EP4674338A1 - Lave-vaisselle - Google Patents

Lave-vaisselle

Info

Publication number
EP4674338A1
EP4674338A1 EP24792935.9A EP24792935A EP4674338A1 EP 4674338 A1 EP4674338 A1 EP 4674338A1 EP 24792935 A EP24792935 A EP 24792935A EP 4674338 A1 EP4674338 A1 EP 4674338A1
Authority
EP
European Patent Office
Prior art keywords
housing
tub
dishwasher
disposed
discharge port
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.)
Pending
Application number
EP24792935.9A
Other languages
German (de)
English (en)
Inventor
Gyu Han Hwang
Chang Yoon Jung
Seung Hun Kim
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
LG Electronics Inc
Original Assignee
LG Electronics Inc
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority claimed from KR1020240019713A external-priority patent/KR20240153908A/ko
Application filed by LG Electronics Inc filed Critical LG Electronics Inc
Publication of EP4674338A1 publication Critical patent/EP4674338A1/fr
Pending legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/48Drying arrangements
    • A47L15/481Drying arrangements by using water absorbent materials, e.g. Zeolith
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/48Drying arrangements
    • A47L15/488Connections of the tub with the ambient air, e.g. air intake or venting arrangements
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/48Drying arrangements
    • A47L15/486Blower arrangements

