WO2022027810A1 - 除湿机 - Google Patents
除湿机 Download PDFInfo
- Publication number
- WO2022027810A1 WO2022027810A1 PCT/CN2020/119203 CN2020119203W WO2022027810A1 WO 2022027810 A1 WO2022027810 A1 WO 2022027810A1 CN 2020119203 W CN2020119203 W CN 2020119203W WO 2022027810 A1 WO2022027810 A1 WO 2022027810A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- guide
- water tank
- sliding
- limiting member
- guard
- 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
Links
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F3/00—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
- F24F3/12—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling
- F24F3/14—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F1/00—Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
- F24F1/02—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
- F24F1/0358—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing with dehumidification means
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/22—Means for preventing condensation or evacuating condensate
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/22—Means for preventing condensation or evacuating condensate
- F24F13/222—Means for preventing condensation or evacuating condensate for evacuating condensate
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F6/00—Air-humidification, e.g. cooling by humidification
- F24F2006/008—Air-humidifier with water reservoir
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2221/00—Details or features not otherwise provided for
- F24F2221/12—Details or features not otherwise provided for transportable
Definitions
- the present application relates to the technical field of air dehumidification, in particular to a dehumidifier.
- the water tank is set on the outside of the fuselage.
- the fuselage is placed above the water tank.
- the dehumidifier is finished, the dehumidifying water in the water tank needs to be completely drained, and then the fuselage Stored in the water tank.
- the user tends to forget to drain the water in the water tank, but directly put the fuselage into the water tank with dehumidification water, thus causing the fuselage to be damaged by water ingress.
- the main purpose of this application is to propose a dehumidifier, which aims to reduce the possibility of water damage to the body caused by the user mistakenly putting the body into the water tank when there is water in the water tank.
- the dehumidifier proposed by this application includes:
- the limit structure includes a limit piece, the limit piece can move in and out of the installation opening, and has a first position and a second position, in the first position, the limit piece enters the installation opening, and is located on the movement path of the body moving into the water tank. In the second position, the limiting member exits the installation opening for the body to be accommodated in the water tank.
- the fuselage further has a working state, and in the working state, the fuselage protrudes relative to the water tank through the installation opening.
- the inner wall of the water tank is provided with a support convex portion, and the side portion of the fuselage is provided with an avoidance groove, and the avoidance groove runs through the bottom of the fuselage.
- the The support protrusion extends into the avoidance groove, and in the working state, the upper end of the support protrusion supports the bottom of the fuselage.
- a mounting position is provided below the supporting protrusion, the limiting member is slidably mounted on the mounting position, and the sliding direction of the limiting member is along the lateral direction.
- the limiter protrudes laterally toward the support protrusion to limit the movement of the body into the water tank.
- the limiter is retracted to the installation position for The body is accommodated in the water tank.
- the limiting structure further includes a pressing block, the pressing block is slidably installed on the water tank, the sliding direction of the pressing block is in the up-down direction, and the gap between the pressing block and the limiting member is A linkage structure is provided, so that when the pressing block slides downward, the limiting member slides from the second position toward the first position.
- the pressure block is slidably installed at the installation position, and at the second position, the upper end of the pressure block is higher than the upper end of the support protrusion, and at the first position, the The upper end of the pressing block is not higher than the upper end of the supporting protrusion.
- the linkage structure includes a first sliding portion provided on the pressing block and a second sliding portion provided on the limiting member, the first sliding portion and the second sliding portion Among the parts, at least one of them gradually extends upward and obliquely along the direction in which the limiting member slides out of the installation position.
- the first sliding part includes a sliding groove, the sliding groove gradually extends upward and obliquely along the direction in which the limiting member slides out of the installation position, and the second sliding part includes a sliding protrusion , the sliding protrusion is slidably mounted on the chute; and/or,
- the first sliding portion has a first downwardly facing surface
- the second sliding portion has a second surface facing the first surface
- at least one of the first surface and the second surface is along the The direction in which the limiting member slides out of the installation position gradually extends upward and obliquely.
- the limiting structure further includes a guard, the guard is covered at the installation position, and the limiting piece and the pressing block are located between the guard and the inner wall of the water tank.
- a first guide structure is provided between the guard and the limiter, and the first guide structure is used to restrict the limiter from moving in the up-down direction.
- the first guide structure includes a first guide groove disposed on the guard, the first guide groove extends laterally and has a first protruding opening, and the limiting member is slidably installed on the guard.
- the first guide groove can protrude from the first extension opening.
- the first guide structure includes a first guide hole provided on the limiting member and a first guide post provided on the guard, and the first guide hole extends laterally in the shape of a long strip.
- the first guide post is slidably installed in the first guide hole.
- the first guide column is provided with a first limiting protrusion
- the first limiting protrusion is located at the free end of the first guide column and faces the side of the first guide column.
- the limiting member is slidably installed between the first limiting protrusion and the protective member.
- the limiting member is provided with a first material reduction hole, the first material reduction hole is spaced apart from the outside of the first guide hole and extends along the extending direction of the first guide hole .
- the first guide hole is provided with a constricted portion, and the width of the first guide hole at the constricted portion is smaller than the size of the first guide post, at the second position.
- the first guide post is located on the side of the constricted portion away from the pressing block.
- the limiting member has at least one first sliding surface, the first sliding surface is disposed facing the guard or the inner wall of the water tank, and the first sliding surface is provided with a first sliding surface.
- a convex rib, the first sliding convex rib extends along the sliding direction of the limiting member.
- a second guide structure is provided between the guard and the pressure block, and the second guide structure is used for restricting the movement of the pressure block in the lateral direction.
- the second guide structure includes a second guide groove provided on the guard, the second guide groove extends in an up-down direction, and has a second upward protruding opening, and the pressing block is slidably mounted on the second guide groove and can protrude from the second protruding port; and/or,
- the second guide structure includes a second guide hole set on the pressing block and a second guide column set on the guard, the second guide hole extending in the up-down direction in a long strip shape, the second guide hole
- the guide post is slidably installed in the second guide hole.
- the pressing block is provided with an elastic buckle
- the surface of the guard facing the installation position is provided with a stop hole
- the stop hole is drilled when the guard is away from the installation position. In the first position, the elastic buckle is snapped into the stop hole.
- a surface of the protective member facing the installation position is provided with an escape groove extending in an up-down direction, and the escape groove is spaced above the stop hole at the second position.
- the elastic buckle is located in the abdication groove.
- the support protrusion includes an upper support plate and a lower support plate spaced below the upper support plate, and the installation position is formed between the upper support plate and the lower support plate, so Both the upper support plate and the lower support plate extend laterally, the upper support plate has a fracture, and the pressing block protrudes upward from the fracture.
- the guard is detachably connected to the support protrusion.
- the limiter by arranging a limiter that can move in and out of the installation opening on the water tank, when the limiter moves to the first position entering the installation opening, the limiter can be located in the movement path of the body moving into the water tank so that when the fuselage moves into the water tank, the stopper can abut the bottom of the fuselage, which can limit the movement of the fuselage into the water tank.
- the fuselage directly falls into the dehumidifying water in the water tank and is damaged, that is, the possibility that the fuselage is damaged due to water ingress caused by the user mistakenly putting the fuselage into the water tank when the water tank has dehumidifying water is reduced.
- FIG. 1 is a schematic structural diagram of an embodiment of the dehumidifier of the application; wherein, the body is in an idle state;
- Fig. 2 is the structural schematic diagram of the fuselage and the water tank when the fuselage in Fig. 1 is in a working state;
- Fig. 3 is the cutaway schematic diagram of the water tank in Fig. 2; wherein, the limiting member is in the first position;
- Fig. 4 is the cutaway schematic diagram of the water tank in Fig. 1; wherein, the limiting member is in the second position;
- Fig. 5 is the structural schematic diagram of the limiting structure in Fig. 3;
- Fig. 6 is the structural schematic diagram of the limiting structure in Fig. 4;
- Fig. 7 is the structural schematic diagram of the limiter in Fig. 6;
- Fig. 8 is the structural representation of the pressing block in Fig. 6;
- Fig. 9 is the structural schematic diagram of the pressing block in Fig. 8 viewed from the other side;
- FIG. 10 is a schematic structural diagram of the guard in FIG. 6;
- FIG. 11 is a schematic structural diagram of the guard in FIG. 10 viewed from the other side;
- Fig. 12 is the structural representation of the water tank in Fig. 3;
- FIG. 13 is an enlarged view of A in FIG. 12 .
- the directional indications are only used to explain the relationship between the various components in a certain posture If the specific posture changes, the directional indication also changes accordingly.
- the present application proposes a dehumidifier.
- the dehumidifier includes a water tank 10 , a body 20 and a limiting structure.
- the water tank 10 has an upward installation opening 11
- the body 20 has an installation opening 11 that passes through at least part of it. The idle state accommodated in the water tank 10 .
- the limiting structure includes a limiting member 40 , the limiting member 40 can move in and out of the installation opening 11 , and has a first position and a second position. In the first position, the limiting member 40 enters the installation opening 11 and is located in the direction of the body 20 toward the installation opening 11 . On the movement path of the water tank 10 , in the second position, the limiting member 40 exits the installation opening 11 so that the body 20 is accommodated in the water tank 10 .
- the dehumidified water generated when the body 20 performs the dehumidification work can enter the water tank 10 .
- the fuselage 20 and the water tank 10 are both arranged in a square shape, but this is only an example of the shape of the fuselage 20 and the water tank 10 .
- the fuselage 20 and the water tank 10 may also have, but are not limited to, circular, polygonal, or even irregular shapes, and the fuselage 20 can be at least partially accommodated in the water tank 10 through the installation opening 11 .
- the limiting member 40 When the body 20 is taken out from the water tank 10 for dehumidification work, the limiting member 40 can be moved to the first position entering the installation opening 11 (the limiting member 40 can be switched when the body 20 is taken out from the water tank 10 ) To the first position, after the body 20 works for a period of time, when there is a certain amount of dehumidifying water in the water tank 10, the limiter 40 can be switched to the first position, or after the body 20 has been working for a period of time, it can be switched to the first position again. When the fuselage is lifted, the limiter 40 is switched to the first position).
- the limiting member 40 is located on the movement path of the body 20 moving into the water tank 10 , so that when the body 20 moves into the water tank 10 , the limiting member 40 can abut the bottom of the body 20 , which can restrict the body 20 from moving toward the water tank 10 . Movement in the water tank 10 .
- the limiting member 40 is switched to the second position exiting the installation opening 11 , so that the body 20 can move toward the water tank 10 . and accommodated in the water tank 10 .
- the limiting member 40 by disposing the limiting member 40 on the water tank 10 that can move in and out of the mounting opening 11 , when the limiting member 40 moves to the first position entering the mounting opening 11 , the limiting member 40 can be located in the body 20 On the moving path toward the water tank 10 , when the fuselage 20 moves into the water tank 10 , the limiting member 40 can abut the bottom of the fuselage 20 , which can limit the movement of the fuselage 20 into the water tank 10 .
- the volume of the water tank 10 is larger, the water storage capacity of the water tank 10 is increased, the number of times the user pours water is reduced, and the weight of the fuselage 20 is also reduced, so that it is convenient for the user to carry the machine Body 20.
- the center of gravity of the dehumidifier can be lowered, so that the placement of the dehumidifier is more stable, and it is not easy to deviate, and the overall occupied space of the dehumidifier is also reduced, which is convenient for users. Place a dehumidifier.
- the body 20 also has a working state. In the working state, the body 20 protrudes from the water tank 10 through the installation opening 11 . Specifically, in the working state, the fuselage 20 at least partially protrudes above the water tank 10 . It is equivalent to increasing the height of the air outlet on the fuselage 20, so that the dehumidified air can be blown to a farther position, which is beneficial to improve the indoor air flow range. Moreover, the dehumidified water generated by the body 20 can naturally fall into the water tank 10, which facilitates the collection of the dehumidified water.
- the fuselage 20 can also be arranged outside the water tank 10 as a whole.
- the inner wall of the water tank 10 is provided with a support protrusion 12, and the side of the body 20 is provided with an avoidance groove 21.
- the avoidance groove 21 runs through the bottom of the body 20.
- the support protrusion 12 extends into the avoidance
- the groove 21 supports the bottom of the fuselage 20 at the upper end of the supporting protrusion 12 in the working state.
- the water tank 10 is arranged outside the fuselage 20 , the support protrusion 12 is spaced from the bottom wall of the water tank 10 , and the support protrusion 12 is spaced from the edge of the installation opening 11 , that is, the upper end of the support protrusion 12 is lower than the water tank 10 .
- the upper edge of the fuselage 20 extends along the height direction (up and down direction) of the fuselage 20 to avoid the groove 21 .
