Base device and clothes processing equipment

The bottom seat structure with a transfer piece and non-co-planar support faces addresses the installation challenges of compressors in clothes drying machines, enhancing stability and adaptability while reducing manufacturing complexity and noise.

CN223103318UActive Publication Date: 2025-07-15WUXI MEIZHI ELECTRIC CO LTD
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Patent Information

Application Number
CN202422135819.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-15
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The base of the existing clothing processing equipment is limited in the compressor installation area, which is difficult to manufacture and insufficient installation stability.

Method used

By providing adapters on the base, a compressor is connected to the bottom wall with a plurality of non-coplanar support surfaces to form an annular structure, increasing the installation stability of the compressor, and collecting condensate through the liquid collection tank, reducing the difficulty of manufacturing.

Benefits of technology

It improves the installation stability of the compressor, reduces the difficulty of manufacturing the base, increases the design flexibility of the base, and is suitable for clothing processing equipment of different models and sizes.

✦ 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, an adapter and a compressor, the base is provided with an air duct, and the base comprises a bottom wall; the adapter is connected with the bottom wall, the compressor is arranged on the top side of the adapter and connected with the adapter, the adapter comprises a plurality of first supporting parts, the sides, facing the bottom wall, of the first supporting parts are provided with first supporting faces, and the first supporting faces of at least two first supporting parts are not coplanar. According to the base device provided by the embodiment of the invention, the compressor and the base are connected through the adapter, the adapter and the base jointly support the compressor, the mounting stability of the compressor is improved, and the height difference formed by the at least two non-coplanar first supporting surfaces facilitates the improvement of the structural strength of the adapter, and meanwhile, the mounting stability of the compressor is improved. And the mounting requirement on the base can also be reduced, so that the structural limitation of the base corresponding to the compressor mounting area is reduced, and the design flexibility of the base is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of clothing processing, and in particular to a base device and clothing processing equipment. Background Art

[0002] Taking the clothing processing device as a heat pump dryer or a washer-dryer as an example, the clothing processing device includes a base and a compressor. The base has an air duct, which is connected to the clothing processing chamber of the clothing processing device. The compressor is arranged on the base. The area of the base corresponding to the installation of the compressor is limited by the installation conditions of the compressor, and the manufacturing difficulty is high. Utility Model Content

[0003] In view of this, the embodiments of the present application hope to provide a base device and a clothes processing device, wherein the installation stability of the compressor is high.

[0004] To achieve the above purpose, the technical solution of the embodiment of the present application is implemented as follows:

[0005] The embodiment of the present application provides a base device for a clothes processing device, comprising:

[0006] A base having an air duct, the air duct being used to communicate with a clothes processing chamber of a clothes processing device, the base comprising a bottom wall;

[0007] A transition piece connected to the bottom wall;

[0008] A compressor is disposed on the top side of the adapter and connected to the adapter;

[0009] Wherein, the adapter comprises a plurality of first supporting portions, the first supporting portion has a first supporting surface on a side facing the bottom wall, and the first supporting surfaces of at least two of the first supporting portions are not coplanar.

[0010] In some embodiments, the adapter includes at least one second support portion, the second support portion is connected to the first support portion, the first support portion is connected to the bottom wall, and the second support portion has a second support surface; the compressor is connected to the second support surface, and the first support portion has a first surface on a side facing away from the first support surface;

[0011] Wherein, the position of any one of the first surfaces is higher than the second supporting surface.

[0012] In some embodiments, there are multiple second support portions, and the second support surfaces are coplanar.

[0013] In some embodiments, any portion of the second supporting portion is spaced apart from the bottom wall so that the second supporting portion is in a suspended state.

[0014] In some embodiments, the compressor includes a compressor main body and connecting lugs protruding from the circumferential outer side of the compressor main body, and the connecting lugs connect the compressor main body and the second support portion.

[0015] In some embodiments, the number of the connecting lugs is plural, and the plural connecting lugs support the compressor main body. The bottom end portion of the compressor main body is spaced from the adapter, so that the compressor main body is in a suspended state.

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

[0017] In some embodiments, the number of the second support portions is plural, each of the first support portions and each of the second support portions are alternately arranged in sequence along the circumferential direction of the annular structure, the number of the connecting lugs is plural, and at least one of the first support portions is provided between two adjacent connecting lugs.

[0018] In some embodiments, the adapter includes an extending structure, and the extending structure includes a plate portion and a side surrounding portion. The side surrounding portion is disposed 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 radially inner edge of the annular structure.

[0019] In some embodiments, the bottom wall has a liquid collecting groove, the adapter is provided with a through hole communicating with the liquid collecting groove, and the adapter can receive the condensate of the compressor and guide the received condensate to the liquid collecting groove through the through hole.

[0020] In some embodiments, the base device includes one or more first connectors, and the first connectors connect the connecting lugs and the second support portion.

[0021] In some embodiments, any part of the second support portion is spaced from the bottom wall, so that the second support portion is in a suspended state;

[0022] The bottom wall is provided with an avoidance hole, and in the orthographic projection on a plane perpendicular to the height direction of the base device, the first connector is located within the projection range of the avoidance hole.

