Clothing processing equipment

By setting up heat insulation cleaning components in the clothing processing equipment, the problem of excessive tabletop temperature caused by heating components is solved, the insulation and cleaning effects are achieved, and the user experience and drying efficiency are improved.

CN114075769BActive Publication Date: 2025-08-26TIANJIN HAIER WASHING ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202010826058.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-08-17
Publication Date
2025-08-26
Estimated Expiration
2040-08-17

AI Technical Summary

Technical Problem

The heating components of the drying device of the existing clothing processing equipment are poorly arranged, resulting in excessive countertop temperature and poor user experience.

Method used

A heat insulation cleaning member is provided between the heating member and the housing, and a coolant is circulated in the heat insulation cleaning member to insulate and irrigate onto the condensing member to achieve heat insulation and cleaning effects.

Benefits of technology

Effectively avoid excessive shell temperature, prevent user scalding, ensure the dehumidification effect of the condensing member, save water consumption, and improve drying efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of clothing processing, and specifically provides a clothing processing device. The present invention aims to solve the problem that the heating component of the existing drying device is not set in a good way and easily leads to an overly high table temperature. To this end, the clothing processing device of the present invention includes a shell, a clothing processing drum and a drying component, the drying component includes a drying air duct and a condensing component, a drying fan and a heating component sequentially arranged in the drying air duct along the air flow direction, the air inlet and the air outlet of the drying air duct are both connected to the clothing processing drum, a heat-insulating cleaning component is provided between the heating component and the shell, a cooling liquid flows in the heat-insulating cleaning component to achieve a heat-insulating effect, thereby effectively avoiding the problem that the shell temperature is too high and easily causes the user to be scalded, and its outlet is connected to the vicinity of the condensing component, so that the cooling liquid flowing out of the heat-insulating cleaning component can be flushed onto the condensing component to achieve a cleaning effect, thereby effectively ensuring the dehumidification effect of the condensing component.
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Description

Technical Field

[0001] The present invention belongs to the technical field of clothing processing, and specifically provides a clothing processing device. Background Art

[0002] With the continuous development of clothing processing technology, the functions of existing clothing processing equipment are becoming more and more complete. For example, in order to enable users to quickly use clean clothes, many existing clothing processing equipment are equipped with a drying device. Specifically, the drying device of existing clothing processing equipment generally consists of a drying duct and a condensing element, a drying fan, and a heating element arranged in the drying duct in the direction of the drying air flow. The air inlet and outlet of the drying duct are both connected to the clothing processing drum. The airflow in the drying duct passes through the condensing element, the drying fan, and the heating element in sequence before returning to the clothing processing drum. Since the clothing processing drum and the drying device must be located within the housing of the clothing processing equipment, and the space occupied by the clothing processing drum cannot be changed, technicians can only rely on adjusting the spatial layout of the drying device to minimize the space occupied by the entire clothing processing equipment. To effectively improve the spatial layout efficiency within the housing, the heating element of existing drying devices is generally located above the clothing processing drum, that is, located near the countertop of the housing. When the clothing processing equipment is in drying mode, the heat generated by the heating element can easily be transferred to the countertop, causing users to be burned without knowing it, and may even damage items that are not resistant to high temperatures stacked on the countertop, resulting in a poor user experience.

[0003] Accordingly, the art needs a new clothes processing device to solve the above problems. Summary of the Invention

[0004] In order to solve the above-mentioned problems in the prior art, that is, to solve the problem that the heating components of the drying device of the existing clothing processing equipment are not set in a good manner and easily lead to the excessive temperature of the table top of the clothing processing equipment, the present invention provides a clothing processing equipment, the clothing processing equipment includes a shell and a clothing processing drum and a drying component arranged in the shell, the drying component includes a drying air duct and a condensing component, a drying fan and a heating component arranged in the drying air duct in sequence along the air flow direction, the air inlet and air outlet of the drying air duct are both connected to the clothing processing drum, and an insulating cleaning component is provided between the heating component and the shell, cooling liquid can flow through the insulating cleaning component to achieve an insulating effect, and the outlet of the insulating cleaning component is connected to the vicinity of the condensing component so that the cooling liquid flowing out of the insulating cleaning component can be flushed onto the condensing component to achieve a cleaning effect.

[0005] In a preferred technical solution of the above-mentioned clothes processing device, the heat-insulating cleaning component is connected to the drying assembly via a mounting component, and at least a portion of the mounting component is used to form an inner wall of the drying air duct.

