Laundry treating apparatus

By placing the PCB board into the board box and setting it on top in the garment processing equipment, and adopting a horizontal laying and stability enhancement structure, the problem of unreasonable PCB board layout is solved, assembly efficiency and service life are improved, and production costs are reduced.

CN224350953UActive Publication Date: 2026-06-12HISENSE(SHANDONG)REFRIGERATOR CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HISENSE(SHANDONG)REFRIGERATOR CO LTD
Filing Date
2025-05-27
Publication Date
2026-06-12

AI Technical Summary

Technical Problem

The PCB layout in existing garment processing equipment is unreasonable, resulting in high production costs, low assembly efficiency, and short service life.

Method used

The PCB board is placed inside the board box, which is positioned on top of the housing and above the cylindrical assembly. It is installed using a horizontal laying method, and its stability and assembly/disassembly efficiency are enhanced through structures such as folded edges and pre-installed parts.

Benefits of technology

This achieves a reasonable PCB layout, reduces the impact of vibration, improves assembly efficiency and service life, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224350953U_ABST
    Figure CN224350953U_ABST
Patent Text Reader

Abstract

This disclosure provides a garment processing device, relating to the field of household appliance technology. The garment processing device includes a housing, a drum assembly, a PCB box, and a PCB board. The housing includes a top plate and an outer peripheral wall. An upper opening is formed at the top of the outer peripheral wall, and the top plate covers the upper opening. The PCB box is positioned at the upper opening and above the drum assembly, providing ample installation space and allowing for a larger internal cavity to accommodate a large PCB board, thus facilitating a more rational PCB board layout. Furthermore, the PCB board is placed inside the PCB box, with its largest surface facing the top plate and laid on the upper part of the inner wall of the PCB box. That is, the PCB board is installed horizontally below the top plate of the housing. Since the top plate is typically a large flat surface and has a certain distance from the drum assembly, it provides a sufficiently large installation area for the PCB board to accommodate large-area PCB boards, making the horizontal PCB board layout more rational.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This disclosure relates to the field of household appliance technology, and in particular to a garment processing device. Background Technology

[0002] In related technologies, clothing processing equipment is a device that converts electrical energy into mechanical energy and processes clothing by washing or drying. It has now entered thousands of households and is very common.

[0003] Currently, to meet user needs, various electrical components have been added to garment processing equipment to enrich its functionality. However, the PCBs (Printed Circuit Boards) used to control and drive these components suffer from an unreasonable layout. Utility Model Content

[0004] In view of this, the purpose of this disclosure is to provide a garment processing device to improve the technical problem of unreasonable PCB board layout in the prior art.

[0005] To achieve at least one of the above objectives, this disclosure provides the following technical solutions:

[0006] In a first aspect, a garment processing device is provided, comprising:

[0007] The enclosure and the cylindrical assembly disposed inside the enclosure, the enclosure including a top plate, a front plate, a rear plate and two side plates connected together;

[0008] The front plate is provided with a dispensing port that is directly opposite the opening of the cylinder assembly. The front plate and the rear plate are arranged opposite each other along the front-rear direction of the box.

[0009] Two side panels are positioned between the front panel and the rear panel, and the two side panels are positioned opposite each other along the left and right directions of the box, so that the front panel, the rear panel and the two side panels form the outer peripheral wall of the box, and the top of the outer peripheral wall has an upper opening.

[0010] The top plate is connected to the outer peripheral wall and covers the upper opening;

[0011] The panel box is located at the upper opening, below the top plate and above the cylinder assembly;

[0012] The PCB board is located inside the board box. The PCB board has two large surfaces that are arranged opposite to each other. These two large surfaces are the first large surface and the second large surface, respectively.

[0013] The first large surface facing the top plate is laid on the upper part of the inner wall of the box;

[0014] The second large surface integrates a group of components.