[0023] In some embodiments, a partial structure of the bottom wall bulges upward to form an avoidance space on the bottom side of the bottom wall for avoiding the cylinder assembly of the laundry treatment device; the air duct includes a two-device installation area for installing two devices, and the base further includes a power mechanism installation area located outside the air duct. The compressor is arranged in the power mechanism installation area, and the power mechanism installation area is arranged on one side of the two-device installation area along a first direction. The position of the bottom wall of the power mechanism installation area is lower than the bottom wall of the two-device installation area, wherein the first direction intersects with the height direction of the base device.

[0024] In some embodiments, the bottom wall of the two-device installation area is a horizontal plate-like structure; the two devices are supported on the horizontal plate-like structure.

[0025] In some embodiments, the position of the horizontal plate-like structure is the highest position of the avoidance space.

[0026] An embodiment of the present application provides a laundry treatment device, including:

[0027] A first cylinder assembly having a first laundry treatment cavity;

[0028] And the base device according to any embodiment of the present application, wherein the air duct is connected to the first laundry treatment cavity.

[0029] In some embodiments, the laundry treatment device includes a box body, a frame and a second cylinder assembly. The frame is arranged in the box body, the base device is arranged on the frame, and the base device divides the space in the box body into at least 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.

[0030] In the base device provided by the embodiment of the present application, the compressor is connected to the base through an adapter, and the adapter and the base jointly support the compressor, increasing the installation stability of the compressor. Moreover, the height difference formed by at least two non-coplanar first support surfaces can facilitate increasing the structural strength of the adapter while reducing the installation requirements for the base, reducing the structural limitations of the area of the base corresponding to the compressor installation, reducing the manufacturing difficulty of the base, and increasing the design flexibility of the base, so that the base device can better adapt to the installation requirements of different models or sizes of laundry treatment devices. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 It is a schematic diagram of a partial structure of a laundry treatment device according to an embodiment of the present application;

[0032] Figure 2 is Figure 1Schematic diagram of the structure from another perspective of the shown structure, wherein the first cylinder assembly and the second cylinder assembly are omitted in the illustration;

[0033] Figure 3 Schematic diagram of the structure of the base device according to an embodiment of the present application;

[0034] Figure 4 Another schematic diagram of the structure of the base device according to an embodiment of the present application, wherein the compressor is omitted in the illustration;

[0035] Figure 5 is Figure 4 Exploded structure diagram of the shown base device;

[0036] Figure 6 is Figure 4 Partial structure diagram of the shown base device;

[0037] Figure 7 is Figure 5 Schematic diagram of the structure of the shown adapter;

[0038] Figure 8 is Figure 4 Schematic diagram of the structure of the shown base device from another perspective;

[0039] Figure 9 Another schematic diagram of the structure of the base device according to an embodiment of the present application, wherein the compressor and the adapter are omitted in the illustration;

[0040] Figure 10 is Figure 9 Schematic diagram of the structure of the shown base device from another perspective.

[0041] Explanation of reference numerals

[0042] 10. Base device; 11. Base; 111. Bottom wall; 111a. Avoidance space; 1111. First bottom wall; 1112. Second bottom wall; 1113. Mounting structure; 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; 1211c. First surface; 1211d - First support surface; 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;

[0043] 20. First cylinder assembly; 21. First laundry treatment chamber; 30. Second cylinder assembly; 31. Second laundry treatment chamber; 40. Frame. Detailed implementation manners

[0044] In the description of the embodiments of the present application, it should be noted that the orientation or positional relationship indicated by terms such as "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.

[0045] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and limited, the terms "installation", "connection", and "connection" 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 circumstances.

[0046] The embodiments of the present application provide a base device 10.

[0047] 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 its application to a laundry treatment device as an example.

[0048] The embodiments of the present application also provide a laundry treatment device. Please refer to Figure 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.

[0049] 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.

[0050] Please refer to Figures 3 to 10 , the base device 10 includes a base 11, an adapter 12, and a compressor 13.

[0051] 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.

[0052] 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.

[0053] Exemplarily, please refer to Figure 1 , the first cylinder assembly 20 has a first laundry treatment chamber 21.

[0054] The air duct is in communication with the first laundry treatment chamber 21. That is to say, air flow can circulate between the air duct and the first laundry treatment chamber 21.

[0055] The drying process and principle of the laundry treatment device in the embodiments of the present application will be briefly described below.

[0056] When the laundry treatment device performs a drying operation on the laundry, the dry hot air flow enters the first laundry treatment chamber 21 from the air duct, flows through the surface of the wet laundry, exchanges heat and moisture with the wet laundry, absorbs the moisture in the laundry, and becomes a hot and humid air flow. The hot and humid air flow leaves the first laundry treatment chamber 21 and enters the air duct. After condensation and dehumidification, a low-temperature dry air flow is formed, and after heating, a dry hot air flow is formed. The dry hot air flow enters the first laundry treatment chamber 21 again. In this way, it operates in a cycle to achieve continuous and efficient drying of the laundry.

[0057] 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.

[0058] Exemplarily, the base device 10 further includes a heat exchange component for exchanging heat with the air flow.

[0059] 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.