Definitions

  • the present invention relates to a dishwasher, and more specifically, to a dishwasher which has the improved availability of the space inside a tub while preventing a decrease in washing capacity by disposing a moisture absorbent and a heater, which would occupy a considerably large volume, between a lower rack and an upper rack within the tub.
  • a dishwasher is a device which sprays washing water such as water to a wash target such as tableware, cooking utensils and the like accommodated therein to wash the wash target.
  • the washing water used for washing the wash target may contain a detergent.
  • the dishwasher is constructed by including a washing bath forming a washing space therein, a storage part accommodating the wash target in the washing bath, a spray arm spraying the washing water to the storage part, and a sump storing an amount of water therein and supplying the washing water to the spray arm.
  • the dishwasher is configured to perform a washing process of washing the wash target, a rinsing process of proceeding with the rinsing for the wash target, and a drying process of drying the wash target that has been washed and rinsed.
  • European Patent Publication No. 2763578 discloses a dishwasher in which a moisture absorption device is configured so that a moisture absorbent, a heater, and a blowing part are disposed in an internal washing space of the tub and on the upper side of the lower surface of the tub.
  • the inlet and outlet through which the airflow passes during the moisture absorption mode or drying mode may be disposed so as to be directly exposed to the washing space.
  • the washing water is highly likely to infiltrate into the inlet and outlet, and the moisture absorbent, the heater, and the blowing part are highly likely to be submerged by the infiltrated washing water, which poses a problem in that there is a very high possibility of electric leakage and damage to electrical components.
  • the moisture absorption device of Prior document 001 has a problem in that, since the moisture absorbent occupying a relatively large volume is disposed on the lower surface of the tub, the volume of the lower rack or upper rack in which the tableware is accommodated is reduced due to the space occupied by the moisture absorbent, which inevitably leads to a reduction in the washing capacity of the tub.
  • the present invention has been conceived to solve the problems of the prior art as described above, and it is a first object of the present invention to provide a dishwasher which has the improved availability of the space inside the tub while preventing a decrease in washing capacity by disposing a moisture absorbent and a heater, which would occupy a considerably large volume, between a lower rack and an upper rack within the tub.
  • a dishwasher is characterized by including a tub forming a washing space and accommodating tableware; and a moisture absorption drying device absorbing moisture from air discharged from the tub and supplying the air to the tub, wherein the moisture absorption drying device includes a moisture absorbent absorbing moisture contained in airflow discharged from the tub; a heating part disposed upstream of the moisture absorbent and having a heater heating an airflow of the air; a housing accommodating the moisture absorbent and the heating part; and a blowing part disposed upstream of the housing and having a blowing fan generating the airflow and a fan housing in which the blowing fan is accommodated, and wherein the housing is disposed inside the washing space of the tub, and the blowing part is disposed outside the tub.
  • the dishwasher may further include a lower rack disposed in the washing space, and on which the tableware is rested; and an upper rack disposed above the lower rack in the washing space, and on which the tableware is rested, wherein the housing may be disposed between the lower rack and the upper rack.
  • the housing may be inserted into a space formed between the upper rack and the lower rack.
  • the housing may be fixed to a rear surface of the tub.
  • the housing may include a separating wall disposed between the moisture absorbent and the heater, wherein an internal space of the housing may be divided by the separating wall into a moisture absorbent accommodation space in which the moisture absorbent is accommodated and a heater accommodation space in which the heater is accommodated.
  • an airflow introduced into an inside of the housing may pass through the heater and is then guided toward the moisture absorbent.
  • the dishwasher may further include a lower rack disposed in the washing space, and on which the tableware is rested; and an upper rack disposed above the lower rack in the washing space, and on which the tableware is rested, wherein the housing may be provided with an discharge port being open toward a washing space, and through which an airflow that has passed through the moisture absorbent is discharged, and wherein the discharge port may be open toward a space formed between the lower rack and the upper rack.
  • the housing may include a discharge port door opening or closing the discharge port.
  • the discharge port door may open the discharge port when the airflow is generated by the blowing part, and may close the discharge port when the airflow is not generated.
  • the discharge port door may have an upper end rotatably connected to the housing, and a lower end swingable in a direction away from the discharge port while opening the discharge port.
  • the moisture absorption drying device may further include a suction duct guiding the airflow discharged from the tub toward the fan housing, wherein one end of the suction duct communicated with the tub may be disposed at a position lower than the discharge port based on an up and down direction.
  • the moisture absorption drying device may further include a suction duct guiding the airflow discharged from the tub toward the fan housing, wherein one end of the suction duct communicated with the tub may be disposed at a position higher than the discharge port based on an up and down direction.
  • the wind blowing part may be disposed below a lower surface of the tub.
  • the wind blowing part may be disposed at a rear of a rear surface of the tub.
  • the housing may include a first housing and a second housing which are disposed in a separated state from each other inside the washing space, wherein the heating part may include a first heater disposed in the first housing and a second heater accommodated in the second housing, and wherein the moisture absorbent may include a second moisture absorbent accommodated in the first housing, and a second moisture absorbent accommodated in the second housing.
  • first housing and the second housing may be disposed to be spaced apart from each other along a horizontal direction.
  • the moisture absorption drying device may further include a supply duct guiding an airflow discharged from the fan housing toward the first housing and the second housing; a first branch duct having one end communicated with the supply duct and another end communicated with the first housing; and a second branch duct having one end communicated with the supply duct and another end communicated with the second housing.
  • the moisture absorption drying device may further include a damper part disposed between the one end of the first branch duct and the one end of the second branch duct, and opening or closing an internal air passage of the supply duct.
  • the airflow may be guided only to the first branch duct.
  • the damper part when the damper part opens the internal air passage of the supply duct, the airflow may be guided to the first branch duct and the second branch duct.
  • the dishwasher according to the present invention has an effect of improving the availability of the space inside a tub while preventing a decrease in washing capacity by disposing a moisture absorbent and a heater, which would occupy a considerably large volume, between a lower rack and an upper rack within the tub.
  • the dishwasher according to the present invention has an effect of allowing the washing water to effectively recover the heat generated by the heater during a regeneration process of the moisture absorbent by disposing the heater inside the tub.
