenser chamber 6 is still turned on when the ice making door 7 is opened, that is, the ice outlet 61 can still be opened, it may interfere with the user's use of the ice making chamber 5.
- such an arrangement can achieve closing the ice dispensing function of the dispenser chamber 6 while the ice-making door 7 is open, thereby preventing the ice outlet 61 from being accidentally opened and preventing the ice-making chamber 5 and the dispenser chamber 6 from interfering with each other.
- a computer-readable storage medium is further provided, on which a computer program is stored, wherein when the computer program is executed by a processor, the steps in the refrigerator control method described in any of the above embodiments are implemented.
- the refrigerator further includes a memory and a processor
- the memory stores a computer program that can be run on the processor, and when the processor executes the computer program, the steps in the refrigerator control method in any of the above embodiments are implemented.
- the refrigerator of the present invention can solve the technical problem that it is troublesome and time-consuming for users to take ice water, and can realize that when the storage chamber door 3 and the auxiliary door 4 are closed, the automatic water outlet 622 is automatically opened to add water to the automatic water filling kettle 14, so that the cold air in the closed dispenser chamber 6 can exchange heat with the water in the automatic water filling kettle 14, and the heat exchange speed between the automatic water filling kettle 14 and the cold air can be increased, the cold water efficiency of the automatic water filling kettle 14 is improved, the cooling time of the water in the automatic water filling kettle 14 is shortened, and the water in the automatic water filling kettle 14 is quickly cooled.
- the temperature is low-temperature cold water.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Physics & Mathematics (AREA)
- Mechanical Engineering (AREA)
- Thermal Sciences (AREA)
- General Engineering & Computer Science (AREA)
- Cold Air Circulating Systems And Constructional Details In Refrigerators (AREA)
Abstract
L'invention concerne un réfrigérateur, un procédé de commande de réfrigérateur et un support de stockage. Le réfrigérateur comprend un compartiment de stockage (2), une porte de compartiment de stockage (3), un compartiment distributeur (6) disposé sur la porte de compartiment de stockage (3), une porte auxiliaire (4) conçue pour découvrir et fermer une ouverture du compartiment distributeur (6), ainsi qu'un ventilateur de porte de compartiment de stockage (11) disposé sur la porte de compartiment de stockage (3), le ventilateur (11) étant conçu pour faciliter l'entrée d'air froid provenant du compartiment de stockage (2) dans le compartiment distributeur (6) par l'intermédiaire d'une entrée d'air (63), qui est formée dans une paroi du compartiment distributeur. Une telle configuration peut réduire la température du compartiment distributeur (6), ce qui permet d'améliorer le degré d'utilisation du compartiment distributeur (6).
Applications Claiming Priority (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202310762496.5 | 2023-06-26 | ||
| CN202310764146.2A CN119197028A (zh) | 2023-06-26 | 2023-06-26 | 冰箱的控制方法、存储介质及冰箱 |
| CN202310762476.8 | 2023-06-26 | ||
| CN202310764146.2 | 2023-06-26 | ||
| CN202310762476.8A CN119196998A (zh) | 2023-06-26 | 2023-06-26 | 冰箱 |
| CN202310762496.5A CN119197024A (zh) | 2023-06-26 | 2023-06-26 | 冰箱的控制方法、存储介质及冰箱 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2025001848A1 true WO2025001848A1 (fr) | 2025-01-02 |
Family
ID=93937583
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2024/098730 Ceased WO2025001848A1 (fr) | 2023-06-26 | 2024-06-12 | Réfrigérateur, procédé de commande de réfrigérateur et support de stockage |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2025001848A1 (fr) |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107036388A (zh) * | 2017-05-08 | 2017-08-11 | 合肥华凌股份有限公司 | 制冷设备的控制方法、系统及计算机可读存储介质 |
| CN112344616A (zh) * | 2019-08-08 | 2021-02-09 | 青岛海尔电冰箱有限公司 | 冰箱 |
| CN113405309A (zh) * | 2020-03-16 | 2021-09-17 | 青岛海尔电冰箱有限公司 | 供水装置及具有其的冰箱 |
| WO2022149781A1 (fr) * | 2021-01-08 | 2022-07-14 | 삼성전자주식회사 | Réfrigérateur |
| CN115523711A (zh) * | 2021-06-25 | 2022-12-27 | 青岛海尔电冰箱有限公司 | 冰箱 |
| CN116182464A (zh) * | 2021-11-29 | 2023-05-30 | 贵州海尔电器有限公司 | 风冷冰箱 |
| CN116182497A (zh) * | 2021-11-26 | 2023-05-30 | 青岛海尔电冰箱有限公司 | 储水容器的水位检测方法与计算机存储介质 |
-
2024
- 2024-06-12 WO PCT/CN2024/098730 patent/WO2025001848A1/fr not_active Ceased
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107036388A (zh) * | 2017-05-08 | 2017-08-11 | 合肥华凌股份有限公司 | 制冷设备的控制方法、系统及计算机可读存储介质 |
| CN112344616A (zh) * | 2019-08-08 | 2021-02-09 | 青岛海尔电冰箱有限公司 | 冰箱 |
| CN113405309A (zh) * | 2020-03-16 | 2021-09-17 | 青岛海尔电冰箱有限公司 | 供水装置及具有其的冰箱 |
| WO2022149781A1 (fr) * | 2021-01-08 | 2022-07-14 | 삼성전자주식회사 | Réfrigérateur |
| CN115523711A (zh) * | 2021-06-25 | 2022-12-27 | 青岛海尔电冰箱有限公司 | 冰箱 |
| CN116182497A (zh) * | 2021-11-26 | 2023-05-30 | 青岛海尔电冰箱有限公司 | 储水容器的水位检测方法与计算机存储介质 |
| CN116182464A (zh) * | 2021-11-29 | 2023-05-30 | 贵州海尔电器有限公司 | 风冷冰箱 |
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