[0060] The compressor 13 is used to compress the refrigerant. The compressor 13 has a suction port and an exhaust port. The compressor 13 sucks in the refrigerant with a lower temperature and a lower pressure from the suction port, compresses the refrigerant by driving a piston through the operation of the motor, and outputs the refrigerant with an increased temperature and pressure from the exhaust port.

[0061] It can be understood that the refrigerant, also known as the refrigerant medium or refrigerant, is a medium substance used to complete the heat exchange cycle.

[0062] Exemplarily, the compressor 13, the evaporator and the condenser are connected through a refrigerant circulation pipeline. The suction port of the compressor 13 is in communication with the outlet of the evaporator, and the exhaust port of the compressor 13 is in communication 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 down the refrigerant, the evaporator heats up the refrigerant, and the heated refrigerant enters the compressor 13 again. In this way, it circulates.

[0063] The drying process and principle of the laundry treatment device are as follows: The compressor 13 sucks in low-pressure gaseous refrigerant, compresses it and discharges it as high-pressure gaseous refrigerant. The discharged high-pressure gaseous refrigerant enters the condenser, and the refrigerant is cooled by the airflow around the condenser and condenses into high-pressure liquid (while transferring heat to the surrounding air). That is to say, the airflow around the condenser will be heated and raised in temperature to form a dry hot airflow and enter the first laundry treatment chamber 21; After the high-pressure liquid refrigerant flows through the throttling device for throttling and pressure reduction, 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 refrigerates in the evaporator (while absorbing the heat in the surrounding air). That is to say, the airflow around the evaporator will be cooled and lowered in temperature to form a low-temperature dry airflow. The low-pressure gaseous refrigerant is sucked into the compressor 13 again for pressurization, and so on, constantly circulating to realize the heat exchange to achieve continuous and efficient drying of the laundry.

[0064] The adapter 12 is used to connect the compressor 13 and the base 11, that is, the compressor 13 is not directly connected to the base 11. In this way, 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.

[0065] Please refer to Figures 3 to 5 , the base 11 includes a bottom wall 111, the adapter 12 includes a plurality of first support portions 1211, one side of the first support portion 1211 facing the bottom wall 111 has a first support surface 1211d, and the compressor 13 is arranged on the top side of the adapter 12.

[0066] The first support surfaces 121dc of at least two first support portions 1211 are not coplanar.

[0067] The first support surfaces 1211d of at least two first support portions 1211 not being coplanar means that the first support surfaces 1211d of at least two first support portions 1211 are arranged in different planes, that is, not in the same plane, and there is a height difference between at least two first support portions 1211 in the height direction of the base device 10.

[0068] It can be understood that the first support surfaces 1211d of at least two first support portions 1211 not being coplanar can be that the first support surfaces 1211d of each first support portion 1211 are not coplanar, or that some of the first support surfaces 1211d are not coplanar and some of the first support surfaces 1211d of the first support portions 1211 are coplanar.

[0069] It should be noted that the number of the first support portions 1211 can be two, or three or more.

[0070] Exemplarily, please refer to Figure 6 and Figure 7, the number of the first supporting parts 1211 can be three. The first supporting surfaces 1211d of the three first supporting parts 1211 are not coplanar.

[0071] It should be noted that when at least two first supporting surfaces 1211d are not coplanar, the corresponding parts of the bottom wall 111 on this surface are also not coplanar. In this way, it is convenient to realize the cooperation between the adapter 12 and the base 11. The first supporting surface 1211d contacts the bottom wall 111. When installing the compressor 13, the bottom wall 111 can provide support for the first supporting surface 1211d, and further provide installation support for the compressor 13.

[0072] It can be understood that the adapter 12 and the compressor 13 can be connected through parts other than the first supporting surface 1211d. In this way, the adapter 12 is connected to the compressor 13 through other parts, and then the compressor 13 is supported through the first supporting surface 1211d, which is convenient for increasing the structural strength of the adapter 12 and the installation stability of the compressor 13.

[0073] The base device 10 provided by the embodiment of the present application connects the compressor 13 and the base 11 through the adapter 12. The adapter 12 and the base 11 jointly support the compressor 13, increasing the installation stability of the compressor 13. Moreover, the height difference formed by at least two non-coplanar first supporting surfaces 1211d can increase the structural strength of the adapter 13 while reducing the installation requirements for the base 11, reducing the structural restrictions on the area of the base 11 corresponding to the installation of the compressor 13, reducing the manufacturing difficulty of the base 11, and increasing the design flexibility of the base 11, so that the base device 10 can better adapt to the installation requirements of different models or sizes of laundry treatment equipment.

[0074] Specifically, in the application scenario where the cylinder assembly of the laundry treatment equipment is arranged below the base device 10, the structure of the base 11 can be generally in an arc shape or an inclined slope structure to avoid the cylinder assembly. The non-coplanar first supporting surfaces 1211d of the adapter 12 can correspond to the non-coplanar structure on the base 11. By adapting the height difference on the base 11 through the adapter 12 and adapting to the installation requirements of the compressor 13, the stable installation of the compressor 13 can be realized, and the adaptability of the base 11 can also be increased, reducing the restrictions on the installation area of the compressor 13 on the base 11.

