Laundry treating apparatus

By installing a lint filter in the garment processing unit, the problem of lint accumulation on the surfaces of the evaporator and condenser is solved, achieving effective lint filtration and cleaning, and improving drying efficiency.

CN223867009UActive Publication Date: 2026-02-03HISENSE(SHANDONG)REFRIGERATOR CO LTD
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Patent Information

Application Number
CN202520348205.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-03
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Lint tends to stick to the evaporator and condenser surfaces of the garment processing unit, resulting in excessive air resistance and affecting drying efficiency.

Method used

A lint filter device is installed in the garment processing device, including a collection box and a filter assembly. It is connected to the air inlet and the air outlet to form a drying air duct. The lint filter device filters lint from the air and is easy to clean regularly through the installation port.

Benefits of technology

It improves the filtration and cleaning efficiency of lint, reduces the accumulation of lint on the surfaces of the evaporator and condenser, and maintains drying efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a clothes processing device. The clothes processing device comprises a box body, a cylinder assembly, a mounting seat, an evaporator, a condenser and a soft flock filtering device, an air inlet and an air return opening are formed in the cylinder assembly; two device cavities are formed in the mounting seat; the evaporator and the condenser are arranged in the two device cavities; and the flock filtering device is arranged between the air inlet and the two device cavities. The flock filtering device comprises a collecting box, a flock collecting cavity, a filter screen assembly and a cleaning assembly. A mounting opening is formed in the outer wall of the box body, and the soft flock filtering device is pulled out of or inserted into the box body through the mounting opening; the cleaning assembly can slide along the flock collecting cavity to scrape flock on the surface of the filter screen assembly and the cavity wall of the flock collecting cavity, so that the cleaning effect on the flock in the flock filtering device is improved, and the flock filtering effect of the flock filtering device is improved and kept for a long time.
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Description

TECHNICAL FIELD

[0001] The utility model relates to clothes processing equipment technical field, especially a clothes processing device. BACKGROUND

[0002] Clothes processing devices such as clothes dryers, washing and drying integrated machines are household or commercial appliances that utilize mechanical, electronic and thermodynamic technologies to clean, dry and care for clothes. With the improvement of consumers' living standards, the requirements for clothes processing devices are becoming higher and higher.

[0003] Clothes processing devices usually have a cabinet and a drum assembly. The drum assembly forms a clothes processing cavity inside. The cabinet forms a drying air duct inside; both ends of the drying air duct are in communication with the clothes processing cavity, and a drying air circulation can be formed inside the drying air duct and the clothes processing cavity to realize the clothes drying function in the clothes processing cavity.

[0004] In clothes processing devices with clothes drying function, a heat pump system is usually provided, which includes a compressor, an evaporator and a condenser. The evaporator is used to condense and cool the airflow, and the condenser is used to heat the airflow. When the airflow flows through the evaporator and the condenser, lint is easily adhered to the surface and is not easy to clean, resulting in excessive wind resistance after the lint accumulates on the surface of the evaporator and the condenser, affecting the air volume and thus the drying efficiency. SUMMARY

[0005] The utility model aims at providing a clothes processing device to improve the cleaning effect of lint and improve the filtering effect of lint.

[0006] To solve the above technical problems, the utility model adopts the following technical scheme:

[0007] According to one aspect of the utility model, the utility model provides a clothes processing device, the clothes processing device includes: box, it forms the shell of clothes processing device outside, barrel subassembly, be located in the box, form clothes processing cavity in the barrel subassembly, the outer wall of barrel subassembly is equipped with the air inlet and return air outlet respectively with clothes processing cavity intercommunication, mounting seat, be located in the upper of barrel subassembly, be equipped with two instrument cavities in the mounting seat, be equipped with air inlet and air outlet on the mounting seat, air inlet and air outlet respectively intercommunication two instrument cavities, air inlet with return air outlet intercommunication, air outlet with air inlet intercommunication, evaporimeter, be located in two instrument cavities, and be located in the side near air inlet, condenser, be located in two instrument cavities, and be located in the side near air outlet, fluff filtering device, be located in the mounting seat, and be located between air inlet and two instrument cavities, fluff filtering device includes: collection box, be located between air inlet and two instrument cavities, be equipped with fluff collection cavity in collection box, filter screen subassembly, be located in collection box, and be located on the side wall in collection box near two instrument cavities, cleaning assembly, be located in collection box, and be slidably located in fluff collection cavity, cleaning assembly respectively with the surface of filter screen subassembly, the cavity wall of fluff collection cavity contact, wherein, the air of air inlet flow can flow through fluff collection cavity and filter screen subassembly in proper order, and then flow into two instrument cavities, filter screen subassembly is configured for filtering the fluff in the air of fluff collection cavity to two instrument cavities, the outer wall of box is equipped with mounting, fluff filtering device can be extracted or inserted in the box through mounting, cleaning assembly is configured to be able to slide along fluff collection cavity to scrape off the fluff on the surface of filter screen subassembly and the cavity wall of fluff collection cavity.

[0008] The above technical solution has the following advantages or beneficial effects: The two instrument cavities can be connected to the clothes processing cavity through the air inlet and return air outlet respectively, thereby forming a drying air duct to realize drying treatment of clothes. The evaporimeter can condense and cool the hot and humid air, so that the moisture in the hot and humid air is condensed on the surface of the evaporimeter, thereby removing the moisture in the hot and humid air. The condenser can heat and warm the dry and cold air to form dry hot air. The fluff filtering device is arranged between the air inlet and the two instrument cavities, which can filter the fluff in the air and retain the fluff inside the fluff filtering device. The fluff filtering device can be extracted or inserted into the box through the mounting, which is convenient for users to clean the inside of the fluff filtering device regularly and clean the fluff between the air inlet and the two instrument cavities. During the sliding process of the cleaning assembly, the cleaning assembly can scrape off the fluff on the surface of the filter screen assembly facing the fluff collection cavity and the fluff on the cavity wall of the fluff collection cavity, thereby improving the cleaning effect of the fluff inside the fluff filtering device and improving and maintaining the filtering effect of the fluff filtering device on the fluff for a long time.

[0009] In some embodiments of the present application, the top wall of the mounting seat is provided with an insertion opening; the mounting opening is arranged on the top wall of the box body, and the mounting opening is arranged opposite to the insertion opening in the up-down direction; the fluff filtering device extends into the insertion opening through the mounting opening and is arranged in the mounting seat.

[0010] The above technical solution has the following advantages or beneficial effects: by arranging the mounting opening opposite to the insertion opening in the up-down direction, the fluff filtering device can extend into the insertion opening through the mounting opening and be arranged in the mounting seat, so that the fluff filtering device is arranged in the mounting seat, and then the fluff filtering device is arranged in the region between the air inlet and the two device cavities.

[0011] In some embodiments of the present application, the mounting seat comprises: a base, the top surface of the base is provided with an installation cavity and the two device cavities arranged adjacent to each other, the installation cavity is located in the region between the air inlet and the two device cavities; a top cover, the top cover is arranged on the top surface of the base, and the top cover covers the top of the installation cavity and the two device cavities; the insertion opening is arranged on the top cover, and the insertion opening is located above the top of the installation cavity, and the fluff filtering device extends into the installation cavity through the insertion opening.

[0012] The above technical solution has the following advantages or beneficial effects: the installation cavity and the two device cavities can be enclosed between the base and the top cover, and the condenser and the evaporator can be conveniently installed in the two device cavities. By arranging the insertion opening on the top cover, the fluff filtering device can be arranged in the mounting seat, and the fluff filtering device can be arranged in the region between the air inlet and the two device cavities.

[0013] In some embodiments of the present application, one end of the length direction of the fluff collecting cavity is formed with an air inlet, the air inlet faces the air inlet and communicates with the air inlet; the air inlet is located at the end of the collecting box facing the air inlet; one side wall of the length direction of the fluff collecting cavity is formed with an air outlet, the air outlet is arranged on the side of the fluff collecting cavity close to the two device cavities, and the filter screen assembly is arranged at the air outlet.

[0014] The above technical solution has the following advantages or beneficial effects: by arranging the air inlet at one end of the length direction of the fluff collecting cavity, air can enter the fluff collecting cavity from the air inlet; and by arranging the filter screen assembly at the air outlet, the air flowing through the air outlet can be conveniently filtered by the fluff.

[0015] In some embodiments of the present application, the fluff filtering device further comprises: a handle, one end of the handle is reversibly connected with the cleaning assembly; the handle can be reversed to the end of the cleaning assembly away from the air inlet, so as to push the cleaning assembly to slide along the fluff collecting cavity.

[0016] The above technical solution has the following advantages or beneficial effects: the handle can push the cleaning assembly to slide along the fluff collecting cavity, so that the cleaning assembly can scrape off the fluff on the surface of the filter screen assembly and the fluff on the cavity wall of the fluff collecting cavity.

[0017] In some embodiments of the present application, the bottom surface of the collection box is provided with a receiving groove; when the cleaning assembly moves to the end of the fluff collecting cavity away from the air inlet, the handle can be turned over to the bottom of the collection box and accommodated in the receiving groove.

[0018] The above technical solution has the following advantages or beneficial effects: when the fluff on the surface of the filter screen assembly and the fluff on the cavity wall of the fluff collecting cavity do not need to be cleaned, the cleaning assembly can also be moved to the end of the fluff collecting cavity away from the air inlet, so that the handle can be turned over and hidden in the receiving groove at the bottom of the fluff filtering device, thereby reducing the overall volume of the fluff filtering device, and further not affecting the installation and disassembly of the fluff filtering device and the overall appearance of the fluff filtering device.

[0019] In some embodiments of the present application, the outer wall of the end of the handle connected with the cleaning assembly is provided with an elastic arm; the end wall of the cleaning assembly is provided with a hook; when the handle is turned over to the end of the cleaning assembly away from the air inlet, the elastic arm can be clamped with the hook to fix the handle to the end of the cleaning assembly.

[0020] The above technical solution has the following advantages or beneficial effects: through the clamping cooperation of the elastic arm and the hook, the handle can be stably fixed to the end of the cleaning assembly away from the air inlet, so that the handle can stably push the cleaning assembly to slide in the fluff collecting cavity.

[0021] In some embodiments of the present application, the cleaning assembly comprises: a mounting shell movably arranged in the fluff collecting cavity and capable of sliding along the length direction of the fluff collecting cavity; a cleaning sheet arranged on the mounting shell, and at least part of the peripheral edge of the cleaning sheet protruding beyond the peripheral edge of the mounting shell; and a clamping plate fixed to the mounting shell and clamping and fixing the cleaning sheet to the mounting shell.

[0022] The above technical solution has the following advantages or beneficial effects: the clamping cooperation of the mounting shell and the clamping plate can facilitate the installation and replacement of the cleaning sheet. When the mounting shell slides along the fluff collecting cavity, the part of the peripheral edge of the cleaning sheet protruding beyond the mounting shell can be in sliding contact with the surface of the filter screen assembly, thereby scraping off the fluff on the surface of the filter screen assembly. When the mounting shell slides along the fluff collecting cavity, the part of the peripheral edge of the cleaning sheet protruding beyond the mounting shell can be in sliding contact with the cavity wall of the fluff collecting cavity, thereby scraping off the fluff on the cavity wall of the fluff collecting cavity.

[0023] In some embodiments of this application, a telescopic opening is provided on the end wall of the collection box away from the air inlet; one end of the handle extends into the lint collection cavity through the telescopic opening and is flipped to connect with the cleaning component.