  • the dishwasher of the present invention has such an effect that, by dividing the moisture absorbent and disposing the divided moisture absorbent in a first housing and a second housing that are disposed to be spaced apart from each other, it is possible to reduce the volumes of the first housing and the second housing, and to effectively reduce the differential pressure between the front and rear sides of the moisture absorbent disposed in each of the first housing and the second housing, thus significantly reducing the load on the blowing fan.
  • first may be used herein to describe various components, these components should not be limited by these terms. These terms are only used to distinguish one component from another component, and unless otherwise specifically stated, it is to be understood that a first component may of course be a second component.
  • any element is disposed on (or below) a component” or “above (or under) a component” may mean not only that the element is disposed in contact with the top surface (or lower surface) of the component, but also that another element may be interposed between the component and the element disposed on (or below) the component.
  • a component is described as being “connected,” “coupled,” or “contacted” to another component, the components may be directly connected or contacted to one another, but it is to be understood that another element may be “interposed” between the components, or that the components may be “connected,” “coupled,” or “contacted” to each other through another element.
  • FIG. 1 is a front perspective view showing a dishwasher according to the present invention
  • FIG. 2 is a simplified cross-sectional view briefly showing the internal structure of the dishwasher according to the present invention.
  • a dishwasher 1 includes a case 10 forming an outer shape, a tub 20 having an open front side and installed inside the case 10 to form a washing space 21 in which wash targets are washed, a door 30 for opening or closing the open front side of the tub 20, a driving part 40 located in the lower side of the tub 20 to supply, collect, circulate, and discharge washing water for washing the wash targets, a storage part 50 detachably provided in the washing space 21 inside the tub 20, and on which the wash targets are placed, and a spray part 60 installed adjacent to the storage part 50 to spray washing water for washing the wash targets.
  • examples of the wash targets placed in the storage part 50 may include tableware such as bowls, dishes, spoons, chopsticks and the like, and other cooking utensils. Unless otherwise stated below, the wash targets will be referred to as tableware.
  • the tub 20 may be formed in a box shape with the entire front side open, and corresponds to a configuration known as a so-called washing bath.
  • the washing space 21 can be formed inside the tub 20 whose open front side can be opened or closed by the door 30.
  • the tub 20 may be formed by pressing a metal plate that is resistant to high temperature and moisture, for example, a plate made of stainless steel series.
  • brackets for helping functional components such as the storage part 50, the spray part 60 and the like to be described later to be supported and installed within the tub 20.
  • the driving part 40 may be constructed by including a sump 41 storing the washing water, a sump cover 42 separating the sump 41 from the tub 20, a water supply part 43 supplying the washing water to the sump 41 from the outside, a drain part 44 discharging the wash water from the sump 41 to the outside, a washing pump 45 supplying the washing water from the sump 41 to the spray part 60, and a supply path 46.
  • the sump cover 42 may be disposed on the upper side of the sump 41, and may serve to separate the tub 20 from the sump 41. Additionally, the sump cover 42 may be provided with a plurality of recovery holes for recovering the washing water sprayed into the washing space 21 through the spray part 60 into the sump 41.
  • the washing pump 45 is provided at one side or the bottom of the sump 41, and serves to pressurize the washing water to supply it to the spray part 60.
  • the washing pump 45 may be connected at one end to the sump 41, and at the other end to the supply flow path 46.
  • the washing pump 45 may include an impeller 451 and a motor 453. When power is supplied to the motor 453, the impeller 451 rotates, and the washing water in the sump 41 can be pressurized and then supplied to the spray part 60 through the supply flow path 46.
  • the supply flow path 46 may include a first supply flow path 461 connected to a lower spray arm 61, and a second supply flow path 463 connected to an upper spray arm 62 and a top nozzle 63, and the supply flow path 46 may be provided with a supply flow path switching valve 465 that selectively opens or closes the supply flow paths 461, 463.
  • the supply flow path switching valve 465 may be controlled so that each of the supply flow paths 461, 463 is opened sequentially or simultaneously.
  • the spray part 60 is provided to spray the washing water on tableware and the like stored in the storage part 50.
  • the spray part 60 may include the lower spray arm 61 positioned in the lower side of the tub 20 to spray the washing water to a lower rack 51, the upper spray arm 62 positioned between the lower rack 51 and an upper rack 52 to spray the washing water to the lower rack 51 and the upper rack 52, and the top nozzle 63 positioned in the upper side of the tub 20 to spray the washing water to a top rack 53 or the upper rack 52.
  • the lower spray arm 61 may be rotatably supported at the upper side of the sump cover 42 so that it can spray the washing water toward the lower rack 51 from the lower side of the lower rack 51 while rotating.
  • the upper spray arm 62 may be rotatably supported by a spray arm holder 467 so that it can spray the washing water between the lower rack 51 and the upper rack 52 while rotating.
  • a means for diverting the washing water sprayed from the lower spray arm 61 in an up direction U-direction may be further provided at the lower surface 25 of the tub 20 to increase the washing efficiency.
  • the storage part 50 for storing the tableware may be provided in the washing space 21.
  • the storage part 50 is provided so as to be withdrawable from the inside of the tub 20 through the open front side of the tub 20.
  • FIG. 2 shows an embodiment which provides the storage part including the lower rack 51 located in the lower side of the tub 20 and capable of storing relatively large tableware, the upper rack 52 located in the upper side of the lower rack 51 and capable of storing medium-sized tableware, and the top rack 53 located in the upper side of the tub 20 and capable of storing small tableware and the like.
  • the present invention will be described based on an embodiment of the dishwasher provided with three storage parts 50 as illustrated, but not limited thereto.
  • These lower rack 51, upper rack 52 and top rack 53 can each be configured to be pulled out through the open front side of the tub 20.
  • the guide rail may include an upper rail, a lower rail, a top rail, and the like.
  • each of these lower rack 51 On the bottom of each of these lower rack 51, upper rack 52, and top rack 53 wheels may be provided. By pulling these lower rack 51, upper rack 52 and top rack 53 out through the front side of the tub 20 to the outside, the user can easily store tableware in them, or take out washed tableware from them.
  • the guide rail may be provided with a fixed guide rail in the form of a simple rail for guiding the withdrawal and insertion of the storage part 50, or with a telescopic guide rail guiding the withdrawal and insertion of the storage part 50 and being capable of increasing the withdrawal distance according to withdrawal of the storage part 50.
  • the door 30 has the purpose of opening or closing the open front side of the above-described tub 20.
  • a hinge part not shown for opening and closing the door 30 In the lower side of the front side that is normally open, there is provided a hinge part not shown for opening and closing the door 30, and the door 30 is opened by rotating about the hinge part as a rotation shaft.
  • a handle 31 for opening the door 30 there may be provided a control panel 32 for controlling the dishwasher 1.