[0075] In some embodiments, please refer to Figure 5 、 Figure 9 and Figure 10 , the adapter 12 includes at least one second supporting part 1212. The second supporting part 1212 is connected to the first supporting part 1211, the first supporting part 1211 is connected to the bottom wall 111, the second supporting part 1212 has a second supporting surface 1212a, and the compressor 13 is connected to the second supporting surface 1212a.

[0076] Specifically, the first support portion 1211 is connected to the bottom wall 111 , thereby achieving connection between the adapter 12 and the bottom wall 111 . The bottom wall 111 can provide support for the first support portion 1211 , and further provide support for the adapter 12 .

[0077] For example, see Figure 5 , Figure 9 and Figure 10 The base 11 is provided with a plurality of mounting structures 1113 , and the first supporting portion 1211 is connected to the mounting structure 1113 to realize the connection between the adapter 12 and the bottom wall 111 .

[0078] A side surface of the mounting structure 1113 facing the first support portion 1211 may correspond to the first support surface 1211 d , that is, they are not arranged coplanarly, so that the compatibility between the first support portion 1211 and the mounting structure 1113 can be increased.

[0079] Specifically, the weight of the compressor 13 is transferred to the second support portion 1212 through the second support surface 1212a, and then to the first support portion 1211, and the first support portion 1211 is transferred to the base 11, so that the base 11 disperses the pressure of the adapter 12 without direct contact with the compressor 13, supports 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.

[0080] The first support portion 1211 has a first surface 1211c on a side away from the first support surface 1211d. Figure 6 and Figure 7 , the position of any one of the first surfaces 1211c is higher than the second supporting surface 1212a.

[0081] It can be understood that the first surface 1211c and the second supporting surface 1212a are surfaces located along the same side of the adapter 12. For example, the first surface 1211c and the second supporting surface 1212a are surfaces located along the top side of the adapter 12.

[0082] The position of any first surface 1211c is higher than the second support surface 1212a, which means that along the height direction of the base device 10, the position of the second support surface 1212a is lower than any first surface 1211c, that is, the connection position between the compressor 13 and the second support surface 1212a is lower than the first surface 1211c.

[0083] In this embodiment, the position of the first surface 1211c is relatively high, and the position of the second support surface 1212a is relatively low, which is conducive to directly transferring the load of the compressor 13 to the first surface 1211c and the first support surface 1211d and then to the bottom wall 111, reducing the probability of deformation of the adapter 12, increasing the structural strength of the adapter 12, and enhancing the load-bearing reliability of the compressor 13. Moreover, the installation position of the compressor 13 is relatively low and the support position is relatively high, which can reduce the overall center of gravity of the base device 10 and improve the structural stability. At the same time, it can also make the layout of the base device 10 more compact.

[0084] In some embodiments, please refer to Figure 1 and Figure 2 , the laundry treatment device includes a cabinet, a second cylinder assembly 30, and a rack 40 disposed in the cabinet.

[0085] The rack 40 is the main support structure for fixedly installing and supporting other components of the laundry treatment device.

[0086] The base device 10 is disposed on the rack 40, and the base device 10 and its load transfer the acting force to the rack 40.

[0087] 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.

[0088] 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.

[0089] 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.

[0090] The base device 10 divides the space inside the cabinet into at least a first space and a second space along the height direction. The first cylinder assembly 20 is disposed in the first space, and the second cylinder assembly 30 is disposed in the second space.

[0091] In some embodiments, the first laundry treatment chamber 21 can at least perform drying treatment on the laundry. The second cylinder assembly 30 has a second laundry treatment chamber 31, and the second laundry treatment chamber 31 can at least perform washing on the laundry.

[0092] In some embodiments, the first space is located 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.

[0093] In some other embodiments, the first space may also be located below the second space, that is, the position of the second cylinder assembly 30 is higher than the position of the first cylinder assembly 20.

[0094] The number of the second support parts 1212 may be one or more.

[0095] In some embodiments, referring to Figure 6 and Figure 7 , the number of the second support parts 1212 is multiple, and the second support surfaces 1212a are arranged coplanarly.

[0096] It should be noted that the second support surfaces 1212a being arranged coplanarly means that the second support surfaces 1212a are located on the same plane.

[0097] That is to say, the connection positions of the compressor 13 and the second support surfaces 1212a are arranged coplanarly. In this way, the connection positions of the compressor 13 and the second support parts 1212 can be located on the same plane, increasing the installation stability of the compressor 13. And when it is necessary to adjust the installation positions of the compressor 13 and the adapter 12, it can be carried out in the same plane without complex three-dimensional space adjustment. Moreover, the design of multiple second support parts 1212 can facilitate the distribution of the weight of the compressor 13 to the multiple second support parts 1212, increasing the load-bearing reliability.

[0098] In some embodiments, referring to Figure 6 , any part of the second support part 1212 is spaced from the bottom wall 111 so that the second support part 1212 is in a suspended state.

[0099] It should be noted that any part of the second support part 1212 being spaced from the bottom wall 111 means that any part of the second support part 1212 does not contact the bottom wall 111. In this way, the second support part 1212 is in a suspended state.