[0006] In a preferred technical solution of the above-mentioned clothes processing apparatus, the heat-insulating cleaning component is a tubular channel integrally formed on the mounting component.

[0007] In a preferred technical solution of the above-mentioned clothes processing apparatus, the tubular channel is formed on the mounting member in a manner of bending back and forth.

[0008] In a preferred technical solution of the above-mentioned clothes processing device, the heat-insulating cleaning component is a pipe, and the end of the pipe extends to the vicinity of the condensing component.

[0009] In a preferred technical solution of the above-mentioned clothes processing apparatus, the pipe is arranged between the heating component and the shell in a manner of bending back and forth.

[0010] In a preferred technical solution of the above-mentioned clothes processing device, a spraying component is provided at the outlet of the pipeline, and the cooling liquid in the pipeline is sprayed onto the condensing component through the spraying component.

[0011] In a preferred technical solution of the above-mentioned clothes processing device, the main body of the spray component is a columnar structure, the cross-sectional shape of the columnar structure matches the inner cross-sectional shape of the pipe, and a plurality of spray holes are provided on the columnar structure.

[0012] In a preferred technical solution of the above-mentioned clothes processing device, the mounting member is a plate-shaped structure, and the bottom surface of the plate-shaped structure is used to form the inner side wall of the drying duct.

[0013] In the preferred technical solution of the above-mentioned clothing processing device, the clothing processing device is a clothes dryer or a washer-dryer.

[0014] Those skilled in the art will appreciate that, in the technical solution of the present invention, the laundry processing device of the present invention comprises a housing, a laundry processing drum and a drying assembly disposed in the housing, the drying assembly comprising a drying duct and a condensing member, a drying fan, and a heating member disposed sequentially in the drying duct along the airflow direction, the air inlet and air outlet of the drying duct both being in communication with the laundry processing drum, a heat-insulating cleaning member being disposed between the heating member and the housing, a cooling liquid being able to flow through the heat-insulating cleaning member to provide a heat-insulating effect, and an outlet of the heat-insulating cleaning member being connected to the vicinity of the condensing member so that the cooling liquid flowing out of the heat-insulating cleaning member can be flushed onto the condensing member to achieve a cleaning effect. By adding the heat-insulating cleaning member between the heating member and the housing, the present invention prevents the heating member from transferring excessive heat to the housing during the heating process, thereby effectively avoiding the problem of the housing being overheated and easily scalding the user, and the cooling liquid in the heat-insulating cleaning member can also be flushed onto the condensing member, thereby effectively removing lint attached to the condensing member to achieve a cleaning effect, thereby effectively ensuring the dehumidification effect of the condensing member.

[0015] Furthermore, the present invention connects the insulating cleaning member to the drying assembly via the mounting member, and at least a portion of the mounting member forms the inner sidewall of the drying duct, so that the insulating cleaning member can better insulate the housing, thereby effectively preventing the housing from overheating. Preferably, the mounting member is a plate-like structure, and the bottom surface of the plate-like structure forms the inner sidewall of the drying duct, so that the insulating cleaning member can maximize its insulating effect, thereby effectively ensuring that the temperature of the housing does not exceed the upper limit.

[0016] Furthermore, as a preferred embodiment, the present invention configures the heat-insulating cleaning component as a pipe, and the pipe is arranged between the heating component and the shell in a manner of bending back and forth to better achieve a heat-insulating effect; and the end of the pipe extends to the vicinity of the condensing component, and the spray component is also provided at its outlet, so that the coolant in the pipe can be better sprayed onto the condensing component, thereby effectively ensuring its cleaning effect, and further effectively ensuring the condensing effect of the condensing component. In addition, the provision of the spray component at the outlet of the pipe can also effectively prevent the coolant in the pipe from flowing out too quickly, so that while effectively ensuring the heat-insulating effect and cleaning effect of the heat-insulating cleaning component, it can also effectively save water, thereby effectively ensuring the drying efficiency of the clothing processing equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a schematic diagram of the internal structure of the clothes processing device of the present invention;

[0018] Figure 2 It is a schematic diagram of the overall structure of the drying assembly and the heat-insulating cleaning component of the present invention;

[0019] Figure 3 It is a cross-sectional view of the internal structure of the mounting component and the heat-insulating cleaning component of the present invention. DETAILED DESCRIPTION

[0020] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are only used to explain the technical principles of the present invention and are not intended to limit the scope of protection of the present invention. Those skilled in the art can make adjustments to them as needed to adapt to specific applications. For example, although this preferred embodiment is described in conjunction with the case where the clothing processing device is a washer-dryer, the clothing processing device of the present invention can obviously also be a dryer, etc. Such changes in the specific type of clothing processing device do not deviate from the basic principles of the present invention and fall within the scope of protection of the present invention.

