Clothes processing device

By setting a clearance groove in the garment processing device to separate the heating device and the electrolysis device, the problems of limited electrode area and poor cleaning effect are solved, the electrode size is increased and the cleaning effect is improved, the risk of short circuit is reduced and the service life of the electrode is extended.

CN224199679UActive Publication Date: 2026-05-05DREAM 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
2025-04-11
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In existing technologies, the electrolysis device is placed on or to the left or right of the heating tube, which results in limited electrode area, poor cleaning effect and easy short circuit.

Method used

An obstacle avoidance groove is set in the garment treatment device so that the heating device and the electrolysis device are located on the front and rear sides of the obstacle avoidance groove, respectively. This increases the electrode area and reduces the power density, reduces the risk of short circuit, and improves the cleaning effect through water rinsing.

Benefits of technology

This increased the electrode area, reduced the risk of short circuits, improved the cleaning effect and lifespan of the electrolysis device, prevented the accumulation of calcium and magnesium ion deposits, and extended the service life of the electrodes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a clothes processing device, and relates to the technical field of clothes cleaning. The clothes processing device can comprise the inner cylinder, the outer cylinder, the heating device and the electrolyzing device, the avoiding groove is formed in the outer cylinder, the heating device and the electrolyzing device are located on the front side and the rear side of the avoiding groove respectively, the electrolyzing device and the heating device are separated from each other, and therefore the size of an electrode of the electrolyzing device cannot be limited by the heating device, and the service life of the electrolyzing device is prolonged. The size of the electrode of the electrolysis device can be enlarged, so that the area of the electrolysis device is increased, the power density is reduced, and the problem of short service life or poor performance can be solved. And the possibility of contact between the electrolysis device and the heating device caused by installation errors or screw looseness is reduced, so that the risk of short circuit of the motor is reduced. Calcium and magnesium ions which are accumulated on the surface of the cathode of the electrolysis device and form precipitates due to long-time electrolysis are reduced, and reduction of electrode performance is slowed down.
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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 the 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 electrodes. Generally, the performance of the electrodes in catalyzing the production of active oxygen clusters such as hydroxyl and ozone during 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. Thus, existing solutions that place the electrolysis device on or to the left or right of the heating element have the following drawbacks:

[0003] 1. Limited space inside or on the left and right sides of the heating tube restricts the area and size of the electrodes;

[0004] 2. If the heating element is installed incorrectly or the screws are loose, the electrodes may touch the heating element, resulting in a short circuit.

[0005] 3. During prolonged electrolysis, calcium and magnesium ions accumulate on the cathode surface and form precipitates, leading to a decline in 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 obstructs the water flow from washing away the electrodes to some extent, resulting in a decrease in cleaning effectiveness. Utility Model Content

[0006] The purpose of this invention is to provide a garment treatment device that solves the technical problems in the prior art where the electrolysis device is located on or on the left or right side of the heating tube, resulting in limited electrode size, low cleaning effect, and easy short circuit.

[0007] According to the purpose of this utility model, this utility model provides a clothing processing device, including an inner tube, an outer tube, a heating device and an electrolysis device; a relief groove protruding away from the inner tube is provided below the outer tube;

[0008] At least a portion of the structure of the heating device extends from the front side of the clearance groove into the clearance groove, and at least a portion of the structure of the electrolysis device extends from the rear side of the clearance groove into the clearance groove; or

[0009] At least a portion of the structure of the heating device extends from the rear side of the clearance groove into the clearance groove, and at least a portion of the structure of the electrolysis device extends from the front side of the clearance groove into the clearance groove.

[0010] Optionally, the clearance groove includes a middle plate and two side plates connected to the front and rear sides of the middle plate;

[0011] The electrolysis device is disposed at one of the side plates, and at least a portion of the structure is inserted into the clearance groove by the side plate.

[0012] Optionally, the intermediate plate is provided with a drain outlet, which is used to connect to a drainage water circuit or a circulating water circuit, and the drain outlet faces the electrolysis device.

[0013] Optionally, one of the side plates is provided with a mounting part, the mounting part is provided with a mounting hole, the electrolysis device is connected to the mounting part and extends through the mounting hole into the clearance groove.