  • control panel 32 may be provided with a display 33 visually displaying information about the current operating status of the dishwasher and the like, and a button part 34 including a selection button by which a user's selection operation is input, and a power button by which a user's operation for turning the dishwasher on and off is input.
  • the inner surface of the door 30 may form one surface of the tub 20 when the door 30 is closed while, at the same time, forming a seating surface on which the lower rack 51 of the storage part 50 can be supported when the door 30 is fully opened.
  • the inner surface of the door 30 forms a horizontal plane in the same direction as the extension of the guide rail by which the lower rack 51 is guided.
  • a moisture absorption drying device 80 may be provided, which absorbs water vapor contained in the air discharged from the tub 20 in progress of a drying process, and then supplies the air back to the tub 20.
  • the moisture absorption drying device 80 may be constructed by including a suction duct 81 through which air discharged from the tub 20 is sucked in, a wind blowing part 82 generating airflow, a heating part 83 heating the air sucked in from the tub 20, and a moisture absorbent 85 absorbing water vapor contained in the air.
  • the moisture absorbent 85, the heating part 83, and the wind blowing part 82 constituting the moisture absorption drying device 80 are illustrated as being disposed in a space formed between the lower surface 25 of the tub 20 and the base 90, but alternatively, it may constituted so that the moisture absorbent 85 and the heating part 83 are disposed inside the tub 20 while the blowing part 82 may be disposed outside the tub 20.
  • this moisture absorption drying device 80 constituted so that the moisture absorbent 85 and the heating part 83 are disposed inside the tub 20 will be described later with reference to FIG. 3 and the following drawings.
  • FIGS. 3 to 10 illustrate a schematic configuration of a dishwasher 1 provided with the moisture absorption drying device 80 according to the first embodiment of the present invention.
  • the moisture absorption drying device 80 may be constructed by including the blowing part 82 generating airflow F of air to be sucked in from the tub 20 and supplied to the inside of the tub 20, the heating part 83 provided with a heater 831 heating the air to be supplied to the moisture absorbent 85 and the tub 20, a plurality of moisture absorbents 85 disposed downstream of the blowing part 82 and the heating part 83 based on the flow direction of the airflow and absorbing moisture contained in the air, a housing 84 accommodating the heating part 83 and the moisture absorbent 85 therein, the suction duct 81 guiding the airflow F discharged from the tub 20 to the blowing part 82, and a supply duct 88 guiding the airflow F discharged from the blowing part 82 to the housing 84.
  • the blowing part 82 is disposed upstream of the heating part 83 and the moisture absorbent 85 based on the flow direction of the airflow F, and is disposed downstream of the suction duct 81, so that it serves to suck air from the tub 20 and generate the airflow F, causing the sucked air to pass through the absorbent 85.
  • a blowing fan 821 and a blowing motor not shown generating the rotational driving force of the blowing fan 821 may be modularized together and accommodated inside a fan housing 822 to form an assembly together with the fan housing 822.
  • the other end of the suction duct 81 may be connected, while, to the outlet side of the fan housing 822, one end of the supply duct 88 may be connected.
  • blowing fan 821 Although there is no limitation on the type of blowing fan 821 applied to the moisture absorption drying device 80, a sirocco fan, for example, is preferable considering the locational and spatial constraints regarding the installation of the blowing part.
  • the blowing part 82 may be disposed outside the tub 20.
  • FIG. 3 and the following drawings illustrate a configuration in which the blowing part 82 is disposed below the lower surface 25 of the tub 20 in a space formed between the lower surface 25 of the tub 20 and the base 90.
  • blowing part 82 is disposed in the rear side of the rear surface 23 of the tub 20.
  • the present invention is not limited thereto, but will be described based on a configuration in which the blowing part 82 is disposed below the lower surface 25 of the tub 20 as illustrated.
  • blowing part 82 By configuring the blowing part 82 to be disposed outside the tub 20 while being separated from the moisture absorbent 85 and the heating part 83, it is considered to have an effect of being capable of minimizing the volume and size of the housing 84 disposed inside the tub 20 and accommodating the moisture absorbent 85 and the heating part 83.
  • blowing part 82 is disposed outside the tub 20, it is possible to minimize the possibility that electrical components such as the blowing motor will be affected by the washing water.
  • the heating part 83 is disposed downstream of the above-described blowing part 82 based on the flow direction of the airflow F, is disposed inside the tub 20 together with the moisture absorbent 85, and serves to heat the air to dry and regenerate the moisture absorbent 85 when a moisture absorbent regeneration mode is in progress, thereby generating a high-temperature airflow FH as illustrated in FIG. 10 .
  • the heater 831 may be accommodated in a partitioned heater accommodation space in the inside of the housing 84.
  • the moisture absorption drying device 80 When the moisture absorption drying device 80 operates in the moisture absorption drying mode while generating the high-temperature airflow FH, power may be supplied to the heater 831 to heat the airflow as illustrated in FIG. 10 , and when the moisture absorption drying device 80 generates a low-temperature airflow FL in the moisture absorption drying mode, power supplied to the heater 831 may be cut off to stop the operation of the heater 831 as illustrated in FIG. 9 .
  • the operation of the blowing fan 821 may be maintained.
  • heater 831 provided in the moisture absorption drying device 80, and, however, as an example, a tube-shaped sheath heater may be selected which has a relatively simple structure, an excellent heat generation efficiency, and is advantageous in preventing electric leakage caused by the washing water flowing in from the tub 20.
  • a pair of terminals 832 may be formed which are for receiving power.
  • the pair of terminals 832 may extend through the housing 84 and the tub 20 toward the outside of the tub 20.
  • the moisture absorbent 85 serves to absorbs moisture contained in the low-temperature airflow FL discharged from the tub 20 when the moisture absorption drying mode of the moisture absorption drying device 80 is in progress, and serves to release the absorbed moisture into the high-temperature airflow FH when the moisture absorbent regeneration mode of the moisture absorption drying device 80 is in progress.
  • the moisture absorbent 85 may be formed with a reversibly dehydratable material, so that it can absorb moisture or release the absorbed moisture depending on the operating temperature range.
  • the reversibly dehydratable material applicable to this may include one selected from a group consisting of aluminum oxide, silicon oxide, silica gel, alumina silica or zeolite, or be a composition having a combination of two or more thereof.
  • the absorbent 85 having an alumina silica series material including, for example, aluminum oxide and silicon oxide may be applied.
  • the present invention will be described below based on, but not limited to, an example in which the alumina silica series moisture absorbent 85 is applied.
  • the moisture absorbent 85 formed with an alumina silica series material may be provided in the form of particles having a predetermined particle size so that it is possible to maximize the contact area with the airflow F. Additionally, the moisture absorption function can occur at a lower temperature range than that of a moisture absorbent made of pure aluminum oxide or silicon oxide, and the regeneration function can occur at a lower temperature range. However, the airflow F may passes between a plurality of moisture absorbent 85 provided in the form of particles, and come into contact with the moisture absorbent 85, thereby allowing the moisture absorption, or absorbing moisture released from the moisture absorbent 85.