[0021] It should be noted that, in the description of the preferred embodiments of the present invention, terms such as "up", "down", "horizontal", "vertical", "left", "right", "inside", and "outside" indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. This is merely for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be understood as a limitation on the present invention.

[0022] Furthermore, it should be noted that, in the description of the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood broadly. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to direct connections, indirect connections through an intermediary, or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0023] See first Figure 1 and Figure 2 ,in, Figure 1 is a schematic diagram of the internal structure of the clothes processing device of the present invention; Figure 2 This is a schematic diagram of the overall structure of the drying component and the heat-insulating cleaning component of the present invention. Figure 1 and 2As shown, the laundry processing device of the present invention includes a housing (not shown) and a laundry processing drum 11 and a drying assembly 12 disposed within the housing. The laundry processing drum 11 is used to provide a storage space for processed laundry, and the drying assembly 12 is connected to the laundry processing drum 11 to dry the laundry in the laundry processing drum 11. It should be noted that the present invention does not impose any restrictions on the specific shape and structure of the housing. Technicians can customize it according to actual usage requirements, as long as the housing can accommodate and support the laundry processing drum 11 and the drying assembly 12.

[0024] Specifically, the drying component 12 includes a drying duct 121 and a condensing component (not shown in the figure), a drying fan 122 and a heating component 123 which are arranged in the drying duct 121 in sequence along the direction of the drying air flow, wherein the condensing component is arranged in the drying duct 121 near the rear side of the clothing processing drum 11, that is, in the drying duct 121 below the drying fan 122; the air inlet of the drying duct 121 is connected to the rear bottom of the clothing processing drum 11, and the air outlet of the drying duct 121 is connected to the front top of the clothing processing drum 11, so that the drying air flow in the drying duct 121 can flow from bottom to top and form a circulating airflow through the clothing processing drum 11. Based on the above structure, the drying fan 122 is used to form an airflow. The humid air in the clothing treatment drum 11 enters the drying duct 121 through the air inlet of the drying duct 121, and first contacts the condensing component to achieve dehumidification. Then, the dehumidified dry air is heated by the heating component 123, thereby forming a high-temperature dry airflow, and then returns to the clothing treatment drum 11 through the air outlet of the drying duct 121 to achieve a drying cycle. It should be noted that the present invention does not impose any restrictions on the specific structure of the drying component 12. Technicians can set it according to actual use requirements, as long as the drying component 12 includes the drying duct 121 and the condensing component, drying fan 122 and heating component 123 arranged in the drying duct 121 in sequence along the direction of the drying airflow.

[0025] In addition, it should be noted that the present invention does not impose any restrictions on the specific structure and specific setting position of the condensation component. Technicians can set it themselves according to actual use requirements, as long as the condensation component can achieve a dehumidification effect; and the present invention does not impose any restrictions on the specific structure of the clothing processing drum 11 and the drying duct 121 and the specific connection method between the two. Technicians can set it themselves according to actual use requirements, as long as the clothing processing equipment of the present invention can form a drying cycle through the clothing processing drum 11 and the drying duct 121.

[0026] In this preferred embodiment, the housing of the drying fan 122 also forms part of the drying duct 121. Of course, the drying duct 121 may also be formed by a separate housing, with the drying fan 122 secured therein. Technicians can customize the specific structure of the drying duct 121 based on actual usage requirements, as long as the drying duct 121 is connected to the laundry processing drum 11 via the air inlet and outlet to provide dry airflow.

[0027] It should also be noted that the present invention does not impose any restrictions on the specific structure and setting position of the drying fan 122 and the heating component 123, and technicians can set them according to actual usage requirements; for example, although the heating component 123 described in this preferred embodiment is a heating tube structure, the heating component 123 can obviously also be other components with heating functions, such as a heating plate, etc.