[0024] The above-mentioned technical solution has the following advantages or beneficial effects: when the handle is flipped to one end of the cleaning component, the handle can be gradually inserted into the lint collection chamber through the telescopic port, thereby pushing the cleaning component to slide along the end of the lint collection chamber toward the air inlet.

[0025] In some embodiments of this application, a handheld portion is provided on the end wall of the cleaning component facing the air inlet; the handheld portion is used to be held so as to extend the cleaning component into or out of the lint collection chamber through the air inlet.

[0026] The above-mentioned technical solution has the following advantages or beneficial effects: the user can install the cleaning component into the lint collection chamber through the air inlet using the handheld part. Alternatively, the user can remove the cleaning component from the lint collection chamber through the air inlet using the handheld part, thus facilitating the installation and disassembly of the cleaning component and improving the efficiency of its installation and maintenance. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the structure of a clothing processing device according to an embodiment of the present invention.

[0028] Figure 2 This is a partial structural diagram of the internal structure of a clothing processing device according to an embodiment of the present invention.

[0029] Figure 3 yes Figure 1 A partial structural breakdown diagram.

[0030] Figure 4 yes Figure 3 A schematic diagram of the mounting base.

[0031] Figure 5 yes Figure 4 A schematic diagram of its decomposition.

[0032] Figure 6 yes Figure 5 A partial structural diagram.

[0033] Figure 7 yes Figure 6 A schematic diagram of its decomposition.

[0034] Figure 8 yes Figure 5 A schematic diagram of the structure of the medium-sized lint filter device.

[0035] Figure 9 yes Figure 8A structural diagram from another perspective.

[0036] Figure 10 yes Figure 9 A schematic diagram of its decomposition.

[0037] Figure 11 yes Figure 10 A schematic diagram of the structure of the middle filter assembly.

[0038] Figure 12 yes Figure 11 A structural diagram in another state.

[0039] Figure 13 yes Figure 8 A structural diagram from another perspective.

[0040] Figure 14 yes Figure 13 A structural diagram of the cleaning components and handle.

[0041] Figure 15 yes Figure 8 A structural diagram in another state.

[0042] Figure 16 yes Figure 15 A structural diagram of the cleaning components and handle.

[0043] Figure 17 yes Figure 16 A schematic diagram of its decomposition.

[0044] Figure 18 yes Figure 13 A sectional view.

[0045] Figure 19 yes Figure 7 A schematic diagram of the structure of the spray device.

[0046] Figure 20 yes Figure 19 A structural diagram from another perspective.

[0047] Figure 21 yes Figure 7 Cross-sectional view of the spray system, evaporator and condenser.

[0048] Figure 22 yes Figure 21 A magnified schematic diagram of the central part of the structure.

[0049] Figure 23 yes Figure 7 A schematic diagram of the structure of the evaporator.

[0050] Figure 24 yes Figure 5 Assembly structure diagram of the central spray device and the top cover.

[0051] Figure 25 yes Figure 24 A structural diagram from another perspective.

[0052] Figure 26 yes Figure 25 A schematic diagram of its decomposition.

[0053] The reference numerals in the attached drawings are explained as follows: 1. Housing; 101. Mounting port; 11. Door; 12. Condenser; 13. Evaporator; 131. Evaporator tube; 132. Evaporator plate; 14. Compressor; 15. Water inlet valve; 2. Drum assembly; 20. Clothing treatment chamber; 201. Air inlet; 202. Air return outlet; 21. Outer drum; 22. Inner drum; 23. Door seal ring; 3. Mounting base; 30. Dual-chamber assembly; 31. Base; 310. Mounting chamber; 311. Air inlet; 312. Air outlet; 313. Air duct; 3131. Fan; 32. Top cover; 321. 322. Positioning post; 323. Second assembly hole; 324. Insertion port; 335. Spray device; 336. Spray channel; 337. Spray nozzle; 338. First inclined wall; 339. Second inclined wall; 330. Spray housing; 331. Isolation fence; 332. Positioning groove; 333. Fixing part; 334. First assembly hole; 335. Pipe interface; 346. Hair filter device; 340. Hair collection chamber; 3401. Slide groove; 3402. Loading and unloading port; 341. Filter assembly; 3411. First filter screen; 3412. Second filter screen; 347. 13. First flap; 34131. First filter port; 34132. First flip end; 34133. First buckle; 3414. Second flap; 34141. Second filter port; 34142. Second flip end; 34143. Second buckle; 342. Collection box; 3421. Air inlet; 3422. Air outlet; 3423. Receiving slot; 3424. Telescopic port; 343. Sealing ring; 344. Top cover; 3441. Lifting port; 3442. Flip cover; 345. Cleaning assembly; 3451. Cleaning plate; 34511. First scraper 34512, Second scraping section; 34513, Third scraping section; 34514, Fourth scraping section; 3452, Mounting shell; 34521, First notch; 34522, Second notch; 3453, Clamping plate; 34531, Handle; 3454, Fixing bracket; 3455, Hook; 3456, Connecting shaft; 346, Handle; 3461, Protrusion; 3462, Elastic arm; 34621, Bracket; 34621, Bracket; 3463, Connecting arm; 35, Return air duct; 4, Soap dish assembly; 41, Water inlet box; 42, Soap dish. Detailed Implementation

[0054] Typical embodiments embodying the features and advantages of this utility model will be described in detail in the following description. It should be understood that this utility model can have various variations in different embodiments, all of which do not depart from the scope of this utility model, and the descriptions and illustrations therein are for illustrative purposes only and not intended to limit this utility model.

[0055] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0056] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the stated features. In the description of this application, "a plurality of" means two or more, unless otherwise explicitly specified.

[0057] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0058] Figure 1 This is a schematic diagram of the structure of a clothing processing device according to an embodiment of the present invention. Figure 2 This is a partial structural diagram of the internal structure of a clothing processing device according to an embodiment of the present invention.

[0059] like Figure 1 and Figure 2 As shown, the garment processing device provided in this embodiment of the present invention may include a housing 1. The housing 1 may be constructed as the outer shell of the garment processing device. The housing 1 may typically have a hollow cuboid structure. It should be noted that in other embodiments, the external shape of the housing 1 may be designed as needed, and is not limited here. The interior of the housing 1 may be used to provide installation space.

[0060] In some embodiments, a clothing inlet (not shown in the figure) may be provided on the front side wall of the housing 1. This clothing inlet can connect to the internal space of the housing 1. Clothes can be placed into the housing 1 through the clothing inlet for washing.

[0061] Please see Figures 1-2 As shown, in some embodiments, a door 11 may be provided on the front side wall of the box body 1. The door 11 can be used to open and close the clothing inlet on the front side wall of the box body 1, thereby opening and closing the space inside the box body 1 through the door 11.

[0062] In some embodiments, the door 11 and the body 1 can be connected by a hinge, and the door 11 can rotate around the axis of the hinge, thereby realizing the opening and closing of the door 11 and opening and closing the clothing inlet.

[0063] like Figures 1-2 As shown, in some embodiments, the garment handling device may include a tubular assembly 2. The tubular assembly 2 may be disposed within the housing 1. The tubular assembly 2 may extend along the front-rear direction of the housing 1. A garment handling chamber 20 may be formed within the tubular assembly 2. A tubular opening may be formed on the front end face of the tubular assembly 2. This tubular opening communicates with the interior of the garment handling chamber 20. This tubular opening is directly opposite the garment inlet and the door 11 of the housing 1. When the door 11 is opened, garments can be sequentially placed into the garment handling chamber 20 within the tubular assembly 2 through the garment inlet at the front of the housing 1 and the tubular opening at the front end of the tubular assembly 2 for washing, dehydration, and other operations. When the housing 1 is closed, the housing 1 can simultaneously close the garment inlet and the garment handling chamber 20.

[0064] Figure 3 yes Figure 2 A schematic diagram of its decomposition.

[0065] like Figure 3 As shown, in some embodiments, the tub assembly 2 may include an outer tub 21. The outer tub 21 may be disposed inside the housing 1. The outer tub 21 may be configured as a tub for containing washing water. The internal space of the outer tub 21 can be used to hold washing liquids, such as water, detergent, fabric softener, etc.

[0066] In some embodiments, the tubular assembly 2 may include an inner tubing 22. The inner tubing 22 may be disposed inside the outer tubing 21. A clothes handling chamber 20 may be formed inside the inner tubing 22. The clothes handling chamber 20 within the inner tubing 22 is used to hold clothes to be washed. A water passage hole (not shown in the figure) may be provided on the peripheral wall of the inner tubing 22. The clothes handling chamber 20 can connect the space between the inner tubing 22 and the outer tubing 21 through the water passage hole. The washing liquid in the outer tubing 21 can enter the clothes handling chamber 20 within the inner tubing 22 through the water passage hole, that is, the washing liquid in the space between the inner tubing 22 and the outer tubing 21 can enter the clothes handling chamber 20 within the inner tubing 22 through the water passage hole.

[0067] In some embodiments, the inner drum 22 may be rotatably disposed inside the outer drum 21. When the inner drum 22 rotates relative to the outer drum 21, the inner drum 22 can drive the clothes to rotate relative to the outer drum 21, thereby realizing the washing function of the clothes in the clothes processing chamber 20 of the inner drum 22 and improving the uniformity of washing and dehydration of the clothes.

[0068] It should be noted that in other embodiments, the clothing processing chamber 20 can also be used to dry clothes, such as in a dryer or washer-dryer combo.

[0069] In some embodiments, the outer cylinder 21 and the inner cylinder 22 may also be arranged coaxially inside and outside. The front end of the outer cylinder 21 and the front end of the inner cylinder 22 may be provided with openings arranged opposite to each other. The front end opening of the outer cylinder 21 and the front end opening of the inner cylinder 22 can be combined to form the cylinder opening of the cylinder assembly 2.

[0070] In some embodiments, the tubular assembly 2 may include a door seal ring 23. The door seal ring 23 may be located at the front opening of the tubular assembly 2. The door seal ring 23 may be an annular structure. The door seal ring 23 may be made of an elastic sealing material. The door seal ring 23 is arranged around the periphery of the clothing inlet and the periphery of the opening of the tubular assembly 2. The periphery of the front end of the door seal ring 23 is sealed to the periphery of the clothing inlet of the housing 1, and the periphery of the rear end of the door seal ring 23 is sealed to the periphery of the opening of the outer tubular assembly 21, thereby sealing the gap between the clothing inlet of the housing 1 and the opening of the outer tubular assembly 21. Thus, when the door 11 closes the clothing inlet at the front of the housing 1, the door 11 can make sealed contact with the door seal ring 23. The door seal ring 23 prevents water in the clothing processing chamber 20 from entering the housing 1, while the door 11 prevents water in the clothing processing chamber 20 from overflowing from the clothing inlet of the housing 1.

[0071] like Figure 3 As shown, in some embodiments, the outer wall of the cylinder assembly 2 may be provided with an air inlet 201 and an air return outlet 202. The air inlet 201 and the air return outlet 202 may be connected to the clothing processing chamber 20. Drying air can enter the clothing processing chamber 20 through the air inlet 201 to dry the clothes inside the clothing processing chamber 20. During the drying process, the drying air can remove moisture from the clothes, thereby forming hot and humid air, which can be discharged from the clothing processing chamber 20 through the air return outlet 202, thus realizing the clothing drying function.

