A garment processing device

By installing an electrolysis device in the washing machine's circulation pipe, the problems of limited electrode area and poor cleaning effect are solved, achieving efficient cleaning and colorfastness prevention for clothes.

CN224280799UActive Publication Date: 2026-05-26DREAM INNOVATION TECH (SUZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DREAM INNOVATION TECH (SUZHOU) CO LTD
Filing Date
2025-04-23
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The electrode area of ​​existing washing machine electrolysis devices is limited, resulting in poor cleaning effect and problems such as short circuit risk and reduced cleaning effect.

Method used

The electrolysis device is placed in the circulation pipeline of the clothing treatment device, between the circulation pump and the water inlet. The electrode plates are arranged in parallel to ensure smooth liquid flow and increase the contact area. The active material is sprayed directly onto the clothing, avoiding the risk of short circuit.

Benefits of technology

It increases the concentration of active substances and cleaning effect, enhances the ability to prevent discoloration and clean, and avoids electrode short circuits and a decrease in cleaning effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a garment treatment device, relating to the field of garment cleaning technology. The garment treatment device includes a drum assembly and a circulating electrolysis assembly. The drum assembly has a lower outlet and an upper inlet. The circulating electrolysis assembly is connected to the outlet and inlet via a circulation pipe. A circulation pump draws liquid from the outlet through the circulation pipe and then into the drum assembly through the inlet. The electrolysis device is located at the circulation pipe. When the liquid circulates in the circulation pipe, the electrolysis device electrolyzes the liquid and sprays it directly onto the clothes through the inlet. This results in a higher concentration of active substances in contact with the clothes, enhancing colorfastness and cleaning capabilities. Furthermore, the electrolysis device is positioned below the water level inside the drum assembly, ensuring that active substances can still enter the drum assembly to prevent colorfastness and clean the clothes inside, even at low liquid levels.
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Description

Technical Field

[0001] This utility model relates to the field of clothing cleaning technology, and in particular to a clothing processing device. Background Technology

[0002] Currently, water electrolysis devices in washing machines typically mount electrodes on the heating element or to its left or right. However, the hollow shape of the heating element limits the area and shape of the electrode plates. Generally, the performance of the electrodes in catalyzing the production of active oxygen clusters such as hydroxyl and ozone through water electrolysis, as well as the electrolysis lifespan, is related to the electrode area. Specifically, higher power density results in better electrocatalytic performance, higher concentrations of active oxygen produced, and better decolorization and organic pigment degradation performance, but also a shorter lifespan. Therefore, increasing the electrode area and reducing the power density can solve the problems of short lifespan or poor performance. However, existing solutions have the following drawbacks: 1. Limited space inside or to the right of the heating element restricts the area and size of the electrodes; 2. Improper installation inside the heating element, or loose screws, could cause the electrodes to touch the heating element, leading to a short circuit; 3. Over time, calcium and magnesium ions accumulate on the cathode surface, forming precipitates that degrade electrode performance. During the washing process, the water flow generated by the rotation of the drum washing machine can wash away the precipitates to some extent, achieving a cleaning function. However, when placed inside or to the left or right of the heating element, the heating element to some extent obstructs the water flow from rinsing the electrodes, resulting in a decrease in cleaning effectiveness.

[0003] To address these issues, existing technologies include structures that place the electrolysis device at the water outlet pipe. This design allows the electrolysis device to operate without the limitations imposed by the heating element, thus its size is unrestricted and there is no risk of short circuits. However, because the electrolysis device is located at the water outlet pipe, the active substances produced after electrolysis cannot immediately reach the clothing. The active substances need to slowly diffuse upwards onto the clothing, resulting in poor cleaning effectiveness. Utility Model Content

[0004] The purpose of this invention is to provide a clothing treatment device that solves the technical problem that the substances electrolyzed by existing electrolysis devices have poor cleaning effects on clothing.

