Laundry treating apparatus

By setting up a flushing system in the dryer and flushing the evaporator with clean water, the problem of hair accumulation on the evaporator surface is solved, ensuring the drying effect of the dryer.

CN223422988UActive Publication Date: 2025-10-10NANJING ROBOROCK INNOVATION TECH CO LTD
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Patent Information

Application Number
CN202422535256.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-10-10
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

A large amount of hair debris is absorbed on the surface of the dryer's evaporator, affecting the dryer's ability to dry clothes.

Method used

A flushing system is provided in the clothing processing device, comprising a water inlet and a water outlet. Clean water is added to the flushing system through the water inlet, and the flushing system is used to flush the evaporator to remove hair debris.

Benefits of technology

Effectively prevent the evaporator surface from absorbing a large amount of hair debris and maintain the drying effect of the dryer.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides clothes treatment equipment, and belongs to the technical field of household appliances, the clothes treatment equipment comprises a flushing system used for flushing an evaporator of the clothes treatment equipment, the flushing system comprises a water inlet end and a water outlet end, and the water outlet end is configured to at least guide water towards the evaporator; the water inlet end is supported on a shell of the clothes treating equipment, and clear water can be added into the washing system through the water inlet end. Specifically, the flushing system comprises a water purifying tank, a pump body and a flushing water pipeline, the flushing water pipeline comprises a water inlet end and a water outlet end, the water purifying tank and the pump body are sequentially arranged on the flushing water pipeline in the direction from the water inlet end to the water outlet end, and the height of the water inlet end is larger than that of the water purifying tank in the height direction of the clothes treatment equipment. According to the clothes treatment equipment, clean water can be added into the flushing system through the water inlet end of the flushing system, the evaporator can be cleaned through the clean water in the flushing system, and the situation that the clothes drying effect of the clothes treatment equipment is affected due to the fact that the surface of the evaporator adsorbs a large number of soft flocks is avoided.
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Description

Technical Field

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

[0002] Over extended use, the evaporator surface of a clothes dryer can absorb a significant amount of lint, impacting the dryer's drying performance. While existing technologies employ filters ahead of the evaporator's airflow, this still leads to significant lint accumulation after extended use. This accumulation of lint can negatively impact the drying performance of the clothes handling device. Utility Model Content

[0003] The purpose of the embodiments of the present application is to provide a clothing processing device to solve the technical problem in the prior art that a large amount of hair debris is adsorbed on the surface of the dryer evaporator, which affects the drying effect of the dryer.

[0004] To achieve the above objectives, the technical solution adopted in this application is:

[0005] The present application provides a clothing processing device, including a flushing system for flushing an evaporator of the clothing processing device, wherein the flushing system is arranged on one side of an inner drum of the clothing processing device, and the flushing system includes a water inlet and a water outlet, and the water outlet is configured to at least direct water toward the evaporator; the water inlet is supported on a housing of the clothing processing device, and clean water can be added to the flushing system through the water inlet.

[0006] In some implementations, the flushing system includes a clean water tank, a pump body, and a flushing water pipeline. The flushing water pipeline includes a water inlet and a water outlet. The clean water tank and the pump body are arranged in sequence on the flushing water pipeline from the water inlet to the water outlet. The height of the water inlet along the height direction of the clothing processing equipment is greater than the height of the clean water tank.

[0007] In some implementations, the clothing processing device includes an equipment body and a recovery box for storing condensed water. The equipment body is provided with an installation position for installing the recovery box. The installation position is provided with a mounting hole, and the water inlet end is matched with the mounting hole.

[0008] In some implementations, an insertion port is formed on the side of the device body to form an installation position, the recovery box is inserted into the device body through the insertion port, and a mounting hole is formed on the bottom wall of the insertion port; the water inlet end is connected to the mounting hole and the water inlet end is arranged at the end of the mounting hole away from the recovery box, and the mounting hole forms the water inlet of the flushing system; or, the water inlet end is a telescopic tube structure, the water inlet end is inserted into the mounting hole, and when the water inlet end is in an extended state, it can extend out of the insertion port and the water inlet of the flushing system is formed on the water inlet end.

[0009] In some implementations, the water inlet is flared.

[0010] In some implementations, the water inlet is provided with a filtering device.

[0011] In some implementations, the laundry treating apparatus further comprises a condensed water recovery system, the condensed water recovery system comprising a collection tray, a recovery pump and a recovery water pipeline, the collection tray being arranged below the evaporator, the recovery water pipeline connecting the collection tray and the recovery box, the recovery pump being arranged on the recovery water pipeline; the end of the collection tray connected with the recovery water pipeline is provided with a filtering device.

[0012] In some implementations, the flushing water pipeline comprises a pipeline body and a spray head structure, one end of the pipeline body being connected with the spray head structure, the spray head structure forming a water outlet end of the flushing water pipeline; the spray head structure is fixedly connected with the pipeline body; or the spray head structure is a rotary spray head, and the spray head structure is rotatably connected with the pipeline body.

[0013] In some implementations, the flushing water pipeline comprises a plurality of branch sections, the number of the branch sections being two or more, one end of each of the branch sections being connected with the pump body, and the other end of each of the branch sections corresponding to a different region of the top surface of the evaporator.

[0014] In some implementations, the shell of the laundry treating apparatus comprises an upper shell plate of the heat exchanger, the upper shell plate of the heat exchanger being arranged above the evaporator, the purified water tank being supported on the upper shell plate of the heat exchanger and located at one side of an inner drum of the laundry treating apparatus, and the branch sections penetrating through the upper shell plate of the heat exchanger.

[0015] In some implementations, the laundry treating apparatus further comprises a steam generator, a connection valve being further arranged on the flushing water pipeline, the connection valve being located between the purified water tank and the pump body or at a water discharge end side of the pump body, and the steam generator being connected with the connection valve through a steam water pipeline.

[0016] In some implementations, the laundry treating apparatus further comprises a steam generator and a steam water tank, a section of the flushing water pipeline between the water inlet end and the purified water tank being a flushing water inlet pipeline, a connection valve being arranged on the flushing water inlet pipeline, the connection valve being connected with the steam water tank through a steam water pipeline, and the steam water tank being connected with the steam generator.

[0017] In some implementations, the laundry treating apparatus further comprises a steam generator, a steam water tank and a steam water pipeline, one end of the steam water pipeline being a water injection end, the water injection end being supported on a shell of the laundry treating apparatus, and the steam water tank and the steam generator being arranged on the steam water pipeline.

[0018] In some implementations, the purified water tank is arranged in a free space inside the laundry treating apparatus; the number of the purified water tanks is one, or the number of the purified water tanks is two or more.