[0015] In the above technical solution, placing the PCB board inside the board box effectively protects the PCB board, minimizing damage from impacts. The board box also features dust and water resistance to prevent impact on the PCB board's performance. Furthermore, positioning the board box at the top of the enclosure, above the cylindrical assembly, provides ample installation space and creates a larger internal cavity to accommodate larger PCB boards, facilitating optimal PCB layout. It also keeps the board box away from motors, fans, and other electrical components, reducing vibration impacts on the box and its internal PCB board. Additionally, placing the board box below the top panel allows for easy access by simply opening the top panel, improving assembly and disassembly efficiency. In addition, the first large surface of the PCB board faces the top plate, meaning the PCB board is installed horizontally below the top plate of the enclosure. Since the top plate is usually a large flat surface with a certain distance between it and the cylindrical assembly, it can provide a sufficiently large mounting area for the PCB board to accommodate large PCB boards, making the horizontal PCB board layout more reasonable. Furthermore, the second large surface of the PCB board integrates the component assembly, which protrudes downwards and is located below the PCB board. This not only makes full use of the lower space inside the enclosure to provide suitable assembly space for the component assembly, but also further prevents water, dust, and other impurities from accumulating in the component assembly, ensuring the working performance of the PCB board and the component assembly and helping to extend their service life.

[0016] In some embodiments, at least two of the front panel, rear panel, and side panel are connected to the panel box.

[0017] In the above technical solution, by placing the board box containing the PCB board at the upper opening of the outer peripheral wall of the enclosure and connecting it with at least two boards on the outer peripheral wall, the board box can be supported in multiple places, thereby enhancing the stability of the board box and its internal PCB board after assembly, and making the layout of the board box and its internal PCB board more reasonable.

[0018] In some embodiments, a folded edge is formed at the upper opening of the outer peripheral wall, and the folded edge is located inside the box body;

[0019] The outer wall of the box is provided with a connecting part;

[0020] The upper part of the folded edge has a mounting area corresponding to the connecting part;

[0021] The connecting part abuts against the upper part of the installation area and is detachably connected to the folded edge.

[0022] In the above technical solution, by setting a folded edge at the upper opening of the outer peripheral wall of the enclosure and connecting the folded edge to the connecting part on the panel box, it is possible to avoid opening holes in the outer peripheral wall that could affect the overall structural strength of the enclosure. Furthermore, it facilitates the assembly and disassembly of the panel box from the enclosure; the panel box can be installed or removed simply by opening the top panel and then from the top of the enclosure, thus improving the efficiency of assembly and disassembly. Moreover, the connecting part of the panel box can rest against the upper part of the folded edge, which provides support for the panel box, further enhancing the ease of assembly and the stability after assembly.

[0023] In some embodiments, a pre-assembly section is also provided on the outer wall of the plate box;

[0024] Pre-installed holes are provided on the folded edge;

[0025] The pre-installed part has a pre-installed hole and engages with the pre-installed hole to limit the connecting part from being located in the upper part of the installation area.

[0026] In the above technical solution, the pre-assembly part and the pre-assembly hole cooperate to position and assemble the board box and the folded edge, which helps to improve the assembly efficiency of the board box. Moreover, the pre-assembly part and the pre-assembly hole are connected by a snap-fit ​​method, which can prevent the pre-assembly part from falling off the pre-assembly hole due to factors such as production line vibration before the board box and the folded edge are fixed, so as to prevent the installation area on the connecting part and the folded edge from being misaligned and affecting the assembly efficiency of the board box.

[0027] In some embodiments, the board box includes a first box body and a second box body that are detachably connected;

[0028] In the top-bottom direction of the box, the first box is located above the second box;

[0029] The first box has a first groove recessed towards the top plate, and a PCB board is laid in the first groove;

[0030] The second housing has a second recessed groove on the side opposite to the top plate, which is configured to accommodate a group of components on the PCB board.

[0031] In the above technical solution, the board box adopts a split structure design, which on the one hand facilitates the processing of the board box and allows the board box to be designed into more complex shapes to meet the needs of accommodating PCB boards, and on the other hand facilitates the assembly and disassembly of PCB boards inside the board box.

[0032] In some embodiments, a curved surface is formed on the side of the plate box near the cylinder assembly, and the curved surface is adapted to the outer peripheral surface of the cylinder assembly;

[0033] A gap a is formed between the curved surface and the outer peripheral surface of the cylindrical assembly, and the gap a satisfies: 6 mm < a < 12 mm.

[0034] In the above technical solution, by designing the side of the board box near the cylinder assembly as a curved surface that matches the outer peripheral surface of the cylinder assembly, and limiting the range of the gap between the curved surface and the cylinder assembly, on the one hand, the board box can be arranged with a larger structure inside the box, so as to form a larger internal cavity inside the board box, which is conducive to the rational layout of the PCB board. On the other hand, sufficient distance can be reserved between the board box and the cylinder assembly to facilitate the installation of the board box and the cylinder assembly and to minimize interference between the two.