[0005] According to the purpose of this utility model, this utility model provides a clothing treatment device, including a tubular assembly and a circulating electrolysis assembly;

[0006] The cylindrical assembly includes a lower outlet and an upper inlet;

[0007] The circulating electrolysis assembly includes:

[0008] A circulation pipeline is connected between the outlet and the inlet;

[0009] A circulation pump, installed within the circulation pipeline, drives the flow of liquid within the circulation pipeline, thereby causing the liquid within the cylinder assembly to enter the cylinder assembly from the outlet of the cylinder assembly through the circulation pipeline and then from the inlet; and

[0010] An electrolysis device is connected to the circulation pipeline so that the liquid flowing from the outlet through the circulation pipeline is electrolyzed by the electrolysis device and then enters the cylinder assembly through the inlet. The electrolysis device is located in the pipeline between the circulation pump and the inlet, and the height of the electrolysis device is lower than the water level in the cylinder assembly.

[0011] Optionally, the height of the electrolysis device is lower than the height of the bottom of the cylindrical assembly.

[0012] Optionally, the circulation pipeline includes:

[0013] The outlet pipe, which is a corrugated pipe, is installed between the circulating pump and the outlet.

[0014] An inlet pipe is installed between the circulating pump and the inlet; the electrolysis device is connected to the inlet pipe.

[0015] Optionally, the electrolysis apparatus includes:

[0016] The body includes a water inlet and a water outlet, the water inlet and the water outlet being connected to a water inlet pipe so that the liquid in the water inlet pipe flows through the body.

[0017] An electrode plate is disposed within the body, such that the liquid flowing through the body contacts the electrode plate, thereby electrolyzing the liquid using the electrode plate.

[0018] Optionally, the water inlet and the water outlet are located on opposite sides of the main body, and the central axis of the water inlet coincides with the central axis of the water outlet.

[0019] The plane containing the electrode plate is parallel to the central axis of the water inlet and the water outlet.

[0020] Optionally, the side of the main body without the water inlet and water outlet includes at least two first through holes, and the electrode plate extends into the main body through at least two of the first through holes.

[0021] Optionally, the at least two first through holes are arranged in parallel and side by side.

[0022] Optionally, the electrode sheet includes at least one cathode sheet and at least one anode sheet, and the at least one cathode sheet and the at least one anode sheet are parallel.

[0023] Optionally, the electrolysis device further includes a protective housing, which is disposed on the outside of the main body having the first through hole, and a second through hole is provided in the protective housing to fix the electrode sheet.

[0024] Optionally, the body is provided with a first connecting portion protruding toward the protective housing;

[0025] The protective housing is provided with a second connecting part, and the first connecting part and the second connecting part are connected together by fasteners.

[0026] Optionally, the cylinder assembly includes a cylinder, the bottom of which includes a clearance groove for a heating device, and the water outlet pipe is connected between the bottom of the clearance groove and the circulation pump.

[0027] Optionally, the cylinder assembly includes a door seal located on the front side of the cylinder, and the water inlet located at or near the top of the door seal, so that the liquid after passing through the circulating electrolysis assembly enters the cylinder from the top of or near the top of the door seal.

[0028] Optionally, it also includes a front door panel, wherein a connecting portion is provided at the front door panel, the connecting portion being used to fix the water inlet pipe at the front door panel using fasteners.

[0029] Optionally, the connecting part includes flanges located on the side and top of the front door panel, and a third through hole is provided at the flange, through which the water inlet pipe is fixed to the front door panel by fasteners passing through the third through hole.

[0030] The garment treatment device of this solution may include a drum assembly and a circulating electrolysis assembly. The drum assembly has a water outlet at the bottom and a water inlet at the top. The circulating electrolysis assembly is connected to the water outlet and the water inlet through a circulation pipeline. A circulation pump draws liquid from inside the drum assembly through the circulation pipeline and then into the drum assembly through the water inlet. The electrolysis device is located in the circulation pipeline, between the circulation pump and the water inlet. As the liquid circulates in the circulation pipeline, the electrolysis device electrolyzes the liquid and sprays it directly onto the clothes through the water inlet. This results in a higher concentration of active substances (hydrogen peroxide, hydroxyl groups, or ozone, etc.) in contact with the clothes, enhancing the anti-fading and cleaning capabilities. Specifically, the electrolysis device is positioned below the water level inside the drum assembly. Therefore, even when the circulation pump is not running, the liquid inside the circulating electrolysis assembly remains above the electrolysis device, ensuring that active substances enter the drum assembly to prevent fading and clean the clothes inside.