[0019] In some implementations, the clothes treatment apparatus further includes a water amount detection device for detecting the amount of water inside the water purification tank; and the clothes treatment apparatus further includes a display panel including a water amount display area for displaying the amount of water inside the water purification tank.

[0020] In some implementations, the clothes treatment apparatus further includes a sterilization device, and the housing of the clothes treatment apparatus is formed with a heat exchanger accommodation space for accommodating the evaporator, and the sterilization device is located in the heat exchanger accommodation space.

[0021] The clothes treatment apparatus provided by the embodiments has the beneficial effects that: the clothes treatment apparatus includes a flushing system for flushing the evaporator of the clothes treatment apparatus, clean water can be added into the flushing system through the water inlet end of the flushing system, and the evaporator can be flushed by using the clean water in the flushing system, so as to prevent the surface of the evaporator from adsorbing a large amount of lint and affecting the drying effect of the clothes treatment apparatus on clothes. BRIEF DESCRIPTION OF DRAWINGS

[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0023] Figure 1 The structural schematic diagram of the clothes treatment apparatus provided by the embodiments of the present application is shown in the figure;

[0024] Figure 2 The structural schematic diagram of the clothes treatment apparatus provided by the embodiments of the present application is shown in the figure; Figure 1 The sectional view of the clothes treatment apparatus provided by the embodiments of the present application is shown in the figure;

[0025] Figure 3 Another structural schematic diagram of the clothes treatment apparatus provided by the embodiments of the present application is shown in the figure (the recovery box and the collection tray are in the extracted state);

[0026] Figure 4 The internal structural schematic diagram of the clothes treatment apparatus provided by the embodiments of the present application is shown in the figure;

[0027] Figure 5 The internal structural schematic diagram of the clothes treatment apparatus provided by the embodiments of the present application is shown in the figure (the recovery box is in the extracted state);

[0028] Figure 6 The schematic diagram of the water purification tank supported on the heat exchanger upper shell plate provided by the embodiments of the present application is shown in the figure;

[0029] Figure 7 The simple view of the flushing system connected with the steam generator provided by the embodiments of the present application is shown in the figure;

[0030] Figure 8 Another simplified diagram of the flushing system provided in an embodiment of the present application connected to a steam generator;

[0031] Figure 9 Another simplified diagram of the flushing system provided in an embodiment of the present application connected to a steam generator.

[0032] Among them, the reference numerals in the figures are:

[0033] 100-Clothing processing equipment;

[0034] 1-Flushing system; 2-Device body; 3-Recovery box; 4-Collection tray; 5-Steam generator; 6-Connecting valve; 7-Steam water pipeline; 8-Steam water tank;

[0035] 11-clean water tank; 12-pump body; 13-flushing water pipeline;

[0036] 131- pipeline body; 132- sprinkler head structure;

[0037] 1311- branch pipe section; 1312- flushing water inlet pipe;

[0038] 21 - evaporator; 22 - insertion port; 23 - mounting hole; 24 - display panel; 25 - heat exchanger accommodation space; 26 - inner drum; 27 - lower door; 28 - condenser; 29 - dryer door; 210 - heat exchanger upper shell; 211 - mounting hole bottom plate. DETAILED DESCRIPTION

[0039] To make the purpose, technical solutions and advantages of this application more clear, the following will further describe the implementation methods of this application in detail with reference to the accompanying drawings. The embodiments described with reference to the accompanying drawings are exemplary and are intended to be used to explain this application, and should not be understood as limiting this application.

[0040] In the description of this application, it should be understood that the terms "length", "width", "thickness", "top", "bottom", "inside", "outside", "up", "down", "left", "right", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings. They are 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, be constructed and operated in a specific orientation. Therefore, they should not be understood as limitations on this application.

[0041] To facilitate the clear description of the technical solutions of this application, the words "first" and "second" are used to distinguish between identical or similar items with substantially the same functions and effects. Those skilled in the art will understand that the words "first" and "second" do not limit the quantity or order of execution, and the words "first" and "second" do not necessarily mean different.

[0042] In this application, unless otherwise specified or limited, the terms "connected" and "connection" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection; direct connection, indirect connection through an intermediate medium, internal communication between two components, or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on specific circumstances.

[0043] In this application, "and / or" is simply a way to describe the relationship between related objects, indicating that three possible relationships exist. For example, "A and / or B" can mean: A exists alone, A and B exist simultaneously, or B exists alone. Additionally, the character " / " in this document generally indicates that the related objects are in an "or" relationship.

[0044] It should be noted that, in this application, words such as "in one embodiment," "exemplarily," and "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described in this application as "in one embodiment," "exemplarily," or "for example" should not be construed as being preferred or advantageous over other embodiments or designs. Rather, the use of words such as "in one embodiment," "exemplarily," and "for example" is intended to present the relevant concepts in a concrete manner.

[0045] See Figures 1-3 , Figure 1 This is a structural diagram of a clothes processing device 100 provided in an embodiment of the present application. Figure 2 This is a cross-sectional schematic diagram of a clothes processing device 100 provided in an embodiment of the present application. Figure 3 This is a schematic diagram of the recycling box 3 and the collection tray 4 of the laundry processing device 100 provided in the embodiment of the present application in the pulled-out state. Before describing the laundry processing device 100 provided in this embodiment, the following direction definitions are made: the laundry processing device 100 can be calibrated by defining the following three mutually perpendicular axes: X-axis, Y-axis and Z-axis. Figures 1-2 The Z axis is the height direction of the clothing processing device 100 , the X axis is the depth direction of the clothing processing device 100 , which is also the axial direction of the inner drum 26 in the clothing processing device 100 , and the Y axis is the width direction of the clothing processing device 100 .

[0046] The clothing processing device 100 provided in this embodiment has the function of quickly drying clothes. For example, the clothing processing device 100 is a clothes dryer. A high-temperature airflow flows through the clothes to be dried in the inner drum 26, heating the clothes and taking away the evaporated moisture from the clothes, so that the clothes are dried quickly.

[0047] Regarding the function of drying clothes of the clothes treating apparatus 100, specifically, see Figure 2 , Figure 2 This is a cross-sectional view of a clothes processing device 100 according to an embodiment of the present invention. In the clothes processing device 100, the space below the inner drum 26 is a heat exchanger accommodating space 25. The evaporator 21 and the condenser 28 are arranged in sequence in the heat exchanger accommodating space 25. Figure 2 , indicating the Figure 2 In the X-axis direction, the evaporator 21 and condenser 28 are arranged on one side, and the evaporator 21 is close to the dryer door 29. The air in the inner drum 26 is blown to the evaporator 21 by the fan. The refrigerant in the evaporator 21 absorbs heat and evaporates to remove heat from the air passing through it, causing the water vapor in the air to condense and produce condensed water, achieving the dehumidification effect. The dehumidified air passes through the condenser 28. The refrigerant in the condenser 28 releases heat to heat the air passing through it. The heated air flows to the inner drum 26. The high-temperature airflow flows through the clothes in the inner drum 26, heating the clothes and removing the evaporated moisture from the clothes. It then flows to the evaporator 21, that is, through the air circulation, it flows through the inner drum 26 and the heat exchanger accommodating space 25 to dry the clothes in the inner drum 26. In addition, please refer to Figure 3 A collecting tray 4 is usually provided below the evaporator 21 for collecting condensed water.

