Base device and clothes processing equipment

By setting up a liquid collection tank in the base device of the clothing treatment equipment, the problem of condensate flowing freely on the base surface is solved, efficient collection of condensate and stable operation of the base device are achieved, and overall performance and layout compactness are improved.

CN223163652UActive Publication Date: 2025-07-29WUXI MEIZHI ELECTRIC CO LTD
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Patent Information

Application Number
CN202422141738.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-29
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The condensate generated by the clothing treatment equipment during operation flows freely on the surface of the base, affecting the normal operation of other components.

Method used

A liquid collecting tank is provided in the base device for collecting and storing condensate. The liquid collecting tank is located on the bottom side of the compressor to collect condensate produced by the compressor and other components, shortening the flow path and improving collection convenience.

Benefits of technology

Effectively collect condensate, reduce the impact on the compressor and other components, improve the overall performance and operating stability of the base device, and increase the layout compactness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a base device and clothes processing equipment, the base device comprises a base, a compressor and a liquid collecting tank, the base is provided with an air duct, the air duct is used for communicating with a clothes processing cavity of the clothes processing equipment, and the base comprises a bottom wall; the compressor is arranged on the bottom wall; the liquid collecting tank is arranged on the bottom side of the compressor and used for containing and storing liquid. According to the base device provided by the embodiment of the invention, the liquid collecting tank is arranged, so that condensate generated during operation of the base device or other parts of the clothes treatment equipment can be effectively collected, the influence on operation of a compressor and operation of other parts in the clothes treatment equipment is reduced, and the overall performance of the base device is improved; the liquid collecting tank is arranged on the bottom side of the compressor, condensate generated when the compressor runs or other parts run flows downwards along the surface of the compressor and then can be contained in the liquid collecting tank, the collecting convenience of the condensate is improved, meanwhile, the flowing path of the condensate is shortened, and the layout compactness of the base device is improved.
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Description

Technical Field

[0001] This application relates to the technical field of clothing treatment, and particularly to a base device and a clothing treatment device. Background Art

[0002] Taking a clothing treatment device such as a heat pump dryer or a washing and drying integrated machine as an example, the clothing treatment device includes a base. There is an air duct inside the base, and the air duct is communicated with the clothing treatment chamber of the clothing treatment device. In the related art, the condensate generated during the operation of the clothing treatment device flows freely on the surface of the base, which is likely to affect other components. Summary of the Utility Model

[0003] In view of this, embodiments of this application are expected to provide a base device and a clothing treatment device, which collect and receive condensate through a liquid collecting tank to improve the operation reliability of the base device.

[0004] To achieve the above object, the technical solution of the embodiments of this application is realized as follows:

[0005] Embodiments of this application provide a base device for a clothing treatment device, including:

[0006] A base having an air duct for communicating with the clothing treatment chamber of the clothing treatment device, and the base includes a bottom wall;

[0007] A compressor disposed on the bottom wall;

[0008] A liquid collecting tank disposed on the bottom side of the compressor for collecting and storing liquid.

[0009] In some embodiments, the liquid collecting tank is formed on the bottom wall.

[0010] In some embodiments, a partial structure of the bottom wall is recessed downward to form the liquid collecting tank.

[0011] In some embodiments, the base device includes an adapter, the adapter is connected to the bottom wall, and the compressor is connected to the adapter.

[0012] In some embodiments, the compressor includes a compressor body and a connecting ear protruding from the circumferential outer side of the compressor body, the connecting ear is connected to the adapter, and the compressor body is spaced from the adapter so that the compressor body is in a suspended state.

[0013] In some embodiments, the liquid collecting tank is formed on the adapter.

[0014] In some embodiments, the bottom wall is formed with the liquid collecting groove, the adapter is provided with a through hole communicating with the liquid collecting groove, and the adapter can receive the liquid and guide the received liquid to the liquid collecting groove through the through hole.

[0015] In some embodiments, the adapter includes a plurality of first support portions and at least one second support portion, the bottom wall has a plurality of mounting structures, the mounting structures have first support surfaces, the first support portions are connected to the first support surfaces, the compressor includes a compressor body and a connecting ear protruding from the circumferential outer side of the compressor body, and the connecting ear is connected to the second support portion.

[0016] In some embodiments, the plurality of first support portions and at least one second support portion are connected to form an annular structure, and the annular structure surrounds the outer circumference of the compressor body.

[0017] In some embodiments, the adapter includes an extending structure, the extending structure includes a plate portion and a side surrounding portion, the side surrounding portion is arranged around the edge of the plate portion, the top end portion of the side surrounding portion is higher than the top surface of the plate portion, and the top end portion of the side surrounding portion is connected to the radial inner edge of the annular structure.

[0018] In some embodiments, a partial structure of the bottom wall is recessed downward to form the liquid collecting groove, the extending structure is located on the top side of the liquid collecting groove, the extending structure has a through hole communicating with the liquid collecting groove, and the extending structure can receive the liquid and guide the received liquid to the liquid collecting groove through the through hole.

[0019] The embodiment of the present application provides a clothing treatment device, including:

[0020] A first cylinder assembly having a first clothing treatment chamber;

[0021] A second cylinder assembly;

[0022] A box body and a frame, the frame is arranged inside the box body;

[0023] And the base device according to any embodiment of the present application, the air duct communicates with the first clothing treatment chamber, the base device is arranged on the frame, the base device at least divides the space inside the box body into a first space and a second space, the first cylinder assembly is arranged in the first space, and the second cylinder assembly is arranged in the second space.