[0031] This solution sets the height of the electrolysis device below the lowest point of the tubular assembly, ensuring that the electrolysis device is submerged in any liquid within the tubular assembly. This allows the electrolysis device to electrolyze the liquid, generating active substances that enter the tubular assembly along with the water, thereby preventing color fading and cleaning the clothing inside the tubular assembly.

[0032] This design places the inlet and outlet water interfaces on opposite sides of the main body, coaxially aligned, allowing liquid to flow smoothly from the inlet to the outlet. Furthermore, the plane of the electrode plates is parallel to the axes of the inlet and outlet water interfaces, causing the liquid to flow along the electrode plates. This not only improves liquid flow, ensuring the liquid impacts the electrode plates in only one direction, thus extending the lifespan of the electrolytic plates, but also allows the liquid to quickly flush the sides of the electrode plates, increasing the contact area between the liquid and the electrodes, thereby enhancing the electrolysis effect, increasing the concentration of active substances, improving cleaning power, and enhancing color-protecting cleaning results.

[0033] The above and other objects, advantages and features of this utility model will become more apparent to those skilled in the art from the following detailed description of specific embodiments of this utility model in conjunction with the accompanying drawings. Attached Figure Description

[0034] The following sections will describe some specific embodiments of the present invention in a detailed manner by way of example and not limitation, with reference to the accompanying drawings. The same reference numerals in the drawings denote the same or similar parts or components. Those skilled in the art should understand that these drawings are not necessarily drawn to scale. In the drawings:

[0035] Figure 1 This is a partial schematic diagram of a clothing processing device according to a specific embodiment of the present invention;

[0036] Figure 2 This is a partial schematic diagram of a garment care device according to a specific embodiment of the present invention;

[0037] Figure 3 This is a schematic structural diagram of an electrolysis apparatus according to a specific embodiment of the present invention;

[0038] Figure 4 This is a schematic exploded view of an electrolysis apparatus according to a specific embodiment of the present invention.

[0039] Explanation of reference numerals in the attached figures:

[0040] Clothing processing device-100;

[0041] Cylinder assembly - 200; Outlet - 210; Inlet - 220; Cylinder - 230; Circumvention groove - 231; Door seal - 240;

[0042] Circulating electrolysis assembly - 300; Circulating pipeline - 310; Outlet pipe - 311; Inlet pipe - 312; Circulating pump - 320; Electrolysis device - 330; Body - 331; Inlet interface - 3311; Outlet interface - 3312; First through hole - 3313; First connecting part - 3314; Electrode plate - 332; Cathode plate - 3321; Anode plate - 3322;

[0043] Protective housing - 333; Second through hole - 3331; Second connecting part - 3332;

[0044] Front door panel - 400; Connecting part - 410; Third through hole - 411. Detailed Implementation

[0045] In the description of this embodiment, it should be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer", "front", "rear", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0046] As a specific embodiment of this utility model, such as Figure 1 and Figure 2 As shown, this embodiment provides a garment processing device 100, which may include a tubular assembly 200 and a circulating electrolysis assembly 300. The tubular assembly 200 may include a lower outlet 210 and an upper inlet 220. The circulating electrolysis assembly 300 may include a circulation pipe 310, a circulation pump 320, and an electrolysis device 330. The circulation pipe 310 is connected between the outlet 210 and the inlet 220. The circulation pump 320 is disposed in the circulation pipe 310 to drive the liquid flow in the circulation pipe 310, thereby causing the liquid in the tubular assembly 200 to enter the tubular assembly 200 from the outlet 210 through the circulation pipe 310 and then through the inlet 220. The electrolysis device 330 is connected to the circulation pipeline 310 so that the liquid flowing from the outlet 210 through the circulation pipeline 310 is electrolyzed by the electrolysis device 330 and then enters the cylinder assembly 200 through the inlet 220. The electrolysis device 330 is located in the pipeline between the circulation pump 320 and the inlet 220, and the height of the electrolysis device 330 is lower than the water level in the cylinder assembly 200.