- the dehumidifier When using the dehumidifier, rotate the body 20 to avoid the groove 21 and the support protrusion 12 of the water tank 10 staggered, so that the bottom of the body 20 abuts the upper end of the support protrusion 12, so as to support the body 20 through the support protrusion 12 , so that the body 20 is extended relative to the water tank 10 , and the body 20 is in a working state at this time, and the dehumidified water generated when the body 20 is working can be drained into the water tank 10 .
- the body 20 When the body 20 finishes working and the water in the water tank 10 is discharged, the body 20 is rotated to the state where the avoidance groove 21 corresponds to the support protrusion 12, so that the support protrusion 12 extends into the avoidance groove 21, thereby The body 20 can be accommodated in the water tank 10 to be in an idle state.
- the support protrusion 12 may be integrally formed on the inner wall of the water tank 10 , or may be a support structure movably installed on the inner wall of the water tank 10 (the support structure may refer to the installation method of the stopper 40 ).
- the bottom of the fuselage 20 can also be abutted against the upper edge of the water tank 10 .
- a mounting position is provided below the supporting protrusion 12, the limiting member 40 is slidably installed at the mounting position, and the sliding direction of the limiting member 40 is in the lateral direction.
- the limiting member 40 faces the supporting protrusion. 12 extends laterally to restrict the movement of the body 20 into the water tank 10 .
- the limiting member 40 is retracted to the installation position for the body 20 to be accommodated in the water tank 10 .
- the lateral direction of the support convex portion 12 is the lateral direction (ie, the horizontal direction), and the sliding direction of the stopper 40 can be along the horizontal extension direction of the inner wall of the water tank 10 .
- the stopper 40 In the first position, the stopper 40 is opposite to the support convex
- the protruding length of the part 12 is greater than the matching gap between the support convex part 12 and the avoidance groove 21, that is, the total length of the stopper 40 and the support convex part 12 along the horizontal extension direction of the inner wall of the water tank 10 is greater than the avoidance groove 21 along the fuselage.
- the width of the outer side wall along the horizontal extension direction is the width of the outer side wall along the horizontal extension direction.
- the protruding end of the limiting member 40 can support the bottom of the body 20 , thereby restraining the body 20 . Continue facing down into tank 10.
- the limiting member 40 can be retracted in the installation position, that is, the length of the limiting member 40 extending relative to the supporting protrusion 12 is smaller than the matching gap between the supporting protrusion 12 and the avoidance groove 21 , or the limiting member 40
- the entire installation position is received to avoid interference between the limiting member 40 and the body 20 , and to ensure that the body 20 can smoothly enter the water tank 10 .
- the sliding direction of the limiting member 40 may also be along a direction perpendicular to the inner wall surface of the water tank 10 .
- the limiting member 40 and the supporting convex portion 12 may also be arranged at intervals along the lateral direction.
- the limiting member 40 can also be rotatably installed on the inner wall of the water tank 10 to be able to rotate into the installation opening 11 and rotate out of the installation opening 11 .
- the limiting member 40 of the limiting structure is slidably installed at the mounting position.
- the limiting member 40 can resist Connected to the bottom of the fuselage 20 , so that the fuselage 20 can be restricted from continuing to fall into the water tank 10 .
- the limiting member 40 can be extended toward the support convex portion 12, so that after the dehumidifier works for a period of time, the water tank 10 has a
- the stopper 40 can prevent the body 20 from being put into the water tank 10 , thereby preventing the body 20 from falling directly into the dehumidifying water in the water tank 10 and being damaged. . This reduces the possibility of water damage to the body 20 caused by the user mistakenly placing the body 20 into the water tank 10 when the water tank 10 has dehumidified water.
- the inner wall of the water tank 10 is provided with a plurality of supporting protrusions 12, and the plurality of supporting protrusions 12 are distributed along the circumferential direction of the water tank 10 at intervals.
- the avoidance grooves 21 are arranged at intervals along the circumferential direction of the fuselage 20 .
- each support protrusion 12 corresponds to at least one avoidance groove 21 matched with it, that is, the number of avoidance grooves 21 may be more than the number of support protrusions 12
- each support protrusion 12 is associated with at least one avoidance groove 21 .
- the grooves 21 are matched to ensure that the body 20 can be accommodated in the water tank 10 .
- the plurality of supporting protrusions 12 are arranged at intervals along the circumferential direction of the water tank 10.
- the body 20 When the body 20 needs to be switched from the restricted state to the working state, the body 20 can be pulled out from the water tank 10, and the body 20 Rotating a certain angle relative to the water tank 10 makes the plurality of avoidance grooves 21 and the plurality of support protrusions 12 misaligned with each other, so that the upper end of the support protrusions 12 supports the part of the bottom of the body 20 without the avoidance grooves 21 .
- the bottom of the fuselage 20 is jointly supported by the plurality of supporting protrusions 12 , so that multiple positions in the circumferential direction of the fuselage 20 can be supported, which improves the stability of the fuselage 20 in the working state.
- the limiting member 40 may be provided under only one or part of the supporting protrusions 12 , or the limiting member 40 may be provided under each supporting protrusion 12 .
- the plurality of supporting protrusions 12 can be evenly arranged along the circumferential direction of the water tank 10 to ensure that when the bottom of the fuselage 20 abuts against the plurality of supporting protrusions 12, the circumferential force of the fuselage 20 is uniform, which is beneficial to improve the fuselage. 20 Stability in working condition.
- the number of the supporting protrusions 12 is two
- the two supporting protrusions 12 are respectively provided on two opposite sides of the water tank 10 and so on.
- the plurality of supporting protrusions 12 may also be non-uniformly arranged along the circumferential direction of the water tank 10 .
- the fuselage 20 may have a cylindrical shape, an elliptical cylindrical shape or a prismatic shape, and the shape of the water tank 10 is adapted to the shape of the fuselage 20 .
- the fuselage 20 When the fuselage 20 is in the shape of a prism, it can be in the shape of a square, a regular pentagon, a regular hexagon, or the like.
- each installation position may be provided with one or more limiters 40, and the sliding directions of the plurality of limiters 40 are in the lateral direction.
- each installation position is provided with two limiters 40. The directions in which the two limiting pieces 40 slide out of the installation position are opposite. In this way, when the limiting member 40 supports the bottom of the fuselage 20 , the multiple limiting members 40 jointly support the fuselage 20 , which can ensure the stability of the fuselage 20 and reduce the possibility of the fuselage 20 tilting.
- the limiting structure further includes a pressure block 50 , and the pressure block 50 is slidably installed on the water tank 10 .
- the sliding direction of the pressure block 50 In the up-down direction, a linkage structure is provided between the pressing block 50 and the limiting member 40 , so that when the pressing block 50 slides downward, the limiting member 40 slides from the second position to the first position.
- the pressing block 50 can be arranged outside the water tank 10 or inside the water tank 10.
- the pressing block 50 is arranged in the water tank 10, so that the upper end of the pressing block 50 can protrude toward the installation opening 11 for the user to operate.
- the bottom of the body 20 can abut the upper end of the pressing block 50 to push the pressing block 50 down to drive the limiting member 40 to slide from the second position toward the first position.
- the pressing block 50 By arranging the pressing block 50, the movement of the limiting member 40 can be facilitated to be driven, and the operation of the user can be facilitated.
- the pressure block 50 is slidably installed at the installation position. In the second position, the upper end of the pressure block 50 is higher than the upper end of the support protrusion 12 , and in the first position, the upper end of the pressure block 50 is not higher than the support protrusion 12 . the upper end of .
- the limiting member 40 is in the second position. At this time, the limiting member 40 will be lifted upward through the linkage structure, so that the upper end of the pressing block 50 is higher than the supporting protrusion 12 . upper end.
- the body 20 When the body 20 is switched to the working state, before the bottom of the body 20 is placed on the upper end of the supporting protrusion 12, the body 20 will first abut the upper end of the pressing block 50, thereby pressing the pressing block 50 down until the body The bottom of 20 is in contact with the upper end of the support protrusion 12 .
- the pressing block 50 drives the limiting member 40 to protrude toward the side of the supporting protrusion 12 through the linkage structure to move to the first position. In this way, when the user places the fuselage 20 in the working state, the limiting member 40 can be automatically switched to the first position, and the user does not need to manually operate the limiting member 40, which can greatly facilitate the use of the user.
- the body 20 can be put into the water tank 10 only after the limiting member 40 is retracted.
- the user manually switches the limiter 40 from the first position to the second position, so that during the process of manually operating the limiter 40, the user will notice whether there is dehumidified water in the water tank 10, thereby avoiding This avoids the situation in which the user directly puts the body 20 into the water tank 10 without noticing the presence of dehumidifying water in the water tank 10 , resulting in water damage to the body 20 .
- the pressing block 50 may not be provided, and the limiting member 40 may be manually pulled out from the installation position to the first position by the user.
- a motor may be provided at the installation position, and the limiter 40 may be driven by the motor to switch between the first position and the second position.
- the linkage structure may be various.
- the linkage structure includes a first sliding portion provided on the pressing block 50 and a second sliding portion provided on the limiting member 40.
- the first sliding portion and the first sliding portion Among the two sliding parts, at least one of them gradually extends upward and inclined along the direction in which the limiting member 40 slides out of the installation position. That is, the first sliding portion may be gradually inclined upward along the direction in which the limiting member 40 slides out of the installation position to extend in a long strip shape, or the second sliding portion may be gradually inclined upward along the direction in which the limiting member 40 slides out of the installation position.
- the extension is elongated, and the first sliding portion and the second sliding portion can also be extended in a elongated shape gradually upward along the direction in which the limiting member 40 slides out of the installation position.
- the second sliding part abuts against the first sliding part, and can slide relative to the first sliding part (along the extending direction of the first sliding part or the second sliding part), thereby driving the limiting member 40 is moved in the direction of sliding out of the mounting position to move to the first position.
- the limiting member 40 is switched from the first position to the second position, the first sliding part is in contact with the second sliding part, and can be opposed to the second sliding part (along the extension of the first sliding part or the second sliding part) direction) sliding, thereby driving the pressing block 50 to move upward until the limiting member 40 moves to the second position.
- the linkage structure may also include a connecting rod, a first hinged portion provided on the limiting member 40 and a second hinged portion provided on the pressing block 50, one end of the connecting rod is hinged with the first hinged portion, and the other is hinged with the first hinged portion. One end is hinged with the second hinge part.
- the structure of the first sliding portion can be various.
- the first sliding portion includes a sliding groove 31 , and the sliding groove 31 gradually slides out of the installation position along the direction of the limiting member 40 .
- the second sliding portion includes a sliding protrusion 33 , and the sliding protrusion 33 is slidably mounted on the chute 31 .
- the sliding groove 31 is provided on the pressing block 50
- the sliding protrusion 33 is provided on the limiting member 40 , so that the sliding protrusion can always be located in the sliding groove 31 , that is, when any one of the limiting member 40 and the pressing block 50 is operated by , both can be linked with the other to ensure the connection reliability of the limiting member 40 and the pressing block 50 .
- the two limiters 40 When two limiters 40 are set at the installation position (refer to FIG. 5 and FIG. 6 ), the two limiters 40 can be set to the same structure, so that the two limiters 40 are actually the same material, so that the types of materials can be reduced. lower the cost.
- the pressing block 50 is provided with a sliding groove 31 corresponding to each limiting member 40 .
- the second sliding portion includes two sliding protrusions 33 , and the two sliding protrusions 33 are disposed on the same side of the limiting member 40 and are distributed at intervals along the up-down direction.
- a center line is defined on the limiter 40, the centerline extends along the sliding direction of the limiter 40, and passes through the midpoint between the upper surface and the lower surface of the limiter 40, and the two sliding protrusions 33 are in
- the positions on the limiting member 40 are symmetrically arranged with the center line as the symmetrical line.
- the first sliding portion has a first surface 32 facing downward
- the second sliding portion has a second surface 34 facing the first surface 32
- at least one of the first surface 32 and the second surface 34 is along the The direction in which the limiting member 40 slides out of the installation position gradually extends upward and obliquely. It is equivalent to when the limiting member 40 is in contact with the pressing block 50 , that is, the first surface 32 and the second surface 34 are in contact with each other and can slide relative to each other.
- Such a structure is simple, and the structural strength of the first sliding part and the second sliding part can be ensured, which is beneficial to the linkage reliability of the lifting limiter 40 and the pressing block 50 .
- the two limiting members 40 When two limiting members 40 are arranged at the installation position, the two limiting members 40 can be set to the same structure, so that the two limiting members 40 are actually made of the same material, thereby reducing the types of materials and reducing costs.