[0048] When the laundry treatment device 100 is in use, the clothes that need to be dried generate lint, which is then adsorbed onto the surface of the evaporator 21 by the airflow. In existing related art, although a filter is provided in front of the airflow of the evaporator 21, after prolonged use, a large amount of lint will still be adsorbed onto the surface of the evaporator 21. Furthermore, the presence of condensed water on the surface of the evaporator 21 increases the lint adsorption by the evaporator 21. When a large amount of lint is adsorbed onto the surface of the evaporator 21, it affects the heat exchange between the evaporator 21 and the passing air, affecting the dehumidification performance of the evaporator 21 and, in turn, the drying performance of the laundry treatment device 100.

[0049] Based on this, the laundry processing device 100 provided in this embodiment includes a flushing system 1 for flushing the evaporator 21 of the laundry processing device 100. Figure 4 , which illustrates that the flushing system 1 is arranged on one side of the inner drum 26 of the clothes processing equipment.

[0050] Specifically, the flushing system 1 includes a water inlet and a water outlet, and the water outlet is configured to direct water toward the evaporator 21; the water inlet is supported on the shell of the clothing processing device 100, and clean water can be added to the flushing system 1 through the water inlet, and the collection tray 4 receives the water containing hair debris that falls when flushing the evaporator 21.

[0051] In this embodiment, the water outlet is configured to direct water toward the evaporator 21 . For example, the water outlet is close to the evaporator 21 and is located above the evaporator 21 . The evaporator 21 can be flushed by water discharged through the water outlet.

[0052] Regarding the water outlet end of the flushing system 1, in one example, the position of the water outlet end is fixed relative to the position of the evaporator 21; or, in another example, the water outlet end includes a telescopic pipe section, and a driving device is configured to be connected to the water outlet end, and the driving device is moved to change the telescopic state of the water outlet end, so as to facilitate flushing of different areas of the evaporator 21.

[0053] In one example, the water outlet is configured not only to direct water toward the evaporator 21, but also to direct water toward the condenser 28, so as to flush the condenser 28. Specifically, a valve body is provided on the flushing system 1, and the valve body is controlled to change whether water is directed toward the evaporator 21, the condenser 28, or both the evaporator 21 and the condenser 28.

[0054] In this embodiment, the water inlet of the flushing system 1 is supported on the housing of the clothing processing device 100, and the position of the water inlet on the housing of the clothing processing device 100 makes it convenient to add clean water into the flushing system 1 through the water inlet.

[0055] The housing of the clothes treating apparatus 100 may be understood as a frame structure of the clothes treating apparatus 100 for supporting other components such as the inner drum 26 and the evaporator 21 .

[0056] Regarding the water inlet being supported on the shell of the clothing processing device 100, for example, in one example, a door body is provided on the exterior surface of the clothing processing device 100, and the exterior surface can be the top surface, front side surface, left side surface, or right side surface of the clothing processing device 100. When the door body is provided on the front side surface, left side surface, or right side surface, it is preferred that the door body be close to the top surface of the clothing processing device 100; when the door body is provided on the top surface of the clothing processing device 100, it is preferred that the door body be close to the edge of the top surface of the clothing processing device 100, so as to facilitate the addition of clean water into the flushing system 1 through the water inlet. When the door body is opened, the water inlet can be observed, and clean water is added to the flushing system 1 through the water inlet; when the clean water is added, the door body can be closed. In this example, the water inlet can be hidden in the clothing processing device 100 through the door body in the closed state.

[0057] Regarding the water inlet end being supported on the shell of the clothing processing device 100, for example, in another example, the shell of the clothing processing device 100 includes a top plate, a left side plate, a right side plate and a front door plate, and the top plate, the left side plate, the right side plate and the front door plate respectively form the top surface, the left side plate, the right side plate and the front side surface of the clothing processing device 100, and the water inlet end is arranged on the top plate or the left side plate or the right side plate or the front door plate, and the water inlet end is exposed on the appearance surface of the clothing processing device 100.

[0058] The clothing processing device 100 provided in this embodiment includes a flushing system 1 for flushing the evaporator 21 of the clothing processing device 100. Clean water can be added to the flushing system 1 through the water inlet end of the flushing system 1. The evaporator 21 can be flushed by utilizing the clean water in the flushing system 1 to prevent a large amount of hair debris from being adsorbed on the surface of the evaporator 21 and affecting the effect of drying clothes by the clothing processing device 100.

[0059] Regarding the flushing system 1, in one embodiment, see Figure 4 The flushing system 1 includes a clean water tank 11, a pump body 12 and a flushing water pipe 13. The flushing water pipe 13 includes a water inlet end and a water outlet end. The clean water tank 11 and the pump body 12 are arranged in sequence on the flushing water pipe 13 along the direction from the water inlet end to the water outlet end. The height of the water inlet end along the height direction of the clothing processing device 100 is greater than the height of the clean water tank 11.

[0060] In this embodiment, the height of the water inlet is set to be greater than the height of the clean water tank 11 along the height direction of the clothes processing device 100, so that clean water can be added into the clean water tank 11 through the water inlet.

[0061] When the clean water tank 11 is filled with clean water and the evaporator 21 needs to be flushed, the pump body 12 is controlled to open and direct the clean water in the clean water tank 11 to the evaporator 21. When the pump body 12 is in a non-operating state, i.e., not started, the pump body 12 can prevent the clean water in the clean water tank 11 from flowing to the outlet end of the flushing water pipe 13. In addition, the pump body 12 can increase the water flow rate to facilitate better flushing of the evaporator 21.

[0062] In this embodiment, the flushing system 1 includes a clean water tank 11, a pump body 12 and a flushing water pipeline 13, so as to better flush the evaporator 21 and improve the flushing efficiency.

[0063] Regarding the flushing system 1, in another embodiment, the flushing system 1 includes a clean water tank 11 and a flushing water pipe 13. The flushing water pipe 13 includes a water inlet end and a water outlet end. The clean water tank 11 is arranged on the flushing water pipe 13. The height of the water inlet end along the height direction of the clothing processing device 100 is greater than the height of the clean water tank 11. A control valve is provided on the water outlet side of the clean water tank 11.