  • the moisture absorbent 85 cannot help but act as a flow resistance to the airflow.
  • the pore space may be effectively formed, and the particle size of the absorbent 85 may be selected to secure optimal moisture absorption efficiency.
  • the moisture absorbent 85 having a particle diameter in the range of 2 mm to 6 mm may be selected and applied.
  • the moisture absorbent 85 may be disposed inside the tub 20 in a state where it is accommodated inside the single housing 84 together with the heating part 83.
  • a moisture absorbent accommodation space separate from the aforementioned heater accommodation space may be formed inside the housing 84, and the moisture absorbent 85 may be accommodated in the moisture absorbent accommodation space.
  • the moisture absorbent 85 may be accommodated by a moisture absorbent holder 86 so that it is possible to prevent the separation of the moisture absorbent 85 from the moisture absorbent accommodation space caused by the wind pressure of the airflow F.
  • the moisture absorbent holder 86 may be provided with a mesh portion through which the airflow F can pass.
  • the housing 84 of the moisture absorption drying device 80 may also serve to form an internal flow path that guides the airflow F introduced through the supply duct 88 to be described below.
  • the single housing 84 accommodating the moisture absorbent 85 and the heating part 83 may be disposed and fixed inside the tub 20.
  • the housing 84 may be disposed and fixed at a position as close as possible to the rear surface 23 of the tub 20.
  • the housing 84 may be disposed between the lower rack 51 and the upper rack 52 in the up and down direction.
  • the housing 84 may be disposed so as to be inserted at least partially into the space formed between the lower rack 51 and the upper rack 52.
  • the depth by which the housing 84 is inserted into the space formed between the lower rack 51 and the upper rack 52 may be set differently depending on the total amount of the moisture absorbent 85 accommodated therein and the size of the heater 831.
  • the insertion depth of the housing 84 may be limited so that it can be inserted to a position where it does not interfere with the rotation range of the upper spry arm 62 rotatably disposed at the bottom of the upper rack 52.
  • the housing 84 can be effectively disposed inside the tub 20 without reducing the storage capacities of the lower rack 51 and the upper rack 52 while, at the same time, minimizing interference with the lower rack 51 and upper rack 52 and interference with the upper spray arm 62.
  • the heater 831 constituting the heating part 83 is disposed to be exposed to the washing space formed inside the tub 20, a portion of the heat generated by the heater 831 when the moisture absorbent regeneration mode is in progress can be used to heat the airflow F, and the remaining portion can be used to heat the washing water. Thereby, the energy recovery efficiency can be significantly improved because the amount of heat generated by the heater 831 that is emitted to the outside of the tub 20 can be minimized.
  • the inside of the housing 84 may be divided into the heater accommodation space and the moisture absorbent accommodation space.
  • the inside of the housing 84 may be divided into the heater accommodation space and the moisture absorbent accommodation space by a separating wall 841 disposed between the moisture absorbent 85 and the heater 831.
  • the separating wall 841 may be provided in the form of a vertical wall or a vertical rib extending in the up and down direction in the internal space of the housing 84.
  • the separating wall 841 may be formed integrally with the inner surface of the housing 84.
  • the heater accommodation space and the moisture absorbent accommodation space divided by the separation wall 841 as described above may be communicated with each other, and form air passages through which the airflow F introduced into the inside of the housing 84 through the supply duct 88 to be described later flows sequentially.
  • the heater accommodation space forms the upstream of the internal air passage of the housing 84
  • the moisture absorbent accommodation space forms the downstream of the internal air passage of the housing 84.
  • the separating wall 841 may have its lower end separated from the inner surface of the housing 84 or its upper end separated from the inner surface of the housing.
  • FIG. 3 and the following drawings illustrate a configuration in which the separating wall 841 is disposed inside the housing 84 with the upper end of the separating wall 841 separated from the inner surface of the housing 84.
  • the present invention is not limited to this, it will be described below based on the illustrated configuration.
  • the lower end of the separating wall 841 may be formed to be entirely connected to the inner surface of the housing 84, and the upper end of the separating wall 841 may be formed to be at least partially separated from the inner surface of the housing 84.
  • the gap or clearance formed between the top end of the separating wall 841 and the inner surface of the housing 84 can act as a passage communicating the heater accommodation space with the moisture absorbent accommodation space.
  • the other end of the supply duct 88 and the inlet through which airflow F is introduced into the inside of the housing 84 as illustrated may be formed at a position as far away as possible from the clearance of the separating wall 841.
  • the housing 84 may be provided with an discharge port 893 through which the airflow F that has passed through the heater 831 and the moisture absorbent 85 is discharged.
  • the position of the discharge port 893 may be determined so that the airflow F discharged from the discharge port 893 can be evenly distributed to the upper rack 52 and the lower rack 51.
  • the discharge port 893 may be formed in the front surface of the housing 84.
  • the discharge port 893 may be formed at a position on the front surface of the housing 84 as close as possible to the lower surface of the housing 84 so that the airflow F can be discharged after passing through the entire absorbent 85.
  • the housing 84 may further include a discharge port door 842 which opens or closes the discharge port 893.
  • the discharge port door 842 may be a flap-type door with one end rotatably connected to the housing 84.
  • the discharge port door 842 may be provided so that its upper end is rotatably connected to the housing 84 and its lower end is swingable in a direction away from the discharge port 893 and the front surface of the housing 84.
  • the rotation range of the discharge port door 842 may be limited so as not to swing toward the inside of the housing 84.
  • the discharge port door 842 can be rotated in the open direction Wo by the wind pressure of the airflow F from the closed position shown in FIG. 4 , so that the discharge port 893 can be automatically opened.
  • the discharge port door 842 can be rotated in the opposite direction to the opening direction Wo by its own weight from the open position shown in FIG. 5 , so that the discharge port 893 can be automatically closed.
  • the discharge door 842 has a very simple structure, when it is used as described above, it is possible to reduce the possibility that the washing water scattered around in the washing space of the tub 20 flows into the inside of the housing 84 through the discharge port 893 when the washing or rinsing process is in progress.
  • the moisture absorption drying device 80 may further include the suction duct 81 guiding the airflow F discharged from the tub 20 toward the fan housing 822.
  • the suction duct 81 may have one end connected to the tub 20, which is the leading end based on the flow direction of the airflow F, and the other end connected to the fan housing 822, which is the rear end.
  • the one end of the suction duct 81 into which the airflow F is introduced from the tub 20 may be formed on the right or left side of the tub 20 at a position lower than the discharge port 893 of the above-described housing 84 in the up and down direction.