[0024] The base device provided by the embodiment of the present application. The setting of the liquid collecting tank can effectively collect the condensate generated during the operation of the base device or other components of the laundry treatment equipment, reduce the influence on the operation of the compressor and other components in the laundry treatment equipment, and improve the overall performance of the base device; the liquid collecting tank is arranged at the bottom side of the compressor. After the condensate generated during the operation of the compressor itself or the condensate generated by other components flows down along the surface of the compressor, it can be received by the liquid collecting tank, which increases the convenience of collecting the condensate. At the same time, it also shortens the flow path of the condensate and increases the layout compactness of the base device. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 is a partial structural schematic diagram of a laundry treatment equipment according to an embodiment of the present application;

[0026] Figure 2 is Figure 1 a structural schematic diagram of the structure shown from another perspective, wherein the first cylinder assembly and the second cylinder assembly are omitted in the figure;

[0027] Figure 3 is a structural schematic diagram of a base device according to an embodiment of the present application;

[0028] Figure 4 is another structural schematic diagram of a base device according to an embodiment of the present application, wherein the compressor is omitted in the figure;

[0029] Figure 5 is Figure 4 an exploded structural schematic diagram of the base device shown;

[0030] Figure 6 is Figure 4 a partial structural schematic diagram of the base device shown;

[0031] Figure 7 is Figure 5 a structural schematic diagram of the adapter shown;

[0032] Figure 8 is Figure 4 a structural schematic diagram of the base device shown from another perspective;

[0033] Figure 9 is another structural schematic diagram of a base device according to an embodiment of the present application, wherein the compressor and the adapter are omitted in the figure;

[0034] Figure 10 is Figure 9 a structural schematic diagram of the base device shown from another perspective;

[0035] Figure 11 is Figure 10 a schematic diagram of the base device shown along the A-A perspective;

[0036] Figure 12 For Figure 11 An enlarged schematic view of position B in

[0037] Description of the reference numerals in the drawings

[0038] 10. Base device; 11. Base; 111. Bottom wall; 1111. First bottom wall; 1112. Second bottom wall; 1113. Mounting structure; 1113a. First support surface; 1114. Positioning protrusion; 1113b. Avoidance hole; 1113c. Liquid collecting groove; 12. Adapter; 121. Ring structure; 1211. First support portion; 1211a. Positioning hole; 1211b. Second connection hole; 1212. Second support portion; 1212a. Second support surface; 1212b. First connection hole; 122. Extension structure; 1221. Plate portion; 1222. Side wall portion; 122a. Through hole; 13. Compressor; 131. Compressor main body; 132. Connecting ear

[0039] 20. First cylinder assembly; 21. First laundry treatment chamber; 30. Second cylinder assembly; 31. Second laundry treatment chamber; 40. Frame Detailed implementation manners

[0040] In the description of the embodiments of the present application, it should be noted that the orientation or positional relationship indicated by the terms "height direction", "upper", "lower", "top", "bottom", "left", "right", "front", "rear", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the embodiments of the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the embodiments of the present application

[0041] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and limited, the terms "mounted", "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations

[0042] The embodiment of the present application provides a base device 10

[0043] It should be noted that the application scenario of the base device 10 is not limited. In the embodiments of the present application, the base device 10 is described by taking the application to a laundry treatment device as an example

[0044] The embodiment of the present application also provides a laundry treatment device. Please refer toFigure 1 and Figure 2 The laundry treatment device includes a first cylinder assembly 20 and the base device 10 of any embodiment of the present application.

[0045] It can be understood that the specific form of the laundry treatment device is not limited. Exemplarily, the laundry treatment device can at least be used for drying clothes.

[0046] Please refer to Figures 3 to 12 , the base device 10 includes a base 11, a compressor 13 and a liquid collection tank 1113c.

[0047] The base 11 has an air duct, and the air duct is used to communicate with the laundry treatment chamber of the laundry treatment device.

[0048] Specifically, the air duct is used for the air flow to circulate, and the air flow can circulate between the air duct and the laundry treatment chamber to dry the clothes.

[0049] Exemplarily, please refer to Figure 1 , the first cylinder assembly 20 has a first laundry treatment chamber 21.

[0050] The air duct communicates with the first laundry treatment chamber 21. That is to say, the air flow can circulate between the air duct and the first laundry treatment chamber 21.

[0051] The drying process and principle of the laundry treatment device in the embodiments of the present application will be briefly described below.

[0052] When the laundry treatment device performs a drying operation on the clothes, the dry hot air flow enters the first laundry treatment chamber 21 from the air duct, flows through the surface of the wet clothes, performs heat and moisture exchange with the wet clothes, absorbs the moisture in the clothes, becomes a hot and humid air flow, and the hot and humid air flow leaves the first laundry treatment chamber 21 and enters the air duct. After condensation and dehumidification, it forms a low-temperature dry air flow, and then after heating, it forms a dry hot air flow, and the dry hot air flow enters the first laundry treatment chamber 21 again. In this way, it runs in a cycle to achieve continuous and efficient drying of the clothes.

[0053] It should be noted that the low-temperature dry air flow is relative to the hot and humid air flow, and the temperature of the low-temperature dry air flow is lower than that of the hot and humid air flow. The low temperature in the embodiments of the present application can be room temperature.

[0054] Exemplarily, the base device 10 further includes a heat exchange component, and the heat exchange component is used for heat exchange with the air flow.

[0055] Exemplarily, the heat exchange component includes an evaporator and a condenser. The evaporator and the condenser are arranged in the air duct. The evaporator is arranged upstream of the condenser along the air flow direction. The evaporator condenses and dehumidifies the air flow, and the condenser heats the air flow.

[0056] The compressor 13 is used to compress the refrigerant. The compressor 13 has a suction port and a discharge port. The compressor 13 sucks in the refrigerant at a lower temperature and lower pressure from the suction port, compresses the refrigerant by driving a piston through the operation of an electric motor, and outputs the heated and pressurized refrigerant from the discharge port.

[0057] It can be understood that the refrigerant, also known as the refrigerant medium or refrigerant fluid, is a medium substance used to complete the heat exchange cycle.