[0072] In some embodiments, the air inlet 201 and the air return outlet 202 may be respectively located at the front and rear ends of the cylindrical assembly 2. The air inlet 201 may be located on the outer wall of the front end of the cylindrical assembly 2. The air inlet 201 may be located at the door seal ring 23. The air return outlet 202 may be located on the outer wall of the rear end of the cylindrical assembly 2. The air inlet 201 connects to the front end of the clothing processing chamber 20, and the air return outlet 202 connects to the rear end of the clothing processing chamber 20.

[0073] It should be noted that in some other embodiments, the air inlet 201 may also be located on the outer wall of the rear end of the tubular assembly 2, thereby connecting to the rear end of the clothing processing chamber 20. The air return outlet 202 may also be located on the outer wall of the front end of the tubular assembly 2, thereby connecting to the front end of the clothing processing chamber 20.

[0074] Figure 4 yes Figure 3 A schematic diagram of the structure of the mounting base 3. Figure 5 yes Figure 4 A schematic diagram of its decomposition.

[0075] like Figure 4 and Figure 5 As shown, in some embodiments, the garment processing device may include a mounting base 3. Two cavities 30 are formed within the mounting base 3. The two cavities 30 can be respectively connected to an air inlet 201 and an air return outlet 202, thereby forming a drying air duct within the mounting base 3. The drying air duct is connected to the garment processing chamber 20, thereby forming a drying air circulation.

[0076] For example, the dry hot air (i.e., drying air) generated in the two chambers 30 can enter the clothing processing chamber 20 through the air inlet 201 to dry the clothes. The humid hot air generated in the clothing processing chamber 20 can return to the two chambers 30 through the return air inlet 202, be condensed and dehumidified, and then reheated to form dry hot air, which then re-enters the clothing processing chamber 20 through the air inlet 201 to dry the clothes, thus realizing the circulation of drying air.

[0077] Figure 6 yes Figure 5 A partial structural diagram. Figure 7 yes Figure 6 A schematic diagram of its decomposition.

[0078] like Figure 5 , Figure 6 and Figure 7 As shown, in some embodiments, the garment handling device may include a heat pump system. The heat pump system may include a compressor 14, a condenser 12, and an evaporator 13. The compressor 14, condenser 12, and evaporator 13 may be connected sequentially via piping. For example, the outlet of the compressor 14 is connected to the inlet of the condenser 12, the outlet of the condenser 12 is connected to the inlet of the evaporator 13, and the outlet of the evaporator 13 is connected to the inlet of the compressor 14, thus creating a refrigerant circulation channel within the compressor 14, condenser 12, and evaporator 13. After being compressed by the compressor 14, the refrigerant enters the condenser 12, causing the condenser 12 to heat up, thereby heating the air surrounding it. The refrigerant in the condenser 12 flows into the evaporator 13, allowing the evaporator 13 to absorb heat, thereby condensing and cooling the air surrounding it.

[0079] It should be noted that in some other embodiments, the evaporator 13 can also be replaced by other condensing devices, such as a water condenser, which can also condense and cool the surrounding air.

[0080] In some other embodiments, the condenser 12 may be replaced by other heating devices, such as an electric heater, which can also heat the surrounding air.

[0081] In some embodiments, the evaporator 13 may be disposed within the mounting base 3. The evaporator 13 may be disposed within the two chambers 30. The evaporator 13 may be disposed on the side of the two chambers 30 near the return air inlet 202. When humid and hot air from the clothing processing chamber 20 enters the two chambers 30 through the return air inlet 202, the humid and hot air can contact the evaporator 13 and exchange heat. The evaporator 13 condenses and cools the humid and hot air, causing the moisture in the humid and hot air to condense on the surface of the evaporator 13, thereby removing the moisture from the humid and hot air. In this way, the humid and hot air entering the two chambers 30 can be condensed by the evaporator 13 to form dry and cold air.

[0082] In some embodiments, the condenser 12 may be disposed within the mounting base 3. The condenser 12 may be disposed within the two chambers 30. The condenser 12 may be disposed on the side of the two chambers 30 closest to the air inlet 201. After the humid, hot air entering the two chambers 30 is condensed by the evaporator 13 to form dry, cold air, the dry, cold air can contact the condenser 12 and exchange heat, using the condenser 12 to heat the dry, cold air to form dry, hot air. Thus, the condenser 12 can be used to form dry, hot air within the two chambers 30, and then this dry, hot air can be introduced into the clothing processing chamber 20 through the air inlet 201 to dry the clothes, achieving the clothing drying function.

[0083] like Figure 3 , Figure 6 and Figure 7 As shown, in some embodiments, the mounting base 3 may be provided with an air inlet 311 and an air outlet 312 on opposite sides. The air inlet 311 and the air outlet 312 may be connected to opposite sides of the two chambers 30 respectively. The air inlet 311 may be used to connect with the return air inlet 202 of the cylinder assembly 2. The air outlet 312 may be used to connect with the air inlet 201 of the cylinder assembly 2. In this way, the clothes processing chamber 20 can be connected to the two chambers 30 through the return air inlet 202 and the air inlet 311. The two chambers 30 can be connected to the clothes processing chamber 20 through the air outlet 312 and the air inlet 201. The humid and hot air in the clothes processing chamber 20 can enter the two chambers 30 sequentially through the return air inlet 202 and the air inlet 311, be condensed by the evaporator 13 and heated by the condenser 12, and then return to the clothes processing chamber 20 sequentially through the air outlet 312 and the air inlet 201 to dry the clothes in the clothes processing chamber 20.

[0084] like Figure 6 and Figure 7 As shown, in some embodiments, the evaporator 13 and the condenser 12 can be arranged adjacently within the two chambers 30. The evaporator 13 can be located on the side of the condenser 12 near the air inlet 311 and the air return outlet 202. The condenser 12 can be located on the side of the evaporator 13 near the air outlet 312 and the air inlet 201. In this way, by arranging the evaporator 13 and the condenser 12 adjacently, the internal structure of the two chambers 30 can be made compact, improving the space utilization of the two chambers 30.

[0085] like Figure 5 and Figure 6 As shown, in some embodiments, the mounting base 3 may include a base 31 and a top cover 32. Two cavities 30 may be disposed on the top surface of the base 31. The top surfaces of the two cavities 30 are open. The top cover 32 may be placed on the top surface of the base 31 and cover the openings on the top surfaces of the two cavities 30. In this way, the two cavities 30 can be sealed between the base 31 and the top cover 32. When the top cover 32 is removed from the base 31, the evaporator 13 and the condenser 12 can be installed into the two cavities 30 respectively.

[0086] like Figure 6 and Figure 7 As shown, in some embodiments, an air outlet duct 313 may be provided inside the mounting base 3. The air outlet duct 313 may be provided on the base 31. The air outlet duct 313 may be located on one side of the two chambers 30. One end of the air outlet duct 313 may communicate with the two chambers 30. The condenser 12 may be located on the side of the two chambers 30 near the air outlet duct 313. The other end of the air outlet duct 313 may form an air outlet 312. In this way, the dry hot air generated by the condenser 12 in the two chambers 30 can flow out through the air outlet duct 313 and flow into the clothing processing chamber 20 through the air inlet 201.

[0087] like Figure 6 and Figure 7 As shown, in some embodiments, a fan 3131 may be provided inside the mounting base 3. The fan 3131 may be located inside the air outlet duct 313. The fan 3131 may be located at the end of the air outlet duct 313 that communicates with the two chambers 30. The fan 3131 can be used to provide airflow, and the fan 3131 can actively draw air from the two chambers 30, so that the dry hot air formed in the two chambers 30 can actively flow out through the air outlet duct 313, forming dry hot air. The dry hot air can flow into the clothing processing chamber 20 through the air inlet 201 to dry the clothes in the clothing processing chamber 20. In addition, the airflow of the fan 3131 can also cause the humid hot air in the clothing processing chamber 20 to flow out through the return air inlet 202 and return to the two chambers 30 through the air inlet 311.

[0088] likeFigure 3 and Figure 4 As shown, in some embodiments, the air inlet 311 of the mounting base 3 can be arranged downwards, while the return air inlet 202 of the cylinder assembly 2 can be arranged upwards. The air inlet 311 can be located above the return air inlet 202. This facilitates vertical connection and communication between the air inlet 311 and the return air inlet 202.

[0089] like Figure 3 and Figure 4 As shown, in some embodiments, a return air duct 35 can be used between the air inlet 311 of the mounting base 3 and the return air inlet 202 of the cylinder assembly 2. The return air duct 35 can be vertically arranged between the air inlet 311 and the return air inlet 202. The lower end of the return air duct 35 can be sealed and connected to the return air inlet 202. The upper end of the return air duct 35 can be sealed and connected to the air inlet 311. In this way, the air inlet 311 and the return air inlet 202 can be connected vertically by the return air duct 35, thereby improving the sealing performance of the connection between the air inlet 311 and the return air inlet 202.

[0090] Figure 8 yes Figure 5 A schematic diagram of the structure of the medium-sized lint filter device 34. Figure 9 yes Figure 8 A structural diagram from another perspective.

[0091] like Figure 5 , Figure 8 and Figure 9 As shown, in some embodiments, the garment processing apparatus may include a lint filter 34. The lint filter 34 may be disposed within the mounting base 3. The lint filter 34 may be disposed on the side of the evaporator 13 near the air inlet 311. The lint filter 34 can be used to filter and collect lint. During the garment drying process, when the humid and hot air in the garment processing chamber 20 flows into the two chambers 30 through the return air inlet 202 and the air inlet 311, the airflow from the air inlet 311 can flow into the lint filter 34. After being filtered by the lint filter 34, it flows into the two chambers 30 and contacts the evaporator 13. In this way, lint in the air can be filtered by the lint filter 34, trapping lint inside the lint filter 34, which helps reduce the amount of lint entering the two chambers 30 and reduces lint adhesion to the evaporator 13 and condenser 12.

[0092] like Figure 5 , Figure 7 and Figure 9As shown, in some embodiments, the lint filter 34 may be located in the area between the air inlet 311 and the two chambers 30. The lint filter 34 may include a lint collection chamber 340. The lint collection chamber 340 may be formed inside the lint filter 34. One end of the lint collection chamber 340 may communicate with the air inlet 311. The two chambers 30 may be located on one side of the lint collection chamber 340. The side of the lint collection chamber 340 near the evaporator 13 may communicate with the two chambers 30. In this way, the humid and hot air in the clothing processing chamber 20 enters the lint collection chamber 340 directly through the air inlet 311, and then enters the two chambers 30 to contact the evaporator 13. When the air flows through the lint collection chamber 340, the lint in the air can be filtered and collected in the lint collection chamber 340.

[0093] In some embodiments, the mounting base 3 may have a mounting cavity 310. The mounting cavity 310 may be formed on the top surface of the base 31. The mounting cavity 310 may be located in the region between the air inlet 311 and the two-component cavity 30. The air inlet 311 may be located at one end of the mounting cavity 310. The two-component cavity 30 may be located on one side of the mounting cavity 310. The mounting cavity 310 may communicate with both the air inlet 311 and the two-component cavity 30. The mounting cavity 310 may be arranged adjacent to the two-component cavity 30. The mounting cavity 310 and the two-component cavity 30 may be arranged adjacent to each other on the top surface of the base 31. A top cover 32 may be provided on the top of the mounting cavity 310 and the two-component cavity 30. A lint filter device 34 may be provided in the mounting cavity 310. In this way, lint in the region between the air inlet 311 and the two-component cavity 30 can be collected by the lint filter device 34.