[0028] Based on the heating components of the drying components of the existing clothing processing equipment pointed out in the background technology, they are usually arranged above the clothing processing drum, that is, they are arranged at a countertop (i.e., upper panel) position close to the housing of the clothing processing equipment; when the clothing processing equipment is running in the drying mode, the heat generated by the heating components can easily be transferred to the countertop, causing the user to be burned without knowing it, and even damaging items that are not resistant to high temperatures stacked on the countertop, thereby leading to a poor user experience. To this end, the clothing processing equipment of the present invention adds an insulating cleaning component 13 between the heating component 123 and the housing, and the insulating cleaning component 13 can flow through the cooling liquid to achieve a heat insulation effect, and the outlet of the insulating cleaning component 13 is connected to the vicinity of the condensing component so that the cooling liquid flowing out of the insulating cleaning component 13 can be flushed onto the condensing component to achieve a cleaning effect. It should be noted that the present invention does not impose any restrictions on the specific structure of the insulating cleaning component 13, as long as the insulating cleaning component 13 can flow through the cooling liquid to achieve a heat insulation effect on the housing of the clothing processing equipment and the cooling liquid flowing out of the insulating cleaning component 13 can be flushed onto the condensing component to achieve a cleaning effect.

[0029] Next see Figure 2 and Figure 3 , wherein the internal structure cross-sectional view of the mounting component and the heat-insulating cleaning component of the present invention. Figure 2 and 3 As shown, the heat-insulating cleaning component 13 is connected to the drying component 12 through the mounting component 14, and the mounting component 14 is a plate-like structure, the bottom surface of which is also used to form the inner side wall of the drying duct 121. Specifically, a notch (such as Figure 1As shown in the figure), the notch is located above the heating member 123, and the shape of the notch matches the shape of the mounting member 14, so that the mounting member 14 can be connected to the drying assembly 12 through the notch, and so that its bottom surface can form a part of the inner wall of the drying duct 121.

[0030] It should be noted that while the mounting member 14 in this preferred embodiment forms part of the drying duct 121, this structural arrangement is clearly only a preferred arrangement. The drying duct 121 can also be formed by a separate housing, with the mounting member 14 disposed on this housing. Furthermore, while the mounting member 14 in this preferred embodiment is a plate-like structure, this plate-like structure is clearly only a preferred arrangement, and technicians can adjust the specific structure of the mounting member 14 based on actual usage requirements. For example, the mounting member 14 can also be configured as a bracket-like structure, as long as the heat-insulating cleaning member 13 can be positioned between the heating member 123 and the housing of the laundry processing device via the mounting member 14.

[0031] Continue reading Figure 3 In this preferred embodiment, the insulating cleaning member 13 is configured as a pipe structure. A cavity is provided in the center of the mounting member 14, and the insulating cleaning member 13 is disposed within this cavity. This allows the insulating cleaning member 13 to achieve better thermal insulation through the cavity provided in the mounting member 14. The shape of the cavity provided in the mounting member 14 can be either a rectangular parallelepiped or a shape that matches the insulating cleaning member 13. Preferably, the shape of the cavity matches the shape of the insulating cleaning member 13, allowing the pipe wall of the insulating cleaning member 13 to directly contact the inner wall of the cavity provided in the mounting member 14, thereby maximizing the insulating effect of the insulating cleaning member 13.

[0032] It should be noted that the present invention does not impose any restrictions on the cross-sectional shape of the thermal insulation cleaning component 13, and technicians can set it according to actual usage requirements; however, as a preferred embodiment, the thermal insulation cleaning component 13 is configured as a pipe with a circular cross-sectional shape, so as to effectively reduce the resistance generated when the coolant flows, thereby minimizing the heat generated during the flow of the coolant itself.

[0033] Furthermore, based on the fact that the heat-insulating cleaning component 13 is a pipe structure, as a preferred embodiment, the heat-insulating cleaning component 13 is arranged in the cavity formed by the mounting component 14 in a back-and-forth bending manner, that is, it is located between the heating component 123 and the shell of the clothing processing device, and the end of the heat-insulating cleaning component 13 directly extends to the vicinity of the condensation component, so that the cooling liquid flowing out of the heat-insulating cleaning component 13 can be flushed onto the condensation component to achieve a cleaning effect, thereby effectively ensuring the dehumidification effect of the condensation component.