[0058] Exemplarily, the compressor 13, the evaporator and the condenser are connected through a refrigerant circulation pipeline. The suction port of the compressor 13 is communicated with the outlet of the evaporator, and the discharge port of the compressor 13 is communicated with the inlet of the condenser. In this way, a refrigerant circulation loop is formed; after the compressor 13 compresses the refrigerant, the refrigerant enters the condenser, the condenser cools the refrigerant, the evaporator heats the refrigerant, and the heated refrigerant enters the compressor 13 again, and so on in a cycle.

[0059] The drying process and principle of the laundry treatment device are as follows: The compressor 13 sucks in the low-pressure gaseous refrigerant, compresses it and discharges it as high-pressure gas. The discharged high-pressure gaseous refrigerant enters the condenser, and the refrigerant is cooled by the air flow around the condenser and condenses into a high-pressure liquid (while transferring heat to the surrounding air). That is to say, the air flow around the condenser will be heated and raised in temperature to form a drying hot air flow into the first laundry treatment chamber 21; after the high-pressure liquid refrigerant flows through the throttling device to throttle and decompress, it becomes a low-temperature and low-pressure gas-liquid two-phase mixture. The gas-liquid two-phase mixture enters the evaporator, and the liquid refrigerant in it evaporates and cools in the evaporator (while absorbing the heat in the surrounding air). That is to say, the air flow around the evaporator will be cooled and lowered in temperature to form a low-temperature drying air flow. The low-pressure gaseous refrigerant is sucked into the compressor 13 again for pressurization, and so on in a cycle, continuously circulating to realize the heat exchange and achieve the continuous and efficient drying of the laundry.

[0060] Please refer to Figure 3 and Figure 5 , the base 11 includes a bottom wall 111, and the compressor 13 is arranged on the bottom wall 111; a liquid collecting tank 1113c is arranged on the bottom side of the compressor 13 for receiving and storing liquid.

[0061] It should be noted that the liquid collecting tank 1113c refers to a structure that can collect and store liquid.

[0062] It should be noted that the liquid refers to the liquid generated by its own components during the operation of the base device 10 or transferred from other components of the laundry treatment device during operation to the base device 10. The liquid can be condensate.

[0063] Exemplarily, taking a compressor as an example, during the operation of the compressor, condensate will be generated on its surface. Specifically, during the operation of the compressor, when the high-temperature and high-pressure refrigerant discharged by the compressor contacts low-temperature surfaces such as pipes connected to the condenser, it will condense into water droplets to form condensate. Or, when certain functional failures occur in the heat pump system, condensate may also appear on the surface of the compressor.

[0064] Of course, the condensate generated by other components of the laundry treatment device during operation can be transferred to the base device under the drive of the air flow.

[0065] In the related art, the condensate generated during the operation of the base device or other components of the laundry treatment device flows wantonly on the surface of the base, which is likely to affect other components.

[0066] In this embodiment, the liquid collecting tank 1113c is arranged at the bottom side of the compressor 13. The condensate generated by other components of the laundry treatment device during operation contacts the compressor 13 under the drive of the air flow and adheres to the compressor. Thus, the condensate generated by the compressor 13 itself or other components of the laundry treatment device can flow downward along the surface of the compressor 13 and be received and stored by the liquid collecting tank 1113c, reducing the probability of safety hazards caused by the accumulation of condensate in the base 11 or flowing to other components of the laundry treatment device.

[0067] It should be noted that the amount of condensate flowing through the compressor 13 to the liquid collecting tank 1113c is relatively small, and the condensate accumulated in the liquid collecting tank 1113c can be eliminated by natural evaporation. Therefore, the liquid collecting tank 1113c may not need to be provided with a condensate discharge port. Of course, in other embodiments, the liquid collecting tank 1113c may also be provided with a condensate discharge port to discharge the condensate through the condensate discharge port.

[0068] For the base device 10 provided in the embodiment of the present application, the arrangement of the liquid collecting tank 1113c can effectively collect the condensate generated during the operation of the base device 10 or other components of the laundry treatment device, reduce the influence on the operation of the compressor 13 and other components inside the laundry treatment device, and improve the overall performance of the base device 10; the liquid collecting tank 1113c is arranged at the bottom side of the compressor 13. After the condensate generated by the compressor 13 itself during operation or the condensate generated by other components flows downward along the surface of the compressor 13, it can be received by the liquid collecting tank 1113c, improving the convenience of collecting the condensate. At the same time, it also shortens the flow path of the condensate and increases the layout compactness of the base device 10.

[0069] In some embodiments, please refer to Figure 1 , the laundry treatment device includes a box body, a second cylinder assembly 30, and a rack 40 arranged inside the box body.

[0070] The rack 40 is the main support structure for the fixed installation and support of other components of the laundry treatment device.

[0071] The base device 10 is arranged on the rack 40, and the base device 10 and its load transfer the acting force to the rack 40.

[0072] Exemplarily, in some embodiments, the rack 40 includes at least four columns, and the four columns extend along the height direction respectively. In the horizontal plane projection, the four columns are distributed at the four vertices of a quadrilateral.

[0073] In the embodiments of the present application, the height direction is Figure 1 the direction shown in, which includes both the direction from top to bottom and the direction from bottom to top.

[0074] Exemplarily, the base device 10 can be respectively connected to the above four columns. The base device 10 is located within the area defined by the four columns.

[0075] The base device 10 at least divides the space inside the box along the height direction into a first space and a second space. The first cylinder assembly 20 is arranged in the first space, and the second cylinder assembly 30 is arranged in the second space.

[0076] In some embodiments, the first laundry treatment chamber 21 can at least dry the laundry. The second cylinder assembly 30 has a second laundry treatment chamber 31, and the second laundry treatment chamber 31 can at least wash the laundry.

[0077] In some embodiments, the first space is above the second space, that is, the position of the first cylinder assembly 20 is higher than the position of the second cylinder assembly 30.

[0078] In other embodiments, the position of the second cylinder assembly 30 is higher than the position of the first cylinder assembly 20.