[0047] Specifically, the garment treatment device 100 of this embodiment may include a tubular assembly 200 and a circulating electrolysis assembly 300. The tubular assembly 200 is provided with a water outlet 210 located at the bottom and a water inlet 220 located at the top. The circulating electrolysis assembly 300 is connected to the water outlet 210 and the water inlet 220 through a circulation pipe 310. The circulation pump 320 draws liquid from inside the tubular assembly 200 through the water outlet 210, through the circulation pipe 310, and then through the water inlet 220 into the tubular assembly 200. The electrolysis device 330 is located in the circulation pipe 310 and between the circulation pump 320 and the water inlet 220. When the liquid circulates in the circulation pipe 310, the electrolysis device 330 electrolyzes the liquid in the circulation pipe 310 and sprays it directly onto the clothes through the water inlet 220. This results in a higher concentration of active substances (hydrogen peroxide, hydroxyl groups, or ozone, etc.) in contact with the clothes, thereby enhancing the anti-fading and cleaning abilities. Specifically, in this embodiment, the electrolysis device 330 is set at a height lower than the water level inside the tubular assembly 200. Therefore, when the circulation pump 320 is not started, the liquid inside the circulating electrolysis assembly 300 will also be above the electrolysis device 330, which can also ensure that the active substances enter the tubular assembly 200 to prevent fading and clean the clothes inside the tubular assembly 200.

[0048] In a preferred embodiment, the height of the electrolysis device 330 is lower than the height of the bottom of the cylinder assembly 200.

[0049] Specifically, in this embodiment, the height of the electrolysis device 330 is set below the lowest point of the tubular assembly 200, ensuring that the electrolysis device 330 is submerged in any liquid in the tubular assembly 200. This allows the electrolysis device 330 to electrolyze the liquid and generate active substances that enter the tubular assembly 200 with the water, thereby preventing the clothes inside the tubular assembly 200 from fading and cleaning them.

[0050] As a specific embodiment of this utility model, the circulation pipeline 310 may include an outlet pipe 311 and an inlet pipe 312. The outlet pipe 311 may be a corrugated pipe and is disposed between the circulation pump 320 and the outlet 210. The inlet pipe 312 is disposed between the circulation pump 320 and the inlet 220. The electrolysis device 330 is connected to the inlet pipe 312.

[0051] Specifically, in this embodiment, the outlet pipe 311 can serve as the outlet pipe for the circulation pipe 310, and can also be connected to an external pipe for drainage. The inlet pipe 312 primarily introduces the water pumped in by the circulation pump 320 back to the cylinder assembly 200. Specifically, in this embodiment, the electrolysis device 330 can be positioned before, within, or after the inlet pipe 312. Regardless of its position, the electrode plates within the electrolysis device 330 must be in contact with the liquid flowing through the inlet pipe 312 to electrolyze the liquid and generate active substances. Specifically, in this embodiment, the electrolysis device 330 is positioned within the inlet pipe 312. The liquid flowing through the inlet pipe 312 passes through the electrolysis device 330, where it undergoes electrolysis.

[0052] As a specific embodiment of this utility model, such as Figure 3 and Figure 4 As shown, the electrolysis device 330 of this embodiment may include a body 331 and an electrode plate 332. The body 331 may include a water inlet 3311 and a water outlet 3312, which are connected to the water inlet pipe 312 so that the liquid in the water inlet pipe 312 flows through the body 331. The electrode plate 332 is disposed inside the body 331, so that the liquid flowing through the body 331 contacts the electrode plate 332, thereby electrolyzing the liquid using the electrode plate 332.