[0034] Specifically, the heat-insulating cleaning member 13 disposed in the cavity formed by the mounting member 14 in a back-and-forth bending manner includes a plurality of transverse sections and vertical sections, which are alternately connected in sequence to form a back-and-forth bending structure. The arrangement of the vertical sections can ensure that a certain distance is maintained between two adjacent transverse sections, so that the coolant in the heat-insulating cleaning member 13 can better exert its heat-insulating effect. In addition, if Figure 2 As shown, as a preferred embodiment, the portion of the thermal insulation cleaning component 13 extending from the mounting component 14 is provided with at least one downward bending section, and the coolant in the thermal insulation cleaning component 13 can be accelerated through the bending section so that the coolant can be accelerated to rush out from the outlet of the thermal insulation cleaning component 13, thereby achieving a better flushing effect.

[0035] As a preferred arrangement, the end of the thermal insulation cleaning member 13 extends above the condensing member and is located on the side close to the heating member 123, so that the coolant flowing out of the thermal insulation cleaning member 13 can be flushed onto the condensing member from the side close to the heating member 123, thereby achieving a better cleaning effect on the condensing member. Of course, this is only a preferred arrangement, and technicians can also adjust the position of the end of the thermal insulation cleaning member 13 based on actual usage needs, as long as the coolant flowing out of the thermal insulation cleaning member 13 can be flushed onto the condensing member to achieve a cleaning effect.

[0036] Furthermore, it should be noted that the present invention does not impose any restrictions on the connection point of the inlet of the insulated cleaning member 13. That is, the present invention does not impose any restrictions on the source of the coolant flowing through the insulated cleaning member 13, and technicians can adjust it according to actual usage requirements. As a preferred embodiment, the inlet of the insulated cleaning member 13 is connected to the dispenser box of the laundry processing device, so that the dispenser box of the laundry processing device can supply tap water as coolant to the insulated cleaning member 13 at any time as needed, and the water flowing out of the insulated cleaning member 13 can directly enter the laundry processing drum 11 after rinsing the condensing member and be discharged through the drain pipe connected to the laundry processing drum 11. Of course, the above arrangement is only a preferred arrangement, and technicians can obviously adjust the connection point of the insulated cleaning member 13 according to actual usage requirements. For example, the inlet of the insulated cleaning member 13 can also be directly connected to the tap through a water inlet valve, and the laundry processing device controls the flow of coolant in the insulated cleaning member 13 by controlling the opening and closing state of the water inlet valve set at the inlet of the insulated cleaning member 13.

[0037] Furthermore, based on the structural arrangement of the heat-insulating cleaning component 13 as a pipe, in this preferred embodiment, the end of the heat-insulating cleaning component 13 extends to the top of the condensing component and close to one side of the drying fan 122, and the end of the heat-insulating cleaning component 13 extends a spray section (not shown in the figure) in the transverse direction. The length of the spray section is the same as the width of the condensing component, and the axial direction of the spray section is the same as the width direction of the condensing component, so that the heat-insulating cleaning component 13 can be better sprayed and cleaned through the spray section. Preferably, a plurality of outlets are provided on the spray section, and each outlet is provided with a spray component (not shown in the figure). The coolant in the heat-insulating cleaning component 13 is sprayed onto the condensing component through the spray component, so that the coolant in the heat-insulating cleaning component 13 can be better sprayed onto the condensing component, thereby effectively ensuring its cleaning effect. In addition, providing a spray component at the outlet of the heat-insulating cleaning component 13 can also prevent the coolant in the heat-insulating cleaning component 13 from flowing out too quickly, so that while effectively ensuring the insulation effect and cleaning effect, it can also effectively save water, thereby effectively ensuring the drying efficiency of the clothing processing equipment. It should be noted that the present invention does not impose any restrictions on the specific structure of the spray component. Technicians can set it according to actual usage requirements, as long as the coolant in the insulation cleaning component 13 can be sprayed onto the condensation component through the spray component.

[0038] As a preferred embodiment, the main body of the spray component is a columnar structure, and the cross-sectional shape of the columnar structure matches the inner cross-sectional shape of the thermal insulation cleaning component 13, so that the spray component can be directly blocked at the end of the thermal insulation cleaning component 13; and a plurality of spray holes are also provided on the columnar structure, and the coolant in the thermal insulation cleaning component 13 is sprayed onto the condensation component through these spray holes to achieve a cleaning effect. This structural setting method can not only effectively achieve the spray effect, thereby effectively ensuring the condensation effect of the condensation component; but also can simplify the specific structure of the spray component to the greatest extent, so as to ensure the spray effect while effectively saving manufacturing costs. It should be noted that the present invention does not impose any restrictions on the specific shape, number and distribution of the spray holes, and technicians can set them according to actual use requirements.