  • the airflow F which has passed through the moisture absorbent 85 and been discharged through the discharge port 893 of the housing 84 can sufficiently pass through the upper rack 52 and the lower rack 51 and then be discharged from the tub 20 while being introduced into the one end of the suction duct 81.
  • the one end of the suction duct 81 into which the airflow F is introduced may be configured to be formed at a higher position than the discharge port 893 of the housing 84 described above in the up and down direction.
  • the one end of the suction duct 81 communicated with the tub 20 may be provided with a cap cover 811 to prevent the inflow of foreign substances such as food.
  • the moisture absorption drying device 80 may further include the supply duct 88 having one end connected to the fan housing 822, which is the leading end based on the flow direction of the airflow F, and the other end connected to the housing 84, which is the rear end, and serving to guide the airflow F discharged from the outlet of the fan housing 822 toward the inlet of the housing 84.
  • the supply duct 88 may be manufactured in a hollow shape so that an air passage through which the airflow F can flow can be formed in the inside thereof.
  • the supply duct 88 may be extended in the up and down direction on the rear surface 23 of the tub 20 so as to be able to connect the housing 84 disposed between the lower rack 51 and the upper rack 52 and the fan housing 822 disposed below the tub 20.
  • the other end of the supply duct 88 may be extended toward the inside of the tub 20, penetrating through the rear surface 23 of the tub 20 so as to be communicated with the housing 84 disposed in the internal washing space of the tub 20.
  • FIGS. 6 and 7 illustrate an embodiment in which an discharge port cap 843 is provided instead of the discharge door 842 illustrated in FIGS. 3 to 5 .
  • the discharge port cap 843 is coupled to the discharge port 893 to serve to at least partially close the discharge port 893.
  • the discharge port cap 843 may include a cap body 8431 coupled to the front surface of the housing 84 forming the discharge port 893.
  • the cap body 8431 may be coupled to the housing 84 in a state where it is partially inserted into the discharge port 893, or may be coupled to the housing 84 in a form where it covers the discharge port 893 on the outer surface of the front surface of the housing 84.
  • the cap body 8431 may be disposed in the housing 84 so that the discharge port 893 is maintained in a state where it is at least partially open toward the washing space 21 while, when viewed from the front of the housing 84, that is, when viewed in a horizontal direction, entirely covering the discharge port 893.
  • the maximum vertical cross-sectional area of the cap body 8431 may be formed to be greater than the open area of the discharge port 893.
  • the cap body 8431 may be detachably coupled to the housing 84.
  • the front surface of the housing 84 and the cap body 8431 may be provided with a coupling means for forming a detachable coupling therebetween.
  • the detachable coupling means may include a catching protrusion formed on the outer surface of the cap body 8431 and protruding toward the front surface of the housing 84.
  • the catching protrusion may be detachably fastened to the housing 84 in a way that it is elastically hook-coupled directly to the discharge port 893 or elastically hook-coupled to a coupling hole formed separately from the discharge port 893.
  • the cap body 8431 can be easily removed from the housing 84 when the inside cleaning of the housing 84 is in progress or when the replacement or repair of the housing 84 is in progress.
  • the discharge port 893 is at least partially open.
  • the partially open discharge port 893 remains open in all times regardless of the operation of the blowing part 82.
  • the discharge port cap 843 may be provided with a flow path guide part 8432 diverting the flow direction of the airflow F passing through the discharge port 893.
  • the flow path guide part 8432 may be provided in a form in which the rear surface of the cap body 8431 is partially cut away. Therefore, the thickness of the flow path guide part 8432 in the front and rear direction may be formed to be smaller than the thickness of the cap body 8431.
  • the flow path guide part 8432 formed through the cutting away may be disposed in the front side of the discharge port 893 so as to partially open it.
  • a gap can be formed between the rear surface of the flow path guide part 8432 and the discharge port 893.
  • the discharge port 893 may be formed at a position close to the lower surface of the housing 84.
  • the embodiment illustrated in FIG. 8 sets forth the configuration in which the moisture absorbent accommodation space may be formed at the rear of the housing 84 with respect to the separating wall 841 so that the airflow F passing through the moisture absorbent 85 can be discharged by passing through the discharge port 893 formed in the rear surface of the housing 84.
  • the heater accommodation space may be formed in the front side of the housing 84.
  • the other end of the supply duct 88 may be extended through the rear surface of the housing 84 and the separating wall 841 to the heater accommodation space so that the airflow F can be introduced first to the heater accommodation space before the moisture absorbent accommodation space.
  • the airflow F discharged to the heater accommodation space through the other end of the supply duct 88 can pass through the heater 831, and be guided by the separating wall 841 to move to the moisture absorbent accommodation space in which the moisture absorbent 85 is received.
  • FIGS. 11 to 13 illustrate a schematic configuration of the moisture absorption drying device 80 according to a second embodiment of the present invention.
  • the moisture absorption drying device 80 may be configured so that the moisture absorbent 85 and the heater 831 are disposed inside the washing space of the tub 20 by means of a plurality of housings, unlike the configuration of the single housing 84 of the first embodiment described above.
  • FIGS. 11 and 12 illustrate an embodiment in which a plurality of housings are configured with a first housing 84a and a second housing 84b. Although the present invention is not limited to this, it will be described based on the illustrated embodiment.
  • the first housing 84a and the second housing 84b may have an internal structure basically almost the same as the single housing 84 of the first embodiment described above.
  • first housing 84a and the second housing 84b may be configured to have a smaller size and a smaller volume compared to the single housing 84. That is, the first housing 84a and the second housing 84b may also be considered to be formed and disposed in the tub 20 by dividing the single housing 84 into them.
  • the depth by which the first housing 84a and the second housing 84b protrude between the lower rack 51 and the upper rack 52 can be maintained smaller than the depth by which the single housing 84 protrudes.
  • FIGS. 11 and 12 illustrate an embodiment in which the first housing 84a and the second housing 84b are provided to have the same size and the same volume, this is a mere example and it is also applicable that the first housing 84a and the second housing 84b are formed to have different sizes and volumes.
  • first housing 84a and the second housing 84b may be provided with a first moisture absorbent and a first heater, and a second moisture absorbent and a second heater, respectively.
  • the volume of the first moisture absorbent and the volume of the second moisture absorbent become significantly smaller than that the moisture absorbent 85 accommodated in the single housing 84.
  • the differential pressures generated while passing through the first and second moisture absorbents can be significantly lower than the differential pressure of the moisture absorbent of the single housing 84, thus reducing the load on the blowing part 82.
  • the first housing 84a and the second housing 84b may be disposed to be spaced apart from each other left and right along the horizontal direction.
  • the first housing 84a and the second housing 84b may also be disposed at positions where they partially overlap with the lower rack 51 and the upper rack 52 based on the up and down direction.