[0094] In some embodiments, the mounting cavity 310 may be elongated and arranged adjacent to each other on one side of the two chambers 30. The lint collection cavity 340 may also be elongated. The length direction of the lint collection cavity 340 may be aligned with the length direction of the mounting cavity 310. The two chambers 30 may be located on one side of the length direction of the lint collection cavity 340. One end of the mounting cavity 310 and the lint collection cavity 340 in the length direction may communicate with the air inlet 311.

[0095] like Figure 1 , Figure 5 and Figure 6As shown, in some embodiments, the outer wall of the housing 1 may be provided with an installation port 101. The lint filter device 34 can be disposed in the mounting base 3 through the installation port 101. The lint filter device 34 can be pulled out or inserted into the housing 1 and the mounting base 3 through the installation port 101. The lint filter device 34 can extend into the mounting cavity 310 through the installation port 101. In this way, the user can install and remove the lint filter device 34 from the outside of the housing 1, inserting the lint filter device 34 into the mounting base 3 of the housing 1 through the installation port 101, or removing the lint filter device 34 from the mounting base 3 of the housing 1 through the installation port 101, so that the user can clean the inside of the lint filter device 34 regularly.

[0096] In some embodiments, the mounting port 101 may be located on the top surface of the housing 1. This allows the user to install and remove the lint filter 34 from the top of the housing 1, facilitating user operation.

[0097] like Figure 4 , Figure 5 and Figure 6 As shown, in some embodiments, an insertion port 323 may be provided on the top wall of the mounting base 3. The insertion port 323 may be located on the top wall of the mounting base 3. The insertion port 323 may be located on the top cover 32. The insertion port 323 may be located above the top of the mounting cavity 310, and the insertion port 323 may communicate with the mounting cavity 310 inside the mounting base 3. The mounting port 101 and the insertion port 323 are arranged vertically opposite each other. The lint filter device 34 may extend downward into the insertion port 323 through the mounting port 101 and into the mounting cavity 310 arranged in the mounting base 3, so that the lint filter device 34 is arranged in the mounting cavity 310, thereby facilitating the arrangement of the lint filter device 34 in the area between the air inlet 311 and the two chambers 30.

[0098] Figure 10 yes Figure 9 A schematic diagram of its decomposition.

[0099] like Figure 5 , Figure 8 and Figure 10 As shown, in some embodiments, the lint filter device 34 may include a filter assembly 341. The filter assembly 341 may be disposed on the side of the lint filter device 34 near the evaporator 13. The filter assembly 341 may be disposed on the cavity wall near the two chambers 30 and the evaporator 13. The filter assembly 341 can be used to filter lint in the air flowing from the air inlet 311 to the two chambers 30. When hot and humid air flows through the lint collection cavity 340 and the filter assembly 341, the filter assembly 341 can filter out most of the lint in the hot and humid air, causing the lint to be blocked on the side wall of the filter assembly 341 facing the lint collection cavity 340, greatly reducing the amount of lint entering the two chambers 30, and thus reducing the amount of lint adhering to the surface of the evaporator 13.

[0100] It should be noted that, after being filtered by the filter assembly 341, most of the hair collected in the hair collection chamber 340 adheres to the side wall of the filter assembly 341 facing the hair collection chamber 340, and a small portion adheres to the other chamber walls of the hair collection chamber 340.

[0101] In some embodiments, an air outlet 3422 may be formed on the side of the lint filter device 34 near the two chambers 30. The air outlet 3422 may be located on the side of the lint collection chamber 340 near the two chambers 30. The air outlet 3422 may be formed on one side wall along the length direction of the lint collection chamber 340. A filter assembly 341 is located at the air outlet 3422. After hot and humid air enters the lint collection chamber 340 through the air inlet 311, it can flow into the two chambers 30 through the air outlet 3422. When the hot and humid air flows through the air outlet 3422, the filter assembly 341 can filter out most of the lint in the hot and humid air and retain the lint in the lint collection chamber 340.

[0102] like Figure 5 , Figure 8 and Figure 9 As shown, in some embodiments, the lint filter device 34 may include a collection box 342. A lint collection cavity 340 may be formed within the collection box 342. The collection box 342 may be arranged between the air inlet 311 and the two chambers 30. The collection box 342 may have an elongated structure and be arranged adjacent to one side of the two chambers 30. The length direction of the collection box 342 may be consistent with the length direction of the mounting cavity 310.

[0103] In some embodiments, one end of the collection box 342 may be provided with an air inlet 3421. The air inlet 3421 may be located at one end of the collection box 342 along its length. The air inlet 3421 may be located at one end of the lint collection chamber 340 along its length. The air inlet 3421 may be arranged facing the air inlet 311 and communicate directly with the air inlet 311. The air inlet 3421 may be located at the end of the collection box 342 facing the air inlet 311. In this way, air flowing out of the air inlet 311 can easily enter the lint collection chamber 340 through the air inlet 3421.

[0104] like Figure 8 , Figure 9 and Figure 10 As shown, in some embodiments, the air outlet 3422 may be located on the side wall of the collection box 342 facing the two chambers 30. The filter assembly 341 may be located on the side wall of the collection box 342 near the two chambers 30. The filter assembly 341 may be located between the lint collection chamber 340 and the air outlet 3422. The filter assembly 341 may be detachably located within the collection box 342, thereby allowing the filter assembly 341 to be detachably located at the air outlet 3422.

[0105] It should be noted that in some other embodiments, the filter assembly 341 may also be fixedly installed inside the collection box 342, or integrally formed with the interior of the collection box 342.

[0106] like Figure 9 and Figure 10 As shown, in some embodiments, a groove 3401 may be provided inside the lint filter 34 near the air outlet 3422. The filter assembly 341 is slidably disposed within the groove 3401 and covers the air outlet 3422. Thus, the filter assembly 341 can be slidably installed along the groove 3401, facilitating its installation at the air outlet 3422 to filter lint from the air flowing through it. In this lint filter 34, the groove 3401, located near the air outlet 3422, guides and fixes the filter assembly 341. The filter assembly 341 can be slidably installed within the groove 3401, ensuring precise coverage of the air outlet 3422. With this design, when air flows through the air outlet 3422, the filter can effectively capture particulate matter such as lint, achieving highly efficient filtration of the flowing air.

[0107] like Figure 8 and Figure 10 As shown, in some embodiments, the outer wall of the lint filter device 34 may be provided with a loading / unloading port 3402. The loading / unloading port 3402 may be located on the outer wall of the collection box 342. The loading / unloading port 3402 may be located at one end of the slide 3401, and the loading / unloading port 3402 may communicate with the slide 3401. The filter assembly 341 can be inserted into the slide 3401 through the loading / unloading port 3402. In this way, the filter assembly 341 can be conveniently installed in the slide 3401 through the loading / unloading port 3402 and covered at the air outlet 3422.

[0108] like Figure 8 and Figure 10 As shown, in some embodiments, the filter assembly 341 may include multiple layers of filters. The multiple layers of filters may include at least two layers. The multiple layers of filters may be arranged sequentially at intervals along the airflow direction at the location of the filter assembly 341. Thus, the multiple layers of filters can be arranged sequentially at intervals along the airflow direction within the filter assembly 341. When humid and hot air flows through the filter assembly 341, the humid and hot air can sequentially pass through the multiple layers of filters, undergoing multiple filtrations to improve the filtration effect and efficiency for lint.

[0109] In some embodiments, the pore density of the multi-layer filter screen can increase sequentially along the airflow direction within the filter assembly 341. Thus, when the multi-layer filter screen filters humid and hot air multiple times, it can sequentially filter lint of different sizes, which is beneficial for improving the filtration effect and efficiency.

[0110] Figure 11 yes Figure 10 A schematic diagram of the structure of the middle filter assembly 341. Figure 12 yes Figure 11 A structural diagram in another state.

[0111] like Figure 10 , Figure 11 and Figure 12 As shown, in some embodiments, the multi-layer filter may include at least a first filter 3411 and a second filter 3412. The first filter 3411 and the second filter 3412 may be arranged sequentially at intervals along the airflow direction within the filter assembly 341. The first filter 3411 may be located on the side of the filter assembly 341 facing the lint collection chamber 340. The second filter 3412 may be spaced apart on the side of the first filter 3411 near the chamber 30. The pore density of the first filter 3411 may be greater than that of the second filter 3412. In this way, larger lint can be filtered and collected inside the lint collection chamber 340. Smaller lint can be filtered and collected on the side of the second filter 3412 facing the first filter 3411, accumulating in the area between the second filter 3412 and the first filter 3411.

[0112] like Figure 10 , Figure 11 and Figure 12 As shown, in some embodiments, the filter assembly 341 may include a first flap 3413. The first filter 3411 may be disposed on the first flap 3413.

[0113] In some embodiments, the filter assembly 341 may include a second flap 3414. One end of the second flap 3414 may be flipped and connected to one end of the first flap 3413. A second filter 3412 may be disposed on the second flap 3414. When the second flap 3414 is flipped closed relative to the first flap 3413, the second flap 3414 and the first flap 3413 may fit together, and the first filter 3411 and the second filter 3412 may be arranged relatively parallel and spaced apart. At this time, when the filter assembly 341 is installed at the air outlet 3422, the first flap 3413 may be disposed on the side of the second flap 3414 facing the lint collection chamber 340, and the second flap 3414 may be disposed on the side of the first flap 3413 facing the two chambers 30. The flip-connection structure of the first flap 3413 and the second flap 3414 facilitates the parallel and spaced arrangement of the first filter screen 3411 and the second filter screen 3412, thereby facilitating multiple filtrations of the humid and hot air flowing through the filter assembly 341.

[0114] In some embodiments, the first filter screen 3411 may be disposed on the surface of the first flap 3413 facing the lint collection chamber 340. In this way, when the first filter screen 3411 filters lint, the first filter screen 3411 can block the lint on the surface of the first flap 3413 facing the lint collection chamber 340, which facilitates the scraping off of the lint on the first filter screen 3411 when cleaning the first filter screen 3411.

[0115] In some embodiments, the second filter 3412 may be disposed on the surface of the second flap 3414 facing the first flap 3413. The second filter 3412 may also be disposed on the surface of the second flap 3414 away from the two cavities 30. Thus, when the second filter 3412 filters lint, it can block lint on the surface of the second flap 3414 facing the first flap 3413. When the second flap 3414 is flipped open relative to the first flap 3413, the second filter 3412 can be easily cleaned from the surface of the second flap 3414.

[0116] like Figure 10 , Figure 11 and Figure 12 As shown, in some embodiments, the first flap 3413 may be provided with a first filter port 34131. A first filter screen 3411 may cover the first filter port 34131. When air flows through the filter assembly 341, the air can pass through the first filter port 34131, and then the first filter screen 3411 filters the lint in the air.

[0117] In some embodiments, multiple first filter ports 34131 may be provided. A first filter screen 3411 may simultaneously cover multiple first filter ports 34131. The number and size of the first filter ports 34131 can be adjusted as needed and are not limited herein.

[0118] In some embodiments, the second flap 3414 may be provided with a second filter port 34141. A second filter screen 3412 may cover the second filter port 34141. When air flows through the filter assembly 341, the air can pass through the second filter port 34141 and then be filtered by the second filter screen 3412 to remove lint from the air.

[0119] In some embodiments, multiple second filter ports 34141 may be provided. A second filter screen 3412 may simultaneously cover multiple second filter ports 34141. The number and size of the second filter ports 34141 can be adjusted as needed and are not limited herein.