- the first sliding portion has two downward facing first surfaces 32, and the distance between the two first surfaces 32 gradually increases in the upward direction
- the second sliding portion has two downward facing first surfaces 32.
- the positions of the two second surfaces 34 on the limiting member 40 are symmetrically arranged with the center line as the line of symmetry.
- the first sliding portion includes a sliding groove 31 and a first surface 32 disposed below the sliding groove 31
- the second sliding portion includes sliding protrusions 33 and a second surface 34 .
- the limiting structure further includes a guard 60 , the guard 60 is covered at the installation position, and the limiting member 40 and The pressing block 50 is located between the guard 60 and the inner wall of the water tank 10 .
- the guard 60 is plate-shaped and connected to the water tank 10 .
- the linkage structure between the limiter 40 and the pressing block 50 can be prevented from being exposed to the outside, and foreign objects can also be prevented from touching the linkage structure or sundries entering between the linkage structures.
- the structure plays a better protective role to ensure the reliability of the linkage between the limiting member 40 and the pressing block 50 .
- the guard 60 may also be in a grid structure or the like. In addition, the guard 60 may not be provided.
- a first guide structure is provided between the guard 60 and the limiting member 40 , and the first guiding structure is used to limit the movement of the limiting member 40 in the up-down direction.
- the first guide structure extends along the sliding direction of the limiting member 40 to ensure that the limiting member 40 can slide relatively smoothly between the inner wall of the water tank 10 and the guard 60 .
- the first guide structure can also be provided between the water tank 10 and the limiting member 40 .
- the first guide structure can have various structures.
- the first guide structure includes a first guide groove 61 provided on the guard 60 , and the first guide groove 61 extends laterally. , and has a first protruding port 62 , the limiting member 40 is slidably mounted on the first guiding groove 61 and can protrude from the first protruding port 62 .
- the first guide groove 61 extends along the sliding direction of the limiting member 40
- the first extension opening 62 is located at an end of the first guide groove 61 away from the pressing block 50 .
- the limiting member 40 is integrally slidably installed in the first guide groove 61 , that is, the lower side portion of the limiting member 40 slides relative to the lower side wall of the first sliding groove, and the upper side portion of the limiting member 40 is slid with The upper side walls of the first sliding groove are slidably connected.
- the structural strength of the first guide structure is relatively high, and the movement reliability of the limiting member 40 can be guaranteed to be relatively good.
- the limiting member 40 can also be partially slidably installed in the first guide groove 61 .
- the present application is not limited to this, and the first guide groove 61 can also be provided on the limiting member 40 , and the first guide structure includes a convex portion provided on the guard 60 , and the convex portion can extend out of the first guide groove 61 .
- the first guide structure includes a first guide hole 41 provided on the limiting member 40 and a first guide post 63 provided on the guard 60 .
- the first guide hole 41 extends laterally in a long strip shape.
- the first guide post 63 is slidably installed in the first guide hole 41 .
- the first guide hole 41 extends in a long strip shape along the sliding direction of the stopper 40 , and both ends of the first guide hole 41 are closed to ensure that the first guide post 63 can always be located in the first guide hole 41 , it can provide guidance for the sliding of the limiting member 40 , and can also prevent the limiting member 40 from separating from the guard 60 , so that the overall reliability of the limiting structure is high.
- the number of the first guide columns 63 may be one or more, and when the number of the first guide columns 63 is multiple, the plurality of first guide columns 63 are distributed at intervals along the sliding direction of the limiting member 40 .
- the present application is not limited to this, and the first guide hole 41 can also be provided on the guard 60 , and the first guide post 63 can be provided on the limiter 40 .
- the first guide structure may also include a first guide groove 61 , a first guide post 63 disposed in the first guide groove 61 , and a first guide hole 41 disposed in the limiting member 40 .
- the first guide post 63 is provided with a first limiting protrusion 631 , and the first limiting protrusion 631 is located on the first guide
- the free end of the post 63 is protruded toward the side of the first guide post 63
- the limiting member 40 is slidably installed between the first limiting projection 631 and the guard 60 .
- two opposite sides of the free end of the first guide post 63 are respectively provided with a first limiting protrusion 631 , and the two first limiting protrusions 631 are distributed along the width direction of the first guide hole 41 .
- the protruding height of the first limiting protrusion 631 relative to the side surface of the first guide column 63 is greater than the gap between the first guide column 63 and the first guide hole 41 , and the distance between the first limiting protrusion 631 and the root of the first guide column 63 is greater than that of the first limiting protrusion 631 .
- the distance is greater than the hole depth of the first guide hole 41 .
- the limiting member 40 can be installed on the guard 60 first, and then the guard 60 and the limiting member 40 can be installed on the inner wall of the water tank 10 together. When the guards 60 are separated from each other, the assembly of the limiting structure can be facilitated.
- only one first limiting protrusion 631 may be provided on the free end of the first guide post 63 .
- the limiting member 40 is provided with a first material reduction hole 43 .
- 43 are spaced apart from the outside of the first guide hole 41 and extend along the extending direction of the first guide hole 41 . That is, the first material reduction hole 43 is in the shape of a long strip.
- the hole wall of the first guide hole 41 can be elastically deformed toward the first material reduction hole 43, so that the abutting force between the first limiting protrusion 631 and the hole wall of the first guide hole 41 can be reduced, so that the The force during assembly is reduced, the first limiting protrusion 631 can be easily passed through the first guide hole 41, and the assembly of the limiting structure is facilitated.
- the number of the first material reduction holes 43 may be one or more, and when the number of the first material reduction holes 43 is multiple, the plurality of first material reduction holes 43 are distributed at intervals along the extending direction of the first guide holes 41 , In this way, the length of each first material reduction hole 43 can be reduced, so as to ensure that the hole wall of the first guide hole 41 has sufficient strength to prevent the hole wall of the first guide hole 41 from being easily deformed or broken, resulting in the first limiting protrusion. From 631 easy to come out. Of course, in other embodiments, the first material reduction hole 43 may not be provided.
- the first guide hole 41 is provided with a constricted portion 42 , and the width of the first guide hole 41 at the constricted portion 42 is smaller than the size of the first guide post 63 .
- the first guide post 63 It is located on the side of the constricted portion 42 away from the pressing block 50 .
- the constricted portion 42 and the end of the first guide hole 41 are spaced apart, and the distance between the constricted portion 42 and the first guide hole 41 is larger than the diameter of the first guide post 63 to ensure that the first guide post 63 can It is located on the side of the constricted portion 42 away from the pressing block 50 beyond the constricted portion 42 .
- the constricting portion 42 can restrict the limiting member 40 from moving toward the first position, so as to prevent the limiting member 40 from protruding during the process of taking the body 20 out of the water tank 10 . Interfering with the body 20, the body 20 cannot be taken out normally or is scratched.
- the limiting member 40 is provided with a first material reduction hole 43 corresponding to the constricted portion 42 , so as to reduce the friction of the constricted portion of the first guide post 63 when the first guide post 63 passes through the constricted portion 42 . 42. Reduce wear and tear.
- a protrusion may be provided on one of the side walls of the first guide hole 41 to form the constriction portion 42, or a protrusion may be provided on both side walls of the first guide hole 41 to form the constriction portion 42,
- the side wall of the first guide hole 41 may be raised inward to form the constriction portion 42 .
- the limiting member 40 has at least one first sliding surface, and the first sliding surface faces the guard 60 or the water tank 10 .
- the inner wall is provided, the first sliding surface is provided with a first sliding convex rib 44 , and the first sliding convex rib 44 extends along the sliding direction of the limiting member 40 .
- the first sliding is the surface on the limiting member 40 that can contact the protective member 60 or the inner wall of the water tank 10, and the first sliding ribs 44 are provided on the first sliding surface, so that the limiting member 40 can pass through the first sliding surface.
- a sliding protruding rib 44 is in contact with the guard 60 (the inner wall of the water tank 10 ), which can reduce the contact area between the limiter 40 and the guard 60 (the inner wall of the water tank 10 ), so that the relative guard 60 (the water tank 10 ) will be opposite to the guard 60 (the water tank 10 ) at the limit.
- the cross-section of the first sliding rib 44 may be semicircular, square or triangular.
- the cross-section of the first sliding rib 44 is semicircular, which is equivalent to the first sliding rib 44 and the guard 60 (the inner wall of the water tank 10 )
- For line contact it is possible to further reduce friction and reduce frictional resistance.
- the limiting member 40 may have only one first sliding surface facing the guard 60 or the inner wall of the water tank 10, or may have multiple first sliding surfaces.
- the limiting member 40 has four first sliding surfaces, one of which faces the upper side wall of the first guide groove 61 , and one first sliding surface.
- the sliding surface faces the lower side wall of the first guide groove 61
- one first sliding surface faces the bottom wall of the first guide groove 61
- one first sliding surface faces the inner wall of the water tank 10
- each first sliding surface is provided with a first sliding surface.
- a sliding rib 44 is provided only on part of the first sliding surfaces.
- a second guide structure is provided between the guard 60 and the pressing block 50 , and the second guiding structure is used to restrict the movement of the pressing block 50 in the lateral direction.
- the second guide structure extends along the sliding direction of the pressure block 50 to ensure that the pressure block 50 can slide between the inner wall of the water tank 10 and the guard 60 relatively smoothly.
- the first guide structure can be of various structures.
- the second guide structure includes a second guide groove 64 provided on the guard 60.
- the second guide groove 64 extends in the up-down direction and has an upward first guide groove 64.
- the pressing block 50 is slidably mounted on the second guiding groove 64 and can protrude from the second protruding opening 641 .
- the second guide groove 64 extends along the sliding direction of the pressing block 50 (ie, the vertical direction), the second extension opening 641 is located at the upper end of the second guide groove 64 , and the lower end of the second guide groove 64 penetrates the first guide groove 61 the upper groove wall.
- the pressing block 50 is integrally slidably installed in the second guide groove 64 .
- the structural strength of the second guide structure is high, and the movement reliability of the pressing block 50 can be guaranteed to be good.
- the pressing block 50 can also be partially slidably installed in the second guide groove 64 .
- the present application is not limited to this, and the second guide groove 64 can also be provided on the pressing block 50 , and the second guide structure includes a convex portion provided on the guard 60 , and the convex portion can extend out of the second guide groove 64 .
- the second guide structure includes a second guide hole 51 provided on the pressing block 50 and a second guide post 65 provided on the guard 60 , and the second guide hole 51 extends in a long strip shape along the up-down direction.
- the second guide post 65 is slidably installed in the second guide hole 51 .
- the second guide hole 51 extends in a long strip shape along the sliding direction of the pressing block 50 , and both ends of the second guide hole 51 are closed to ensure that the second guide post 65 can always be located in the second guide hole 51 It can provide guidance for the sliding of the pressing block 50, and can also prevent the pressing block 50 from separating from the guard 60, so that the overall reliability of the limiting structure is high.
- the number of the second guide columns 65 may be one or more, and when the number of the second guide columns 65 is multiple, the plurality of second guide columns 65 are distributed at intervals along the sliding direction of the pressing block 50 .
- the present application is not limited to this, and the second guide hole 51 can also be provided on the guard 60 , and the second guide column 65 can be provided on the pressing block 50 .
- the second guide structure may also include a second guide groove 64 , a second guide post 65 disposed in the second guide groove 64 , and a second guide hole 51 disposed in the limiting member 40 .
- the second guide hole 51 is disposed from one side of the pressure block 50 toward the other opposite side, that is, the second guide hole 51 is offset from the midpoint of the two opposite sides of the pressure block 50, and the second guide column 65 is set on the bottom wall of the second guide groove 64, and the second guide post 65 is set corresponding to the second guide hole 51, that is, the second guide post 65 is also set offset from the midpoint of the two groove side walls of the second guide groove 64. .
- the second guide hole 51 can also be set at the midpoint of the two opposite sides of the pressing block 50 .
- the second guide post 65 is provided with a second limiting protrusion 651 , and the second limiting protrusion 651 is located at the free end of the second guide post 65 and guides toward the second The lateral protrusion of the column 65 is provided, and the pressing block 50 is slidably installed between the second limiting protrusion 651 and the guard 60 .
- two opposite sides of the free end of the second guide post 65 are respectively provided with a second limit protrusion 651 , and the two second limit protrusions 651 are distributed along the width direction of the second guide hole 51 .
- the protruding height of the second limiting protrusion 651 relative to the side surface of the second guide post 65 is greater than the gap between the second guide post 65 and the second guide hole 51 .
- the distance is greater than the hole depth of the second guide hole 51 .
- the pressure block 50 when assembling the limiting structure, the pressure block 50 can be installed on the guard 60 first, and then the guard 60 and the pressure block 50 can be installed on the inner wall of the water tank 10 together, which can avoid the pressure block 50 and the guard 60 during the installation process. When they are separated from each other, the assembly of the limiting structure can be facilitated.