  • first housing 84a and the second housing 84b may be disposed at positions symmetrical with respect to a vertical plane passing through the center of the tub 20.
  • the first housing 84a and the second housing 84b can supply the airflow F through the first discharge port 893a at a position biased to the left from the plane of symmetry
  • the second housing 84b can supply the airflow F through the second discharge port 893b at a position biased to the right from the plane of symmetry.
  • the first housing 84a and the second housing 84b are disposed to be spaced apart from each other left and right in a symmetrical manner, it is possible to secure a passage between the first housing 84a and the second housing 84b, through which the aforementioned second supply flow path 463 can pass. Therefore, in order to minimize interference with the second supply flow path 463, the horizontal gap between the first housing 84a and the second housing 84bmay be formed to be equal to or greater than the left-right width of the second supply flow path 463.
  • first discharge port 893a of the first housing 84a may be independently opened or closed by means of a first discharge port door 842a
  • second discharge port 893b of the second housing 84b may be independently opened or closed by means of a second discharge port door 842b.
  • first discharge port 893a and the second discharge port 893b being opened or closed may refer to that valves are installed inside the first housing 84a and inside the second housing 84b to block or open the first discharge port 893a and the second discharge port 893b.
  • first discharge port 893a and the second discharge port 893b being opened or closed may refer to that actuators, each including a motor or a pump which physically moves the first discharge port door 842a or the second discharge port door 842b, are installed inside the first housing 84a and inside the second housing 84b to block or open the first discharge port 893a and the second discharge port 893b.
  • actuators each including a motor or a pump which physically moves the first discharge port door 842a or the second discharge port door 842b
  • the present invention is not limited to this, and it is also possible to configure the second discharge port 893b without providing the second discharge port door 842b so that the first discharge port 893a and the second discharge port 893b are always open.
  • FIG. 13 shows a schematic diagram of the first housing 84a and the second housing 84b.
  • the first housing 84a and the second housing 84b may each be divided into a first part 84a1, 84b1, a second part 84a2, 84b2, and a third part 84a3, 84b3 according to the internal shape or cross-sectional area.
  • the first part 84a1, 84b1 may be configured so that its outer surface facing the inside of the tub 20 includes a portion protruding toward the washing space 21 of the tub 20 in order to secure a sufficient space in the inner space to install the moisture absorbent 85 or the heater 831.
  • the second part 84a2, 84b2 may be configured so that its outer surface protrudes relatively less than the first part 84a1, 84b1 because no component is disposed in the inner space.
  • the volumes of the first housing 84a and the second housing 84b can be minimized through the second parts 84a2, 84b2, and thus, unnecessary space can be minimized, manufacturing costs can be reduced, and as well, the interference with other components such as the storage part 50, the second supply flow path 463, and the spray part 60 located inside the tub 20 can be minimized.
  • the third part 84a3, 84b3 functions as a connecting portion connecting between the first part 84a1, 84b1 and the second part 84a2, 84b2.
  • the third part 84a3, 84b3 may be configured so that the cross sections of the outer surface and the inner surface form straight lines or curves, thereby minimizing the flow resistance of the airflow F flowing inside.
  • FIG. 13 illustrates a configuration in which the cross sections of the outer surface and inner surface of the third part 84a3, 84b3 are formed in a straight line shape
  • the present invention is not limited thereto, and it is also possible to configure the cross sections of the outer and inner surfaces of the third part 84a3, 84b3 in a curved shape or a compound curve in which straight lines are combined with each other, and this will be considered to fall within the scope of the present invention.
  • the moisture absorption drying device 80 may further include a first branch duct 881 connecting between the first housing 84a and the supply duct 88, and a second branch duct 882 connecting between the second housing 84b and the supply duct 88.
  • the first branch duct 881 and the second branch duct 882 may penetrate through the lower surface 25 of the tub 20 from the outside of the tub 20 upwardly, enter the inside of the tub 20, and then be connected to the first housing 84a and the second housing 84b, respectively, or penetrate through the opposite side surfaces of the tub 20 from the outside of the tub 20 or be extended along the rear surface 23 of the tub 20 and then penetrate through the rear surface 23 of the tub, enter the inside of the tub 20, and then be communicated with the inlet of the first housing 84a and the inlet of the second housing 84b, respectively.
  • first branch duct 881 is disposed so that one end is communicated with the supply duct 88 and the other end penetrates through the rear surface 23 of the tub 20 and is communicated with the inlet of the first housing 84a
  • second branch duct 882 is disposed so that one end is communicated with the supply duct 88 and the other end penetrates through the rear surface 23 of the tub 20 and is communicated with the inlet of the second housing 84b.
  • FIGS. 11 and 12 illustrate a configuration in which the one end of the first branch duct 881 and the one end of the second branch duct 882 are formed at separate positions, a configuration dissimilar to this is also applicable, in which the one end of the first branch duct 881 and the one end of the second branch duct 882 are communicated with the supply duct 88 at the same position.
  • the one end of the first branch duct 881 is communicated with the supply duct 88 at a position separated from the one end of the second branch duct 882, more specifically, at a position further upstream based on the flow direction of the airflow F, there may be disposed a damper part 87 between the one end of the first branch duct 881 and the one end of the second branch duct 882 to open or close the internal air passage of the supply duct 88.
  • the damper part 87 may be provided in the shape of a circular plate disposed in the internal air passage of the supply duct 88 to correspond to the shape of the internal air passage of the supply duct 88.
  • the damper part 87 in the shape of a circular plate may be disposed to be rotatable around a rotational axis passing through its center. Thereby, the opening degree of the internal air passage of the supply duct 88 can be adjusted in response to the rotation amount of the damper part 87.
  • the damper part 87 When the damper part 87 entirely closes the internal air passage of the supply duct 88, the airflow F can only be supplied to the first housing 84a, and the moisture absorption drying mode can proceed only through the first housing 84a.
  • the air volume of the blowing part 82 can be adjusted so that the moisture absorption drying mode is performed only through the first housing 84a, thereby having the effect of minimizing energy consumption.
  • the opening degree of the damper part 87 may be configured so that, by adjusting the opening degree of the damper part 87, some airflow F can be supplied to the second housing 84b, thereby allowing the moisture absorption drying mode to be performed through the first housing 84a and the second housing 84b.
  • This case may be suitable for a case where the drying load is greater than a case where the moisture absorption drying mode is performed only with the first housing 84a, but is less than the maximum drying load.
  • the airflow F can be supplied evenly to the first housing 84a and the second housing 84b, thereby allowing the moisture absorption drying mode to be performed through the first housing 84a and the second housing 84b simultaneously.
  • This case may be suitable for a case where the drying load to be performed in the washing space of the tub 20 is maximum.