[0120] like Figure 10 , Figure 11 and Figure 12 As shown, in some embodiments, the end of the first flap 3413 that is flipped and connected to the second flap 3414 can be a first flipping end 34132. The end of the first flap 3413 away from the first flipping end 34132 can be provided with a first latch 34133. The end of the second flap 3414 that is flipped and connected to the first flap 3413 can be a second flipping end 34142. The end of the second flap 3414 away from the second flipping end 34142 can be provided with a second latch 34143.

[0121] When the second flap 3414 is flipped open relative to the first flap 3413, the first flip end 34132 of the first flap 3413 is connected to the second flip end 34142 of the second flap. The first buckle 34133 can be located at the end of the first flap 3413 away from the second flap 3414, and the second buckle 34143 can be located at the end of the second flap 3414 away from the first flap 3413.

[0122] When the second flap 3414 flips and closes relative to the first flap 3413, the first buckle 34133 and the second buckle 34143 can engage with each other, which can fix the first flap 3413 and the second flap 3414 relatively, thereby allowing the second flap 3414 and the first flap 3413 to fit together, and the first filter screen 3411 and the second filter screen 3412 can be arranged relatively parallel and spaced apart, and the first filter screen 3411 and the second filter screen 3412 can be relatively fixed.

[0123] It should be noted that in some other embodiments, the first buckle 34133 may also be located at other positions of the first flap 3413, and the second buckle 34143 may also be located at other positions of the second flap 3414, with the first buckle 34133 and the second buckle 34143 arranged opposite to each other.

[0124] In some other embodiments, the filter assembly 341 may include multiple sets of first flaps 3413 and second flaps 3414. The multiple sets of first flaps 3413 and second flaps 3414 are arranged in parallel at the air outlet 3422, allowing multiple sets of first filters 3411 and second filters 3412 to be present at the air outlet 3422. The cooperation of the multiple sets of first filters 3411 and second filters 3412 can further improve the filtration effect on pet hair.

[0125] Figure 13 yes Figure 8 A structural diagram from another perspective. Figure 14 yes Figure 13 A schematic diagram of the structure of the cleaning component 345 and the handle 346.

[0126] like Figure 8 , Figure 9 , Figure 13 and Figure 14 As shown, in some embodiments, the lint filter device 34 may include a cleaning component 345. The cleaning component 345 is slidably disposed within the lint collection chamber 340. The cleaning component 345 may contact the surface of the filter assembly 341. The cleaning component 345 is configured to slide along the lint collection chamber 340, thereby scraping away lint from the surface of the filter assembly 341. For example, the cleaning component 345 may slide along the length of the lint collection chamber 340. During the sliding process, the cleaning component 345 may scrape away lint from the surface of the filter assembly 341 facing the lint collection chamber 340, thereby improving the cleaning effect on lint inside the lint filter device 34 and enhancing and maintaining the lint filtration effect of the lint filter device 34 for a longer period.

[0127] In some embodiments, the first filter screen 3411 may be disposed on the side of the filter screen assembly 341 facing the lint collection chamber 340. In this way, during the sliding process of the cleaning assembly 345, the cleaning assembly 345 can contact the surface of the first filter screen 3411, thereby scraping off the lint on the first filter screen 3411, which facilitates manual cleaning of the first filter screen 3411.

[0128] In some embodiments, the cleaning component 345 may contact the cavity wall of the lint collection chamber 340. When the cleaning component 345 slides along the cavity wall of the lint collection chamber 340, it can scrape off the lint on the cavity wall, thereby facilitating manual cleaning of the cavity wall and improving the cleaning effect on the lint inside the lint filter device 34, thus enhancing and maintaining the filtration effect of the lint filter device 34 on lint over a long period.

[0129] like Figure 9 , Figure 13 and Figure 14 As shown, in some embodiments, the lint filter device 34 may include a handle 346. The handle 346 may be exposed outside the collection box 342. The handle 346 may be elongated, and one end of the handle 346 may be flipped to connect with the cleaning assembly 345. The handle 346 can be flipped to the end of the cleaning assembly 345 away from the air inlet 3421. The handle 346 can push the cleaning assembly 345 to slide along the lint collection chamber 340, for example, along the length of the lint collection chamber 340, thereby enabling the cleaning assembly 345 to scrape lint from the surface of the filter assembly 341 and from the walls of the lint collection chamber 340.

[0130] Figure 15 yes Figure 8 A structural diagram in another state. Figure 16 yes Figure 15 A schematic diagram of the structure of the cleaning component 345 and the handle 346.

[0131] like Figure 15 and Figure 16 As shown, in some embodiments, a receiving groove 3423 may be provided on the bottom surface of the collection box 342. The receiving groove 3423 may be provided on the bottom surface of the lint filter device 34. When the cleaning component 345 moves to the end of the lint collection chamber 340 away from the air inlet 3421, the handle 346 can be flipped to the bottom of the collection box 342 and accommodated in the receiving groove 3423. In this way, when it is not necessary to clean the lint on the surface of the filter assembly 341 and the cavity wall of the lint collection chamber 340, the cleaning component 345 can be moved to the end of the lint collection chamber 340 away from the air inlet 3421, avoiding the cleaning component 345 affecting the airflow in the lint collection chamber 340. Furthermore, when it is not necessary to clean the surface of the filter assembly 341 and the lint on the wall of the lint collection chamber 340, the handle 346 can be flipped over and hidden in the receiving groove 3423 at the bottom of the lint filter device 34 to reduce the overall volume of the lint filter device 34, thereby not affecting the installation and disassembly of the lint filter device 34, and not affecting the overall appearance of the lint filter device 34.

[0132] In some embodiments, a locking protrusion 3461 may be provided on the outer wall of the end of the handle 346 that is flipped and connected to the cleaning component 345. When the handle 346 is flipped and received in the receiving groove 3423, the locking protrusion 3461 may contact the inner wall of the receiving groove 3423 to lock and limit the handle 346 in the receiving groove 3423, thereby fixing the handle 346 in the receiving groove 3423 and preventing the handle 346 from easily detaching from the receiving groove 3423.

[0133] In some embodiments, the inner wall of the receiving groove 3423 may be provided with a slot (not shown in the figure) that mates with the latching protrusion 3461. When the handle 346 is flipped and received in the receiving groove 3423, the latching protrusion 3461 can engage in the slot, thereby locking and limiting the handle 346 within the receiving groove 3423.

[0134] like Figure 14 and Figure 15 As shown, in some embodiments, an elastic arm 3462 may be provided on the outer wall of the end of the handle 346 that is flipped and connected to the cleaning assembly 345. A hook 3455 may be provided on the end wall of the cleaning assembly 345 facing the handle 346. When the handle 346 is flipped to the end of the cleaning assembly 345 away from the air inlet 3421, the elastic arm 3462 can engage with the hook 3455, thereby fixing the handle 346 to one end of the cleaning assembly 345 and arranging the handle 346 along the length direction of the lint collection cavity 340. In this way, by engaging the elastic arm 3462 with the hook 3455, the handle 346 can be stably fixed to one end of the cleaning assembly 345, allowing the handle 346 to stably push the cleaning assembly 345 to slide within the lint collection cavity 340. Furthermore, when the handle 346 pushes the cleaning component 345 to slide within the lint collection chamber 340, the handle 346 can gradually extend into the lint collection chamber 340 along its length, allowing the cleaning component 345 to slide from one end of the lint collection chamber 340 to the other end, thereby cleaning the lint on the entire surface of the filter assembly 341 and the lint on the entire wall of the lint collection chamber 340.

[0135] In some embodiments, the resilient arm 3462 may extend from the end of the handle 346 near the cleaning assembly 345 toward the end of the handle 346 away from the cleaning assembly 345. A retaining rib 34621 may protrude from the outer wall of the resilient arm 3462. When the handle 346 is flipped to one end of the cleaning assembly 345, the hook 3455 can engage with the retaining rib 34621 on the outer wall of the resilient arm 3462, thereby fixing the handle 346 to one end of the cleaning assembly 345.

[0136] like Figure 9 , Figure 13 and Figure 14As shown, in some embodiments, a telescopic opening 3424 may be provided on the end wall of the collection box 342 away from the air inlet 3421. The telescopic opening 3424 may be provided on the end wall of the lint filter device 34 away from the air inlet 3421. One end of the handle 346 may extend into the lint collection cavity 340 through the telescopic opening 3424 and be flipped to connect with the cleaning component 345. Thus, when the handle 346 is flipped to one end of the cleaning component 345, the handle 346 may gradually extend into the lint collection cavity 340 through the telescopic opening 3424, thereby pushing the cleaning component 345 to slide along the length of the lint collection cavity 340 toward one end of the air inlet 3421.

[0137] Figure 17 yes Figure 16 A schematic diagram of its decomposition.

[0138] like Figure 16 and Figure 17 As shown, in some embodiments, a connecting shaft 3456 may protrude from the end wall of the cleaning assembly 345 facing the telescopic opening 3424. One end of the handle 346 may be rotatably connected to the connecting shaft 3456 so that one end of the handle 346 can be flipped relative to the cleaning assembly 345 about the connecting shaft 3456.

[0139] In some embodiments, the end of the handle 346 near the cleaning assembly 345 may be provided with an upwardly bent connecting arm 3463. The handle 346 can be rotatably connected to the connecting shaft 3456 via the connecting arm 3463. Thus, when the handle 346 is flipped and hidden in the receiving groove 3423 at the bottom of the lint filter device 34, the connecting arm 3463 can be located at one end of the lint filter device 34, and one end of the handle 346 can be rotatably connected to the cleaning assembly 345 via the connecting arm 3463.

[0140] In some embodiments, the telescopic opening 3424 may communicate with one end of the receiving groove 3423. Thus, when the handle 346 is flipped over and hidden in the receiving groove 3423 at the bottom of the lint filter device 34, the connecting arm 3463 may extend from the telescopic opening 3424 and be arranged at the end of the receiving groove 3423.

[0141] Figure 18 yes Figure 13 A sectional view.

[0142] like Figure 17 and Figure 18As shown, in some embodiments, a handle 34531 may protrude from the end wall of the cleaning component 345 facing the air inlet 3421. The handle 34531 can be held to insert the cleaning component 345 into the lint collection chamber 340 through the air inlet 3421, or to remove the cleaning component 345 from the lint collection chamber 340 through the air inlet 3421. For example, a user can use the handle 34531 to install the cleaning component 345 into the lint collection chamber 340 through the air inlet 3421. The user can also use the handle 34531 to remove the cleaning component 345 from the lint collection chamber 340 through the air inlet 3421, thereby facilitating the installation and removal of the cleaning component 345 and improving the efficiency of installation and maintenance of the cleaning component 345.

[0143] like Figure 16 , Figure 17 and Figure 18 As shown, in some embodiments, the cleaning assembly 345 may include a cleaning blade 3451. At least a portion of the peripheral edge of the cleaning blade 3451 may contact the surface of the filter assembly 341. As the cleaning assembly 345 slides along the lint collection chamber 340, at least a portion of the peripheral edge of the cleaning blade 3451 may maintain sliding contact with the surface of the filter assembly 341, thereby scraping away lint from the surface of the filter assembly 341.

[0144] In some embodiments, at least a portion of the peripheral edge of the cleaning pad 3451 may contact the cavity wall of the lint collection cavity 340. When the cleaning assembly 345 slides along the lint collection cavity 340, at least a portion of the peripheral edge of the cleaning pad 3451 may maintain sliding contact with the cavity wall of the lint collection cavity 340, thereby scraping away lint from the cavity wall of the lint collection cavity 340.