[0014] Optionally, the electrolysis apparatus includes:

[0015] A fixing base is used for fixed connection with the mounting part; the fixing base is provided with a through hole;

[0016] An electrode plate is connected to the fixing base. The electrode plate passes through the through hole of the fixing base, extends from the mounting hole into the clearance groove, and a sealing element is provided at the through hole after the electrode plate is installed to fix the electrode plate.

[0017] Optionally, the electrode plate includes at least one anode plate and a cathode plate located on the side of each anode plate, wherein both the anode plate and the cathode plate are parallel to the tangent of the outer cylinder at their respective locations.

[0018] Optionally, both the anode plate and the cathode plate are parallel to the horizontal plane.

[0019] Optionally, the electrolysis apparatus further includes:

[0020] A protective structure is connected to the mounting base, and the protective structure forms an accommodating space with an opening to accommodate the electrode sheet.

[0021] Optionally, the number of openings is two, and the openings are located on two opposite sides of the protective structure adjacent to the fixing seat.

[0022] Optionally, the opening is located on two opposite sides of the protective structure on a horizontal plane.

[0023] Optionally, the receiving space of the protective structure is provided with at least one column near the opening, and each column is provided with a plurality of inwardly extending first protrusions, and the electrode sheet extends into the receiving space and is disposed on the corresponding first protrusion.

[0024] Optionally, the inner wall of the receiving space of the protective structure on the side away from the fixing seat is provided with a plurality of second protrusions, and each electrode sheet passes through the first protrusion and overlaps the corresponding second protrusion.

[0025] Optionally, a sealing ring is also included, located between the fixing seat and the mounting portion, to prevent water leakage from between the electrolysis device and the side plate.

[0026] Optionally, the mounting part is provided with a mounting groove, the sealing ring is disposed in the mounting groove, and the electrolysis device is pressed against the sealing ring when it is installed in the mounting part.

[0027] The garment processing device of this solution may include an inner drum, an outer drum, a heating device, and an electrolysis device. A clearance groove is provided at the outer drum, with the heating device and electrolysis device located at the front and rear sides of the clearance groove, respectively. That is, when the heating device is located at the front of the clearance groove, the electrolysis device is located at the rear; conversely, when the heating device is located at the rear, the electrolysis device is located at the front. Because the electrolysis device and the heating device are separate, the size of the electrodes of the electrolysis device is not limited by the heating device, allowing for a larger electrode size. This increases the area of ​​the electrolysis device, reduces power density, and solves the aforementioned problems of short lifespan or poor performance. Furthermore, since the electrolysis device and the heating device are located at the front and rear of the clearance groove, respectively, the electrolysis device is farther from the heating device, reducing the possibility of contact between the two devices due to installation errors or loose screws, thereby reducing the risk of motor short circuits. In addition, since the electrolysis device is located at one end of the clearance tank, the water flow to the electrolysis device during the washing process is not blocked by the heating device. Therefore, the cleaning effect of the water flow on the electrolysis device will not decrease, thereby reducing the accumulation of calcium and magnesium ions on the cathode surface of the electrolysis device and the formation of precipitates due to prolonged electrolysis, thus slowing down the decline in electrode performance.

[0028] 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

[0029] 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:

[0030] Figure 1 This is a schematic structural diagram of a clothing processing device according to a specific embodiment of the present invention;

[0031] Figure 2 This is a partial structural diagram of the outer cylinder connected to the electrolysis device and the heating device according to a specific embodiment of the present invention;

[0032] Figure 3 This is a partial structural diagram of the connection between the outer cylinder and the electrolysis device according to a specific embodiment of the present invention;

[0033] Figure 4 This is a schematic structural diagram of an electrolysis apparatus according to a specific embodiment of the present invention;

[0034] Figure 5 This is a schematic structural diagram of the fixing base and protective structure from one angle according to a specific embodiment of the present utility model;

[0035] Figure 6 This is a schematic structural diagram of the fixing base and protective structure according to a specific embodiment of the present utility model from another angle;

[0036] Figure 7 This is a schematic structural diagram of a clothing processing device according to a specific embodiment of the present invention, without the electrolysis device installed.