[0100] It can be understood that when the compressor 13 vibrates, there will be a certain amplitude of the second support part 1212, but the suspended second support part 1212 does not contact the bottom wall 111. Therefore, the second support part 1212 hardly impacts the bottom wall 111, increasing the operating stability of the base device 10.

[0101] In this embodiment, the suspended second support part 1212 can effectively isolate the connection position of the compressor 13 and the second support part 1212 from the bottom wall 111, thereby reducing the vibration transmitted from the compressor 13 to the bottom wall 111, reducing the noise transmission, and increasing the operating stability of the base device 10.

[0102] The specific structure of the compressor 13 is not limited.

[0103] In some embodiments, please refer to Figure 3 , the compressor 13 includes a compressor main body 131 and connection lugs 132 protruding from the circumferential outer side of the compressor main body 131. The connection lugs 132 connect the compressor main body 131 and the second support portion 1212.

[0104] Specifically, the compressor main body 131 can be used to implement the compression function of the compressor 13 to compress the refrigerant, and the connection lugs 132 are used to implement the connection function to connect the compressor 13 and the adapter 12 together.

[0105] In this embodiment, through the connection between the connection lugs 132 and the second support portion 1212, the connection between the compressor 13 and the adapter 12 is realized. The connection is simple and the disassembly is convenient. Moreover, the vibration and load generated during the operation of the compressor main body 131 can be transmitted to the second support portion 1212 through the connection lugs 132, which is convenient for the adapter 12 to carry the compressor 13 and absorb part of the vibration, increasing the operation stability of the base device 10.

[0106] In some embodiments, the number of the connection lugs 132 is multiple. The multiple connection lugs 132 support the compressor main body 131, and the bottom end portion of the compressor main body 131 is spaced from the adapter 12 so that the compressor main body 131 is in a suspended state.

[0107] It can be understood that the bottom end portion of the compressor main body 131 being spaced from the adapter 12 means that the bottom end portion of the compressor main body 131 does not contact the adapter 12, and the compressor main body 131 is supported by the connection lugs 132.

[0108] In this embodiment, the multiple connection lugs 132 can facilitate the uniform distribution of the weight of the compressor main body 131 and the vibration generated during operation, extending the service life of the compressor 13. In the suspended state of the compressor main body 131, the space between the bottom end portion of the compressor main body 131 and the adapter 12 can facilitate the air flow for the heat dissipation of the compressor 13. At the same time, the space between the bottom end portion of the compressor main body 131 and the adapter 12 can also receive the condensate generated on the surface during the operation of the compressor 13, increasing the working reliability of the compressor 13.

[0109] Moreover, the compressor main body 131 in the suspended state can also reduce the contact area between the compressor 13 and the adapter 12, reduce the vibration and noise transmission paths. The weight and vibration during the operation of the compressor 13 are both transmitted through the connection lugs 132, increasing the overall operation stability of the base device 10.

[0110] Of course, in some other embodiments, the compressor main body 131 may not be in a suspended state, that is, the bottom end portion of the compressor main body 131 contacts the adapter 12.

[0111] In some embodiments, refer to Figure 3 , Figure 5 and Figure 7 . Each first support portion 1211 is connected to at least one second support portion 1212 to form an annular structure 121. The annular structure 121 surrounds the outer periphery of the compressor main body 131, and the connecting ear 132 is connected to the second support portion 1212.

[0112] In this embodiment, the annular structure 121 can surround the outer periphery of the compressor main body 131 to form a continuous support structure. The weight of the compressor main 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 and can also adapt to the shape of the compressor 13, increasing the layout compactness and facilitating the docking with the compressor 13 in a smaller space.

[0113] In some embodiments, refer to Figure 3 , Figure 5 and Figure 7 . The number of the second support portions 1212 is multiple. 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 the connecting ears 132 is multiple, and at least one first support portion 1211 is arranged between two adjacent connecting ears 132.

[0114] 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.

[0115] Exemplarily, 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.

[0116] In this embodiment, the alternating layout of the first support portions 1211 and the second support portions 1212 can more evenly distribute the weight of the compressor 13, balance the pressure received by the first support portions 1211 and the second support portions 1212, and improve the overall load-bearing stability. Moreover, a first support portion 1211 is arranged between two adjacent connecting ears 132, and the first support portion 1211 is not connected to the connecting ear 132. The first support portion 1211 can serve as a buffer zone to absorb and disperse the vibration generated during the operation of the compressor 13 and reduce noise.

[0117] In some embodiments, refer to Figure 5 andFigure 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. The top end portion of the side wall portion 1222 is connected to the radial inner edge of the annular structure 121.

[0118] 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. The height difference between the side wall portion 1222 and the plate portion 1221 can also play a guiding role. The condensate transferred to the surface of the compressor 13 due to the operation of the compressor 13 itself or other components of the laundry treatment device can be guided by the side wall portion 1222 to the plate portion 1221, preventing the condensate from contacting the connection position between the adapter 12 and the compressor 13 or the connection position between the adapter 12 and the bottom wall 111.