[0053] Specifically, the electrolysis device 330 of this embodiment may include a body 331 and electrode plates 332. The inlet pipe 312 is separated from the electrolysis device 330 and is connected to the inlet pipe 312 via the inlet 220 and outlet 210 of the body 331. This allows liquid from the inlet pipe 312 to flow into the body 331 through the inlet 220 and then out through the outlet 210 back to the inlet pipe 312. In this embodiment, the inlet 220 and outlet 210 are formed as a convex cylindrical shape for easy connection to the inlet pipe 312. Electrode plates 332 are disposed inside the body 331. When liquid enters the body 331, it undergoes electrolysis through the electrode plates 332 to generate active substances. These active substances then flow out of the body 331 with the liquid and into the cylinder assembly 200.

[0054] Preferably, in this embodiment, the water inlet 3311 and the water outlet 3312 are disposed on opposite sides of the body 331, and the central axis of the water inlet 3311 coincides with the central axis of the water outlet 3312. The plane containing the electrode plate 332 is parallel to the central axes of the water inlet 3311 and the water outlet 3312.

[0055] Specifically, in this embodiment, the inlet 3311 and outlet 3312 are located on opposite sides of the main body 331 and are coaxially arranged, allowing the liquid to flow smoothly from the inlet 220 to the outlet 210. Furthermore, the plane of the electrode plate 332 is parallel to the axes of the inlet 3311 and outlet 3312, causing the liquid to flow along the electrode plate 332. This makes the liquid flow smoother, with the liquid impacting the electrode plate 332 in only one direction, thus extending the lifespan of the electrolytic plate. It also allows the liquid to quickly flush the sides of the electrode plate 332, increasing the contact area between the liquid and the electrode plate 332, thereby improving the electrolysis effect, increasing the concentration of active substances, and enhancing cleaning ability and color-protecting cleaning effect.

[0056] Specifically, the structure of the body 331 in this embodiment can be a cube, cuboid, or cylinder, etc. This embodiment mainly uses a cuboid structure of the body 331 as an example for explanation. In this embodiment, the longer side of the body 331 is in the direction of water flow, and the sides of the inlet 3311 and outlet 3312 are the width and height.

[0057] Specifically, in this embodiment, one side of the main body 331 that is not provided with a water inlet 3311 and a water outlet 3312 may include at least two first through holes 3313, and electrode plates 332 extend into the main body 331 through the at least two first through holes 3313. Each electrode plate 332 corresponds to one first through hole 3313, and each first through hole 3313 extends into the main body 331.

[0058] Specifically, the main function of the first through hole 3313 in this embodiment is to allow the electrode sheet 332 to extend into the body 331 through the first through hole 3313. Since the electrode sheet 332 is generally sheet-shaped, the first through hole 3313 is generally rectangular. Since the electrode sheet 332 needs to be aligned with the water flow direction, multiple electrode sheets 332 are preferably arranged parallel to each other and side by side. Therefore, the first through holes 3313 also need to be arranged parallel to each other and side by side.

[0059] Specifically, the electrode sheet 332 in this embodiment may include at least one cathode sheet 3321 and at least one anode sheet 3322, and the at least one cathode sheet 3321 and the at least one anode sheet 3322 are parallel.

[0060] Generally, electrolysis can be completed using one cathode plate 3321 and one anode plate 3322. However, to improve the electrolysis effect and the concentration of active material, the electrolysis device 330 can typically increase the electrolysis effect by increasing the area of ​​the electrode plates 332 or the number of electrode plates 332. In this embodiment, the electrolysis effect is increased by designing one anode plate 3322 and two cathode plates 3321 located on both sides of the anode within the main body 331.

[0061] As a specific embodiment of this utility model, such as Figure 3 and Figure 4 As shown, the electrolysis device 330 of this embodiment may further include a protective housing 333. The protective housing 333 is disposed on the outside of the body 331 having a first through hole 3313. A second through hole 3331 is provided at the protective housing 333 to fix the electrode sheet 332.

[0062] Specifically, when the electrode sheet 332 is inserted into the body 331, at least a portion of the structure of the electrode sheet 332 will be exposed outside the body 331 in order to fix the electrode sheet 332. In this embodiment, a protective shell 333 is designed outside the body 331 to fix the electrode sheet 332 exposed outside the body 331 on the one hand, and to protect the electrode sheet 332 on the other hand, to prevent the electrode sheet 332 from loosening and from being damaged by collisions between the exposed electrode sheet 332 and external substances.