- the free end of the second guide post 65 may also be provided with only one second limiting protrusion 651 .
- the pressure block 50 is provided with a second material reduction hole 52 , and the second material reduction hole 52 is spaced apart from the second guide hole 51 . outside, and extends along the extending direction of the second guide hole 51 . That is to say, the second material reduction hole 52 is in the shape of a long strip.
- the hole wall of the second guide hole 51 can be elastically deformed toward the second material reduction hole 52, so that the abutting force between the second limiting protrusion 651 and the hole wall of the second guide hole 51 can be reduced, so that the The force during assembling is reduced, and the second limiting protrusion 651 can be easily passed through the second guide hole 51, which facilitates the assembling of the limiting structure.
- the number of the second material reduction holes 52 may be one or more, and when the number of the second material reduction holes 52 is multiple, the plurality of second material reduction holes 52 are distributed at intervals along the extending direction of the second guide holes 51 , In this way, the length of each second material-reduction hole 52 can be reduced, so as to ensure that the hole wall of the second guide hole 51 has sufficient strength to prevent the hole wall of the second guide hole 51 from being easily deformed or broken, resulting in the second limiting protrusion. From 651 easy to come out.
- the second material reduction hole 52 may not be provided.
- the pressure block 50 has at least one second sliding surface, and the second sliding surface is disposed facing the guard 60 or the inner wall of the water tank 10 , the second sliding surface is provided with a second sliding convex rib 53 , and the second sliding convex rib 53 extends along the sliding direction of the pressing block 50 .
- the second sliding is the surface of the pressure block 50 that can contact the guard 60 or the inner wall of the water tank 10 , and the second sliding ribs 53 are provided on the second sliding surface, so that the pressure block 50 can slide through the second sliding surface.
- the convex rib 53 is in contact with the guard 60 (the inner wall of the water tank 10 ), which can reduce the contact area between the pressing block 50 and the guard 60 (the inner wall of the water tank 10 ), so that the relative guard 60 (the inner wall of the water tank 10 ) will be opposite to the guard 60 (the inner wall of the water tank 10 ) at the limit.
- the cross-section of the second sliding rib 53 can be semicircular, square or triangular.
- the cross-section of the second sliding rib 53 is semicircular, which is equivalent to the second sliding rib 53 and the guard 60 (the inner wall of the water tank 10 )
- For line contact it is possible to further reduce friction and reduce frictional resistance.
- the limiting member 40 may have only one second sliding surface facing the guard 60 or the inner wall of the water tank 10 , or may have multiple second sliding surfaces.
- the pressure block 50 has four second sliding surfaces, one of which faces the upper side wall of the second guide groove 64, and one second sliding surface Facing the lower side wall of the second guide groove 64, a second sliding surface facing the groove bottom wall of the second guiding groove 64, a second sliding surface facing the inner wall of the water tank 10, each second sliding surface is provided with a second sliding surface Rib 53.
- the second sliding ribs 53 can also be provided only on part of the second sliding surface.
- a clamping structure is provided between the pressing block 50 and the guard 60 , and in the first position, the pressing block 50 is clamped with the guard 60 .
- the limiting member 40 can be restricted from switching from the first position to the second position, that is, it can be avoided that the limiting member 40 is automatically switched to the second position before the user discharges the dehumidified water in the water tank 10 .
- the structure of the clamping structure can be various.
- the pressure block 50 is provided with an elastic buckle 54
- the surface of the guard 60 facing the installation position is provided with a stop hole 66 .
- the stop hole 66 is penetrated on the surface of the protection member 60 away from the installation position.
- the elastic buckle 54 is locked into the stop hole 66 .
- the elastic buckle 54 and the stop hole 66 constitute a clamping structure.
- the clamping structure includes the elastic buckle 54 and the stop hole 66 .
- the elastic buckle 54 When the pressing block 50 is pressed down and the limiting member 40 is driven to move to the first position, the elastic buckle 54 can be snapped into the stopping hole 66 , thereby restricting the upward movement of the pressing block 50 .
- the elastic buckle 54 can be released from the stop hole 66 by pressing the elastic buckle 54 located in the stop hole 66 , and the pressing block 50 is no longer there. Restricted by the stop hole 66, the stopper 40 can be moved upward, that is, the stopper 40 can be switched from the first position to the second position.
- the operation can be facilitated, and the contact force between the elastic buckle 54 and the guard 60 is reduced during the movement process before the elastic buckle 54 is locked into the stop hole 66 .
- the wear of the elastic buckle 54 is reduced, and the service life is prolonged.
- the elastic buckle 54 can also be provided on the guard 60 , and the stop hole 66 can be provided on the pressing block 50 .
- elastic buckles 54 are provided on both the guard 60 and the pressure block 50 , and the guard 60 and the pressure block 50 are clamped to each other through the elastic buckles 54 .
- the surface of the protective member 60 facing the installation position is provided with an escape groove 67 extending in the up-down direction. position, the elastic buckle 54 is located in the recess 67 .
- the elastic buckle 54 is released from the stop hole 66 and crosses the spaced portion between the stop hole 66 and the escape groove 67 , and the elastic buckle 54 can enter the escape groove 67.
- the elastic buckle 54 is spaced from the groove bottom of the escape groove 67, that is, when the elastic buckle 54 is located in the escape groove 67, the elastic buckle 54 is in a free state and does not abut against the guard 60.
- the elastic buckle 54 slides out from the relinquishment slot 67 and before the elastic buckle 54 is locked into the stop hole 66 , the elastic buckle 54 is squeezed by the guard 60 and elastically deformed.
- the distance between the escape groove 67 and the stop hole 66 can be reduced, thereby reducing the time for the elastic buckle 54 to be squeezed, and also reducing the The friction between the elastic buckle 54 and the guard 60 between the escape groove 67 and the stop hole 66 is beneficial to prolong the service life of the elastic buckle 54 .
- the lower side wall of the escape groove 67 is inclined downward to provide guidance for the elastic buckle 54 to slide the escape groove 67 .
- the support protrusion 12 includes an upper support plate 121 and a lower support plate 122 spaced below the upper support plate 121 , and the upper support plate 121 and the lower support plate 122 form an installation between the upper support plate 121 and the lower support plate 122
- the upper support plate 121 and the lower support plate 122 both extend laterally, the upper support plate 121 has a fracture, and the pressing block 50 (refer to FIG. 4 ) protrudes upward from the fracture.
- the depth of the groove can increase the internal space of the fuselage 20 .
- the guard 60 is disposed between the upper support plate 121 and the lower support plate 122 , and can abut the lower side of the guard 60 with the upper surface of the lower support plate 122 , so that the guard 60 can be connected to the guard 60 through the lower support plate 122 . support.
- the upper side of the guard 60 can also be abutted against the lower surface of the upper support plate 121 , so that the upper support plate 121 can be supported by the lower support plate 122 , which is beneficial to improve the supporting capacity of the support protrusion 12 .
- the support protrusion 12 further includes a first reinforcement rib 123, the first reinforcement rib 123 is connected to the lower surface of the upper support plate 121, and the guard 60 corresponds to the first reinforcement
- the rib 123 is provided with an escape position.
- the lower surface of the first reinforcing rib 123 may also be abutted against the upward facing surface of the avoidance position, so as to increase the supporting area between the guard 60 and the supporting protrusion 12 .
- the structures of the first reinforcing rib 123 may be various, for example, the first reinforcing rib 123 may be in a crisscross grid structure, or the first reinforcing rib 123 may also be a vertical rib extending in the up-down direction.
- the support protrusion 12 further includes a second reinforcing rib 124 , and the first reinforcing rib 123 is connected to the lower supporting plate 122 .
- the first reinforcing rib 123 can be connected to the upper surface of the lower support plate 122.
- the guard 60 is also provided with an escape position corresponding to the second reinforcing rib 124, and the upper surface of the first reinforcing rib 123 can also be connected to the avoidance position.
- the downward facing surface is in contact with each other, so as to increase the supporting area between the guard 60 and the supporting protrusion 12 .
- the first reinforcing rib 123 may also be connected to the lower plate surface of the lower support plate 122 .
- the structure of the second reinforcing rib 124 can be various, for example, the second reinforcing rib 124 can be in a crisscross grid structure, or the second reinforcing rib 124 can also be a vertical rib extending in the up-down direction.
- the support protrusion 12 further includes a support rib, the upper end of the support rib is connected to the lower support plate 122 , the lower end extends toward the bottom wall of the water tank 10 , and the lower end of the support rib is connected to the bottom wall of the water tank 10 or is spaced from the bottom wall of the water tank 10 .
- the guard 60 is detachably connected to the supporting protrusion 12 .
- the guard 60 is snap-connected to the supporting protrusion 12 , so that the assembly is convenient, no screws are required, and the production efficiency can be improved.
- both ends of the guard 60 along the sliding direction of the limiting member 40 are provided with button holes 68
- the first reinforcing rib 123 is provided with a protruding buckle 125 corresponding to each button hole 68
- the protruding buttons 125 are along the limiting member 40 .
- the sliding direction is protruding
- the guard 60 and the supporting convex portion 12 are snap-connected to the convex buckle 125 through the buckle hole 68 .
- button holes 68 are provided above and below the limiting member 40 to ensure the reliability of the connection between the protective member 60 and the supporting protrusion 12 .