[0119] 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 in 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 ear 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 for the compressor 13 to dissipate heat, and reduces the contact area between the compressor 13 and the adapter 12, reducing vibration transmission. On the other hand, the condensate generated on the surface of the compressor 13 is guided by the side wall portion 1222 to the plate portion 1221, and the plate portion 1221 can receive the condensate or guide the condensate to other structures for receiving the condensate.

[0120] In an embodiment where the compressor main body 131 is not in a suspended state, the bottom end portion of the compressor main body 131 can be supported on the plate portion 1221, and the plate portion 1221 can provide stable support for the compressor main body 131, reducing the pressure on the second support portion 1212.

[0121] In some embodiments, please refer to Figure 5 The bottom wall 111 has a liquid collecting groove 1113c. The adapter 12 is provided with a through hole 122a communicating with the liquid collecting groove 1113c. The adapter 12 can receive the condensate of the compressor 13 and guide the received condensate to the liquid collecting groove 1113c through the through hole 122a.

[0122] It can be understood that during the operation of the compressor 13 or other components of the laundry treatment device, condensate may be generated on the surface of the compressor. The condensate generated during the operation of other components of the laundry treatment device can be transferred to the compressor under the drive of the air flow and adhere to the surface of the compressor.

[0123] The compressor 13 is disposed on the top side of the adapter 12, and the condensate adhering to its surface can be received by the adapter 12 and communicated with the liquid collecting groove 1113c on the bottom wall 111 through the through hole 122a, so as to collect the condensate in the liquid collecting groove 1113c and reduce the probability of safety hazards caused by the condensate accumulating in the base 11 or dripping onto other components of the laundry treatment device.

[0124] In this embodiment, the arrangement of the through hole 122a and the liquid collecting groove 1113c can effectively collect the condensate generated during the operation of the compressor 13, reduce the influence on the operation of the compressor 13 and other components in the laundry treatment device, and improve the overall performance of the base device 10.

[0125] It should be noted that the amount of condensate generated on the outer surface of the compressor 13 is relatively small, and the condensate accumulated in the liquid collecting groove 1113c can be eliminated by natural evaporation. Therefore, the liquid collecting groove 1113c may not need to be provided with a condensate discharge port. Of course, in other embodiments, the liquid collecting groove 1113c may also be provided with a condensate discharge port to discharge the condensate through the condensate discharge port.

[0126] It can be understood that the formation method of the liquid collecting groove 1113c is not limited. For example, it can be a space surrounded by multiple structures on the bottom wall 111, such as a space surrounded by rib-like structures on the bottom wall 111, and this space is communicated with the through hole 122a; it can also be that the bottom wall 111 is hollowed out to form a groove-like structure and communicated with the through hole 122a, which is not limited here.

[0127] Exemplarily, in an embodiment where the adapter 12 is provided with an extension structure 122, the through hole 122a can be disposed on the plate portion 1221, and the liquid collecting groove 1113c can be disposed on the bottom side of the plate portion 1221. In this way, it is convenient for the condensate to flow from top to bottom through the through hole 122a to the liquid collecting groove 1113c.

[0128] The adapter 12 can be an integrally formed metal part, that is to say, the ring structure 121 and the extension structure 122 are integrally formed, so as to improve the production and assembly efficiency.

[0129] In some embodiments, the base device 10 includes one or more first connectors, and the first connectors connect the connecting ear 132 and the second support portion 1212.

[0130] In this embodiment, the connection between the connecting ear 132 and the second support portion 1212 is achieved through the first connecting member, thereby achieving 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.

[0131] For example, see Figures 3 to 7 The second supporting portion 1212 is provided with a first connecting hole 1212 b , and the first connecting member is passed through the connecting ear 132 and the first connecting hole 1212 b to achieve the connection between the connecting ear 132 and the second supporting portion 1212 .

[0132] The specific structure of the first connecting member is not limited. For example, the first connecting member may be a screw, or a combination of a bolt and a nut.

[0133] In some embodiments, the base device 10 includes a vibration damper, which is clamped between the connecting ear 132 and the second support portion 1212 , and the first connecting member passes through the second support portion 1212 , the vibration damper and the connecting ear 132 along the height direction of the base device 10 .

[0134] It should be noted that the vibration damping component refers to a material that has a vibration damping effect, for example, made of rubber, silicone, felt, etc.

[0135] Specifically, the vibration damper isolates the connecting ear 132 and the second support portion 1212, and the vibration damper is located on the force transmission path of the connecting ear 132 and the second support portion 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 portion 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 portion 1212.

[0136] 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.

[0137] 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.

[0138] For some examples, see Figure 6 , Figure 9 and Figure 10, in the 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 on a plane perpendicular to the height direction of the base device 10, the first connecting member is within the projection range of the avoidance hole 1113b.

[0139] It can be understood that the first connecting member being within the projection range of the avoidance hole 1113b can be that the first connecting member does not penetrate through the avoidance hole 1113b, but the projection range of the first connecting member is within the avoidance hole 1113b; or it can be that the first connecting member penetrates through the avoidance hole 1113b and the projection range of the first connecting member is 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.

[0140] In this embodiment, the design of the avoidance hole 1113b, on the one hand, can reduce the probability of interference between the first connecting member when connecting the connecting ear 132 and the second support portion 1212 and the bottom wall 111, and on the other hand, it can also prevent the first connecting member from contacting the bottom wall 111, reducing the probability of the vibration of the compressor 13 being transmitted to the bottom wall 111 through the first connecting member and increasing the overall stability of the base device 10.