[0064] When clean water is added to the clean water tank 11, the control valve can be closed; when the clean water tank 11 is filled with clean water and the evaporator 21 needs to be flushed, the control valve is opened, and the clean water in the clean water tank 11 flows to the evaporator 21 under the action of weight to flush the evaporator 21.

[0065] Regarding the flushing system 1 , in another embodiment, the flushing system 1 only includes a flushing water pipeline 13 , and the flushing water pipeline 13 includes a water inlet end and a water outlet end.

[0066] When the evaporator 21 needs to be flushed, clean water can be directly added through the water inlet of the flushing water pipeline 13. The water flows to the water outlet of the flushing water pipeline 13 under the action of gravity to flush the evaporator 21.

[0067] The flushing system 1 provided in this embodiment only includes a flushing water pipeline 13 , and has a simple structure and low processing cost.

[0068] Based on the example that the flushing system 1 includes the clean water tank 11 , in one embodiment, the clean water tank 11 is configured in an empty space inside the laundry treatment apparatus 100 .

[0069] The free space in this embodiment refers to the space inside the laundry processing device 100 that is used as the location for placing the clean water tank 11 without changing the structural layout of the laundry processing device 100. For example, along the width direction of the laundry processing device 100, that is, Figure 1 In the direction of the Y axis, a clean water tank 11 can be provided on one side of the inner cylinder 26. Figure 4 The housing of the laundry processing apparatus 100 includes a heat exchanger upper shell plate 210, which is located above the evaporator 21. Figure 4 The clean water tank 11 is supported on the upper shell 210 of the heat exchanger and is located on one side of the inner drum 26 of the clothes processing device 100. At this time, the water outlet end of the flushing water pipeline 13 passes through the upper shell 210 of the heat exchanger and is located above the evaporator 21.

[0070] Regarding the number of clean water tanks 11, there can be one clean water tank 11 or two or more clean water tanks 11. In this embodiment, regardless of whether there is one clean water tank 11 or two or more, the water tank 11 is disposed within the vacant space within the laundry processing apparatus 100. For example, if it is desired to utilize the vacant space at different locations within the laundry processing apparatus 100, the flushing system 1 can be configured to include two or more clean water tanks 11, each of which can be disposed in a different vacant space. When two or more clean water tanks 11 are provided, the capacity of the flushing system 1 to hold fresh water can be increased.

[0071] When there are two or more clean water tanks 11, in one example, each clean water tank 11 is connected in parallel, that is, each clean water tank 11 is connected to the water inlet end of the flushing water pipeline 13, and the water outlet side of each clean water tank 11 is connected to the pump body 12. Specifically, for example, a water inlet valve body is provided on the water inlet side of each clean water tank 11, and each water inlet valve body is connected to the control device of the laundry treatment device 100. The control device can control the switching state of each water inlet valve body. When the water inlet valve body on the water inlet side of the clean water tank 11 is in the open state, clean water can be added to the clean water tank 11 through the water inlet end of the flushing water pipeline 13. Preferably, a water outlet valve body is provided on the water outlet side of each clean water tank 11, and each water outlet valve body is connected to the control device of the clothing processing equipment 100. The control device can control the switching state of each water outlet valve body. When the water outlet valve body on the water outlet side of the clean water tank 11 is in the open state, the clean water in the corresponding clean water tank 11 can be led to the evaporator 21 under the action of the pump body 12.

[0072] When there are more than two clean water tanks 11, in one example, the clean water tanks 11 are connected in series in sequence, and the height of each clean water tank 11 decreases in sequence along the direction from the water inlet end to the water outlet end, and the water pump 12 is located on the rear side of the lowest clean water tank 11 along the direction from the water inlet end to the water outlet end.

[0073] Regarding the shape of the clean water tank 11, the clean water tank 11 may be in the shape of a rectangular parallelepiped, or the clean water tank 11 may be a special-shaped box body that matches the shape of the vacant space in which it is located.

[0074] The flushing system 1 provided in this embodiment fully utilizes the internal space of the clothing processing device 100 by configuring the clean water tank 11 in the empty space inside the clothing processing device 100; by providing more than two clean water tanks 11, the capacity of the flushing system 1 to accommodate clean water can be increased.

[0075] Based on the example that the flushing system 1 includes a clean water tank 11, in one embodiment, the clothing processing device 100 also includes a water level detection device, which is used to detect the water level inside the clean water tank 11; at the same time, the clothing processing device 100 also includes a display panel 24, and the display panel 24 includes a water level display area, which is used to display the water level inside the clean water tank 11.

[0076] Please return to see Figure 1 , showing the display panel 24, Figure 1 The display panel 24 shown in FIG is located on the front side of the laundry processing device 100 and close to the top of the laundry processing device 100. Part of the area on the display panel 24 is used to display the water volume inside the clean water tank 11. Of course, the display panel 24 can also be set in a place other than Figure 1 At other positions of the clothes treating apparatus 100 other than the position shown.

[0077] The water level detection device is connected to the control device of the clothing processing equipment 100. The water level detection device transmits the information of the water level in the clean water tank 11 detected to the control device. After receiving the signal, the control device sends a signal to the display panel 24 and displays the water level information in the clean water tank 11 in the water level display area of ​​the display panel 24, so that the user can understand the water level in the clean water tank 11.

[0078] When there are more than two clean water tanks 11, each clean water tank 11 is provided with a water level detection device, and the water level detection device in each clean water tank 11 is connected to the control device, and the control device controls the display panel 24 to display the total water volume in each clean water tank 11.

[0079] Preferably, the display panel 24 is further formed with a button for starting the pump body 12. Specifically, when the button is pressed for the first time, the pump body 12 can be started, and when the button is pressed again, the pump body 12 stops working.

[0080] In one scenario, each time the flushing system 1 is filled with clean water, the evaporator 21 can be flushed once. Specifically, when the evaporator 21 is not flushed, clean water is not stored in the clean water tank 11. When the evaporator 21 needs to be flushed, clean water can be added through the water inlet end of the flushing water pipe 13 first, and the display panel 24 displays the amount of water added. When the display panel 24 shows that the clean water tank 11 is full of clean water, the addition of clean water to the clean water tank 11 can be stopped, and then the pump body 12 can be started by operating the display panel 24, so that the pump body 12 drives the clean water in the clean water tank 11 to flush the evaporator 21 to flush the evaporator 21. When the water amount detection device detects that there is no clean water in the clean water tank 11, the control device controls the pump body 12 to stop working to complete the flushing of the evaporator 21.