[0145] like Figure 16 , Figure 17 and Figure 18 As shown, in some embodiments, the cleaning assembly 345 may include a mounting housing 3452. The mounting housing 3452 is movably disposed within the lint collection cavity 340. The mounting housing 3452 is slidable along the lint collection cavity 340, i.e., the mounting housing 3452 is slidable along the lint collection cavity 340. A cleaning plate 3451 may be fixedly disposed on the mounting housing 3452. At least a portion of the peripheral edge of the cleaning plate 3451 may extend beyond the peripheral edge of the mounting housing 3452. Thus, when the cleaning assembly 345 slides along the lint collection cavity 340, the portion of the peripheral edge of the cleaning plate 3451 extending beyond the mounting housing 3452 can maintain sliding contact with the surface of the filter assembly 341, thereby scraping away lint from the surface of the filter assembly 341. When the cleaning component 345 slides along the lint collection cavity 340, the peripheral edge of the cleaning plate 3451 extending beyond the mounting housing 3452 can maintain sliding contact with the cavity wall of the lint collection cavity 340, thereby scraping away the lint from the cavity wall of the lint collection cavity 340.

[0146] In some embodiments, the cleaning assembly 345 may include a clamping plate 3453. The clamping plate 3453 may be fixedly disposed on the mounting housing 3452. The clamping plate 3453 can clamp and fix the cleaning sheet 3451 to the mounting housing 3452, so that the cleaning sheet 3451 is clamped and fixed between the mounting housing 3452 and the clamping plate 3453. The clamping cooperation between the mounting housing 3452 and the clamping plate 3453 facilitates the installation and replacement of the cleaning sheet 3451, making it convenient for user use.

[0147] In some embodiments, the handle portion 34531 may protrude from the side wall of the clamping plate 3453 away from the mounting housing 3452. When the clamping plate 3453 is fixed to the mounting housing 3452, the handle portion 34531 may be provided on one end wall of the cleaning assembly 345.

[0148] like Figure 16 and Figure 17 As shown, in some embodiments, the cleaning assembly 345 may include a mounting bracket 3454. The mounting bracket 3454 may be disposed inside the mounting housing 3452. The mounting bracket 3454 may be clamped between the mounting housing 3452 and the clamping plate 3453. A hook 3455 may be disposed on the side wall of the mounting bracket 3454 away from the clamping plate 3453. A connecting shaft 3456 may be disposed on the side wall of the mounting bracket 3454 away from the clamping plate 3453. When the mounting bracket 3454 is clamped between the mounting housing 3452 and the clamping plate 3453, the hook 3455 may be disposed on the end wall of the cleaning assembly 345 away from the clamping plate 3453, and the connecting shaft 3456 may be disposed on the end wall of the cleaning assembly 345 away from the clamping plate 3453.

[0149] like Figure 16 and Figure 17 As shown, in some embodiments, the mounting housing 3452 has a first notch 34521 arranged opposite to the hook 3455. The hook 3455 can pass through the first notch 34521 and protrude from the mounting housing 3452. When the fixing bracket 3454 is clamped between the mounting housing 3452 and the clamping plate 3453, the hook 3455 can pass through the first notch 34521 and be arranged on the end wall of the cleaning assembly 345 away from the clamping plate 3453.

[0150] It should be noted that in some other embodiments, the hook 3455 may also be formed directly on the outer wall of the mounting housing 3452, so that the hook 3455 can be directly arranged on the end wall of the cleaning assembly 345 away from the clamping plate 3453.

[0151] like Figure 17 and Figure 18As shown, in some embodiments, the mounting housing 3452 has a second notch 34522 arranged opposite to the connecting shaft 3456. The connecting shaft 3456 can pass through the second notch 34522 and be exposed outside the mounting housing 3452. When the fixing bracket 3454 is clamped between the mounting housing 3452 and the clamping plate 3453, the connecting shaft 3456 can pass through the second notch 34522 and be arranged on the end wall of the cleaning assembly 345 away from the clamping plate 3453.

[0152] It should be noted that in some other embodiments, the connecting shaft 3456 may also be formed directly on the outer wall of the mounting housing 3452, so that the connecting shaft 3456 can be directly arranged on the end wall of the cleaning assembly 345 away from the clamping plate 3453.

[0153] like Figure 5 and Figure 8 As shown, in some embodiments, the cleaning plate 3451 may have a first scraping portion 34511 on the side facing the filter assembly 341. The first scraping portion 34511 extends beyond the edge of the mounting housing 3452 near the filter assembly 341. The first scraping portion 34511 can contact the surface of the filter assembly 341. When the cleaning assembly 345 slides along the lint collection cavity 340, the first scraping portion 34511 of the cleaning plate 3451 can maintain sliding contact with the surface of the filter assembly 341, thereby scraping away lint from the surface of the filter assembly 341.

[0154] In some embodiments, a second scraping portion 34512 may be provided on the side of the cleaning plate 3451 facing away from the filter assembly 341. The second scraping portion 34512 extends beyond the edge of the mounting housing 3452 away from the filter assembly 341. The second scraping portion 34512 may contact the cavity wall of the lint collection cavity 340 away from the filter assembly 341. When the cleaning assembly 345 slides along the lint collection cavity 340, the second scraping portion 34512 of the cleaning plate 3451 may maintain sliding contact with the cavity wall of the lint collection cavity 340 away from the filter assembly 341, thereby scraping away lint from the cavity wall of the lint collection cavity 340 away from the filter assembly 341.

[0155] In some embodiments, the top of the cleaning plate 3451 may be provided with a third scraping portion 34513. The third scraping portion 34513 extends beyond the top edge of the mounting housing 3452. The third scraping portion 34513 may contact the top wall of the lint collection cavity 340. When the cleaning assembly 345 slides along the lint collection cavity 340, the third scraping portion 34513 of the cleaning plate 3451 may maintain sliding contact with the top wall of the lint collection cavity 340, thereby scraping away lint from the top wall of the lint collection cavity 340.

[0156] In some embodiments, the bottom of the cleaning pad 3451 may be provided with a fourth scraping portion 34514. The fourth scraping portion 34514 extends beyond the bottom edge of the mounting housing 3452. The fourth scraping portion 34514 can contact the bottom wall of the lint collection cavity 340. When the cleaning assembly 345 slides along the lint collection cavity 340, the fourth scraping portion 34514 of the cleaning pad 3451 can maintain sliding contact with the bottom wall of the lint collection cavity 340, thereby scraping away lint from the bottom wall of the lint collection cavity 340.

[0157] It should be noted that in some other embodiments, the cleaning sheet 3451 may only contact the surface of the filter assembly 341, in which case the cleaning sheet 3451 may only be used to scrape off the lint on the surface of the filter assembly 341.

[0158] In some other embodiments, the cleaning sheet 3451 may also contact only one or more walls of the lint collection chamber 340, in which case the cleaning sheet 3451 may be used only to scrape lint off the walls of the lint collection chamber 340.

[0159] like Figure 18 , Figure 5 and Figure 8 As shown, in some embodiments, the lint filter device 34 may include a sealing ring 343. The sealing ring 343 may be arranged around the periphery of the top of the collection box 342. When the lint filter device 34 is inserted downward into the mounting cavity 310 through the mounting port 101 and the insertion port 323, the sealing ring 343 can seal the insertion port 323, thereby sealing the collection box 342 within the mounting cavity 310 and encapsulating the lint filter device 34 inside the mounting base 3.

[0160] like Figure 18 , Figure 5 and Figure 8 As shown, in some embodiments, the lint filter device 34 may include a top cover 344. The top cover 344 may be disposed on top of the collection box 342. The sealing ring 343 may be disposed below the bottom of the top cover 344. When the lint filter device 34 is inserted downward into the mounting cavity 310 through the mounting port 101 and the insertion port 323, the collection box 342 may be located inside the mounting base 3, the top cover 344 may protrude from the top surface of the top cover 32, and the top cover 344 may cover the mounting port 101, thereby encapsulating the lint filter device 34 inside the housing 1.

[0161] In some embodiments, when the lint filter device 34 is inserted downward into the mounting cavity 310 through the mounting port 101 and the insertion port 323, the top surface of the top cover 344 can be flush with the top surface of the housing 1, thereby keeping the appearance of the housing 1 flat.

[0162] like Figure 10 , Figure 19 and Figure 7As shown, in some embodiments, the top cover 344 may be provided with a lifting opening 3441. The user can reach into the lifting opening 3441 to lift the lint filter device 34 as a whole, and then remove the lint filter device 34 from the mounting base 3 through the mounting port 101.

[0163] In some embodiments, the top cover 344 may be provided with a flip cover 3442. The flip cover 3442 may be rotatably disposed at the lifting opening 3441. The flip cover 3442 may seal the lifting opening 3441. When the user needs to disassemble the lint filter device 34, the flip cover 3442 may be rotated and inserted into the lifting opening 3441 to lift the lint filter device 34 as a whole.

[0164] In some embodiments, the top surface of the flip cover 3442 may be flush with the top surface of the cover 344, thereby keeping the appearance of the housing 1 flat.

[0165] Figure 20 yes Figure 19 A schematic diagram of the structure of the spray device 33. Figure 6 yes Figure 19 A structural diagram from another perspective.

[0166] like Figure 20 , Figure 19 and Figure 20 As shown, in some embodiments, a spray device 33 may be provided within the mounting base 3. The spray device 33 may be arranged within the two chambers 30. The spray device 33 may be located on the side of the evaporator 13 near the air inlet 311. The spray device 33 may be located between the lint filter 34 and the evaporator 13. The spray device 33 may spray towards the surface of the evaporator 13, and the spray device 33 may be used to clean the surface of the evaporator 13. In this way, the humid and hot air in the clothing processing chamber 20 will carry a certain amount of lint into the two chambers 30. After the humid and hot air is filtered by the lint filter 34, some small lint will still enter the two chambers 30. When the humid and hot air condenses on the surface of the evaporator 13, a certain amount of lint will adhere to the surface of the evaporator 13. If the lint on the surface of the evaporator 13 is not cleaned in time, it will affect the drying airflow and drying efficiency. The spray device 33 can wash away the lint on the surface of the evaporator 13 to avoid affecting the drying airflow and drying efficiency.

[0167] In some embodiments, the spray device 33 may be arranged on one side edge of the two chambers 30 near the air inlet 311 and the air return outlet 202. The evaporator 13 may be arranged adjacent to and spaced apart from the spray device 33. In this way, the spray device 33 can spray and rinse the evaporator 13 nearby, thereby optimizing the structural layout of the two chambers 30.

[0168] like Figure 21 and Figure 7As shown, in some embodiments, the spray device 33 may have spray nozzles 331 arranged facing downwards. The spray nozzles 331 may be arranged at intervals above the top of one side edge of the evaporator 13. In this way, the spray device 33 can spray and rinse the evaporator 13 downwards through the spray nozzles 331, so that the lint adhering to the evaporator 13 can be washed to the bottom of the evaporator 13 and discharged through the bottom of the two chambers 30.

[0169] Figure 22 yes Figure 21 Cross-sectional view of the spray device 33, evaporator 13 and condenser 12. Figure 21 yes Figure 22 A magnified schematic diagram of the central part of the structure.