[0039] As another preferred embodiment of the heat-insulating cleaning component 13, the heat-insulating cleaning component 13 can also be a tubular channel integrally formed on the mounting component 14, that is, the heat-insulating cleaning component 13 is directly formed on the mounting component 14; preferably, a tubular channel that bends back and forth is provided on the mounting component 14 as the heat-insulating cleaning component 13, so that the coolant can directly circulate through the heat-insulating cleaning component 13 integrally formed on the mounting component 14 to achieve heat insulation. It should be noted that the present invention does not impose any restrictions on the formation method of the tubular channel, and technicians can set it according to actual use requirements; for example, technicians can directly form the tubular channel and the entire mounting component 14 integrally by injection molding, or they can set the mounting component 14 into two parts, and then process a part of the tubular channel on the upper and lower parts of the mounting component 14 respectively, and then snap the upper and lower parts of the mounting component 14 together to form the tubular channel. Since the insulating cleaning member 13 is a tubular channel integrally formed on the mounting member 14, the outlet of the insulating cleaning member 13 can be connected to the vicinity of the condensing member via other connecting pipes, so that the coolant flowing out of the insulating cleaning member 13 can be flushed onto the condensing member to achieve a cleaning effect. Of course, as a preferred embodiment, a spray member can also be provided at the end of the connecting pipe, so that the coolant in the insulating cleaning member 13 can be sprayed onto the condensing member through the spray member, thereby enabling the coolant to spray and clean the condensing member more comprehensively.

[0040] Thus far, the technical solutions of the present invention have been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of the present invention is obviously not limited to these specific embodiments. Without departing from the basic principles of the present invention, those skilled in the art may make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will fall within the scope of protection of the present invention.

Claims

1. A clothes processing device, characterized in that: The laundry processing device includes a housing, a laundry processing drum and a drying assembly arranged in the housing. The drying assembly includes a drying duct and a condensing component, a drying fan and a heating component sequentially arranged in the drying duct along the air flow direction. The air inlet and the air outlet of the drying duct are both connected to the clothes processing drum. A heat-insulating cleaning component is provided between the heating component and the housing, wherein a cooling liquid can flow through the heat-insulating cleaning component to achieve a heat-insulating effect, and an outlet of the heat-insulating cleaning component is connected to the vicinity of the condensing component so that the cooling liquid flowing out of the heat-insulating cleaning component can be flushed onto the condensing component to achieve a cleaning effect; The air inlet of the drying duct is connected to the rear bottom of the laundry processing drum, and the air outlet of the drying duct is connected to the front top of the laundry processing drum; The condensing component is arranged in the drying air duct near the rear side of the clothing processing drum, and the end of the heat-insulating cleaning component extends to the top of the condensing component and close to the side of the drying fan. The water flowing out of the heat-insulating cleaning component can directly enter the clothing processing drum after flushing the condensing component.

2. The clothes processing device according to claim 1, characterized in that The heat-insulating cleaning component is connected to the drying assembly via a mounting component, and at least a portion of the mounting component is used to form an inner side wall of the drying air duct.

3. The clothes processing device according to claim 2, characterized in that: The heat-insulating cleaning component is a tubular channel integrally formed on the mounting component.

4. The clothes processing device according to claim 3, characterized in that: The tubular channel is formed on the mounting member in a manner of bending back and forth.

5. The clothes processing device according to claim 2, characterized in that: The heat-insulating cleaning component is a pipe, and the end of the pipe extends to the vicinity of the condensing component.

6. The clothes processing device according to claim 5, characterized in that: The pipe is arranged between the heating component and the shell in a manner of bending back and forth.

7. The clothes processing device according to claim 5, characterized in that: A spray component is provided at the outlet of the pipeline. The cooling liquid in the pipeline is sprayed onto the condensing component through the spraying component.

8. The clothes processing device according to claim 7, characterized in that: The main body of the spray component is a columnar structure, the cross-sectional shape of the columnar structure matches the inner cross-sectional shape of the pipeline, and a plurality of spray holes are provided on the columnar structure.

9. The clothes processing device according to claim 2, characterized in that: The mounting member is a plate-shaped structure, and the bottom surface of the plate-shaped structure is used to form the inner side wall of the drying air duct.

10. The laundry processing apparatus according to any one of claims 1 to 9, characterized in that: The clothing processing device is a clothes dryer or a washer-dryer.

Citation Information

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