[0079] It should be noted that the formation method of the liquid collecting tank 1113c is not limited. The liquid collecting tank 1113c can be formed on the bottom wall 111, or can be formed on the structure between the bottom wall 111 and the compressor 13, as long as it is located on the bottom side of the compressor 13, and no limitation is made here.

[0080] Exemplarily, in some embodiments, please refer to Figure 5 and Figure 9 , the bottom wall 111 is formed with a liquid collecting tank 1113c.

[0081] In this embodiment, the liquid collecting groove 1113c is formed on the bottom wall 111. That is to say, the condensate adhering to the surface of the compressor 13 can be received by the liquid collecting groove 1113c formed by the bottom wall 111, which improves the operating safety of the compressor 13 and reduces the impact on other devices within the base device 10 or other components of the laundry treatment device. At the same time, since the liquid collecting groove 1113c is formed on the bottom wall 111, it does not occupy additional space, enabling the structure of the base device 10 to be more compact. Additionally, since the liquid collecting groove 1113c is formed on the base 11, the size and volume of the liquid collecting groove 1113c can be relatively large, facilitating better collection of the condensate.

[0082] The manner in which the liquid collecting groove 1113c is formed on the bottom wall 111 is not limited.

[0083] In some embodiments, please refer to Figure 5 , and a part of the structure of the bottom wall 111 is recessed downward to form the liquid collecting groove 1113c.

[0084] In this embodiment, the design of the recessed liquid collecting groove 1113c facilitates the natural convergence of the condensate at the lowest point of the liquid collecting groove 1113c, reducing the flow resistance. Moreover, it is not necessary to increase the overall size of the base 11, enhancing the layout compactness of the base device 10.

[0085] In some embodiments, please refer to FIGS. 3 and Figure 5 , the base device 10 includes an adapter 12. The adapter 12 is connected to the bottom wall 111, and the compressor 13 is connected to the adapter 12.

[0086] Specifically, the adapter 12 can connect the compressor 13 and the base 11. That is, the compressor 13 is not directly connected to the base 11. Thus, it is beneficial to reduce the probability that the vibration of the compressor 13 is directly transmitted to the base 11 and affects the working stability of the base device 10.

[0087] Exemplarily, the compressor 13 is disposed on the top side of the adapter 12.

[0088] In some embodiments, please refer to Figure 3 , the compressor 13 includes a compressor main body 131 and a connecting ear 132 protruding from the circumferential outer side of the compressor main body 131. The connecting ear 132 is connected to the adapter 12, and the compressor main body 131 is spaced apart from the adapter 12, such that the compressor main body 131 is in a suspended state.

[0089] Specifically, the compressor main body 131 can be used to implement the compression function of the compressor 13 to compress the refrigerant, and the connecting ear 132 is used to implement the connection function to connect the compressor 13 and the adapter 12 together.

[0090] In this embodiment, the connection between the compressor 13 and the adapter 12 is realized through the connection of the connecting ear 132 and the adapter 12. The connection is simple and convenient for disassembly. Moreover, the vibration generated by the compressor main body 131 during operation can be transmitted to the adapter 12 through the connecting ear 132, which facilitates the adapter 12 to carry the compressor 13 and absorb part of the vibration, thereby increasing the operating stability of the base device 10.

[0091] The number of the connecting ears 132 can be one or more. Exemplarily, the number of the connecting ears 132 is multiple. The multiple connecting ears 132 can facilitate the even distribution of the weight of the compressor main body 131 and the vibration generated during operation, and increase the installation stability of the compressor 13.

[0092] It should be noted that the compressor main body 131 and the adapter 12 are arranged at intervals, which means that the compressor main body 131 and the adapter 12 do not contact each other, so that the compressor main body 131 is in a suspended state, and the compressor main body 131 is supported by the connecting ears 132. Exemplarily, the bottom end of the compressor main body 131 is arranged at intervals from the adapter 12.

[0093] In this embodiment, the compressor main body 131 is in a suspended state, and the space between the compressor main body 131 and the adapter 12 can facilitate the air flow, so as to dissipate the heat of the compressor 13. At the same time, the space between the compressor main body 131 and the adapter 12 can also provide a flow space for the condensate flowing downward from the surface of the compressor main body 131, which is convenient for the condensate to flow to the liquid collecting tank 1113c below.

[0094] In the embodiment provided with the adapter 12, the liquid collecting tank 1113c can be arranged on the adapter 12 or on the bottom wall 111. In the embodiment where the liquid collecting tank 1113c is formed on the bottom wall 111, the adapter 12 can be capable of receiving the condensate and guiding the condensate to the liquid collecting tank 1113c; the adapter 12 can also only play a role of connection and support, that is, the condensate flowing downward from the surface of the compressor 13 directly flows to the liquid collecting tank 1113c without being received and guided by the adapter 12.

[0095] Exemplarily, in some embodiments, the adapter 12 is formed with the liquid collecting tank 1113c.

[0096] That is to say, in this embodiment, the liquid collecting tank 1113c is formed by the self-structure of the adapter 12. In this way, the condensate adhering to the surface of the compressor 13 can directly flow downward to the liquid collecting tank 1113c formed by the adapter 12, and the flow path of the condensate is short, which is convenient for increasing the liquid collecting efficiency.

[0097] In this embodiment, the adapter 12 not only realizes the connection between the compressor 13 and the bottom wall 111, but also can hold and store the condensate flowing downward from the surface of the compressor 13, which can make the structure of the base device 10 simpler and eliminate the need for an additional liquid collection structure.

[0098] In an embodiment where the compressor body 131 is in a suspended state, the space between the bottom end of the compressor body 131 and the adapter 12 facilitates the flow of condensate, and reduces the probability of the condensate accumulated in the liquid collection groove 1113c formed by the adapter 12 contacting the compressor body 131, thereby increasing the working reliability of the compressor 13.