[0170] like Figure 22 and Figure 23 As shown, in some embodiments, the spray nozzle 331 may be located above the top of the evaporator 13 on the side away from the condenser 12. The direction from top to bottom in the height direction of the clothing treatment device is the first direction. A portion of the orthographic projection of the spray nozzle 331 in the first direction may be located above the top surface of the evaporator 13. Another portion of the orthographic projection of the spray nozzle 331 in the first direction may extend beyond the side of the evaporator 13 near the return air inlet 202 and the air inlet 311, or another portion of the spray nozzle 331 in the first direction may extend beyond the side of the evaporator 13 away from the condenser 12. Thus, when the spray nozzle 331 sprays water downwards, it can spray water simultaneously towards the side wall and top surface of the evaporator 13, allowing lint adhering to the top and side wall of the evaporator 13 to be washed downwards and fall to the bottom of the two chambers 30, facilitating discharge through the bottom of the two chambers 30, thereby improving the cleaning efficiency and effect of the evaporator 13.

[0171] like Figure 23 As shown, in some embodiments, the width of the orthographic projection of the bottom port of the spray nozzle 331 onto the top surface of the evaporator 13 in the first direction can be X. The overall width of the spray nozzle 331 can be L, where L is the width of the bottom port of the spray nozzle 331. X can satisfy: X / L > 1 / 3. That is, the ratio of the width of the orthographic projection of the spray nozzle 331 onto the top surface of the evaporator 13 to the total width of the bottom port of the spray nozzle 331 is greater than 1 / 3. In this way, it can be ensured that when the spray nozzle 331 sprays water downwards, part of the water sprayed from the spray nozzle 331 can wash the top surface of the evaporator 13, while another part of the water sprayed from the spray nozzle 331 can wash the side surface of the evaporator 13. If X / L is less than 1 / 3, the amount of water sprayed from the spray nozzle 331 onto the top surface of the evaporator 13 is insufficient, and the top surface of the evaporator 13 cannot be thoroughly cleaned.

[0172] like Figure 23As shown, in some embodiments, the bottom port of the spray nozzle 331 is arranged horizontally. L can then be the maximum width of the bottom port of the spray nozzle 331, i.e., L is the diameter of the bottom port of the spray nozzle 331.

[0173] In some other embodiments, if the bottom port of the spray nozzle 331 is not horizontally arranged, then L can be the maximum width of the bottom port of the spray nozzle 331 projected onto the horizontal plane.

[0174] like Figure 22 As shown, in some embodiments, the point closest to the condenser 12 at the bottom port of the spray nozzle 331 can be a first reference point P. The projection of the first reference point P onto the top surface of the evaporator 13 in the first direction can be a second reference point Q. The side of the evaporator 13 near the return air inlet 202 and the air inlet 311 can be a reference surface R. The vertical distance from the second reference point Q to the reference surface R can be the width X of the orthographic projection of the bottom port of the spray nozzle 331 onto the top surface of the evaporator 13 in the first direction. The value of width X can be the vertical distance from the second reference point Q to the reference surface R.

[0175] like Figure 5 As shown, in some embodiments, the value of LX is the width of the portion of the bottom port of the spray nozzle 331 that extends beyond the side of the evaporator 13 near the return air inlet 202 in the orthographic projection of the bottom port of the spray nozzle 331 in the first direction. That is, the value of LX is the orthographic projection portion of the bottom port of the spray nozzle 331 that extends beyond the reference plane R in the orthographic projection of the bottom port of the spray nozzle 331 in the first direction.

[0176] like Figure 19 As shown, in some embodiments, the distance between the bottom port of the spray nozzle 331 and the top surface of the evaporator 13 can be Y. Y can satisfy: Y > 2mm. Thus, by Y > 2mm, there is sufficient distance between the bottom port of the spray nozzle 331 and the top surface of the evaporator 13, allowing the water sprayed from the spray nozzle 331 to disperse in time. This ensures that some of the water sprayed from the spray nozzle 331 can reach the top and sides of the evaporator 13, thereby increasing the area of ​​the top and sides of the evaporator 13 that is reached by the spray nozzle 331, and thus improving the cleaning effect and efficiency of the evaporator 13. If Y is less than 2mm, due to the surface tension of water, the water sprayed from the spray nozzle 331 cannot be dispersed in time, and some of the water sprayed from the spray nozzle 331 cannot be fully sprayed onto the top and sides of the evaporator 13, thus affecting the area of ​​the top and sides of the evaporator 13 that is reached by the spray nozzle 331, and consequently affecting the cleaning efficiency and effect of the evaporator 13.

[0177] like Figure 20 , Figure 6 and Figure 7As shown, in some embodiments, the spray device 33 may include a spray housing 332. The spray housing 332 may be spaced apart above the top surface of the evaporator 13. A spray channel 330 may be formed inside the spray housing 332. A spray nozzle 331 may be provided on the bottom surface of the spray housing 332. The spray nozzle 331 may communicate with the spray channel 330. In this way, an external water source can enter the spray channel 330 and then be sprayed downwards onto the surface of the evaporator 13 through the spray nozzle 331 to clean the lint on the surface of the evaporator 13.

[0178] In some embodiments, the spray device 33 may include an isolation grid 333. The isolation grid 333 may be disposed at the bottom of the spray housing 332. The top of the isolation grid 333 may be connected to a portion of the bottom surface of the spray housing 332. The spray nozzle 331 may be disposed on another portion of the bottom surface of the spray housing 332. The isolation grid 333 may be spaced apart on the side of the evaporator 13 near the return air inlet 202 and the air inlet 311. The isolation grid 333 may also be spaced apart on the side of the evaporator 13 away from the condenser 12. The isolation grid 333 may have a perforated structure. The isolation grid 333 allows air to flow through it. Air in the clothing processing chamber 20 can flow sequentially through the return air inlet 202 and the air inlet 311, and then through the isolation grid 333 before flowing to the evaporator 13. The isolation barrier 333 can block some of the lint in the air flowing towards the evaporator 13, so that the lint is blocked at the isolation barrier 333, thereby reducing the lint from sticking to the surface of the evaporator 13.

[0179] like Figure 5 and Figure 7 As shown, in some embodiments, the spray device 33 can be located on one side edge of the two chambers 30 near the return air inlet 202, so that the isolation grille 333 can also be located on one side edge of the two chambers 30 near the return air inlet 202. Air in the clothing processing chamber 20 can flow sequentially through the return air inlet 202 and the air inlet 311, and must pass through the isolation grille 333 before entering the two chambers 30. Thus, the isolation grille 333 can block the air inlet of the two chambers 30, preventing users from touching the surface of the evaporator 13 through this area and causing a safety accident.

[0180] like Figure 20 , Figure 5 and Figure 6 As shown, in some embodiments, a portion of the bottom surface of the spray housing 332 may extend beyond the isolation grid 333 toward the top surface of the evaporator 13. The spray nozzle 331 may be located on the bottom surface of the extended portion of the spray housing 332. This allows the spray nozzle 331 to be positioned above the top surface of the evaporator 13.

[0181] like Figure 7 and Figure 19As shown, in some embodiments, the lint filter 34 is detachably disposed on the side of the spray device 33 away from the evaporator 13. When the lint filter 34 is pulled out for cleaning, the user's hand can easily reach into the spray device 33. Therefore, the isolation grille 333 can be used to block this area, which can prevent the user from reaching through this area to touch the surface of the evaporator 13 and causing a safety accident.

[0182] like Figure 20 , Figure 20 and Figure 22 As shown, in some embodiments, the spray housing 332 can be arranged in an elongated shape. The spray housing 332 can extend along the length direction of the evaporator 13. Multiple spray nozzles 331 can be provided on the bottom surface of the spray housing 332. The multiple spray nozzles 331 can be arranged sequentially and at intervals along the length direction of the evaporator 13. Thus, multiple spray nozzles 331 can be arranged on the spray housing 332, and by arranging the multiple spray nozzles 331 sequentially and at intervals along the length direction of the evaporator 13, the multiple spray nozzles 331 can spray different areas of the evaporator 13 surface, improving the cleaning effect on the evaporator 13 surface.

[0183] like Figure 22 As shown, in some embodiments, the spray nozzles 331 can be elongated. The spray nozzles 331 can be arranged sequentially at intervals along the length of the evaporator 13. The elongated design of the spray nozzles 331 increases the spray area of ​​the spray nozzles 331 towards the surface of the evaporator 13, which is beneficial to improving the cleaning effect on the evaporator 13.

[0184] It should be noted that in some other embodiments, the spray nozzle 331 may also be in other shapes such as a round hole or an elliptical hole.

[0185] like Figure 23 As shown, in some embodiments, the sidewall of the spray nozzle 331 near the evaporator 13 can be a first inclined wall 3311. In a first direction, the first inclined wall 3311 can be arranged inclined downward from the top port of the spray nozzle 331 toward the direction near the isolation grid 333. In this way, when the spray nozzle 331 sprays water toward the top surface of the evaporator 13, the lint on the top surface of the evaporator 13 can fall toward the sidewall of the evaporator 13, making it easier for the lint on the surface of the evaporator 13 to fall off, which is beneficial to improving the cleaning effect on the surface of the evaporator 13.

[0186] like Figure 7As shown, in some embodiments, the sidewall of the spray nozzle 331 near the evaporator 13 can be a second inclined wall 3312. In the first direction, the second inclined wall 3312 can be arranged inclined downwards from the top port of the spray nozzle 331 toward the direction near the evaporator 13. In this way, when the spray nozzle 331 sprays water toward the top surface of the evaporator 13, the water sprayed by the spray nozzle 331 can thoroughly wash away the lint on the side of the evaporator 13, and thoroughly remove the lint from the sidewall of the evaporator 13, which is beneficial to improving the cleaning effect on the surface of the evaporator 13.

[0187] Figure 7 yes Figure 21 A schematic diagram of the structure of the evaporator 13.

[0188] like Figure 23 , Figure 24 and Figure 5 As shown, in some embodiments, the evaporator 13 may include an evaporator tube 131 and evaporator plates 132 sleeved on the evaporator tube 131. Multiple evaporator plates 132 may be provided. Multiple evaporator plates 132 may be arranged sequentially at intervals along the length of the evaporator 13. When water is sprayed from the spray nozzle 331 toward the surface of the evaporator 13, the water sprayed from the spray nozzle 331 may be sprayed toward the evaporator plates 132 or toward the gaps between adjacent evaporator plates 132, allowing lint on the evaporator plates 132 to fall out from the gaps between adjacent evaporator plates 132, thereby thoroughly rinsing the lint on the surface of the evaporator 13 and improving the cleaning effect of the evaporator 13 surface.

[0189] In some embodiments, multiple evaporator plates 132 can be arranged side by side. The sidewalls of the multiple evaporator plates 132 near the air inlet 311 and the air return port 202 are located on the same plane, thus forming the sidewall of the evaporator 13 near the air return port 202. A portion of the orthographic projection of the spray nozzle 331 in the first direction can be located on the top surface of the evaporator plate 132. Another portion of the orthographic projection of the spray nozzle 331 in the first direction can extend beyond the sidewall of the evaporator plate 132 near the air return port 202 or beyond the sidewall of the evaporator plate 132 away from the condenser 12. This allows the spray nozzle 331 to simultaneously spray towards the top surface and sidewalls of the multiple evaporator plates 132, enabling lint adhering to the top and sidewalls of the multiple evaporator plates 132 to be washed downwards and fall to the bottom of both chambers, thereby improving the cleaning efficiency and effect of the evaporator.

[0190] In some embodiments, the evaporator 13 may be arranged in an elongated shape on one side edge of the two chambers 30 near the air inlet 311. The length direction of the evaporator 13 may be the extension direction of one side edge of the two chambers 30 near the air inlet 311.

[0191] Figure 25 yesFigure 24 Assembly structure diagram of the central spray device 33 and the top cover 32. Figure 5 yes Figure 24 A structural diagram from another perspective.