Landscapes

  • Washing And Drying Of Tableware (AREA)
EP24792935.9A 2023-04-17 2024-04-11 Lave-vaisselle Pending EP4674338A1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
KR20230049996 2023-04-17
KR1020240019713A KR20240153908A (ko) 2023-04-17 2024-02-08 식기세척기
PCT/KR2024/004813 WO2024219749A1 (fr) 2023-04-17 2024-04-11 Lave-vaisselle

Publications (1)

Publication Number Publication Date
EP4674338A1 true EP4674338A1 (fr) 2026-01-07

Family

ID=93152707

Family Applications (1)

Application Number Title Priority Date Filing Date
EP24792935.9A Pending EP4674338A1 (fr) 2023-04-17 2024-04-11 Lave-vaisselle

Country Status (2)

Country Link
EP (1) EP4674338A1 (fr)
WO (1) WO2024219749A1 (fr)

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2763578A1 (fr) 2011-10-04 2014-08-13 Arçelik Anonim Sirketi Lave-vaisselle comprenant une unité de déshumidification

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5343632A (en) * 1992-04-10 1994-09-06 Advanced Dryer Systems, Inc. Closed-loop drying process and system
KR20100020788A (ko) * 2008-08-13 2010-02-23 엘지전자 주식회사 식기 세척기
JP5151894B2 (ja) * 2008-10-16 2013-02-27 パナソニック株式会社 食器洗い乾燥機
KR102034096B1 (ko) * 2013-09-02 2019-10-18 삼성전자주식회사 식기세척기
KR102367064B1 (ko) * 2015-05-14 2022-02-24 삼성전자주식회사 식기세척기

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2763578A1 (fr) 2011-10-04 2014-08-13 Arçelik Anonim Sirketi Lave-vaisselle comprenant une unité de déshumidification

Also Published As

Publication number Publication date
WO2024219749A1 (fr) 2024-10-24

Similar Documents

Publication Publication Date Title
EP2327352B1 (fr) Lave-vaisselle et son procédé de contrôle
KR102367064B1 (ko) 식기세척기
US20250275667A1 (en) Dishwasher
KR102852954B1 (ko) 식기세척기
KR20240153908A (ko) 식기세척기
EP4620372A1 (fr) Lave-vaisselle
US12419489B2 (en) Dishwasher
EP4674337A1 (fr) Lave-vaisselle
KR20250039620A (ko) 식기세척기
EP4523596B1 (fr) Lave-vaisselle
EP4449971A1 (fr) Lave-vaisselle avec un dispositif de séchage par sorption
KR20240153909A (ko) 식기세척기
KR20250122080A (ko) 식기세척기 및 그 제어방법
KR20240153738A (ko) 식기세척기
KR20250043728A (ko) 식기세척기
KR20240153907A (ko) 식기세척기
KR20250014561A (ko) 식기세척기
KR20240153896A (ko) 식기세척기
KR20230103915A (ko) 식기세척기
EP4129146B1 (fr) Lave-vaisselle
KR20230111989A (ko) 식기세척기 및 그 제어방법
KR20240153739A (ko) 식기세척기
EP4480376A1 (fr) Lave-vaisselle
KR20230111991A (ko) 식기세척기
CN118806178A (zh) 洗碗机

Legal Events

Date Code Title Description
STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE INTERNATIONAL PUBLICATION HAS BEEN MADE

PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

Free format text: ORIGINAL CODE: 0009012

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE

17P Request for examination filed

Effective date: 20250929

AK Designated contracting states

Kind code of ref document: A1

Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC ME MK MT NL NO PL PT RO RS SE SI SK SM TR