[0141] The manner in which the first connecting member connects the connecting ear 132 and the second support portion 1212 is not limited.

[0142] 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 and the second support portion 1212. At this time, the bottom end of the first connecting member can penetrate through the avoidance hole 1113b or can be located between the avoidance hole 1113b and the first connecting hole 1212b.

[0143] In some other embodiments, the first connecting member can pass through the avoidance hole 1113b, the first connecting hole 1212b, and the connecting ear 132 from bottom to top to connect the connecting ear 132 and the second support portion 1212. At this time, the avoidance hole 1113b provides a passing space for the first connecting member and prevents the first connecting member from contacting the bottom wall 111.

[0144] In some embodiments, the base device 10 includes one or more second connecting members, and the second connecting members connect the first support portion 1211 and the mounting structure 1113 on the bottom wall 111.

[0145] Exemplarily, the first support portion 1211 is provided with one or more second connecting holes 1211b, and the second connecting members penetrate through the second connecting holes 1211b and the mounting structure 1113 to connect the first support portion 1211 and the mounting structure 1113, thereby realizing the connection between the adapter 12 and the bottom wall 111.

[0146] In this embodiment, the second connecting member connects the first supporting portion 1211 and the mounting structure 1113 on the bottom wall 111, which can increase the connection stability between the adapter 12 and the bottom wall 111, thereby facilitating the stable installation of the compressor 13 and increasing the overall structural stability of the base device 10.

[0147] The specific structure of the second connecting member is not limited. Exemplarily, the second connecting member can be a screw.

[0148] 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 unit through the first connecting member, and then the pre-assembled unit 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.

[0149] In some embodiments, please refer to Figure 3 、 Figure 5 and Figure 6 , the mounting structure 1113 is provided with a positioning protrusion 1114, and the first supporting portion 1211 is provided with a positioning hole 1211a, and the positioning protrusion 1114 passes through the positioning hole 1211a.

[0150] In this embodiment, the cooperation between the positioning protrusion 1114 and the positioning hole 1211a facilitates the precise positioning between the first supporting portion 1211 and the bottom wall 111, reduces the installation deviation, and moreover, the positioning protrusion 1114 passes through the positioning hole 1211a, which can also limit the movement of the first supporting portion 1211 and increase the connection stability. At the same time, there is no need to manually align the first supporting portion 1211 and the bottom wall 111, and the assembly is fast and accurate.

[0151] In some embodiments, a part of the structure of the bottom wall 111 protrudes upward to form an avoidance space 111a on the bottom side of the bottom wall 111 for avoiding the cylinder assembly of the laundry treatment device.

[0152] Specifically, please refer to Figure 1 , the avoidance space 111a is used to avoid a part of the structure of the second cylinder assembly 30, so as to make the structure of the laundry treatment device compact and reduce the overall height of the laundry treatment device.

[0153] The air duct includes a two-device installation area for installing two devices. Here, the two devices refer to the evaporator and the condenser, and the evaporator and the condenser are installed in the two-device installation area.

[0154] The base 11 further includes a power mechanism installation area located outside the air duct. The compressor 13 is disposed in the power mechanism installation area, and the power mechanism installation area is disposed on one side of the two-device installation area along the first direction, where the first direction intersects with the height direction of the base device 10.

[0155] 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, which is not limited herein.

[0156] That is to say, the compressor 13 is disposed outside the air duct. In this way, it is convenient for the air to circulate around the compressor 13, enhancing the heat dissipation effect, and reducing the influence of the heat generated by the compressor 13 on the evaporator and condenser in the air duct. At the same time, it is also convenient for disassembling, installing and maintaining the compressor 13 without affecting the structure in the air duct.

[0157] The bottom wall of the power mechanism installation area is located lower than the bottom wall of the two-device installation area. In this way, a stepped structure can be formed, which is convenient for installing the compressor 13 at a lower position, reducing the overall center of gravity of the base device 10, and also facilitating the installation and maintenance of the compressor 13, making the layout of the base device 10 more compact.

[0158] Please refer to Figure 8 , for convenience of description, the first bottom wall 1111 is used as the bottom wall of the two-device installation area, the second bottom wall 1112 is used as the bottom wall of the power mechanism installation area, and the position of the first bottom wall 1111 is higher than the position of the second bottom wall 1112.

[0159] In some embodiments, the bottom wall of the two-device installation area is a horizontal plate-like structure; the two devices are supported on the horizontal plate-like structure.

[0160] It can be understood that the horizontal plate-like structure means that the plane where the bottom wall of the two-device installation area is located is parallel to the horizontal plane.

[0161] In this embodiment, the two devices are disposed on the horizontal plate-like structure. The evaporator and the condenser can be stably disposed in the two-device installation area. The two-device installation area can evenly bear the weights of the evaporator and the condenser. And when it is necessary to adjust the installation positions of the evaporator and the condenser, it can also be carried out in the same plane without complex three-dimensional space adjustment. At the same time, the design of the horizontal plate-like structure can also reduce the manufacturing difficulty of the base 11 and increase the structural reliability of the base device 10.