[0192] like Figure 25 , Figure 26 and Figure 25 As shown, in some embodiments, the spray device 33 can be fixed to the top cover 32. The spray device 33 can be arranged on one side of the insertion port 323. When the top cover 32 is placed on the base 31, the spray device 33 can be arranged between the mounting cavity 310 and the evaporator 13 in the two gas chambers, and the spray device 33 can shield the side of the mounting cavity 310 near the evaporator 13. When the lint filter device 34 is inserted downward into the mounting cavity 310 through the mounting port 101 and the insertion port 323, the spray device 33 can be arranged between the lint filter device 34 and the evaporator 13. In this way, when the lint filter device 34 is pulled out through the mounting port 101 and the insertion port 323, the isolation grille 333 can block the side of the mounting cavity 310 near the evaporator 13, which can prevent the user from reaching through this point to touch the surface of the evaporator 13 and causing a safety accident.

[0193] Figure 24 yes Figure 25 A schematic diagram of its decomposition.

[0194] like Figure 26 , Figure 24 and Figure 25 As shown, in some embodiments, a positioning groove 334 may be recessed on the top surface of the spray housing 332. A positioning post 321 may be protruded on the bottom surface of the top cover 32. The positioning post 321 can be aligned and engaged within the positioning groove 334. By aligning and engaging the positioning post 321 with the positioning groove 334, the spray device 33 can be fixed on the top cover 32. When water flows within the spray channel 330, it can prevent the water flow from impacting the spray housing 332, causing the spray housing 332 to shake, thereby avoiding affecting the spray angle and spray range of the spray nozzle 331.

[0195] In some embodiments, the top surface of the spray housing 332 may be provided with a plurality of positioning grooves 334. The plurality of positioning grooves 334 are arranged at intervals. The bottom surface of the top cover 32 may be provided with a plurality of positioning posts 321. The plurality of positioning posts 321 can be arranged in a one-to-one correspondence with the plurality of positioning grooves 334. The plurality of positioning posts 321 can be respectively aligned and engaged with the plurality of positioning grooves 334 to fix the spray device 33 on the top cover 32, thereby improving the accuracy of the structural stability of the spray device 33 on the top cover 32.

[0196] like Figure 26 , Figure 24 and Figure 25As shown, in some embodiments, a fixing part 335 may be protruding from the side wall of the spray housing 332. The fixing part 335 can be detachably fixed to the bottom surface of the top cover 32. In this way, the spray device 33 can be fixed to the top cover 32 by means of the fixing part 335.

[0197] In some embodiments, the fixing part 335 may be provided with a first mounting hole 3351. The bottom surface of the top cover 32 may be provided with a second mounting hole 322. When the positioning post 321 is aligned and engaged in the positioning groove 334, the first mounting hole 3351 can communicate directly with the second mounting hole 322, so that the fixing part 335 can be fixed to the bottom surface of the top cover 32 by screws or bolts passing through the first mounting hole 3351 and the second mounting hole 322, thereby improving the installation efficiency of the spray device 33 and improving the structural stability of the spray device 33.

[0198] In some embodiments, a plurality of fixing portions 335 may be provided on the side wall of the spray housing 332. A plurality of second mounting holes 322 may be provided on the bottom surface of the top cover 32. The plurality of fixing portions 335 may be arranged in a one-to-one correspondence with the plurality of second mounting holes 322.

[0199] like Figure 26 , Figure 2 and Figure 3 As shown, in some embodiments, a pipe interface 336 may protrude from the outer wall of the spray housing 332. The pipe interface 336 can connect to the spray channel 330 inside the spray housing 332. The clothing treatment device may include a water inlet valve 15. The water inlet valve 15 can be connected to an external water source. The pipe interface 336 can be used to connect to the water inlet valve 15. The water inlet valve 15 can be connected to the pipe interface 336, thereby supplying water to the spray system through the pipe interface 336.

[0200] In some embodiments, the pipe interface 336 of the spray housing 332 may be exposed outside the top cover 32. The pipe interface 336 of the spray housing 332 may also be exposed outside the mounting base 3. This facilitates the connection and communication between the pipe interface 336 and the valve port of the water inlet valve 15 via a pipeline.

[0201] like Figure 2 and Figure 3 As shown, in some embodiments, the garment handling device may include a soap tray assembly 4. The soap tray assembly 4 may be disposed within the housing 1. The soap tray assembly 4 may be located above the top of the drum assembly 2. The soap tray assembly 4 may be located below the mounting base 3. The soap tray assembly 4 can be used to add washing liquids such as detergent, fabric softener, or water. The user can add washing liquids such as detergent, fabric softener, or water to the soap tray assembly 4, allowing the washing liquid to flow along the soap tray assembly 4 into the garment handling chamber 20. When it is necessary to wash clothes, the soap tray assembly 4 can deliver laundry detergent (such as detergent, fabric softener, etc.) into the garment handling chamber 20 via a water flow.

[0202] like Figure 2 and Figure 3 As shown, in some embodiments, the soap dish assembly 4 may include a water inlet box 41. The water inlet box 41 may be disposed inside the housing 1. The top of the water inlet box 41 may be fixed to the bottom of the mounting base 3, and the side of the water inlet box 41 may be fixed to the side wall of the housing 1, thereby improving the installation stability of the water inlet box 41. An external water source may enter the water inlet box 41, and the water inlet box 41 may be connected to the laundry processing chamber 20 through a pipe, thereby delivering water into the drum assembly 2 to supply water to the interior of the laundry processing chamber 20.

[0203] like Figure 2 and Figure 3 As shown, in some embodiments, the valve port of the inlet valve 15 can be connected to the inlet box 41 via a pipeline. The inlet valve 15 can supply water to the inside of the inlet box 41.

[0204] like Figure 1 and Figure 2 As shown, in some embodiments, the soap dish assembly 4 may include a soap dish 42. The soap dish 42 may be removably disposed inside the water inlet box 41. The interior of the soap dish 42 may be used to store laundry detergent. The laundry detergent in the soap dish 42 may enter the water inlet box 41, and then be delivered into the drum assembly 2 by the water flow in the water inlet box 41, so as to provide laundry detergent into the clothes handling chamber 20.

[0205] In some embodiments, the front end of the water inlet box 41 may be provided with an opening. The soap dish 42 may be slidably disposed inside the water inlet box 41 through the front opening of the water inlet box 41.

[0206] like ​ and ​ As shown, in some embodiments, the soap dish 42 may be exposed outside the housing 1. When the soap dish 42 is pulled out of the water inlet box 41, the soap dish 42 may be exposed on the front side wall of the housing 1 to facilitate the replenishment or addition of laundry detergent into the soap dish 42.

[0207] Although the present invention has been described with reference to several typical embodiments, it should be understood that the terminology used is descriptive and exemplary, and not restrictive. Since the present invention can be embodied in many forms without departing from the spirit or essence of the invention, it should be understood that the above embodiments are not limited to any of the foregoing details, but should be interpreted broadly within the spirit and scope defined by the appended claims. Therefore, all variations and modifications falling within the scope of the claims or their equivalents should be covered by the appended claims.

Claims

1. A garment processing device, characterized in that, include: The housing forms the outer shell of the garment handling device; A tubular assembly is disposed within the housing, and a garment processing chamber is formed within the tubular assembly; an air inlet and an air outlet communicating with the garment processing chamber are respectively provided on the outer wall of the tubular assembly. A mounting base is provided above the cylinder assembly; the mounting base has two chambers; the mounting base has an air inlet and an air outlet, which are respectively connected to the two chambers. The air inlet is connected to the air return outlet, and the air outlet is connected to the air inlet; An evaporator is disposed within the two chambers and is located on the side closest to the air inlet; A condenser is located inside the two chambers and is positioned on the side closest to the gas outlet. A lint filter is disposed within the mounting base and between the air inlet and the two chambers. The lint filter includes: A collection box is located between the air inlet and the two chambers, and the collection box contains a lint collection chamber. A filter assembly is disposed inside the collection box, and is located on the side wall of the collection box near the two chambers. A cleaning component is disposed inside the collection box and slidably disposed inside the lint collection chamber. The cleaning component is in contact with the surface of the filter assembly and the cavity wall of the lint collection chamber. The air flowing out of the air inlet can flow sequentially through the lint collection chamber and the filter assembly, and then flow into the two chambers. The filter assembly is configured to filter lint from the air flowing from the lint collection chamber to the two chambers. The outer wall of the housing is provided with an installation port, through which the lint filter device can be pulled out or inserted into the housing. The cleaning component is configured to slide along the lint collection chamber to scrape lint off the surface of the filter assembly and the walls of the lint collection chamber.

2. The garment processing apparatus as described in claim 1, characterized in that, The mounting base has an insertion port on its top wall; the mounting port is located on the top wall of the housing, and the mounting port and the insertion port are arranged vertically opposite each other. The lint filter extends downward into the insertion port through the mounting port, so as to be inserted into the mounting base.

3. The garment processing apparatus as described in claim 2, characterized in that, The mounting base includes: The base has an adjacent mounting cavity and the two device cavities on its top surface, and the mounting cavity is located in the area between the air inlet and the two device cavities. A top cover is provided on the top surface of the base, and the top cover is provided on the top of the mounting cavity and the two device cavities; The insertion port is located on the top cover and above the top of the mounting cavity. The lint filter extends downward through the insertion port and is arranged inside the mounting cavity.

4. The garment processing apparatus as described in claim 3, characterized in that, An air inlet is formed at one end of the length direction of the hair collection chamber, the air inlet faces the air inlet and is connected to the air inlet; the air inlet is located at the end of the collection box facing the air inlet; An air outlet is formed on one side wall along the length of the lint collection chamber. The air outlet is located on the side of the lint collection chamber closest to the two chambers. The filter assembly is located at the air outlet.

5. The garment processing apparatus as described in claim 4, characterized in that, The lint filter device further includes: A handle, one end of which is flipped and connected to the cleaning assembly; The handle can be flipped to the end of the cleaning assembly away from the air inlet to push the cleaning assembly along the lint collection chamber.

6. The garment processing apparatus as described in claim 5, characterized in that, The bottom surface of the collection box is provided with a receiving groove; When the cleaning component moves to the end of the lint collection chamber away from the air inlet, the handle can be flipped to the bottom of the collection box and accommodated in the receiving slot.

7. The garment processing apparatus as described in claim 5, characterized in that, The outer wall of the end of the handle that is flipped to connect with the cleaning component is provided with an elastic arm; The cleaning component has a hook on its end wall; When the handle is flipped to the end of the cleaning assembly away from the air inlet, the elastic arm can engage with the hook to secure the handle to one end of the cleaning assembly.

8. The garment processing apparatus as described in claim 5, characterized in that, The cleaning component includes: The mounting shell is movably disposed within the lint collection cavity and can slide along the lint collection cavity; A cleaning pad is disposed on the mounting housing, and at least a portion of the peripheral edge of the cleaning pad extends beyond the peripheral edge of the mounting housing; A clamp is fixed to the mounting housing and holds the cleaning sheet in place on the mounting housing.

9. The garment processing apparatus as described in claim 5, characterized in that, The collection box has a telescopic opening on the end wall away from the air inlet; One end of the handle extends into the lint collection chamber through the telescopic port and flips to connect with the cleaning component.

10. The garment processing apparatus as described in claim 5, characterized in that, The cleaning component has a hand-held part protruding on the end wall facing the air inlet; The handheld part is for being held to insert or withdraw the cleaning component into or out of the lint collection chamber through the air inlet.