[0063] Specifically, in this embodiment, a second through hole 3331 is designed at the protective housing 333. The exposed part of the electrode sheet 332 can be inserted into the second through hole 3331, and then the electrode sheet 332 is fixed through the first through hole 3313 and the second through hole 3331.

[0064] In addition, after the electrode sheet 332 is installed in the first through hole 3313 and the second through hole 3331, sealant can be applied to the first through hole 3313 and the second through hole 3331 to further fix the electrode sheet 332.

[0065] Specifically, in this embodiment, the main body 331 is provided with a first connecting portion 3314 protruding towards the protective housing 333. The protective housing 333 is provided with a second connecting portion 3332, and the first connecting portion 3314 and the second connecting portion 3332 are connected together by fasteners.

[0066] Specifically, in this embodiment, the first connecting part 3314 extends outward from the protective shell 333, while the second connecting part 3332 extends outward from the body 331. The first connecting part 3314 and the second connecting part 3332 are connected together by fastening with screws or bolts.

[0067] The number of first connecting parts 3314 and second connecting parts 3332 is the same, and each can be one or more. In this embodiment, there are two first connecting parts 3314 and two connecting parts 3332, which are respectively arranged on opposite sides of the protective structure.

[0068] As a specific embodiment of this utility model, such as Figure 1 and Figure 2As shown, the cylindrical assembly 200 of this embodiment may include a cylindrical body 230. The bottom of the cylindrical body 230 includes a relief groove 231 for providing a heating device. A water outlet pipe 311 is connected between the bottom of the relief groove 231 and the circulation pump 320.

[0069] Specifically, in this embodiment, a heating device is installed at the clearance groove 231, while the electrolysis device 330 is installed at the circulation pipeline 310. Therefore, the electrolysis device 330 is not limited by the heating device, making it easier to adjust the size and dimensions of the electrode sheet 332, thereby efficiently utilizing the performance of the electrode sheet 332 or optimizing its cost. Furthermore, the separate installation of the electrolysis device 330 and the heating device in this embodiment avoids electrode short-circuit problems caused by internal installation errors or loose screws in the heating device.

[0070] Specifically, such as Figure 2 As shown, the cylinder assembly 200 of this embodiment may also include a door seal 240, which is located on the front side of the cylinder 230. The water inlet 220 is located at the top or near the top of the door seal 240, so that the liquid after passing through the circulating electrolysis assembly 300 enters the cylinder 230 from the top or near the top of the door seal 240.

[0071] The water inlet 220 is designed at the door seal 240, which is a rubber component, making structural modifications easier. Modifying the structure of the cylinder 230 is relatively complex and troublesome. Therefore, in this embodiment, designing the water inlet 220 at the door seal 240 simplifies the manufacturing process of the cylinder 230. Furthermore, placing the water inlet 220 at the top or near the top of the door seal 240 allows the liquid carrying active substances, after electrolysis, to be sprayed onto the clothing from above the door seal 240, directly contacting the garment. This increases the concentration of active substances, improving cleaning power and color-protecting cleaning effects.

[0072] As a specific embodiment of this utility model, such as Figure 1 As shown, the clothing handling device 100 of this embodiment may further include a front door panel 400, wherein a connecting part 410 is provided at the front door panel 400, and the connecting part 410 is used to fix the water inlet pipe 312 to the front door panel 400 using fasteners.

[0073] Specifically, the connecting part 410 in this embodiment may include flanges located on the side and top of the front door panel 400. A third through hole 411 is provided at the flange, and the water inlet pipe 312 is fixed to the front door panel 400 by fasteners passing through the third through hole 411.

[0074] Specifically, in this embodiment, the water inlet pipe 312 is arranged along the flange, and the fastener can be a fastening rope buckle. The fastening rope buckle passes through the third through hole 411 at the flange and then fixes the water inlet pipe 312. The front door panel 400 is designed with connecting parts 410 on the side and top, which makes the water inlet pipe 312 more securely fastened to the front door panel 400.