[0162] In some embodiments, the position of the horizontal plate-like structure is the highest position of the avoidance space.

[0163] Specifically, the horizontal plate-like structure can serve as the top boundary of the avoidance space, providing protection for the cylinder assembly or other components of the clothing processing device below, reducing damage;

[0164] Exemplarily, please refer to Figure 1 , a horizontal plate-like structure can be used as a platform for separating the first cylinder assembly 20 and the second cylinder assembly 30. While providing support, the horizontal plate-like structure can also increase the layout reliability of the first cylinder assembly 20 and the second cylinder assembly 30.

[0165] In this embodiment, the installation position of the compressor 13 is relatively low, and the overall center of gravity of the base device 10 is low. Without increasing the overall height of the laundry treatment device, the overall structure of the laundry treatment device can be made more compact.

[0166] In the description of the present application, the description of reference terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples" means 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 the different embodiments or examples.

[0167] 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, include: A base having an air duct, the air duct being used to communicate with a clothes processing chamber of a clothes processing device, the base comprising a bottom wall; A transition piece connected to the bottom wall; A compressor is disposed on the top side of the adapter and connected to the adapter; Wherein, the adapter comprises a plurality of first supporting portions, the first supporting portion has a first supporting surface on a side facing the bottom wall, and the first supporting surfaces of at least two of the first supporting portions are not coplanar.

2. The base device according to claim 1, characterized in that, The adapter comprises at least one second supporting portion, the second supporting portion is connected to the first supporting portion, the first supporting portion is connected to the bottom wall, and the second supporting portion has a second supporting surface; the compressor is connected to the second supporting surface, and the first supporting portion has a first surface on a side facing away from the first supporting surface; Wherein, the position of any one of the first surfaces is higher than the second supporting surface; and / or, there are multiple second supporting parts, and the second supporting surfaces are arranged in the same plane.

3. The base device according to claim 2, characterized in that, Any part of the second supporting part is spaced apart from the bottom wall so that the second supporting part is in a suspended state.

4. The base device according to claim 2, characterized in that, The compressor includes a compressor body and a connecting ear protruding from the outer side of the compressor body in a circumferential direction, wherein the connecting ear connects the compressor body and the second supporting portion.

5. The base device according to claim 4, characterized in that, There are multiple connecting ears, and the multiple connecting ears support the compressor body. The bottom end of the compressor body is spaced apart from the adapter so that the compressor body is in a suspended state.

6. The base device according to claim 4, characterized in that Each of the first supporting parts is connected to at least one of the second supporting parts to form an annular structure, the annular structure surrounds the outer circumference of the compressor body, and the connecting ear is connected to the second supporting part.

7. The base device according to claim 6, characterized in that, There are multiple second support parts, and the first support parts and the second support parts are alternately arranged in sequence along the circumference of the annular structure. There are multiple connecting ears, and at least one first support part is arranged between two adjacent connecting ears.

8. The base device according to claim 6, characterized in that The adapter includes an extension structure, which includes a plate portion and a side surrounding portion. The side surrounding portion is arranged around the edge of the plate portion, and the top end portion of the side surrounding portion is positioned higher than the top surface of the plate portion. The top end portion of the side surrounding portion is connected to the radial inner edge of the annular structure.

9. The base device according to claim 1, wherein The bottom wall has a liquid collecting groove, and the adapter is provided with a through hole connected to the liquid collecting groove. The adapter can receive the condensate of the compressor and guide the received condensate to the liquid collecting groove through the through hole.

10. The base device according to claim 4, characterized in that, The base device includes one or more first connecting members, and the first connecting member connects the connecting ear and the second supporting part.

11. The base device according to claim 10, characterized in that, Any part of the second supporting part is spaced apart from the bottom wall so that the second supporting part is in a suspended state; The bottom wall is provided with an avoidance hole, and in the orthographic projection of a plane perpendicular to the height direction of the base device, the first connecting member is located within the projection range of the avoidance hole.

12. The base device according to claim 1, wherein, Part of the structure of the bottom wall protrudes upward to form an avoidance space on the bottom side of the bottom wall for avoiding the cylinder assembly of the clothing treatment device; the air duct includes a two-device installation area for installing two devices, the base further includes a power mechanism installation area located outside the air duct, the compressor is arranged in the power mechanism installation area, the power mechanism installation area is arranged on one side of the two-device installation area along the first direction, and the position of the bottom wall of the power mechanism installation area is lower than the bottom wall of the two-device installation area, wherein the first direction intersects with the height direction of the base device.

13. The base device according to claim 12, characterized in that, The bottom wall of the two-device installation area is a horizontal plate-like structure; the two devices are supported on the horizontal plate-like structure; The horizontal plate-like structure is the highest position of the avoidance space.

14. A laundry treatment device, characterized in that, Including: A first cylinder assembly having a first clothing treatment cavity; A second cylinder assembly; A box body and a frame, the frame is arranged inside the box body; And the base device according to any one of claims 1-13, the air duct is connected to the first clothing treatment cavity, the base device is arranged on the frame, the base device divides the space inside the box body into at least 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.