[0037] Explanation of reference numerals in the attached figures:

[0038] Clothing handling device-100; Inner drum-110; Outer drum-120; Clearance groove-121; Middle plate-122; Side plate-123; Drain outlet-124; Mounting part-125; Mounting hole-126; Mounting groove-127;

[0039] Heating device -130;

[0040] Electrolysis device - 140; Fixture - 141; Through hole - 1411; Electrode plate - 142; Anode plate - 1421; Cathode plate - 1422; Protective structure - 143; Opening - 1431; Column - 144; First protrusion - 1441; Second protrusion - 145;

[0041] Sealing ring -150. Detailed Implementation

[0042] 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.

[0043] As a specific embodiment of this utility model, such as Figures 1-3 As shown, this embodiment provides a garment processing device 100, which may include an inner drum 110, an outer drum 120, a heating device 130, and an electrolysis device 140. A clearance groove 121 protruding away from the inner drum 110 is provided below the outer drum 120. At least a portion of the structure of the heating device 130 extends from the front side of the clearance groove 121 into the clearance groove 121, and at least a portion of the structure of the electrolysis device 140 extends from the rear side of the clearance groove 121 into the clearance groove 121. Alternatively, at least a portion of the structure of the heating device 130 extends from the rear side of the clearance groove 121 into the clearance groove 121, and at least a portion of the structure of the electrolysis device 140 extends from the front side of the clearance groove 121 into the clearance groove 121.

[0044] Specifically, the garment processing device 100 of this embodiment may include an inner drum 110, an outer drum 120, a heating device 130, and an electrolysis device 140. Specifically, the garment processing device 100 of this embodiment is provided with a heating device 130, enabling the garment processing device 100 to have a heating function, thereby further enhancing the cleaning or sterilization effect through hot water washing. In addition, the garment processing device 100 is also provided with an electrolysis device 140, enabling the garment processing device 100 to generate active substances during the washing process, thereby achieving the functions of decolorization, sterilization, and removal of organic stains.

[0045] Specifically, in this embodiment, a clearance groove 121 is provided at the outer cylinder 120, and the heating device 130 and the electrolysis device 140 are located at the front and rear sides of the clearance groove 121, respectively. In this embodiment, the front side refers to the side with the clothing inlet, and the rear side is the side opposite the front side along the axial direction. In this embodiment, when the heating device 130 is located at the front side of the clearance groove 121, the electrolysis device 140 is located at the rear side of the clearance groove 121; when the heating device 130 is located at the rear side of the clearance groove 121, the electrolysis device 140 is located at the front side of the clearance groove 121. The electrolysis device 140 is separate from the heating device 130, therefore the size of the electrode of the electrolysis device 140 is not limited by the heating device 130, allowing for an increase in the size of the electrode of the electrolysis device 140. Furthermore, by increasing the area of ​​the electrolysis device 140 and reducing the power density, the problems of short lifespan or poor performance of the electrolysis device can be solved. Furthermore, since the electrolysis device 140 and the heating device 130 are located at the front and rear sides of the clearance groove 121, respectively, the electrolysis device 140 is far from the heating device 130, reducing the possibility of contact between the electrolysis device 140 and the heating device 130 due to installation errors or loose screws, thereby reducing the risk of motor short circuit. Additionally, since the electrolysis device 140 is located alone at one end of the clearance groove 121, the water flow from the laundry treatment device 100 to the electrolysis device 140 is not obstructed by the heating device 130 during the washing process. Therefore, the cleaning effect of the water flow on the electrolysis device 140 is not reduced, thereby reducing the accumulation and precipitation of calcium and magnesium ions on the cathode surface of the electrolysis device 140 due to prolonged electrolysis, and slowing down the decline in electrode performance.

[0046] As a specific embodiment of this utility model, the clearance groove 121 may include an intermediate plate 122 and two side plates 123 connected to the front and rear sides of the intermediate plate 122. The electrolysis device 140 is disposed at one of the side plates 123, and at least part of its structure is inserted into the clearance groove 121 by the side plate 123.

[0047] Specifically, in this embodiment, the clearance groove 121 has side plates 123 at both ends and an intermediate plate 122 connecting the two side plates 123 formed on the lower side of the outer cylinder 120. The electrolysis device 140 is disposed on one of the side plates 123, and at least part of its structure is inserted into the clearance groove 121 via this side plate 123. The two side plates 123 are located at the front and rear sides of the outer casing, respectively, and are substantially parallel to the front and rear end faces of the outer cylinder 120. The electrolysis device 140 extends into the clearance groove 121 along the axial direction of the outer cylinder 120.