[0081] In the scenario described above where each time clean water is added to the flushing system 1, the evaporator 21 can be flushed once. When there are more than two clean water tanks 11 and the clean water tanks 11 are connected in parallel, an inlet valve body is provided on the water inlet side of each clean water tank 11. When clean water needs to be added to the clean water tank 11 through the water inlet end of the flushing water pipeline 13, the control device controls the switching state of each water inlet valve body according to the water volume signal transmitted by the water volume detection device in each clean water tank 11; when the evaporator 21 needs to be flushed, the pump body 12 is started so that the pump body 12 drives the clean water in each clean water tank 11 to flush the evaporator 21 to flush the evaporator 21.

[0082] In this embodiment, a water level detection device is provided to facilitate detection of the water level in the clean water tank 11; a water level display area is provided on the display panel 24 for displaying the water level inside the clean water tank 11, so that the user can easily understand the water level in the clean water tank 11 and determine whether the clean water tank 11 is filled with clean water.

[0083] In one embodiment, the laundry processing device 100 further includes a prompting device connected to the control device of the laundry processing device 100. The prompting device is configured to remind the user to regularly rinse the evaporator 21. For example, the control device may count the operating time of the dryer. When the accumulated operating time of the dryer exceeds a preset value, the control device controls the prompting device to emit a prompt signal while the dryer is powered on. The prompt signal may be a visual, audio, or optical signal, for example, an indicator light. Each time the evaporator 21 is rinsed, the control device resets the previously counted time to zero and recalculates the operating time of the dryer.

[0084] In one embodiment, the clothing processing device 100 also includes a lint amount detection device and a prompt device, both of which are connected to the control device of the clothing processing device 100. The lint amount detection device is used to detect the situation of lint adsorbed on the surface of the evaporator 21.

[0085] The lint amount detection device detects the situation of lint adsorbed on the surface of the evaporator 21 and transmits the detection signal to the control device. The control device processes the signal transmitted by the lint amount detection device. When the control device determines that the situation of lint adsorbed on the surface of the evaporator 21 is relatively serious, the control device controls the prompt device to send a prompt signal when the dryer is turned on.

[0086] As described above, each time the flushing system 1 is filled with clean water, the evaporator 21 can be flushed once. In one scenario, after the evaporator 21 is flushed once, the dander amount detection device detects the situation of dander adsorbed on the surface of the evaporator 21. The control device processes the signal transmitted by the dander amount detection device and determines whether the evaporator 21 is flushed clean. If the control device determines that the evaporator 21 does not meet the flushing standard, the control device controls the prompt device to send a prompt signal. At this time, the user can fill the clean water tank 11 of the flushing system 1 with clean water again to perform a second flush of the evaporator 21.

[0087] The lint amount detection device may be an image acquisition device, that is, the lint amount detection device may acquire image information of the evaporator 21 , and the control device may determine the degree of lint adsorption on the surface of the evaporator 21 by analyzing the image information of the evaporator 21 acquired by the lint amount detection device.

[0088] The water inlet end of the flushing water pipe 13 is supported on the shell of the clothing processing device 100. In one embodiment, the clothing processing device 100 includes an equipment body 2 and a recovery box 3 for storing condensed water. The equipment body 2 is provided with an installation position for installing the recovery box 3, and the installation position is provided with a mounting hole 23, and the water inlet end is matched with the mounting hole 23.

[0089] As mentioned above, a collection tray 4 is provided below the evaporator 21. The collection tray 4 receives the condensed water that falls from the evaporator 21 and the water containing hair debris that falls when the evaporator 21 is flushed. The collection tray 4 is connected to the recovery box 3 via a recovery water pipeline. A recovery pump is provided on the recovery water pipeline. When the recovery pump is in operation, the condensed water in the collection tray 4 can flow into the recovery box 3 through the recovery water pipeline under the drive of the recovery pump. The recovery box 3 temporarily stores the condensed water. The user can then periodically draw out the recovery box 3 to pour out the condensed water in the recovery box 3. In addition, in order to prevent the recovery pump from being blocked by hair debris, causing the recovery pump to malfunction, a filter device is provided at the location where the collection tray 4 is connected to the recovery water pipeline. The filter device can filter and intercept hair debris.

[0090] In this embodiment, the water inlet end is matched with the mounting hole 23, that is, when the recovery box 3 is located in the mounting position of the device body 2, the recovery box 3 blocks the water inlet end of the flushing water pipe 13; when the recovery box 3 is taken away from the device body 2, the water inlet end of the flushing water pipe 13 can be observed, so that clean water can be added to the clean water tank 11 through the water inlet end of the flushing water pipe 13.

[0091] In this embodiment, by arranging the water inlet end of the flushing water pipe 13 to cooperate with the mounting hole 23 , the water inlet end of the flushing water pipe 13 can be mounted on the housing of the clothing processing apparatus 100 without affecting the overall appearance of the clothing processing apparatus 100 .

[0092] In an example based on the water inlet end being matched with the mounting hole 23, in one embodiment, an insertion port 22 is formed on the side of the device body 2 to form a mounting position, the recovery box 3 is inserted into the device body 2 through the insertion port 22, and a mounting hole 23 is formed on the bottom wall surface of the insertion port 22.

[0093] See Figure 5 , it is shown that a mounting hole 23 is provided on the bottom wall of the insertion port 22. Regarding the water inlet end being matched with the mounting hole 23, in this embodiment, the water inlet end of the flushing water pipe 13 can be provided to be connected to the mounting hole 23 and the water inlet end is located at the end of the mounting hole 23 away from the recovery box 3. For details, please refer to Figure 5 The housing of the laundry processing device 100 includes a mounting hole bottom plate 211. The mounting hole bottom plate 211 forms the bottom wall of the insertion port 22 along the upper surface of the laundry processing device 100 in the height direction. The water inlet end of the flushing water pipe 13 is connected to the lower surface of the mounting hole bottom plate 211. The water inlet end of the flushing water pipe 13 is also connected to the mounting hole 23, which forms the water inlet of the flushing system 1. When fresh water needs to be added to the clean water tank 11 through the water inlet end of the flushing water pipe 13, the recovery box 3 can be pulled out and fresh water can be added to the flushing system 1 through the mounting hole 23.

[0094] In this embodiment, by setting the water inlet end of the flushing water pipe 13 to be connected to the mounting hole 23 and setting the water inlet end to be installed at the end of the mounting hole 23 away from the recovery box 3, the water inlet end of the flushing water pipe 13 can be installed on the shell of the clothing processing device 100 without affecting the overall appearance of the clothing processing device 100 and making little structural changes to the shell of the clothing processing device 100.