- the guard 60 and the supporting protrusion 12 may also be connected by screws or the like.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Air Humidification (AREA)
- Drying Of Gases (AREA)
- Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)
Abstract
本申请公开一种除湿机,该除湿机包括水箱、机身和限位结构,所述水箱具有朝上的安装开口,所述机身具有通过所述安装开口至少部分收容于所述水箱内的闲置状态。所述限位结构包括限位件,所述限位件可活动进出所述安装开口,而具有第一位置及第二位置,于所述第一位置,所述限位件进入所述安装开口,并位于所述机身朝所述水箱内运动的运动路径上,于所述第二位置,所述限位件退出所述安装开口,以供所述机身收容于所述水箱。
Description
相关申请的交叉引用
本申请要求于2020年8月6日提交中国专利局、申请号为202010786623.1、申请名称为“除湿机”的中国专利申请的优先权以及要求于2020年8月6日提交中国专利局、申请号为202021623960.0、申请名称为“除湿机”的中国专利申请的优先权,这两个专利申请的全部内容通过引用结合在本申请中。
本申请涉及空气除湿技术领域,特别涉及一种除湿机。
在一些除湿机中,水箱设置在机身外侧,除湿机工作时,将机身放置于水箱的上方,而当除湿机工作结束后,需要将水箱内的除湿水完全排出后,再将机身收纳于水箱内。然而在实际使用时,当除湿机工作结束后,用户容易忘记将水箱内的水排出,而是直接将机身放入具有除湿水的水箱内,从而导致机身进水损坏。
本申请的主要目的是提出一种除湿机,旨在降低水箱有水的情况下,用户误将机身放入水箱而导致机身进水损坏的可能。
为实现上述目的,本申请提出的除湿机,该除湿机包括:
水箱,具有朝上的安装开口;
机身,所述机身具有通过所述安装开口至少部分收容于所述水箱内的闲置状态;以及,
限位结构,包括限位件,所述限位件可活动进出所述安装开口,而具有第一位置及第二位置,于所述第一位置,所述限位件进入所述安装开口,并位于所述机身朝所述水箱内运动的运动路径上,于所述第二位置,所述限位件退出所述安装开口,以供所述机身收容于所述水箱。
在一实施例中,所述机身还具有工作状态,于所述工作状态,所述机身通过所述安装开口相对所述水箱伸出。
在一实施例中,所述水箱内壁设有支撑凸部,所述机身的侧部设有避让凹槽,所述避让凹槽贯穿所述机身的底部,于所述闲置状态,所述支撑凸部伸入所述避让凹槽,于所述工作状态,所述支撑凸部上端支撑所述机身的底部。
在一实施例中,所述支撑凸部的下方设有安装位,所述限位件滑动安装于所述安装位,所述限位件的滑动方向沿横向方向,于所述第一位置,所述限位件朝所述支撑凸部侧向伸出,以限制所述机身朝所述水箱内运动,于所述第二位置,所述限位件收缩于所述安装位,以供所述机身收容于所述水箱。
在一实施例中,所述限位结构还包括压块,所述压块滑动安装于所述水箱,所述压块的滑动方向沿上下方向,所述压块与所述限位件之间设有联动结构,以在所述压块向下滑动时,所述限位件自所述第二位置朝向所述第一位置滑动。
在一实施例中,所述压块滑动安装于所述安装位,于所述第二位置,所述压块的上端高于所述支撑凸部的上端,于所述第一位置,所述压块的上端不高于所述支撑凸部的上端。
在一实施例中,所述联动结构包括设于所述压块上的第一滑动部和设于所述限位件上的第二滑动部,所述第一滑动部和所述第二滑动部中,至少一者沿所述限位件滑出所述安装位的方向逐渐朝上倾斜延伸。
在一实施例中,所述第一滑动部包括滑槽,所述滑槽沿所述限位件滑出所述安装位的方向逐渐朝上倾斜延伸,所述第二滑动部包括滑动凸起,所述滑动凸起滑动安装于所述滑槽;和/或,
所述第一滑动部具有朝下的第一表面,所述第二滑动部具有面向所述第一表面的第二表面,所述第一表面和所述第二表面中至少一者沿所述限位件滑出所述安装位的方向逐渐朝上倾斜延伸。
在一实施例中,所述限位结构还包括防护件,所述防护件盖设于所述安装位,所述限位件和所述压块位于防护件和所述水箱内壁之间。
在一实施例中,所述防护件和所述限位件之间设有第一导向结构,所述第一导向结构用于限制所述限位件沿上下方向运动。
在一实施例中,所述第一导向结构包括设于所述防护件的第一导向槽,所述第一导向槽沿横向延伸,并具有第一伸出口,所述限位件滑动安装于所述第一导向槽,并能够自所述第一伸出口伸出。
在一实施例中,所述第一导向结构包括设于所述限位件的第一导向孔和设于所述防护件的第一导向柱,所述第一导向孔沿横向延伸呈长条状,所述第一导向柱滑动安装于所述第一导向孔内。
在一实施例中,所述第一导向柱设有第一限位凸起,所述第一限位凸起位于所述第一导向柱的自由端,并朝所述第一导向柱的侧向凸出设置,所述限位件滑动安装于所述第一限位凸起和所述防护件之间。
在一实施例中,所述限位件上设有第一减料孔,所述第一减料孔间隔设于所述第一导向孔外侧,并沿所述第一导向孔的延伸方向延伸。
在一实施例中,所述第一导向孔内设有缩口部,所述第一导向孔在所述缩口部处的宽度小于所述第一导向柱的尺寸,于所述第二位置,所述第一导向柱位于所述缩口部远离所述压块的一侧。
在一实施例中,所述限位件至少具有一个第一滑动面,所述第一滑动面面向所述防护件或所述水箱的内壁设置,所述第一滑动面上设有第一滑动凸筋,所述第一滑动凸筋沿所述限位件的滑动方向延伸。
在一实施例中,所述防护件与所述压块之间设有第二导向结构,所述第二导向结构用于限制所述压块沿横向方向运动。
在一实施例中,所述第二导向结构包括设于所述防护件的第二导向槽,所述第二导向槽沿上下方向延伸,并具有朝上的第二伸出口,所述压块滑动安装于所述第二导向槽,并能够自所述第二伸出口伸出;和/或,
所述第二导向结构包括设于所述压块的第二导向孔和设于所述防护件的第二导向柱,所述第二导向孔沿上下方向延伸呈长条状,所述第二导向柱滑动安装于所述第二导向孔内。
在一实施例中,所述压块设有弹性卡扣,所述防护件面向所述安装位的表面设有止位孔,所述止位孔穿设于所述防护件背离所述安装位的表面,于所述第一位置,所述弹性卡扣卡入所述止位孔。
在一实施例中,所述防护件面向所述安装位的表面设有沿上下方向延伸的让位槽,所述让位槽间隔设于所述止位孔的上方,于所述第二位置,所述弹性卡扣位于所述让位槽内。
在一实施例中,所述支撑凸部包括上支撑板和间隔设于所述上支撑板下方的下支撑板,所述上支撑板与所述下支撑板之间形成所述安装位,所述上支撑板和下支撑板均沿横向延伸,所述上支撑板具有断口,所述压块自所述断口朝上伸出。
在一实施例中,所述防护件与所述支撑凸部可拆卸连接。
本申请技术方案中,通过在水箱上设置可活动进出安装开口的限位件,当限位件运动至进入安装开口的第一位置时,限位件能够位于机身朝水箱内运动的运动路径上,以在机身朝水箱内运动时,限位件能够抵接机身的底部,可以限制机身朝水箱内运动。从而能够避免机身直接落入水箱内的除湿水中而损坏的情况,即降低了水箱有除湿水的情况下,用户误将机身放入水箱而导致机身进水损坏的可能。
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本申请除湿机一实施例的结构示意图;其中,机身处于闲置状态;
图2为图1中机身处于工作状态时与水箱的结构示意图;
图3为图2中水箱的剖切示意图;其中,限位件处于第一位置;
图4为图1中水箱的剖切示意图;其中,限位件处于第二位置;
图5为图3中限位结构的结构示意图;
图6为图4中限位结构的结构示意图;
图7为图6中限位件的结构示意图;
图8为图6中压块的结构示意图;
图9为图8中压块从另一侧看的结构示意图;
图10为图6中防护件的结构示意图;
图11为图10中防护件从另一侧看的结构示意图;
图12为图3中水箱的结构示意图;
图13为图12中A处的放大图。
附图标号说明:
| 标号 | 名称 | 标号 | 名称 |
| 10 | 水箱 | 44 | 第一滑动凸筋 |
| 11 | 安装开口 | 50 | 压块 |
| 12 | 支撑凸部 | 51 | 第二导向孔 |
| 121 | 上支撑板 | 52 | 第二减料孔 |
| 122 | 下支撑板 | 53 | 第二滑动凸筋 |
| 123 | 第一加强筋 | 54 | 弹性卡扣 |
| 124 | 第二加强筋 | 60 | 防护件 |
| 125 | 凸扣 | 61 | 第一导向槽 |
| 20 | 机身 | 62 | 第一伸出口 |
| 21 | 避让凹槽 | 63 | 第一导向柱 |
| 31 | 滑槽 | 631 | 第一限位凸起 |
| 32 | 第一表面 | 64 | 第二导向槽 |
| 33 | 滑动凸起 | 641 | 第二伸出口 |
| 34 | 第二表面 | 65 | 第二导向柱 |
| 40 | 限位件 | 651 | 第二限位凸起 |
| 41 | 第一导向孔 | 66 | 止位孔 |
| 42 | 缩口部 | 67 | 让位槽 |
| 43 | 第一减料孔 | 68 | 扣孔 |
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,若本申请实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅用于解释在某一特定姿态下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,全文中出现的“和/或”的含义为,包括三个并列的方案,以“A和/或B为例”,包括A方案,或B方案,或A和B同时满足的方案。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
本申请提出一种除湿机。
在本申请实施例中,请参照图1至图4,该除湿机包括水箱10、机身20和限位结构,水箱10具有朝上的安装开口11,机身20具有通过安装开口11至少部分收容于水箱10内的闲置状态。
限位结构包括限位件40,限位件40可活动进出安装开口11,而具有第一位置及第二位置,于第一位置,限位件40进入安装开口11,并位于机身20朝水箱10内运动的运动路径上,于第二位置,限位件40退出安装开口11,以供机身20收容于水箱10。
本实施例中,机身20进行除湿工作时所产生的除湿水能够进入水箱10。其中,机身20和水箱10均呈方形设置,但这仅是机身20和水箱10的一个实施例形状。于其它实施例中,机身20和水箱10还可但不限于呈圆形、多边形、甚至不规则的形状,机身20能够通过安装开口11至少部分收容于水箱10内即可。
在将机身20自水箱10内取出进行除湿工作时,可以使限位件40运动至进入安装开口11的第一位置(可以在机身20自水箱10内取出时,将限位件40切换至第一位置,也可以在机身20工作一段时间后,当水箱10内具有一定量除湿水时,使限位件40切换至第一位置,还可以在机身20工作一段时间后,再次提起机身时,使限位件40切换至第一位置)。此时限位件40位于机身20朝水箱10内运动的运动路径上,以在机身20朝水箱10内运动时,限位件40能够抵接机身20的底部,可以限制机身20朝水箱10内运动。而当机身20结束工作,并将水箱10内的除湿水排出或倒出后,再将限位件40切换至退出安装开口11的第二位置,以使得机身20能够朝水箱10内运动而收容于水箱10内。
本申请技术方案中,通过在水箱10上设置可活动进出安装开口11的限位件40,当限位件40运动至进入安装开口11的第一位置时,限位件40能够位于机身20朝水箱10内运动的运动路径上,以在机身20朝水箱10内运动时,限位件40能够抵接机身20的底部,可以限制机身20朝水箱10内运动。从而能够避免机身20直接落入水箱10内的除湿水中而损坏的情况,即降低了水箱10有除湿水的情况下,用户误将机身20放入水箱10而导致机身20进水损坏的可能。
通过将水箱10设置在机身20外,使得水箱10的容积更大,增大了水箱10的储水量,减少用户倒水次数,还减小了机身20的重量,从而能够便于用户搬运机身20。而且在闲置状态时,通过将机身20收容于水箱10内,能够降低除湿机的重心,使得除湿机的放置较为稳定,不易偏倒,还减小了除湿机的整体占用空间,能够方便用户放置除湿机。
本实施例中,机身20还具有工作状态,于工作状态,机身20通过安装开口11相对水箱10伸出。具体而言,于工作状态,机身20至少部分伸出至水箱10的上方,如机身20上设有进风口和出风口的部分位于水箱的上方,以显露在水箱10外。相当于提高了机身20上出风口的高度,使得除湿后的空气能够吹向更远的位置,有利于提高室内空气流动范围。而且使得机身20产生的除湿水能够自然落向水箱10内,便于除湿水的收集。当然,在其它实施例中,也可以将机身20整机设置在水箱10外。