[0099] Of course, in some other embodiments, the compressor body 131 may not be in a suspended state, that is, the bottom end of the compressor body 131 contacts the adapter 12.

[0100] In some embodiments, please refer to Figure 5 , the bottom wall 111 is formed with a liquid collection groove 1113c, and the adapter 12 is provided with a through hole 122a communicating with the liquid collection groove 1113c. The adapter 12 can hold liquid. Specifically, it holds the condensate flowing downward from the surface of the compressor 13 and guides the held condensate to the liquid collection groove 1113c through the through hole 122a.

[0101] Specifically, the compressor 13 is disposed on the top side of the adapter 12. The condensate flowing downward from its surface can be received by the adapter 12 and communicated with the liquid collection groove 1113c on the bottom wall 111 through the through hole 122a, and the condensate is collected in the liquid collection groove 1113c.

[0102] In this embodiment, the adapter 12 can provide a guiding and flowing path for the condensate, so as to guide the condensate flowing downward from the surface of the compressor 13 to the liquid collection groove 1113c of the bottom wall 111. A liquid collection groove 1113c is formed on the bottom wall 111, and the size and volume of the liquid collection groove 1113c can be relatively large, and the processing requirements for the adapter 12 can also be reduced.

[0103] Exemplarily, the adapter 12 can be an integrally formed metal part to provide connection support for the compressor 13 with sufficient structural strength.

[0104] The specific structure of the adapter 12 is not limited.

[0105] In some embodiments, please refer to Figure 5 and Figure 7 , the adapter 12 includes a plurality of first support portions 1211 and at least one second support portion 1212. The bottom wall 111 has a plurality of mounting structures 1113, and the mounting structures 1113 have a first support surface 1113a. The first support portions 1211 are connected to the first support surface 1113a, and the connecting ear 132 is connected to the second support portion 1212.

[0106] It should be noted that the first support surface 1113a means that when the mounting structure 1113 is docked with the adapter 12, it contacts the adapter 12 through the first support surface 1113a and provides mounting support for the adapter 12.

[0107] Specifically, the first support portion 1211 is connected to the first support surface 1113a, thereby realizing the connection between the adapter 12 and the bottom wall 111. The mounting structure 1113 can provide support for the first support portion 1211, and further provide support for the adapter 12.

[0108] The connecting ear 132 is connected to the second support portion 1212 to realize the connection between the compressor 13 and the adapter 12. The weight of the compressor 13 is transmitted to the second support portion 1212 through the connecting ear 132, and then transmitted to the first support portion 1211. The first support portion 1211 is then transmitted to the first support surface 1113a. Thus, without directly contacting the compressor 13, the bottom wall 111 disperses the pressure of the adapter 12, bears the compressor 13, increases the docking stability of the compressor 13, the adapter 12, and the bottom wall 111, and increases the overall structural stability of the base device 10.

[0109] The number of the mounting structures 1113 can be two, or three or more, which is not limited herein.

[0110] Exemplarily, please refer to Figure 6 、 Figures 9 to 12 , the first support surfaces 1113a of at least two mounting structures 1113 are not coplanar. When providing support for the adapter 12 and the compressor 13, it can also reduce the structural limitations of the area of the base 11 corresponding to the installation of the compressor 13, reduce the manufacturing difficulty of the base 11, and can adapt to the height difference between the mounting structures 1113 through the adapter 12, increasing the design flexibility of the base 11.

[0111] In some embodiments, please refer to Figure 7 , the number of the second support portions 1212 is multiple. The second support portion 1212 has a second support surface 1212a for connecting with the compressor 13, and the second support surfaces 1212a of the second support portions 1212 are arranged coplanarly.

[0112] Specifically, the weight of the compressor 13 is transmitted to the second support portion 1212 through the second support surface 1212a, and then transmitted to the first support portion 1211, and then transmitted to the bottom wall 111.

[0113] It should be noted that the second support surfaces 1212a of the second support portions 1212 are arranged coplanarly, which means that the second support surfaces 1212a are located on the same plane.

[0114] That is to say, the connection positions between the connecting ears 132 and the second supporting part 1212 are arranged in the same plane. In this way, it is convenient to make the connection positions between the compressor 13 and the second supporting part 1212 lie on the same plane, increasing the installation stability of the compressor 13. Moreover, when it is necessary to adjust the installation positions of the adapter 12 and the compressor 13, the adjustment can be carried out in the same plane without complex three-dimensional space adjustment.

[0115] In some embodiments, please refer to Figure 6 and Figure 7 , the position of the second supporting surface 1212a is lower than any one of the first supporting surfaces 1113a.

[0116] It can be understood that the position of the second supporting surface 1212a being lower than any one of the first supporting surfaces 1113a means that in the height direction of the base device 10, the second supporting surface 1212a is located at the bottom side position of any one of the first supporting surfaces 1113a, that is, there is a height difference between the first supporting surface 1113a and the second supporting surface 1212a.

[0117] In this embodiment, the design of the height difference between the second supporting surface 1212a and the first supporting surface 1113a is convenient for increasing the structural strength of the adapter 12. Moreover, the compressor 13 is connected to the second supporting surface 1212a, which is convenient for installing the compressor 13 at a lower position. The second supporting surface 1212a and the first supporting surface 1113a can disperse and bear the weight of the compressor 13, and it is beneficial to reduce the overall center of gravity of the base device 10 and increase the structural stability of the base device 10.

[0118] In some embodiments, please refer to Figure 6 , any part of the second supporting part 1212 is spaced from the bottom wall 111 so that the second supporting part 1212 is in a suspended state.

[0119] It should be noted that any part of the second supporting part 1212 being spaced from the bottom wall 111 means that any part of the second supporting part 1212 does not contact the bottom wall 111. In this way, the second supporting part 1212 is in a suspended state.