[0048] As a specific embodiment of this utility model, the intermediate plate 122 of this embodiment is provided with a drain outlet 124, which is used to connect to a drainage water circuit or a circulating water circuit. The drain outlet 124 faces the electrolysis device 140 (e.g., Figure 2 (As shown).

[0049] Specifically, generally, since the laundry treatment device 100 discharges the washing water after washing, a drainage path is provided, or a circulation path is provided in some drum sections. Both the drainage path and the circulation path are usually connected to the intermediate plate 122 to ensure complete drainage of the water inside the drum. A drain outlet 124 is provided at the intermediate plate 122, and the drainage path and circulation path are connected to the drain outlet 124 to discharge or circulate the water. In this embodiment, the electrolysis device 140 is positioned corresponding to the drain outlet 124, so that the water inside the drum passes through the electrolysis device 140 when passing through the drainage path or the circulation path, thereby improving the electrolysis effect of the electrolysis device 140.

[0050] As a specific embodiment, one of the side plates 123 of this embodiment is provided with a mounting part 125, and the mounting part 125 is provided with a mounting hole 126. The electrolysis device 140 is connected to the mounting part 125 and extends through the mounting hole 126 into the clearance groove 121.

[0051] Specifically, in this embodiment, the drain outlet 124 is located near the front end of the middle plate 122. Therefore, in this embodiment, the electrolysis device 140 is located on the side plate 123 at the front end. The side plate 123 at the front end is provided with a mounting part 125. The electrolysis device 140 is located on the mounting part 125 and extends through the mounting hole 126 into the relief groove 121, and is close to the drain outlet 124.

[0052] As a specific example, such as Figure 4 As shown, the electrolysis apparatus 140 of this embodiment may include a mounting base 141 and an electrode plate 142. The mounting base 141 is used for fixed connection with the mounting portion 125. A through hole 1411 is provided at the mounting base 141. The electrode plate 142 is connected to the mounting base 141, passing through the through hole 1411 of the mounting base 141, extending from the mounting hole 126 into the clearance groove 121, and after the electrode plate 142 is installed, a sealing element (not shown in the figure) is provided at the through hole 1411 to fix the electrode plate 142.

[0053] Specifically, in this embodiment, the electrode plate 142 is installed at the through hole 1411 of the fixing base 141. Since the fixing base 141 is located at the side plate 123, and the electrode plate 142 extends from the fixing base 141 into the relief groove 121 and comes into contact with the liquid in the relief groove 121, the fixing base 141 needs to be sealed. In this embodiment, a sealing element is provided at the through hole 1411 to seal and fix the electrode plate 142, which not only prevents liquid from leaking out through the gap between the through hole 1411 and the electrode plate 142, but also fixes the electrode plate 142. Specifically, the sealing element in this embodiment can be sealant. After the electrode plate 142 is inserted into the fixing base 141 through the through hole 1411, it is sealed and fixed using sealant.

[0054] Specifically, in this embodiment, the electrode plate 142 may include at least one anode plate 1421 and a cathode plate 1422 located on the side of each anode plate 1421. Both the anode plate 1421 and the cathode plate 1422 are parallel to the tangent of the outer cylinder 120 at their respective positions.

[0055] Specifically, the number and size of the anode plate 1421 and the cathode plate 1422 can be designed according to the actual location and requirements.

[0056] In one embodiment, the electrolysis apparatus 140 may include an anode plate 1421 and two cathode plates 1422 disposed on both sides of the anode plate 1421. In this embodiment, the anode plate 1421 and the cathode plates 1422 are parallel to each other.

[0057] Preferably, in this embodiment, both the anode plate 1421 and the cathode plate 1422 are parallel to the tangent of the outer cylinder 120 where the electrode plate 142 is located. This allows the washing water to be flushed onto the electrode plate 142 in a direction parallel to the electrode plate 142 during washing, thereby improving the cleaning effect of the water on the electrode plate 142 and delaying the performance loss caused by scaling on the cathode plate 1422.