[0095] In the above-mentioned example where the mounting hole 23 forms the water inlet of the flushing system 1 , in one embodiment, the water inlet includes a flared section for facilitating the addition of clean water.

[0096] Specifically, the mounting hole 23 includes a lower section and a flared section. The lower section and the flared section are connected. The flared section is close to the recovery box 3. The lower section is arranged at the end of the flared section away from the recovery box 3. The cross-street area of ​​each part of the flared section is larger than the cross-street area of ​​the lower section, so as to facilitate the addition of clean water to the flushing system 1 through the mounting hole 23.

[0097] In a specific example, the cross-sectional area of ​​the flared section increases gradually from the lower section to the flared section. In a specific example, the cross-sectional area of ​​each portion of the lower section is the same.

[0098] In this embodiment, by providing the water inlet with a flared section, clean water can be easily added to the flushing system 1 through the mounting hole 23 .

[0099] In the example mentioned above where the mounting hole 23 forms the water inlet of the flushing system 1, in one embodiment, a filter device is provided at the water inlet. In this embodiment, the filter device is provided at the water inlet to block foreign matter and prevent foreign matter from entering the flushing system 1.

[0100] The above embodiment records that the water inlet end of the flushing water pipe 13 is connected to the mounting hole 23 and the water inlet end is located at the end of the mounting hole 23 away from the recovery box 3. Regarding the water inlet end being matched with the mounting hole 23, in another embodiment, the water inlet end is a telescopic tube structure, and the water inlet end is inserted into the mounting hole 23. When the water inlet end is in an extended state, it can extend out of the insertion port 22 and form a water inlet of the flushing system 1 on the water inlet end.

[0101] When it is not necessary to add clean water to the flushing system 1, the water inlet end of the flushing water pipe 13 is stored in the mounting hole 23 so as not to affect the insertion of the recovery box 3 into the insertion port 22; when it is necessary to add clean water to the flushing system 1, the recovery box 3 is pulled out, and at the same time, the water inlet end of the flushing water pipe 13 can be stretched so that the water inlet end extends out of the insertion port 22, so as to facilitate the addition of clean water to the flushing system 1 through the water inlet end.

[0102] Regarding the insertion of the water inlet end into the mounting hole 23, for example, in one example, the cross-street area of ​​the water inlet side of the water inlet end is larger than the cross-sectional area of ​​the mounting hole 23, so that the water inlet side of the water inlet end can be supported on the mounting hole 23 to prevent the water inlet side of the water inlet end from detaching from the mounting hole 23 downward in the height direction.

[0103] In this embodiment, by setting the water inlet end to be inserted into the mounting hole 23, the mounting hole 23 can be reasonably utilized to support the water inlet end of the flushing water pipe 13 on the shell of the clothing processing device 100; by setting the water inlet end to be a telescopic tube structure, when clean water needs to be added to the flushing system 1, the water inlet end of the flushing water pipe 13 can be extended out of the insertion port 22 to facilitate the addition of clean water to the flushing system 1 through the water inlet end.

[0104] In the above-mentioned example of forming a water inlet of the flushing system 1 on the water inlet end, in one embodiment, the water inlet includes a flared section for facilitating the addition of clean water.

[0105] Specifically, the water inlet end includes a telescopic section and a flared section. The flared section is connected to the telescopic section. The telescopic section can be extended and compressed. The cross-sectional area of ​​the flared section close to the telescopic section is smaller than the cross-sectional area of ​​the flared section away from the telescopic section.

[0106] In a specific example, the cross-street area of ​​the expanding section gradually increases from being close to the telescopic section to being away from the telescopic section.

[0107] In this embodiment, by providing the water inlet with a flared section, clean water can be easily added to the flushing system 1 through the mounting hole 23 .

[0108] In the example of forming a water inlet of the flushing system 1 on the water inlet end, in one embodiment, the water inlet is provided with a filter device. In this embodiment, by providing the filter device at the water inlet, foreign matter is blocked to prevent foreign matter from entering the flushing system 1.

[0109] Regarding the flushing water pipeline 13, in one embodiment, the flushing water pipeline 13 includes a branch section 1311, the number of which is more than two, one end of the branch section 1311 is connected to the pump body 12, and the other end of the branch section 1311 corresponds to different areas of the top surface of the evaporator 21.

[0110] See Figure 6 , schematically shows a branch pipe section 1311. One end of the branch pipe section 1311 is connected to the pump body 12, that is, a valve body is provided on the water outlet side of the pump body 12, and one end of each branch pipe section 1311 is connected to the valve body, so that one end of each branch pipe section 1311 is connected to the pump body 12. Figure 6 In the figure, it is shown that the clean water tank 11 is supported on the upper shell plate 210 of the heat exchanger, and the other end of each branch pipe section 1311 passes through the upper shell plate 210 of the heat exchanger.

[0111] Preferably, the branch pipe section 1311 is tightly fitted with the upper shell plate 210 of the heat exchanger to fix the branch pipe section 1311. For example, a sealing ring can be provided on the hole in the upper shell plate 210 of the heat exchanger for the branch pipe section 1311 to pass through, and the branch pipe section 1311 is tightly fitted with the upper shell plate 210 of the heat exchanger by passing the sealing ring.

[0112] In this embodiment, the end of the branch pipe section 1311 away from the pump body 12 is located above the evaporator 21. When the pump body 12 is started, the clean water in the clean water tank 11 passes through the pump body 12 and flows to the evaporator 21 through each branch pipe section 1311 to flush different areas on the evaporator 21.

[0113] Regarding the number of branch pipe sections 1311, a reasonable number of branch pipe sections 1311 can be provided according to the size of the evaporator 21 to facilitate flushing of the evaporator 21. Figure 6 , indicating that the number of the branch sections 1311 is three.

[0114] In this embodiment, by setting the number of branch sections 1311 to be more than two and setting the ends of the branch sections 1311 away from the pump body 12 to correspond to different areas of the top surface of the evaporator 21, flushing of the evaporator 21 is facilitated and the flushing efficiency is improved.

[0115] Regarding the flushing water pipeline 13, in one embodiment, the flushing water pipeline 13 includes a pipeline body 131 and a sprinkler head structure 132, one end of the pipeline body 131 is connected to the sprinkler head structure 132, and the sprinkler head structure 132 forms the water outlet end of the flushing water pipeline 13; the sprinkler head structure 132 is fixedly connected to the pipeline body 131; or, the sprinkler head structure 132 is a rotating sprinkler, and the sprinkler head structure 132 is rotatably connected to the pipeline body 131.

[0116] See Figure 7 , showing that a spray head structure 132 is provided at one end of the pipeline body 131. When the pump body 12 is started, the clean water in the clean water tank 11 flows through the pump body 12 to the spray head structure 132, and the clean water is sprayed out through the spray head structure 132 to rinse the evaporator 21.