[0120] It can be understood that when the compressor 13 vibrates, the second supporting part 1212 will have a certain amplitude, but the suspended second supporting part 1212 does not contact the bottom wall 111. Therefore, the second supporting part 1212 hardly impacts the bottom wall 111, increasing the running stability of the base device 10.

[0121] In this embodiment, the second support portion 1212 disposed in a suspended manner can effectively isolate the connection position between the compressor 13 and the second support portion 1212 from the bottom wall 111, thereby reducing the vibration transmitted from the compressor 13 to the bottom wall 111, reducing noise transmission, and increasing the operating stability of the base device 10.

[0122] In some embodiments, please refer to Figure 5 , a plurality of first support portions 1211 and at least one second support portion 1212 are connected to form an annular structure 121, and the annular structure 121 surrounds the outer periphery of the compressor body 131.

[0123] In this embodiment, the annular structure 121 can surround the outer periphery of the compressor body 131 to form a continuous support structure. The weight of the compressor body 131 can be transmitted to the first support portion 1211 through the second support portion 1212, and then transmitted to the bottom wall 111 to effectively support the compressor 13, reduce the excessive burden on a single support point, and increase the load-bearing stability. Moreover, the annular structure 121 has high structural strength, can also adapt to the shape of the compressor 13, increase the layout compactness, and facilitate docking with the compressor 13 in a smaller space.

[0124] In some embodiments, please refer to Figure 3 , Figure 5 and Figure 7 , each first support portion 1211 and each second support portion 1212 are alternately arranged in sequence along the circumferential direction of the annular structure 121. The number of connecting ears 132 is multiple, and at least one first support portion 1211 is provided between two adjacent connecting ears 132.

[0125] It should be noted that each first support portion 1211 and each second support portion 1212 are alternately arranged in sequence along the circumferential direction of the annular structure 121, which means that along the circumferential direction of the annular structure 121, the adjacent two sides of any one first support portion 1211 are provided with second support portions 1212, and the adjacent two sides of any two second support portions 1212 are provided with first support portions 1211.

[0126] Exemplarily, please refer to Figure 7 , the number of the first support portions 1211 is three, and the number of the second support portions 1212 is three.

[0127] In this embodiment, the alternating layout of the first support portion 1211 and the second support portion 1212 can distribute the weight of the compressor 13 more evenly, balance the pressures on the first support portion 1211 and the second support portion 1212, and improve the overall load-bearing stability. Moreover, a first support portion 1211 is provided between two adjacent connecting lugs 132, and the first support portion 1211 is not connected to the connecting lug 132. The first support portion 1211 can serve as a buffer zone to absorb and disperse the vibrations generated during the operation of the compressor 13 and reduce noise.

[0128] In some embodiments, please refer to Figure 5 and Figure 7 , the adapter 12 includes an extension structure 122. The extension structure 122 includes a plate portion 1221 and a side wall portion 1222. The side wall portion 1222 is disposed around the edge of the plate portion 1221. The top end portion of the side wall portion 1222 is higher than the top surface of the plate portion 1221, and the top end portion of the side wall portion 1222 is connected to the radially inner edge of the annular structure 121.

[0129] In this embodiment, the arrangement of the side wall portion 1222 and the plate portion 1221 can increase the structural strength of the adapter 12. The top end portion of the side wall portion 1222 is higher than the top surface of the plate portion 1221, and the height difference between the side wall portion 1222 and the plate portion 1221 can also play a guiding role. The condensate flowing downward from the surface of the compressor 13 can be guided to the plate portion 1221 through the side wall portion 1222, reducing the probability of the condensate corroding the connection position between the adapter 12 and the compressor 13 or the connection position between the adapter 12 and the bottom wall 111.

[0130] In an embodiment where the compressor main body 131 is in a suspended state, the compressor main body 131 and the plate portion 1221 are spaced apart along the height direction of the base device 10, that is, the compressor main body 131 does not contact the plate portion 1221. At this time, the overall weight of the compressor 13 is transmitted to the second support portion 1212 through the connecting lug 132, and then transmitted to the first support portion 1211 and the plate portion 1221. The plate portion 1221 can increase the structural strength of the adapter 12. The plate portion 1221 is spaced apart from the compressor main body 131. On the one hand, it is convenient to dissipate heat from the compressor main body 131, reduce the contact area between the compressor 13 and the adapter 12, and reduce vibration transmission. On the other hand, the condensate adhering to the surface of the compressor 13 is guided to the plate portion 1221 through the side wall portion 1222, and the plate portion 1221 can receive the condensate or guide the condensate to other structures for receiving the condensate. For example, when a liquid collecting groove 1113c is formed on the bottom wall 111, the condensate is guided to the liquid collecting groove 1113c.

[0131] It can be understood that in an embodiment where the adapter 12 forms a liquid collecting groove 1113c, the extension structure 122 defines the liquid collecting groove 1113c, and the plate portion 1221 receives and stores the condensate.

[0132] In an embodiment where the adapter 12 is formed with a through hole 122a and the bottom wall 111 is formed with a liquid collecting groove 1113c, the through hole 122a is disposed on the plate portion 1221. The plate portion 1221 receives the condensed liquid and guides the condensed liquid through the through hole 122a to the liquid collecting groove 1113c.

[0133] Exemplarily, in some embodiments, refer to Figure 5 , a partial structure of the bottom wall 111 is recessed downward to form the liquid collecting groove 1113c. The extending structure 122 is located on the top side of the liquid collecting groove 1113c. The extending structure 122 has a through hole 122a communicating with the liquid collecting groove 1113c. The extending structure 122 can receive the liquid. Specifically, it receives the condensed liquid flowing downward from the surface of the compressor 13 and guides the received condensed liquid through the through hole 122a to the liquid collecting groove 1113c.

[0134] In this embodiment, the liquid collecting groove 1113c is located on the bottom side of the extending structure 122. The condensed liquid received by the extending structure 122 can flow downward through the through hole 122a to the liquid collecting groove 1113c, so as to increase the liquid collecting reliability.