一实施例中,水箱10内壁设有支撑凸部12,机身20的侧部设有避让凹槽21,避让凹槽21贯穿机身20的底部,于闲置状态,支撑凸部12伸入避让凹槽21,于工作状态,支撑凸部12上端支撑机身20的底部。具体而言,水箱10设置在机身20外,支撑凸部12与水箱10的底壁间隔设置,支撑凸部12与安装开口11的边缘间隔设置,即支撑凸部12的上端低于水箱10的上端边缘,避让凹槽21沿机身20的高度方向(上下方向)延伸。
使用除湿机时,转动机身20至避让凹槽21与水箱10的支撑凸部12错开,使机身20的底部抵接在支撑凸部12的上端,以通过支撑凸部12支撑机身20,使机身20相对水箱10伸出,此时机身20处于工作状态,机身20工作时产生的除湿水能够排至水箱10内。而当机身20结束工作,并将水箱10内的水排出后,通过转动机身20至避让凹槽21与支撑凸部12对应的状态,使支撑凸部12伸入避让凹槽21,从而能够将机身20收容于水箱10内,以处于闲置状态。
如此在支撑凸部12的上端支撑机身20的底部时,机身20仍有部分位于水箱10内。相较于将机身20完全自水箱10内提出而放置在水箱10上方的方式,如此设置使得支撑凸部12的上端之上的水箱10部分能够限制机身20,有效降低了机身20相对水箱10偏倒的情况,极大提高了机身20在工作状态时的稳定性。其中,支撑凸部12可以为一体成型于水箱10内壁凸起结构,也可以为可活动安装于水箱10内壁的支撑结构(该支撑结构可以参考限位件40的安装方式)。当然,在其它实施例中,也可以将机身20的底部抵接在水箱10的上端边缘。
一实施例中,支撑凸部12的下方设有安装位,限位件40滑动安装于安装位,限位件40的滑动方向沿横向方向,于第一位置,限位件40朝支撑凸部12侧向伸出,以限制机身20朝水箱10内运动,于第二位置,限位件40收缩于安装位,以供机身20收容于水箱10。
具体而言,支撑凸部12侧向即为横向方向(也即水平方向),限位件40的滑动方向可以沿水箱10内壁的水平延伸方向,于第一位置,限位件40相对支撑凸部12伸出的长度大于支撑凸部12与避让凹槽21的配合间隙,即限位件40和支撑凸部12沿水箱10内壁面的水平延伸方向的总长度大于避让凹槽21沿机身20外侧壁沿水平延伸方向的宽度。以在用户误将机身20以避让凹槽21与支撑凸部12对应的状态放置于水箱10上时,限位件40伸出的一端能够支撑机身20的底部,从而能够限制机身20继续朝下进入水箱10。
而于第二位置时,限位件40能够收缩于安装位,即限位件40相对支撑凸部12伸出的长度小于支撑凸部12与避让凹槽21的配合间隙,或者限位件40整体收入安装位,以避免限位件40与机身20干涉,保证机身20能够顺利进入水箱10内。当然,在其它实施例中,限位件40的滑动方向也可以沿垂直于水箱10内壁面的方向。此外,在其它实施例中,也可以将限位件40和支撑凸部12沿横向间隔设置。另外,在其它实施例中,限位件40也可以转动安装于水箱10的内壁,以能够转动进入安装开口11和转动退出安装开口11。
通过在水箱10内壁设有支撑凸部12,并在支撑凸部12的下方的安装位设置限位结构,限位结构的限位件40滑动安装于安装位。当将限位件40朝支撑凸部12的侧向滑动伸出时,即使用户误将机身20以避让凹槽21对应支撑凸部12的状态放置在水箱10上,限位件40能够抵接在机身20的底部,从而可以限制机身20继续落入水箱10内。如此将机身20从水箱10内取出后,在启动机身20工作之前,可以使限位件40朝支撑凸部12的伸出,以在除湿机工作一段时间后,水箱10内有已经具有除湿水时,即使用户想将机身20收入水箱10内,限位件40也能够阻碍机身20放入水箱10,从而能够避免机身20直接落入水箱10内的除湿水中而损坏的情况。降低了水箱10有除湿水的情况下,用户误将机身20放入水箱10而导致机身20进水损坏的可能。
一实施例中,水箱10的内壁设有多个支撑凸部12,多个支撑凸部12沿水箱10的周向间隔分布,机身20的外侧面设有多个避让凹槽21,多个避让凹槽21沿机身20的周向间隔排布。具体而言,每一支撑凸部12至少对应有一与之配合的避让凹槽21,即避让凹槽21的数量可以多于支撑凸部12的数量,且每一支撑凸部12至少与一避让凹槽21相配合,以保证机身20能够收容于水箱10内。
可以理解,多个支撑凸部12沿水箱10的周向间隔排布,当需要将机身20从限制状态切换至工作状态时,可以将机身20自水箱10内提出,并将机身20相对于水箱10旋转一定角度,使得多个避让凹槽21与多个支撑凸部12相互错位,进而可以使得支撑凸部12上端支撑机身20底部未设有避让凹槽21的部分。如此通过多个支撑凸部12共同支撑机身20底部,能够使得机身20周向的多个位置均被支撑,提高了机身20在工作状态时的稳定性。设置多个支撑凸部12时,可以仅在其中一个或部分支撑凸部12下方设置限位件40,也可以在每一个支撑凸部12的下方均设有限位件40。
其中,多个支撑凸部12可以沿水箱10的周向均匀排布,以保证机身20底部与多个支撑凸部12抵接时,机身20周向受力均匀,有利于提高机身20在工作状态时的稳定性。例如当支撑凸部12的数量为两个时,两个支撑凸部12分设于水箱10的两相对侧等等。当然,在其它实施例中,当支撑凸部12的数量大于或等于三个时,也可以就将多个支撑凸部12沿水箱10的周向呈非均匀排布。此外,机身20可以呈圆柱形、椭圆柱形或棱柱形,水箱10的形状与机身20的形状适配。机身20呈棱柱形时,可以呈方形、正五边形或者正六边形等等。
另外,每一安装位可以设置一个或多个限位件40,多个限位件40的滑动方向均沿横向方向,例如,一实施例中,每一安装位均设有两个限位件40,两个限位件40滑出安装位的方向相反。如此当限位件40支撑机身20底部时,通过多个限位件40共同支撑机身20,能保证机身20的平稳性,降低机身20倾斜的可能。
为减少用户的操作,更加便于用户使用除湿机,请参照图4至图6,一实施例中,限位结构还包括压块50,压块50滑动安装于水箱10,压块50的滑动方向沿上下方向,压块50与限位件40之间设有联动结构,以在压块50向下滑动时,限位件40自第二位置朝向第一位置滑动。其中,压块50可以设于水箱10外,也可以设于水箱10内,压块50设于水箱10内,可以使压块50的上端能够朝安装开口11外伸出,以供用户操作。或者也可以通过机身20的底部抵接压块50的上端,以将压块50下压而驱动限位件40自第二位置朝向第一位置滑动。通过设置压块50,能够便于驱动限位件40运动,能便于用户操作。
本实施例中,压块50滑动安装于安装位,于第二位置,压块50的上端高于支撑凸部12的上端,于第一位置,压块50的上端不高于支撑凸部12的上端。具体而言,当机身20处于闲置状态时,限位件40处于第二位置,此时限位件40通过联动结构将朝上顶起,以使压块50的上端高于支撑凸部12的上端。而在将机身20切换至工作状态时,机身20底部放置到支撑凸部12的上端之前,机身20会先抵接压块50的上端,从而将压块50下压,直至机身20底部与支撑凸部12的上端抵接。在压块50下压的过程中,压块50通过联动结构驱动限位件40朝支撑凸部12的侧向伸出而运动至第一位置。如此在用户将机身20放置于工作状态时,即可使限位件40自动切换至第一位置,不需要用户手动操作限位件40,能够大大方便用户使用。
其中,除湿机结束工作后,由于限位件40处于第一位置,故而需要将限位件40收起后,才能将机身20放入水箱10内。在一实施例中,用户手动操作将限位件40从第一位置切换至第二位置,如此在用户手动操作限位件40的过程中,会注意到水箱10中是否存在除湿水,从而避免了用户没有注意到水箱10内存在除湿水时,直接将机身20放入水箱10内,导致机身20进水损坏的情况。当然,在其它实施例中,也可以不设置压块50,而通过用户手动将限位件40自安装位抽出至第一位置。或者也可以在安装位设置电机,通过电机驱动限位件40在第一位置和第二位置之间切换。
其中,联动结构可以为多种,例如,一实施例中,联动结构包括设于压块50上的第一滑动部和设于限位件40上的第二滑动部,第一滑动部和第二滑动部中,至少一者沿限位件40滑出安装位的方向逐渐朝上倾斜延伸。即可以是第一滑动部沿限位件40滑出安装位的方向逐渐朝上倾斜延伸呈长条状,也可以是第二滑动部沿限位件40滑出安装位的方向逐渐朝上倾斜延伸呈长条状,还可以是第一滑动部和第二滑动部均沿限位件40滑出安装位的方向逐渐朝上倾斜延伸呈长条状。
在压块50朝下运动时,第二滑动部与第一滑动部抵接,并能够相对第一滑动部(沿第一滑动部或第二滑动部的延伸方向)滑动,从而驱使限位件40朝滑出安装位的方向运动,以运动至第一位置。而在将限位件40从第一位置切换至第二位置时,第一滑动部与第二滑动部抵接,并能够相对第二滑动部(沿第一滑动部或第二滑动部的延伸方向)滑动,从而驱使压块50朝上运动,直至所述限位件40运动至第二位置。如此相当于通过压块50和限位件40上成型出联动结构,结构简单,不需要额外增加零件,减少了物料,有利于提升装配效率和降低成本。当然,在其它实施例中,联动结构也可以包括连杆、设于限位件40第一铰接部和设于压块50的第二铰接部,连杆的一端与第一铰接部铰接,另一端与第二铰接部铰接。
请参照图7和图8,第一滑动部的结构可以为多种,例如,一实施例中,第一滑动部包括滑槽31,滑槽31沿限位件40滑出安装位的方向逐渐朝上倾斜延伸,第二滑动部包括滑动凸起33,滑动凸起33滑动安装于滑槽31。滑槽31设于压块50,滑动凸起33设于限位件40,如此能够保证滑动凸部始终位于滑槽31内,即通过操作限位件40和压块50中的任意一者时,均能联动另一者,保证限位件40和压块50的连接可靠性。
安装位设置两个限位件40时(参照图5和图6),可以将两个限位件40结构设置相同,使得两个限位件40实际上为同一物料,从而能够减少物料种类,降低成本。其中,压块50上对应每一限位件40均设有一个滑槽31。该实施例中,在一实施例中,第二滑动部包括两个滑动凸起33,两个滑动凸起33设于限位件40的同一侧,并沿上下方向间隔分布。为便于说明,在限位件40上定义一条中线,该中线沿限位件40的滑动方向延伸,并经过限位件40上表面和下表面之间的中点,两个滑动凸起33在限位件40上的位置以中线为对称线呈对称设置。
此外,一实施例中,第一滑动部具有朝下的第一表面32,第二滑动部具有面向第一表面32的第二表面34,第一表面32和第二表面34中至少一者沿限位件40滑出安装位的方向逐渐朝上倾斜延伸。相当于限位件40与压块50抵接时,即第一表面32和第二表面34相互抵接,且能够相对滑动。如此结构简单,且能保证第一滑动部和第二滑动部的结构强度,有利于提升限位件40和压块50联动可靠性。
安装位设置两个限位件40时,可以将两个限位件40结构设置相同,使得两个限位件40实际上为同一物料,从而能够减少物料种类,降低成本。该实施例中,在一实施例中,第一滑动部具有朝下的两个第一表面32,两个第一表面32之间的距离在朝上的方向上逐渐增大,第二滑动部具有两个第二表面34,两个第二表面34之间的距离在沿限位件40滑出安装位的方向上逐渐增大。两个第二表面34在限位件40上的位置以中线为对称线呈对称设置。
另外,一实施例中,第一滑动部包括滑槽31和设于滑槽31下方的第一表面32,第二滑动部包括滑动凸起33和第二表面34。
请参照图1至图4,为保证限位件40和压块50的运动效果,一实施例中,限位结构还包括防护件60,防护件60盖设于安装位,限位件40和压块50位于防护件60和水箱10内壁之间。具体而言,防护件60呈板状,并与水箱10连接,防护件60的上端不高于支撑凸部12的上端,以保证机身20的底部能够抵接于支撑凸部12的上端。通过将防护件60盖设于安装位,能够避免限位件40和压块50之间的联动结构暴露在外,也能阻挡外物触碰到联动结构或者杂物进入联动结构之间,对联动结构起到了较好的保护作用,以保证限位件40和压块50联动可靠性。当然,在其它实施例中,防护件60也可以呈网架结构等。另外,也可以不设置防护件60。
其中,一实施例中,防护件60和限位件40之间设有第一导向结构,第一导向结构用于限制限位件40沿上下方向运动。具体而言,第一导向结构沿限位件40的滑动方向延伸,以保证限位件40能够较为平稳地在水箱10内壁与防护件60之间滑动。而通过将第一导向结构设于防护件60和限位件40之间,如此不需要在水箱10内壁上设置导向结构,有利于简化水箱10结构。当然,在其它实施例中,也可以将第一导向结构设于水箱10与限位件40之间。
请参照图7和图10,第一导向结构可以为多种结构,例如,一实施例中,第一导向结构包括设于防护件60的第一导向槽61,第一导向槽61沿横向延伸,并具有第一伸出口62,限位件40滑动安装于第一导向槽61,并能够自第一伸出口62伸出。具体而言,第一导向槽61沿限位件40的滑动方向延伸,第一伸出口62位于第一导向槽61远离压块50的一端。在一实施例中,限位件40整体滑动安装于第一导向槽61内,即限位件40的下侧部相对第一滑动槽的下侧壁滑动,限位件40的上侧部与第一滑动槽的上侧壁滑动连接。如此使得第一导向结构的结构强度较高,能够保证限位件40的运动可靠性较好。当然,也可以将限位件40部分滑动安装于第一导向槽61内。当然,本申请不限于此,也可以将第一导向槽61设于限位件40,第一导向结构包括设于防护件60的凸部,凸部能够伸出第一导向槽61。