[0117] The shower head structure 132 may be fixedly connected to the pipeline body 131 . On the basis that the shower head structure 132 and the pipeline body 131 are fixed, the shower head structure 132 and the pipeline body 131 may be detachably connected.

[0118] Alternatively, the spray head structure 132 may be a rotary spray head, which is rotatably connected to the pipe body 131. When the pump body 12 is activated and the spray head structure 132 sprays clean water, the water flows through the guide channel or rotating blades inside the rotary spray head to generate a rotational force, causing the spray head structure 132 to rotate while spraying water, thereby better flushing the evaporator 21.

[0119] When the flushing water pipeline 13 includes more than two branch pipe sections 1311 , that is, when the pipeline body 131 includes more than two branch pipe sections 1311 , a spray head structure 132 is provided at one end of each branch pipe section 1311 away from the pump body 12 .

[0120] In this embodiment, the flushing water pipeline 13 includes a spray head structure 132 to facilitate flushing of the evaporator 21 and improve flushing efficiency.

[0121] Regarding the clothing processing device 100, in one embodiment, the clothing processing device 100 further includes a steam generator 5. When steam fills the interior of the clothing processing device 100, combined with the rotation of the inner drum 26, it can have an ironing effect on the clothes, making the clothes smoother. In addition, the high-temperature steam generated by the steam generator 5 can sterilize and remove odors from the evaporator 21 and condenser 28. The steam generator 5 needs to be connected to a water tank. The water in the water tank flows into the steam generator 5, and the steam generator 5 heats the water therein to generate steam.

[0122] In the example in which the clothing processing device 100 also includes a steam generator 5, in one embodiment, a connecting valve 6 is also provided on the flushing water pipeline 13. The connecting valve 6 is located between the clean water tank 11 and the pump body 12 or on the drainage end side of the pump body 12. The steam generator 5 is connected to the connecting valve 6 through the steam water pipeline 7. That is, in this embodiment, the steam generator 5 and the pump body 12 share the clean water tank 11.

[0123] See Figure 7 , which shows a schematic diagram of the circuit connection when the steam generator 5 and the pump body 12 share the clean water tank 11, Figure 7 The schematic diagram shows that the connecting valve 6 is located between the clean water tank 11 and the pump body 12, and the connecting valve 6 is preferably a three-way valve.

[0124] When the connecting valve 6 is located between the clean water tank 11 and the pump body 12, the steam generator 5 has its own water pump. When the steam generator 5 is in the starting state, the clean water in the clean water tank 11 can flow to the steam generator 5 through the steam water pipe 7; when the pump body 12 is in the starting state, the clean water in the clean water tank 11 can flow to the pump body 12.

[0125] See Figure 8When the connecting valve 6 is located on the drainage end side of the pump body 12, the connecting valve 6 can be set as a solenoid valve. When the evaporator 21 needs to be flushed, the pump body 12 is started and the connecting valve 6 is controlled to connect the pump body 12 with the water outlet end of the flushing water pipeline 13; when the steam generator 5 is working, the pump body 12 is started and the connecting valve 6 is controlled to connect the pump body 12 with the steam generator 5.

[0126] In one scenario, the evaporator 21 does not need to be rinsed frequently, but the clothes processing device 100 needs to be used frequently to dry clothes. That is, the steam generator 5 is used more frequently than the evaporator 21. Therefore, a certain amount of clean water can be stored in the clean water tank 11. The clean water stored in the clean water tank 11 is used by the steam generator 5. When the evaporator 21 needs to be rinsed, the need to refill the clean water tank 11 is determined based on the water level in the clean water tank 11.

[0127] In this embodiment, the steam generator 5 and the pump body 12 share the clean water tank 11, which can help simplify the structure of the clothes processing device 100.

[0128] Based on the example that the laundry treatment apparatus 100 further includes a steam generator 5, in one embodiment, see Figure 9 The clothing processing device 100 also includes a steam water tank 8. The section of the flushing water pipe 13 located between the water inlet end and the clean water tank 11 is a flushing water inlet pipe 1312. A connecting valve 6 is provided on the flushing water inlet pipe 1312. The connecting valve 6 is connected to the steam water tank 8 through the steam water pipe 7, and the steam water tank 8 is connected to the steam generator 5.

[0129] See Figure 9 , showing that both the steam water tank 8 and the clean water tank 11 are connected to the connecting valve 6. In this embodiment, the water used to flush the evaporator 2 and the water supplied to the steam generator 5 come from different water tanks. However, when adding clean water to the steam water tank 8 and the clean water tank 11, the water inlet end of the flushing water pipe 13 is used to add clean water to the steam water tank 8 and the clean water tank 11.

[0130] When clean water needs to be added to the clean water tank 11, the control connecting valve 6 connects the water inlet end of the flushing water pipeline 13 with the clean water tank 11; when clean water needs to be added to the steam water tank 8, the control connecting valve 6 connects the water inlet end of the flushing water pipeline 13 with the steam water tank 8.

[0131] In one scenario, the steam water tank 8 can store clean water for use by the steam generator 5 ; while the clean water tank 11 does not store clean water, and clean water is only added to the clean water tank 11 when the evaporator 21 needs to be flushed.

[0132] In this embodiment, the steam water tank 8 and the clean water tank 11 share the water inlet end of the flushing water pipeline 13, which can help simplify the structure of the clothes processing device 100.

[0133] Based on the example in which the clothing treatment apparatus 100 further includes a steam generator 5, in one embodiment, the clothing treatment apparatus further includes a steam water tank 8 and a steam water pipeline 7. One end of the steam water pipeline 7 is a water injection end, which is supported on the housing of the clothing treatment apparatus 100. The steam water tank 8 and the steam generator 5 are disposed on the steam water pipeline 7. That is, in this embodiment, the steam water tank 8 and the clean water tank 11 do not share the water inlet end of the flushing water pipeline 13.

[0134] The water injection end of the steam water pipe 7 is supported on the shell of the clothing processing device 100. In one example, a door body is provided on the exterior surface of the clothing processing device 100. When the door body is opened, the water injection end of the steam water pipe 7 can be observed, and clean water is added to the steam water tank 8 through the water injection end; when the clean water is added, the door body can be closed, that is, the water injection end can be hidden in the clothing processing device 100 through the door body in the closed state.