[0135] It can be understood that the connection manners of the adapter 12 to the compressor 13 and the adapter 12 to the bottom wall 111 are not limited.

[0136] In some embodiments, the base device 10 includes one or more first connecting members, and the first connecting member connects the connecting ear 132 and the second supporting portion 1212.

[0137] In this embodiment, the connection between the connecting ear 132 and the second supporting portion 1212 is realized through the first connecting member, so as to realize the connection between the compressor 13 and the adapter 12, which is convenient for increasing the connection stability between the compressor 13 and the adapter 12.

[0138] Exemplarily, refer to Figures 3 to 7 , the second supporting portion 1212 is provided with a first connection hole 1212b, and the first connecting member passes through the connecting ear 132 and the first connection hole 1212b to realize the connection between the connecting ear 132 and the second supporting portion 1212.

[0139] The specific structure of the first connecting member is not limited. Exemplarily, the first connecting member can be a screw, or a combination of a bolt and a nut.

[0140] In some embodiments, the base device 10 includes a vibration damping member. The vibration damping member is clamped between the connecting ear 132 and the second supporting portion 1212, and the first connecting member passes through the second supporting portion 1212, the vibration damping member and the connecting ear 132 along the height direction of the base device 10.

[0141] It should be noted that the vibration damping component refers to a component whose material itself has a vibration damping effect, for example, it is made of rubber, silicone, felt and other materials.

[0142] Specifically, the vibration damper isolates the connecting ear 132 and the second support part 1212, and the vibration damper is located on the force transmission path of the connecting ear 132 and the second support part 1212. Specifically, at least part of the gravity of the compressor body 131 is transmitted to the vibration damper through the connecting ear 132, and the vibration damper transmits the gravity and vibration it receives to the second support part 1212. Part of the vibration generated by the compressor body 131 is absorbed by the vibration damper, which can reduce the vibration and noise transmitted to the second support part 1212.

[0143] In this embodiment, the vibration damper can absorb and disperse the vibration energy generated by the operation of the compressor 13, reduce the noise generated by the operation of the compressor 13, and the vibration damper can also reduce the mechanical stress at the connection point between the connecting ear 132 and the second support part 1212, thereby increasing the connection reliability.

[0144] In the embodiment where the compressor body 131 is in a suspended state, the cooperation between the vibration damping member and the first connecting member can not only increase the vibration reduction reliability, but also increase the overall installation stability of the compressor 13 and reduce the displacement or shaking of the compressor 13 caused by vibration.

[0145] For some examples, see Figure 5 and Figure 6 In an embodiment where the second support portion 1212 is in a suspended state, the bottom wall 111 is provided with an avoidance hole 1113b, and in the orthographic projection of a plane perpendicular to the height direction of the base device 10, the first connecting member is located within the projection range of the avoidance hole 1113b.

[0146] It can be understood that the first connecting member is located within the projection range of the avoidance hole 1113b. It can be that the first connecting member does not pass through the avoidance hole 1113b, but the projection range of the first connecting member is located within the avoidance hole 1113b; it can also be that the first connecting member passes through the avoidance hole 1113b, and the projection range of the first connecting member is located within the avoidance hole 1113b; but in both cases, the first connecting member does not contact the hole wall of the avoidance hole 1113b, that is, it does not contact the bottom wall 111.

[0147] In this embodiment, the design of the avoidance hole 1113b can, on the one hand, reduce the probability of the first connecting member interfering with the bottom wall 111 when connecting the connecting ear 132 and the second support portion 1212. On the other hand, it can also prevent the first connecting member from contacting the bottom wall 111, thereby reducing the probability of the vibration of the compressor 13 being transmitted to the bottom wall 111 through the first connecting member, thereby increasing the overall stability of the base device 10.

[0148] The manner in which the first connecting member connects the connecting ear 132 and the second supporting portion 1212 is not limited.

[0149] Exemplarily, the first connecting member can pass through the connecting ear 132 and the first connecting hole 1212b from top to bottom to connect the connecting ear 132 with the second supporting portion 1212. At this time, the bottom end of the first connecting member can be disposed through the avoiding hole 1113b or can be located between the avoiding hole 1113b and the first connecting hole 1212b.

[0150] In some other embodiments, the first connecting member can pass through the avoiding hole 1113b, the first connecting hole 1212b, and the connecting ear 132 from bottom to top to connect the connecting ear 132 with the second supporting portion 1212. At this time, the avoiding hole 1113b provides a passing space for the first connecting member and enables the first connecting member not to contact the bottom wall 111.

[0151] In some embodiments, the base device 10 includes one or more second connecting members, and the second connecting members connect the first supporting portion 1211 and the first supporting surface 1113a.

[0152] Exemplarily, the first supporting portion 1211 is provided with one or more second connecting holes 1211b, and the second connecting members pass through the second connecting holes 1211b and the first supporting surface 1113a to connect the first supporting portion 1211 with the first supporting surface 1113a, thereby realizing the connection between the adapter 12 and the bottom wall 111.

[0153] In this embodiment, the second connecting members connect the first supporting portion 1211 and the first supporting surface 1113a, which can increase the connection stability between the adapter 12 and the bottom wall 111, and further facilitate the stable installation of the compressor 13 and increase the overall structural stability of the base device 10.

[0154] The specific structure of the second connecting member is not limited. Exemplarily, the second connecting member can be a screw.

[0155] It can be understood that during the installation process of the compressor 13, the adapter 12, and the bottom wall 111, it can be that the adapter 12 and the compressor 13 are first assembled into a pre-assembled whole through the first connecting member, and then the pre-assembled whole is placed on the bottom wall 111, and the bottom wall 111 and the adapter 12 are connected through the second connecting member, thereby realizing the assembly of the three. It can also be that the adapter 12 is first placed on the bottom wall 111, the bottom wall 111 and the adapter 12 are connected through the second connecting member, and then the compressor 13 is placed on the top side of the adapter 12, and the connecting ear 132 and the second supporting portion 1212 are connected through the first connecting member to connect the compressor 13 and the adapter 12, so as to realize the assembly of the three.