[0058] Optionally, in this embodiment, both the anode plate 1421 and the cathode plate 1422 are parallel to the horizontal plane. Specifically, since the clearance groove 121 is generally located below the outer cylinder 120, directly below or slightly off-center from the center of the central axis, when washing water enters the clearance groove 121, it is highly likely to flow in a direction substantially parallel to the horizontal. Therefore, when the cathode plate 1422 and the anode plate 1421 are parallel to the horizontal plane, the washing water can essentially flush the anode plate 1421 and the cathode plate 1422 in a direction parallel to them, thereby ensuring a cleaning effect on the anode plate 1421 and the cathode plate 1422 and delaying the performance loss caused by scaling on the cathode plate 1422.

[0059] As a specific embodiment of this utility model, such as Figures 4-6 As shown, the electrolysis apparatus 140 of this embodiment may further include a protective structure 143. The protective structure 143 is connected to the fixing base 141, and the protective structure 143 forms a receiving space with an opening 1431 to receive the electrode sheet 142.

[0060] Specifically, in this embodiment, the protective structure 143 is connected to the fixing base 141 and forms a receiving space for accommodating the electrode sheet 142, protecting the electrode sheet 142, preventing the electrode sheet 142 from shaking under the impact of water flow, and improving the life of the electrode sheet 142.

[0061] Specifically, the protective structure 143 in this embodiment can be a U-shaped, semi-circular, square, or other similar structure. Preferably, the protective structure 143 in this embodiment is U-shaped.

[0062] As a specific embodiment of this utility model, the number of openings 1431 in this embodiment is two, and the openings 1431 are located on two opposite sides of the protective structure 143 that are adjacent to the fixing base 141.

[0063] Specifically, in this embodiment, the two openings 1431 allow the protective structure 143 to communicate with each other in the horizontal direction. This allows the liquid inside the cylinder to enter the protective structure 143 through one opening and exit through the other opening 1431, thus avoiding obstruction of the liquid inside the cylinder from scouring the electrode plate 142.

[0064] Preferably, the openings 1431 are located on two opposite sides of the protective structure 143 on the horizontal plane. In this embodiment, placing the two openings 1431 on two opposite sides of the protective structure 143 on the horizontal plane facilitates the horizontal flushing of the electrode plate 142 by the liquid, thereby improving the cleaning effect of the liquid on the anode plate 1421 and the cathode plate 1422, and delaying the performance loss caused by scaling on the cathode plate 1422.

[0065] As a specific embodiment of this utility model, such as Figure 4 and Figure 6 As shown, in this embodiment, the receiving space of the protective structure 143 is provided with at least one column 144 near the opening 1431. Each column 144 is provided with a plurality of inwardly extending first protrusions 1441. The electrode sheet 142 extends into the receiving space and is disposed on the corresponding first protrusion 1441.

[0066] Specifically, in this embodiment, at least one pillar 144 is provided at the protective structure 143, and a first protrusion 1441 is provided at each pillar 144, with the first protrusion 1441 at each pillar 144 facing the electrode sheet 142. Preferably, in this embodiment, at least one pillar 144 is provided at each opening 1431 of the protective structure 143. The positions of the pillars 144 can be relatively arranged or staggered. For example, in this embodiment, each opening 1431 of the protective structure 143 includes one pillar 144, and each pillar 144 has three first protrusions 1441. The pillars 144 at two openings 1431 are staggered.

[0067] Specifically, when the electrode 142 is inserted into the protective structure 143 through the through hole 1411 of the fixing base 141, it can be placed on the first protrusion 1441. The electrode 142 can be supported by the edge of the through hole 1411 and the first protrusion 1441, which facilitates the installation of the electrode 142, prevents the electrode 142 from moving, and also prevents the electrode 142 from getting close to each other and short-circuiting.

[0068] As a specific embodiment of the present utility model, the inner wall of the accommodating space of the protective structure 143 in this embodiment is provided with a plurality of second protrusions 145 on the side away from the fixed base 141, and each electrode sheet 142 passes through the first protrusion 1441 and overlaps at the corresponding second protrusion 145.

[0069] Specifically, in this embodiment, by providing a second protrusion 145 on the inner wall of the accommodating space on the side away from the fixing seat 141, the electrode sheet 142, when installed at the protective structure 143, has its end resting on the second protrusion 145, further supporting the electrode sheet 142.

[0070] Specifically, in this embodiment, the electrode sheet 142 is installed and supported through the through hole 1411, the first protrusion 1441 and the second protrusion 145, which avoids deformation of the electrode sheet 142 and avoids short circuit between the electrode sheets 142.