[0075] Therefore, those skilled in the art should recognize that although many exemplary embodiments of the present invention have been shown and described in detail herein, many other variations or modifications conforming to the principles of the present invention can be directly determined or derived from the disclosure of the present invention without departing from the spirit and scope of the present invention. Therefore, the scope of the present invention should be understood and recognized as covering all such other variations or modifications.

Claims

1. A garment processing device, characterized in that, Includes the cylinder assembly and the circulating electrolysis assembly; The cylindrical assembly includes a lower outlet and an upper inlet; The circulating electrolysis assembly includes: A circulation pipeline is connected between the outlet and the inlet; A circulation pump, installed within the circulation pipeline, drives the flow of liquid within the circulation pipeline, thereby causing the liquid within the cylinder assembly to enter the cylinder assembly from the outlet of the cylinder assembly through the circulation pipeline and then from the inlet; and An electrolysis device is connected to the circulation pipeline so that the liquid flowing from the outlet through the circulation pipeline is electrolyzed by the electrolysis device and then enters the cylinder assembly through the inlet. The electrolysis device is located in the pipeline between the circulation pump and the inlet, and the height of the electrolysis device is lower than the water level in the cylinder assembly.

2. The garment processing device according to claim 1, characterized in that, The height of the electrolysis device is lower than the height of the bottom of the cylindrical assembly.

3. The garment processing device according to claim 1, characterized in that, The circulation pipeline includes: The outlet pipe, which is a corrugated pipe, is installed between the circulating pump and the outlet. An inlet pipe is installed between the circulating pump and the inlet; the electrolysis device is connected to the inlet pipe.

4. The garment processing device according to claim 3, characterized in that, The electrolysis apparatus includes: The body includes a water inlet and a water outlet, the water inlet and the water outlet being connected to a water inlet pipe so that the liquid in the water inlet pipe flows through the body. An electrode plate is disposed within the body, such that the liquid flowing through the body contacts the electrode plate, thereby electrolyzing the liquid using the electrode plate.

5. The garment processing apparatus according to claim 4, characterized in that, The water inlet and the water outlet are located on opposite sides of the main body, and the central axis of the water inlet coincides with the central axis of the water outlet. The plane containing the electrode plate is parallel to the central axis of the water inlet and the water outlet.

6. The garment processing apparatus according to claim 4, characterized in that, The side of the main body without the water inlet and water outlet includes at least two first through holes, and the electrode plate extends into the main body through at least two of the first through holes.

7. The garment processing apparatus according to claim 6, characterized in that, The at least two first through holes are arranged in parallel and side by side.

8. The garment processing apparatus according to claim 6, characterized in that, The electrode plate includes at least one cathode plate and at least one anode plate, and the at least one cathode plate and the at least one anode plate are parallel.

9. The garment processing apparatus according to claim 6, characterized in that, The electrolysis device further includes a protective housing, which is disposed on the outside of the main body having the first through hole, and a second through hole is provided on the protective housing to fix the electrode sheet.

10. The garment processing apparatus according to claim 9, characterized in that, The main body is provided with a first connecting part that protrudes toward the protective shell; The protective housing is provided with a second connecting part, and the first connecting part and the second connecting part are connected together by fasteners.

11. The garment processing apparatus according to claim 3, characterized in that, The cylinder assembly includes a cylinder, the bottom of which includes a clearance groove for a heating device, and the water outlet pipe is connected between the bottom of the clearance groove and the circulation pump.

12. The garment processing apparatus according to claim 11, characterized in that, The cylinder assembly includes a door seal located on the front side of the cylinder, and the water inlet located at or near the top of the door seal, so that the liquid after passing through the circulating electrolysis assembly enters the cylinder from the top of or near the top of the door seal.

13. The garment processing apparatus according to claim 3, characterized in that, It also includes a front door panel, on which a connecting part is provided, the connecting part being used to fix the water inlet pipe to the front door panel using fasteners.

14. The garment processing apparatus according to claim 13, characterized in that, The connecting part includes flanges located on the side and top of the front door panel, and a third through hole is provided at the flange. The water inlet pipe is fixed to the front door panel by fasteners passing through the third through hole.