此外,一实施例中,第一导向结构包括设于限位件40的第一导向孔41和设于防护件60的第一导向柱63,第一导向孔41沿横向延伸呈长条状,第一导向柱63滑动安装于第一导向孔41内。具体而言,第一导向孔41沿限位件40的滑动方向延伸呈长条状,且第一导向孔41的两端封闭设置,如此能够保证第一导向柱63能够始终位于第一导向孔41内,即可以对限位件40的滑动提供导向,也可以防止限位件40与防护件60脱离,使得限位结构的整体可靠性较高。其中,第一导向柱63的数量可以为一个或多个,当第一导向柱63的数量为多个时,多个第一导向柱63沿限位件40的滑动方向间隔分布。当然,本申请不限于此,也可以将第一导向孔41设于防护件60,第一导向柱63设于限位件40。另外,一实施例中,第一导向结构也可以包括第一导向槽61、设于第一导向槽61内的第一导向柱63以及设于限位件40的第一导向孔41。
请参照图5、图6和图10,为便于限位结构的装配,一实施例中,第一导向柱63设有第一限位凸起631,第一限位凸起631位于第一导向柱63的自由端,并朝第一导向柱63的侧向凸出设置,限位件40滑动安装于第一限位凸起631和防护件60之间。具体而言,第一导向柱63自由端的两相对侧分别设有一个第一限位凸起631,两个第一限位凸起631沿第一导向孔41的宽度方向分布。第一限位凸起631相对第一导向柱63侧面的凸出高度大于第一导向柱63与第一导向孔41之间的间隙,第一限位凸起631与第一导向柱63根部的距离大于第一导向孔41的孔深。以在将第一导向柱63的自由端自第一导向孔41的一侧伸入,并从第一导向孔41的另一侧伸出后,第一限位凸起631也伸出第一导向孔41外,并能够抵接于第一导向孔41的孔缘,从而限制第一导向柱63自导向孔脱出。以在装配限位结构时,可以先将限位件40安装于防护件60上,再将防护件60和限位件40一起安装于水箱10内壁,且能够避免安装过程中限位件40与防护件60相互脱离的情况,能便于限位结构的装配。当然,在其它实施例中,第一导向柱63的自由端也可以仅设置一个第一限位凸起631。
请参照图6和图7,为便于将第一限位凸起631穿过第一导向孔41,一实施例中,限位件40上设有第一减料孔43,第一减料孔43间隔设于第一导向孔41外侧,并沿第一导向孔41的延伸方向延伸。即第一减料孔43呈长条状,通过在第一导向孔41外侧设置第一减料孔43,相当于增加了第一导向孔41孔壁的弹性,当将第一导向柱63的自由端卡入第一导向孔41时,第一限位凸起631能够抵接第一导向孔41的孔壁。此时,第一导向孔41的孔壁能够朝第一减料孔43内弹性变形,从而能够减小第一限位凸起631与第一导向孔41孔壁的抵接作用力,从而能够减小装配时的用力,能较容易地将第一限位凸起631穿过第一导向孔41,便于限位结构的装配。其中,第一减料孔43的数量可以为一个或多个,第一减料孔43的数量为多个时,多个第一减料孔43沿第一导向孔41的延伸方向间隔分布,如此可以减小每一个第一减料孔43的长度,从而保证第一导向孔41的孔壁具有足够的强度,避免第一导向孔41的孔壁容易变形或断裂而导致第一限位凸起631容易脱出。当然,在其它实施例中,也可以不设置第一减料孔43。
一实施例中,第一导向孔41内设有缩口部42,第一导向孔41在缩口部42处的宽度小于第一导向柱63的尺寸,于第二位置,第一导向柱63位于缩口部42远离压块50的一侧。具体而言,缩口部42与第一导向孔41的端部间隔设置,且缩口部42与第一导向孔41的间距大于第一导向柱63的直径,以保证第一导向柱63能够越过缩口部42而位于缩口部42远离压块50的一侧。如此在限位件40处于第二位置时,通过缩口部42能够限制限位件40朝第一位置运动,从而避免将机身20从水箱10取出的过程中,因限位件40伸出与机身20干涉,导致机身20不能正常取出或者被刮伤的情况。在一实施例中,限位件40对应缩口部42设有第一减料孔43,以在第一导向柱63经过缩口部42时,减小第一导向柱63的摩擦缩口部42,减少磨损。其中,可以在第一导向孔41的其中一个侧壁设置凸起,以形成缩口部42,也可以在第一导向孔41的两个侧壁均设置凸起,以形成缩口部42,还可以在设有第一减料孔43时,使第一导向孔41的侧壁朝内隆起形成缩口部42。
请参照图7和图8,为减少限位件40在滑动过程中的摩擦,一实施例中,限位件40至少具有一个第一滑动面,第一滑动面面向防护件60或水箱10的内壁设置,第一滑动面上设有第一滑动凸筋44,第一滑动凸筋44沿限位件40的滑动方向延伸。需要说明的是,第一滑动为限位件40上能够接触防护件60或水箱10的内壁的表面,通过在第一滑动面上设有第一滑动凸筋44,使得限位件40通过第一滑动凸筋44与防护件60(水箱10的内壁)接触,能够减小限位件40与防护件60(水箱10的内壁)的接触面积,从而在限位将相对防护件60(水箱10的内壁)滑动时,能够减少限位件40在滑动过程中的摩擦,有利于提升滑动效果。第一滑动凸筋44的截面可以呈半圆形、方形或三角形,例如第一滑动凸筋44的截面呈半圆形,相当于第一滑动凸筋44与防护件60(水箱10的内壁)为线接触,能够进一步减少摩擦,降低摩擦阻力。
其中,限位件40上可以仅具有一个面向防护件60或水箱10的内壁的第一滑动面,也可以具有多个第一滑动面。例如限位件40滑动安装于第一导向槽61的实施例中,限位件40具有四个第一滑动面,其中一个第一滑动面面向第一导向槽61的上侧壁,一个第一滑动面面向第一导向槽61的下侧壁,一个第一滑动面面向第一导向槽61的槽底壁,一个第一滑动面面向水箱10的内壁,每一个第一滑动面均设有第一滑动凸筋44。当然,也可以仅在其中部分第一滑动面上设置第一滑动凸筋44。
请参照图8和图10,一实施例中,防护件60与压块50之间设有第二导向结构,第二导向结构用于限制压块50沿横向方向运动。具体而言,第二导向结构沿压块50的滑动方向延伸,以保证压块50能够较为平稳地在水箱10内壁与防护件60之间滑动。而通过将第二导向结构设于防护件60和压块50之间,如此不需要在水箱10内壁上设置导向结构,有利于简化水箱10结构。当然,在其它实施例中,也可以将第二导向结构设于水箱10与压块50之间。
第一导向结构可以为多种结构,例如,一实施例中,第二导向结构包括设于防护件60的第二导向槽64,第二导向槽64沿上下方向延伸,并具有朝上的第二伸出口641,压块50滑动安装于第二导向槽64,并能够自第二伸出口641伸出。具体而言,第二导向槽64沿压块50的滑动方向(即上下方向)延伸,第二伸出口641位于第二导向槽64的上端,第二导向槽64的下端贯穿第一导向槽61的上槽壁。在一实施例中,压块50整体滑动安装于第二导向槽64内。如此使得第二导向结构的结构强度较高,能够保证压块50的运动可靠性较好。当然,也可以将压块50部分滑动安装于第二导向槽64内。当然,本申请不限于此,也可以将第二导向槽64设于压块50,第二导向结构包括设于防护件60的凸部,凸部能够伸出第二导向槽64。
此外,一实施例中,第二导向结构包括设于压块50的第二导向孔51和设于防护件60的第二导向柱65,第二导向孔51沿上下方向延伸呈长条状,第二导向柱65滑动安装于第二导向孔51内。具体而言,第二导向孔51沿压块50的滑动方向延伸呈长条状,且第二导向孔51的两端封闭设置,如此能够保证第二导向柱65能够始终位于第二导向孔51内,即可以对压块50的滑动提供导向,也可以防止压块50与防护件60脱离,使得限位结构的整体可靠性较高。其中,第二导向柱65的数量可以为一个或多个,当第二导向柱65的数量为多个时,多个第二导向柱65沿压块50的滑动方向间隔分布。当然,本申请不限于此,也可以将第二导向孔51设于防护件60,第二导向柱65设于压块50。另外,一实施例中,第二导向结构也可以包括第二导向槽64、设于第二导向槽64内的第二导向柱65以及设于限位件40的第二导向孔51。
一实施例中,第二导向孔51自压块50一侧朝靠近另一相对侧的方向设置,即第二导向孔51偏移压块50两相对侧的中点位置设置,第二导向柱65设于第二导向槽64的槽底壁,第二导向柱65对应第二导向孔51设置,即第二导向柱65也偏移第二导向槽64两个槽侧壁的中点位置设置。如此能够保证压块50与防护件60均具有唯一的安装状态,能够防止压块50装反的情况。当然,在其它实施例中,也可以将第二导向孔51设于压块50两相对侧的中点位置。
为便于限位结构的装配,一实施例中,第二导向柱65设有第二限位凸起651,第二限位凸起651位于第二导向柱65的自由端,并朝第二导向柱65的侧向凸出设置,压块50滑动安装于第二限位凸起651和防护件60之间。具体而言,第二导向柱65自由端的两相对侧分别设有一个第二限位凸起651,两个第二限位凸起651沿第二导向孔51的宽度方向分布。第二限位凸起651相对第二导向柱65侧面的凸出高度大于第二导向柱65与第二导向孔51之间的间隙,第二限位凸起651与第二导向柱65根部的距离大于第二导向孔51的孔深。以在将第二导向柱65的自由端自第二导向孔51的一侧伸入,并从第二导向孔51的另一侧伸出后,第二限位凸部651也伸出第二导向孔51外,并能够抵接于第二导向孔51的孔缘,从而限制第二导向柱65自导向孔脱出。以在装配限位结构时,可以先将压块50安装于防护件60上,再将防护件60和压块50一起安装于水箱10内壁,且能够避免安装过程中压块50与防护件60相互脱离的情况,能便于限位结构的装配。当然,在其它实施例中,第二导向柱65的自由端也可以仅设置一个第二限位凸部651。
为便于将第一限位凸起631穿过第一导向孔41,一实施例中,压块50上设有第二减料孔52,第二减料孔52间隔设于第二导向孔51外侧,并沿第二导向孔51的延伸方向延伸。即第二减料孔52呈长条状,通过在第二导向孔51外侧设置第二减料孔52,相当于增加了第二导向孔51孔壁的弹性,当将第二导向柱65的自由端卡入第二导向孔51时,第二限位凸起651能够抵接第二导向孔51的孔壁。此时,第二导向孔51的孔壁能够朝第二减料孔52内弹性变形,从而能够减小第二限位凸部651与第二导向孔51孔壁的抵接作用力,从而能够减小装配时的用力,能较容易地将第二限位凸部651穿过第二导向孔51,便于限位结构的装配。其中,第二减料孔52的数量可以为一个或多个,第二减料孔52的数量为多个时,多个第二减料孔52沿第二导向孔51的延伸方向间隔分布,如此可以减小每一个第二减料孔52的长度,从而保证第二导向孔51的孔壁具有足够的强度,避免第二导向孔51的孔壁容易变形或断裂而导致第二限位凸起651容易脱出。当然,在其它实施例中,也可以不设置第二减料孔52。
请参照图8和图9,为减少压块50在滑动过程中的摩擦,一实施例中,压块50至少具有一个第二滑动面,第二滑动面面向防护件60或水箱10的内壁设置,第二滑动面上设有第二滑动凸筋53,第二滑动凸筋53沿压块50的滑动方向延伸。需要说明的是,第二滑动为压块50上能够接触防护件60或水箱10的内壁的表面,通过在第二滑动面上设有第二滑动凸筋53,使得压块50通过第二滑动凸筋53与防护件60(水箱10的内壁)接触,能够减小压块50与防护件60(水箱10的内壁)的接触面积,从而在限位将相对防护件60(水箱10的内壁)滑动时,能够减少压块50在滑动过程中的摩擦,有利于提升滑动效果。第二滑动凸筋53的截面可以呈半圆形、方形或三角形,例如第二滑动凸筋53的截面呈半圆形,相当于第二滑动凸筋53与防护件60(水箱10的内壁)为线接触,能够进一步减少摩擦,降低摩擦阻力。
其中,限位件40上可以仅具有一个面向防护件60或水箱10的内壁的第二滑动面,也可以具有多个第二滑动面。例如压块50滑动安装于第二导向槽64的实施例中,压块50具有四个第二滑动面,其中一个第二滑动面面向第二导向槽64的上侧壁,一个第二滑动面面向第二导向槽64的下侧壁,一个第二滑动面面向第二导向槽64的槽底壁,一个第二滑动面面向水箱10的内壁,每一个第二滑动面均设有第二滑动凸筋53。当然,也可以仅在其中部分第二滑动面上设置第二滑动凸筋53。
请参照图5和图6,一实施例中,压块50与防护件60之间设有卡接结构,于第一位置,压块50与防护件60卡接。如此能够限制限位件40从第一位置切换至第二位置,即能避免用户将水箱10内的除湿水排出前,限位件40自动切换至第二位置的情况。
结合参照图9至图11,卡接结构的结构可以为多种,例如,一实施例中,压块50设有弹性卡扣54,防护件60面向安装位的表面设有止位孔66,止位孔66穿设于防护件60背离安装位的表面,于第一位置,弹性卡扣54卡入止位孔66。即弹性卡扣54和止位孔66构成卡接结构,换言之,卡接结构包括弹性卡扣54和止位孔66。在压块50下压,驱动限位件40运动至第一位置时,弹性卡扣54能够卡入止位孔66,从而能够限制压块50朝上运动。而在用户需要将限位件40切换至第二位置时,则可以通过按压位于止位孔66中的弹性卡扣54,使弹性卡扣54脱出止位孔66,此时压块50不再受到止位孔66的限制,可以朝上运动,即可以将限位件40从第一位置切换至第二位置。通过采用弹性卡扣54和止位孔66的卡接结构,能够便于用于操作,而且降低了弹性卡扣54在卡入止位孔66之前的运动过程中与防护件60的抵接力,能减少弹性卡扣54的磨损,延长使用寿命。当然,在其它实施例中,也可以将弹性卡扣54设于防护件60,止位孔66设于压块50。或者在防护件60和压块50上均设置有弹性卡扣54,防护件60和压块50通过弹性卡扣54相互卡接。