[0156] In some embodiments, please refer to Figure 3 、Figure 5 and Figure 6 At least one mounting structure 1113 includes a positioning projection 1114 that protrudes from the first support surface 1113a. The first support portion 1211 is provided with a positioning hole 1211a, and the positioning projection 1114 passes through the positioning hole 1211a.

[0157] In this embodiment, the cooperation between the positioning projection 1114 and the positioning hole 1211a facilitates the precise positioning between the first support portion 1211 and the mounting structure 1113, reduces the mounting deviation. Moreover, since the positioning projection 1114 passes through the positioning hole 1211a, it can also limit the movement of the first support portion 1211 and increase the connection stability. At the same time, there is no need to manually align the first support portion 1211 and the mounting structure 1113, and the assembly is fast and accurate.

[0158] In some embodiments, please refer to Figure 8 , the bottom wall 111 includes a first bottom wall 1111 and a second bottom wall 1112. The first bottom wall 1111 forms the bottom wall of the air duct. The second bottom wall 1112 is disposed on one side of the first bottom wall 1111 along the first direction. The first bottom wall 1111 is in a flat plate shape, and the position of the second bottom wall 1112 is lower than that of the first bottom wall 1111. The compressor 13 is disposed above the second bottom wall 1112, wherein the first direction intersects with the height direction of the base device 10.

[0159] In this embodiment, the compressor 13 is disposed outside the air duct, which facilitates the air circulation around the compressor 13, enhances the heat dissipation effect, and reduces the influence of the heat generated by the compressor 13 on the heat exchange components in the air duct. At the same time, it is also convenient to disassemble, install and repair the compressor 13 without affecting the structure of the air duct.

[0160] The first bottom wall 1111 is in a flat plate shape, which can facilitate the installation of the heat exchange components in the air duct, facilitate the heat exchange components to be in a horizontal installation state, and increase the operation stability of the heat exchange components.

[0161] The position of the second bottom wall 1112 is lower than that of the first bottom wall 1111, which can form a stepped structure, facilitate the installation of the compressor 13 at a lower position, reduce the overall center of gravity of the base device 10, and also facilitate the installation and maintenance of the compressor 13, making the layout of the base device 10 more compact. In addition, it is also convenient to form an avoidance space below the first bottom wall 1111. The avoidance space is used to avoid part of the structure of the second cylinder assembly 30, which is beneficial to making the structure of the laundry treatment device compact and reducing the height of the laundry treatment device.

[0162] It can be understood that the first direction can be any direction. For example, the first direction can be the left-right direction or the front-back direction, and no limitation is made here.

[0163] In the description of the present application, the descriptions referring to terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples", etc., mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the embodiments of the present application. In the present application, the schematic expressions of the above terms are not necessarily directed to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, without contradiction, those skilled in the art can combine the different embodiments or examples described in the present application and the features of different embodiments or examples.

[0164] The above are only the preferred embodiments of the present application and are not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A base device for a laundry treatment apparatus, characterized in that, Comprising: A base having an air duct for communicating with a laundry processing chamber of a laundry processing device, the base including a bottom wall; A compressor disposed on the bottom wall; A liquid collecting tank disposed on the bottom side of the compressor for receiving and storing liquid.

2. The base device according to claim 1, wherein The liquid collecting tank is formed on the bottom wall.

3. The base device according to claim 2, wherein, A partial structure of the bottom wall is recessed downward to form the liquid collecting tank.

4. The base device according to claim 1, characterized in that, The base device includes an adapter connected to the bottom wall, and the compressor is connected to the adapter.

5. The base device according to claim 4, characterized in that, The compressor includes a compressor body and connecting ears protruding from the circumferential outer side of the compressor body, the connecting ears are connected to the adapter, and the compressor body is spaced from the adapter so that the compressor body is in a suspended state.

6. The base device according to claim 4, characterized in that The liquid collecting tank is formed on the adapter.

7. The base device according to claim 4, characterized in that, The liquid collecting tank is formed on the bottom wall, the adapter is provided with a through hole communicating with the liquid collecting tank, and the adapter can receive liquid and guide the received liquid to the liquid collecting tank through the through hole.

8. The base device according to claim 4, characterized in that, The adapter includes a plurality of first support portions and at least one second support portion, the bottom wall has a plurality of mounting structures with first support surfaces, the first support portions are connected to the first support surfaces, the compressor includes a compressor body and connecting ears protruding from the circumferential outer side of the compressor body, and the connecting ears are connected to the second support portions.

9. The base device according to claim 8, characterized in that, The plurality of first support portions and at least one second support portion are connected to form an annular structure surrounding the outer circumference of the compressor body.

10. The base device according to claim 9, characterized in that, The adapter includes an extension structure including a plate portion and a side wall portion, the side wall portion is disposed around the edge of the plate portion, the top end portion of the side wall portion is higher than the top surface of the plate portion, and the top end portion of the side wall portion is connected to the radially inner edge of the annular structure.

11. The base device according to claim 10, characterized in that, A partial structure of the bottom wall is recessed downward to form the liquid collecting tank, the extension structure is located on the top side of the liquid collecting tank, the extension structure has a through hole communicating with the liquid collecting tank, and the extension structure can receive liquid and guide the received liquid to the liquid collecting tank through the through hole.

12. A laundry treatment device, characterized in that, Comprising: A first cylinder assembly having a first laundry processing chamber; A second cylinder assembly; A box body and a frame, the frame is disposed inside the box body; And the base device according to any one of claims 1-11, the air duct communicates with the first laundry processing chamber, the base device is disposed on the frame, the base device at least divides the space inside the box body into a first space and a second space, the first cylinder assembly is disposed in the first space, and the second cylinder assembly is disposed in the second space.