[0135] The above describes an example in which the water inlet end of the flushing water pipe 13 is connected to the mounting hole 23 and the water inlet end is arranged at the end of the mounting hole 23 away from the recovery box 3. Regarding the water injection end of the steam water pipe 7 being supported on the shell of the clothing processing device 100, in another example, an insertion port 22 is formed on the side of the device body 2, and the recovery box 3 is inserted into the device body 2 through the insertion port 22. A matching hole is formed on the bottom wall surface of the insertion port 22, and the water injection end of the steam water pipe 7 is connected to the matching hole and the water injection end of the steam water pipe 7 is arranged at the end of the matching hole away from the recovery box 3.

[0136] In this embodiment, by arranging the steam water tank 8 and the clean water tank 11 not to share the water inlet end of the flushing water pipe 13, the water inlet end of the flushing water pipe 13 and the water injection end of the steam water pipe 7 can be flexibly set in the position of the shell of the clothing processing device 100.

[0137] In one embodiment, the laundry processing device 100 further includes a sterilization device. The housing of the laundry processing device 100 is formed with a heat exchanger accommodating space 25 for accommodating the evaporator 21. The heat exchanger accommodating space 25 is located below the inner drum 26 of the laundry processing device 100. The sterilization device is located in the heat exchanger accommodating space 25. Figure 2 , illustrating the heat exchanger accommodating space 25.

[0138] In this embodiment, by providing a sterilization device in the heat exchanger accommodating space 25 , the air in the heat exchanger accommodating space 25 can be sterilized.

[0139] The sterilization device may be, for example, an ultraviolet sterilization device.

[0140] When the laundry processing apparatus 100 is in operation, air in the inner drum 26 flows through the clothes in the inner drum 26, heating the clothes and removing evaporated moisture from the clothes. The air then flows to the heat exchanger accommodating space 25, and the air circulates through the inner drum 26 and the heat exchanger accommodating space 25. Therefore, in this embodiment, by providing a sterilization device in the heat exchanger accommodating space 25, the clothes in the inner drum 26 can be sterilized.

[0141] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present application should be included in the scope of protection of the present application.

Claims

1. A clothes processing device, characterized in that: The invention relates to a washing system (1) for washing an evaporator (21) of a laundry processing device (100), wherein the washing system (1) is arranged on one side of an inner drum (26) of the laundry processing device, and comprises a water inlet and a water outlet, wherein the water outlet is configured to direct water at least toward the evaporator (21); the water inlet is supported on a housing of the laundry processing device, and clean water can be added to the washing system (1) through the water inlet; The flushing system (1) comprises a clean water tank (11), a pump body (12) and a flushing water pipeline (13); The clothing processing device (100) further comprises a steam generator (5), a connecting valve (6) is provided on the flushing water pipeline (13), the connecting valve (6) is located between the clean water tank (11) and the pump body (12) or on the drainage end side of the pump body (12), and the steam generator (5) is connected to the connecting valve (6) via a steam water pipeline (7); or, The clothing processing device (100) further comprises a steam generator (5) and a steam water tank (8); the section of the flushing water pipeline (13) between the water inlet end and the clean water tank (11) is a flushing water inlet pipeline (1312); a connecting valve (6) is provided on the flushing water inlet pipeline (1312); the connecting valve (6) is connected to the steam water tank (8) via a steam water pipeline (7); and the steam water tank (8) is connected to the steam generator (5); or, The clothing processing device further comprises a steam generator (5), a steam water tank (8), and a steam water pipeline (7); one end of the steam water pipeline (7) is a water injection end, and the water injection end is supported on the housing of the clothing processing device (100); the steam water tank (8) and the steam generator (5) are arranged on the steam water pipeline (7).

2. The clothes processing device according to claim 1, characterized in that The flushing water pipeline (13) comprises the water inlet end and the water outlet end, the clean water tank (11) and the pump body (12) are sequentially arranged on the flushing water pipeline (13) in a direction from the water inlet end to the water outlet end, and the height of the water inlet end in the height direction of the clothes processing device (100) is greater than the height of the clean water tank (11).

3. The clothes processing device according to claim 1 or 2, characterized in that: The clothing processing device (100) comprises a device body (2) and a recovery box (3) for storing condensed water, wherein a mounting position for mounting the recovery box (3) is provided on the device body (2), a mounting hole (23) is provided on the mounting position, and the water inlet end is matched with the mounting hole (23).

4. The clothes processing device according to claim 3, characterized in that: An insertion port (22) is formed on the side surface of the device body (2) to form the installation position, and the installation hole (23) is formed on the bottom wall surface of the insertion port (22); The water inlet end is connected to the mounting hole (23) and is arranged at one end of the mounting hole (23) away from the recovery box (3), and the mounting hole (23) forms the water inlet of the flushing system (1); or, the water inlet end is a telescopic tube structure, the water inlet end is inserted into the mounting hole (23), and when the water inlet end is in an extended state, it can extend out of the insertion port (22) and the water inlet of the flushing system (1) is formed on the water inlet end.

5. The clothes processing device according to claim 4, characterized in that: The water inlet includes a flared section for convenient filling of clean water; and / or, the water inlet is provided with a filtering device.

6. The clothes processing device according to claim 3, characterized in that: The flushing water pipeline (13) comprises a pipeline body (131) and a spray head structure (132); one end of the pipeline body (131) is connected to the spray head structure (132), and the spray head structure (132) forms the water outlet end of the flushing water pipeline (13); the spray head structure (132) is fixedly connected to the pipeline body (131); or, the spray head structure (132) is a rotating spray head, and the spray head structure (132) is rotatably connected to the pipeline body (131).

7. The clothes processing device according to claim 3, characterized in that: The flushing water pipeline (13) includes branch pipe sections (1311), the number of the branch pipe sections (1311) is more than two, one end of the branch pipe section (1311) is connected to the pump body (12), and the other end of the branch pipe section (1311) corresponds to different areas of the top surface of the evaporator (21).

8. The clothes processing device according to claim 7, characterized in that: The shell comprises a heat exchanger upper shell plate (210), the heat exchanger upper shell plate (210) is located above the evaporator (21), the clean water tank (11) is supported on the heat exchanger upper shell plate (210) and is located on one side of the inner drum (26) of the clothing processing device (100), and the branch pipe section (1311) passes through the heat exchanger upper shell plate (210).

9. The clothes processing device according to claim 3, characterized in that: The clothing processing device (100) further comprises a water volume detection device, the water volume detection device being used to detect the water volume inside the clean water tank (11); the clothing processing device (100) further comprises a display panel (24), the display panel (24) comprising a water volume display area, the water volume display area being used to display the water volume inside the clean water tank (11).

10. The clothes processing device according to claim 1, wherein The clothing processing device (100) further comprises a sterilization device, the housing of the clothing processing device (100) is formed with a heat exchanger accommodating space (25) for accommodating the evaporator (21), and the sterilization device is located in the heat exchanger accommodating space (25).