[0071] Specifically, such as Figure 4 and Figure 7 As shown, the clothing processing device 100 of this embodiment may further include a sealing ring 150, which is located between the fixing base 141 and the mounting part 125 to prevent water from leaking between the electrolysis device 140 and the side plate 123. Specifically, this embodiment designs a sealing ring 150 between the electrolysis device 140 and the side plate 123 to prevent water leakage from the drum, thereby affecting the user experience.

[0072] Specifically, such as Figure 7As shown, in this embodiment, a mounting groove 127 is provided at the mounting part 125, and a sealing ring 150 is provided at the mounting groove 127. When the electrolysis device 140 is installed at the mounting part 125, it is pressed against the sealing ring 150. The fixing seat 141 is then installed together with the side plate 123 by multiple fasteners to prevent liquid leakage from the cylinder.

[0073] 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, It includes an inner cylinder, an outer cylinder, a heating device, and an electrolysis device; the lower part of the outer cylinder is provided with a relief groove protruding away from the inner cylinder; At least a portion of the structure of the heating device extends from the front side of the clearance groove into the clearance groove, and at least a portion of the structure of the electrolysis device extends from the rear side of the clearance groove into the clearance groove; or At least a portion of the structure of the heating device extends from the rear side of the clearance groove into the clearance groove, and at least a portion of the structure of the electrolysis device extends from the front side of the clearance groove into the clearance groove.

2. The garment processing device according to claim 1, characterized in that, The clearance groove includes a middle plate and two side plates connected to the front and rear sides of the middle plate; The electrolysis device is disposed at one of the side plates, and at least a portion of the structure is inserted into the clearance groove by the side plate.

3. The garment processing device according to claim 2, characterized in that, The intermediate plate is provided with a drain outlet, which is used to connect to a drainage water circuit or a circulation water circuit, and the drain outlet faces the electrolysis device.

4. The garment processing apparatus according to claim 2 or 3, characterized in that, One of the side plates is provided with a mounting part, and the mounting part is provided with a mounting hole. The electrolysis device is connected to the mounting part and extends through the mounting hole into the clearance groove.

5. The garment processing apparatus according to claim 4, characterized in that, The electrolysis apparatus includes: A fixing base is used for fixed connection with the mounting part; the fixing base is provided with a through hole; An electrode plate is connected to the fixing base. The electrode plate passes through the through hole of the fixing base, extends from the mounting hole into the clearance groove, and a sealing element is provided at the through hole after the electrode plate is installed to fix the electrode plate.

6. The garment processing apparatus according to claim 5, characterized in that, The electrode plate includes at least one anode plate and a cathode plate located on the side of each anode plate, wherein both the anode plate and the cathode plate are parallel to the tangent of the outer cylinder at their respective locations.

7. The garment processing apparatus according to claim 6, characterized in that, Both the anode plate and the cathode plate are parallel to the horizontal plane.

8. The garment processing apparatus according to claim 5, characterized in that, The electrolysis apparatus further includes: A protective structure is connected to the mounting base, and the protective structure forms an accommodating space with an opening to accommodate the electrode sheet.

9. The garment processing apparatus according to claim 8, characterized in that, The number of openings is two, and the openings are located on two opposite sides of the protective structure adjacent to the fixing base.

10. The garment processing apparatus according to claim 8, characterized in that, The openings are located on two opposite sides of the protective structure on the horizontal plane.

11. The garment processing apparatus according to claim 8, characterized in that, The protective structure has at least one column near the opening in its accommodating space. Each column has multiple inwardly extending first protrusions. The electrode sheet extends into the accommodating space and is disposed on the corresponding first protrusion.

12. The garment processing apparatus according to claim 11, characterized in that, The inner wall of the receiving space of the protective structure away from the fixing seat is provided with a plurality of second protrusions, and each electrode sheet passes through the first protrusion and overlaps the corresponding second protrusion.

13. The garment processing apparatus according to claim 5, characterized in that, It also includes a sealing ring located between the fixing base and the mounting portion to prevent water leakage from between the electrolysis device and the side plate.

14. The garment processing apparatus according to claim 13, characterized in that, The mounting part is provided with a mounting groove, the sealing ring is disposed in the mounting groove, and the electrolysis device is pressed against the sealing ring when it is installed in the mounting part.