为减少弹性卡扣54的,一实施例中,防护件60面向安装位的表面设有沿上下方向延伸的让位槽67,让位槽67间隔设于止位孔66的上方,于第二位置,弹性卡扣54位于让位槽67内。具体而言,当压块50朝上运动,弹性卡扣54脱出止位孔66,并越过止位孔66与让位槽67之间的隔开部分后,弹性卡扣54能够进入让位槽67,此时弹性卡扣54与让位槽67的槽底间隔设置,即弹性卡扣54位于让位槽67内时,弹性卡扣54处于自由状态,没有与防护件60抵接。如此能够避免弹性卡扣54长时间被挤压而发生永久变形的情况,能够延长弹性卡扣54的使用寿命。当弹性卡扣54自让位槽67滑出后,至弹性卡扣54卡入止位孔66前的运动过程中,弹性卡扣54受到防护件60挤压而发生弹性变形。而通过使让位槽67沿上下方向延伸呈长条状,可以减小让位槽67与止位孔66之间的距离,从而能减小弹性卡扣54受挤压的时间,也能减少弹性卡扣54在让位槽67和止位孔66之间与防护件60的摩擦,有利于延长弹性卡扣54的使用寿命。在一实施例中,让位槽67的下侧壁朝下倾斜设置,以对弹性卡扣54滑动让位槽67提供导向。
请参照图12和图13,一实施例中,支撑凸部12包括上支撑板121和间隔设于上支撑板121下方的下支撑板122,上支撑板121与下支撑板122之间形成安装位,上支撑板121和下支撑板122均沿横向延伸,上支撑板121具有断口,压块50(参照图4)自断口朝上伸出。如此相当于可以将压块50更靠近水箱10的内壁设置,能够减小支撑凸部12和限位结构相对水箱10内壁的整体凸出高度,从而有利于减小机身20上避让凹槽21的槽深,可以增大机身20内部空间。
防护件60设于上支撑板121和下支撑板122之间,且可以将防护件60的下侧部与下支撑板122的上板面抵接,以能够通过下支撑板122对防护件60进行支撑。还可以将防护件60的上侧部与上支撑板121的下板面抵接,如此相当于能够通过下支撑板122支撑上支撑板121,从而有利于提升支撑凸部12的支撑能力。
为提升上支撑板121的结构强度,一实施例中,支撑凸部12还包括第一加强筋123,第一加强筋123连接于上支撑板121的下板面,防护件60对应第一加强筋123设有避让位。还可以将第一加强筋123的下表面与避让位处朝上的表面抵接,以能够增大防护件60与支撑凸部12的支撑面积。其中,第一加强筋123的结构可以为多种,例如,第一加强筋123可以呈纵横交错的网格结构,或者第一加强筋123也可以沿上下方向延伸的竖筋。
为提升下支撑板122的结构强度,一实施例中,支撑凸部12还包括第二加强筋124,第一加强筋123连接于下支撑板122。其中,第一加强筋123可以连接于下支撑板122的上板面,此时,防护件60对应第二加强筋124也设有避让位,还可以将第一加强筋123的上表面与避让位处朝下的表面抵接,以能够增大防护件60与支撑凸部12的支撑面积。或者,第一加强筋123也可以连接于下支撑板122的下板面。第二加强筋124的结构可以为多种,例如,第二加强筋124可以呈纵横交错的网格结构,或者第二加强筋124也可以沿上下方向延伸的竖筋。一实施例中,支撑凸部12还包括支撑筋,支撑筋的上端连接下支撑板122,下端朝水箱10底壁延伸,支撑筋的下端连接水箱10底壁或者与水箱10底壁间隔。
请参照图10、图11和图13,为便于限位结构的装配,一实施例中,防护件60与支撑凸部12可拆卸连接。如此当压块50、防护件60或者限位件40损坏或者磨损后,能够便于更换,由于不需要更换整个水箱10,故而能降低成本。在一实施例中,防护件60与支撑凸部12卡接,如此装配方便,不需打螺钉,能够提高生产效率。具体地,防护件60沿限位件40滑动方向的两端部均设有扣孔68,第一加强筋123对应每一扣孔68均设有凸扣125,凸扣125沿限位件40滑动方向凸出设置,防护件60和支撑凸部12通过扣孔68与凸扣125卡接。一实施例中,限位件40的上方和下方均设有扣孔68,以保证防护件60和支撑凸部12的连接可靠性。当然,在其它实施例中,防护件60和支撑凸部12也可以通过螺钉连接等。
以上所述仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是在本申请的申请构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。
Claims (22)
- 一种除湿机,其中,包括:水箱,具有朝上的安装开口;机身,所述机身具有通过所述安装开口至少部分收容于所述水箱内的闲置状态;以及,限位结构,包括限位件,所述限位件可活动进出所述安装开口,而具有第一位置及第二位置,于所述第一位置,所述限位件进入所述安装开口,并位于所述机身朝所述水箱内运动的运动路径上,于所述第二位置,所述限位件退出所述安装开口,以供所述机身收容于所述水箱。
- 如权利要求1所述的除湿机,其中,所述机身还具有工作状态,于所述工作状态,所述机身通过所述安装开口相对所述水箱伸出。
- 如权利要求2所述的除湿机,其中,所述水箱内壁设有支撑凸部,所述机身的侧部设有避让凹槽,所述避让凹槽贯穿所述机身的底部,于所述闲置状态,所述支撑凸部伸入所述避让凹槽,于所述工作状态,所述支撑凸部上端支撑所述机身的底部。
- 如权利要求3所述的除湿机,其中,所述支撑凸部的下方设有安装位,所述限位件滑动安装于所述安装位,所述限位件的滑动方向沿横向方向,于所述第一位置,所述限位件朝所述支撑凸部侧向伸出,以限制所述机身朝所述水箱内运动,于所述第二位置,所述限位件收缩于所述安装位,以供所述机身收容于所述水箱。
- 如权利要求4所述的除湿机,其中,所述限位结构还包括压块,所述压块滑动安装于所述水箱,所述压块的滑动方向沿上下方向,所述压块与所述限位件之间设有联动结构,以在所述压块向下滑动时,所述限位件自所述第二位置朝向所述第一位置滑动。
- 如权利要求5所述的除湿机,其中,所述压块滑动安装于所述安装位,于所述第二位置,所述压块的上端高于所述支撑凸部的上端,于所述第一位置,所述压块的上端不高于所述支撑凸部的上端。
- 如权利要求6所述的除湿机,其中,所述联动结构包括设于所述压块上的第一滑动部和设于所述限位件上的第二滑动部,所述第一滑动部和所述第二滑动部中,至少一者沿所述限位件滑出所述安装位的方向逐渐朝上倾斜延伸。
- 如权利要求7所述的除湿机,其中,所述第一滑动部包括滑槽,所述滑槽沿所述限位件滑出所述安装位的方向逐渐朝上倾斜延伸,所述第二滑动部包括滑动凸起,所述滑动凸起滑动安装于所述滑槽;和/或,所述第一滑动部具有朝下的第一表面,所述第二滑动部具有面向所述第一表面的第二表面,所述第一表面和所述第二表面中至少一者沿所述限位件滑出所述安装位的方向逐渐朝上倾斜延伸。
- 如权利要求6所述的除湿机,其中,所述限位结构还包括防护件,所述防护件盖设于所述安装位,所述限位件和所述压块位于防护件和所述水箱内壁之间。
- 如权利要求9所述的除湿机,其中,所述防护件和所述限位件之间设有第一导向结构,所述第一导向结构用于限制所述限位件沿上下方向运动。
- 如权利要求10所述的除湿机,其中,所述第一导向结构包括设于所述防护件的第一导向槽,所述第一导向槽沿横向延伸,并具有第一伸出口,所述限位件滑动安装于所述第一导向槽,并能够自所述第一伸出口伸出。
- 如权利要求10所述的除湿机,其中,所述第一导向结构包括设于所述限位件的第一导向孔和设于所述防护件的第一导向柱,所述第一导向孔沿横向延伸呈长条状,所述第一导向柱滑动安装于所述第一导向孔内。
- 如权利要求12所述的除湿机,其中,所述第一导向柱设有第一限位凸起,所述第一限位凸起位于所述第一导向柱的自由端,并朝所述第一导向柱的侧向凸出设置,所述限位件滑动安装于所述第一限位凸起和所述防护件之间。
- 如权利要求13所述的除湿机,其中,所述限位件上设有第一减料孔,所述第一减料孔间隔设于所述第一导向孔外侧,并沿所述第一导向孔的延伸方向延伸。
- 如权利要求14所述的除湿机,其中,所述第一导向孔内设有缩口部,所述第一导向孔在所述缩口部处的宽度小于所述第一导向柱的尺寸,于所述第二位置,所述第一导向柱位于所述缩口部远离所述压块的一侧。
- 如权利要求9所述的除湿机,其中,所述限位件至少具有一个第一滑动面,所述第一滑动面面向所述防护件或所述水箱的内壁设置,所述第一滑动面上设有第一滑动凸筋,所述第一滑动凸筋沿所述限位件的滑动方向延伸。
- 如权利要求9至16任意一项所述的除湿机,其中,所述防护件与所述压块之间设有第二导向结构,所述第二导向结构用于限制所述压块沿横向方向运动。
- 如权利要求17所述的除湿机,其中,所述第二导向结构包括设于所述防护件的第二导向槽,所述第二导向槽沿上下方向延伸,并具有朝上的第二伸出口,所述压块滑动安装于所述第二导向槽,并能够自所述第二伸出口伸出;和/或,所述第二导向结构包括设于所述压块的第二导向孔和设于所述防护件的第二导向柱,所述第二导向孔沿上下方向延伸呈长条状,所述第二导向柱滑动安装于所述第二导向孔内。
- 如权利要求17所述的除湿机,其中,所述压块设有弹性卡扣,所述防护件面向所述安装位的表面设有止位孔,所述止位孔穿设于所述防护件背离所述安装位的表面,于所述第一位置,所述弹性卡扣卡入所述止位孔。
- 如权利要求19所述的除湿机,其中,所述防护件面向所述安装位的表面设有沿上下方向延伸的让位槽,所述让位槽间隔设于所述止位孔的上方,于所述第二位置,所述弹性卡扣位于所述让位槽内。
- 如权利要求9至16任意一项所述的除湿机,其中,所述支撑凸部包括上支撑板和间隔设于所述上支撑板下方的下支撑板,所述上支撑板与所述下支撑板之间形成所述安装位,所述上支撑板和下支撑板均沿横向延伸,所述上支撑板具有断口,所述压块自所述断口朝上伸出。
- 如权利要求21所述的除湿机,其中,所述防护件与所述支撑凸部可拆卸连。
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP20886203.7A EP3971486B1 (en) | 2020-08-06 | 2020-09-30 | Dehumidifier |
| US17/430,939 US12253278B2 (en) | 2020-08-06 | 2020-09-30 | Dehumidifier |
| CA3129091A CA3129091C (en) | 2020-08-06 | 2020-09-30 | Dehumidifier |
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| Application Number | Priority Date | Filing Date | Title |
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| CN202021623960.0 | 2020-08-06 | ||
| CN202010786623.1 | 2020-08-06 | ||
| CN202021623960.0U CN212319940U (zh) | 2020-08-06 | 2020-08-06 | 除湿机 |
| CN202010786623 | 2020-08-06 |
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| US (1) | US12253278B2 (zh) |
| EP (1) | EP3971486B1 (zh) |
| CA (1) | CA3129091C (zh) |
| WO (1) | WO2022027810A1 (zh) |
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| JP1704613S (ja) * | 2020-10-22 | 2022-01-13 | 空気清浄機 |
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Also Published As
| Publication number | Publication date |
|---|---|
| CA3129091A1 (en) | 2022-02-06 |
| US20220307705A1 (en) | 2022-09-29 |
| EP3971486A4 (en) | 2022-03-23 |
| US12253278B2 (en) | 2025-03-18 |
| EP3971486A1 (en) | 2022-03-23 |
| EP3971486C0 (en) | 2026-03-11 |
| EP3971486B1 (en) | 2026-03-11 |
| CA3129091C (en) | 2023-12-05 |
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