[0035] In some embodiments, the component group includes a control component group and at least one drive component group;

[0036] The control component group is electrically connected to at least one drive component group to control at least one drive component group;

[0037] The drive component assembly is electrically connected to the electrical components inside the housing to drive the electrical components to work.

[0038] In the above technical solution, compared with laying out the control component group and the drive component group on different PCB boards, by integrating the control component group and at least one drive component group on the PCB board, the number of components is reduced, the structure is made simpler and more centralized, and the equipment is convenient for assembly and maintenance while reducing production costs.

[0039] In some embodiments, heat dissipation holes are provided through the wall of the board box;

[0040] A heat sink is provided on the second large surface of the PCB board;

[0041] The enclosure is also equipped with a fan, which is configured to blow air onto the heatsink and allow the air flowing over the heatsink to be exhausted from the inside of the enclosure through ventilation holes.

[0042] In the above technical solution, by setting up heat dissipation holes, heat sinks and fans, the PCB board can be cooled down in real time as needed, so as to keep the PCB board at a suitable working temperature and ensure the working performance of the PCB board.

[0043] In some embodiments, it also includes:

[0044] The adapter is detachably connected to one side of the panel box in the front-rear direction of the housing;

[0045] In the front-to-back direction of the enclosure, the side of the adapter furthest from the panel is the first side;

[0046] In the front-back direction of the enclosure, the side of the panel away from the adapter is the second side;

[0047] One of the first side and the second side is connected to the front panel, and the other side is connected to the rear panel.

[0048] In the above technical solution, by using an external adapter for the panel box, the dimensions of the panel box in the front-to-back direction of the housing can be adapted to equipment with different depth dimensions (dimensions in the front-to-back direction of the housing), thus expanding the application range of the panel box. Moreover, to adapt to equipment with different depth dimensions, compared to directly changing the dimensions of the panel box, designing adapters of different sizes and detachably connecting them to the panel box can reduce the investment in molds for structural components and lower production costs. In addition, by adding adapters, the panel box can be supported between the front and rear panels, meaning that both ends of the panel box can be supported, which helps to improve the stability of the panel box after assembly.

[0049] Secondly, a garment processing device is also provided, comprising:

[0050] The enclosure and the cylindrical assembly disposed inside the enclosure, the enclosure including a top plate, a front plate, a rear plate and two side plates connected together;

[0051] The front plate is provided with a dispensing port that is directly opposite the opening of the cylinder assembly. The front plate and the rear plate are arranged opposite each other along the front-rear direction of the box.

[0052] Two side panels are positioned between the front panel and the rear panel, and the two side panels are positioned opposite each other along the left and right directions of the box, so that the front panel, the rear panel and the two side panels form the outer peripheral wall of the box, and the top of the outer peripheral wall has an upper opening.

[0053] The top plate is connected to the outer peripheral wall and covers the upper opening;

[0054] The board box containing the PCB board is located at the upper opening, below the top plate and above the cylinder assembly.

[0055] The adapter is detachably connected to one side of the panel box in the front-rear direction of the housing;

[0056] In the front-to-back direction of the enclosure, the side of the adapter furthest from the panel is the first side;

[0057] In the front-back direction of the enclosure, the side of the panel away from the adapter is the second side;

[0058] One of the first side and the second side is connected to the front panel, and the other side is connected to the rear panel.

[0059] In the above technical solution, placing the PCB board inside the board box effectively protects the PCB board, minimizing damage from impacts. The board box also features dust and water resistance to prevent impact on the PCB board's performance. Furthermore, positioning the board box at the top of the enclosure, above the cylindrical assembly, provides ample installation space and creates a larger internal cavity to accommodate larger PCB boards, facilitating optimal PCB layout. It also keeps the board box away from motors, fans, and other electrical components, reducing vibration impacts on the box and its internal PCB board. Additionally, placing the board box below the top panel allows for easy access by simply opening the top panel, improving assembly and disassembly efficiency. In addition, by using external adapters for the panel box, the dimensions of the panel box in the front-to-back direction can be adapted to equipment with different depth dimensions (dimensions in the front-to-back direction of the box), thus expanding the application range of the panel box. Moreover, to adapt to equipment with different depth dimensions, compared to directly changing the dimensions of the panel box, designing adapters of different sizes and detachably connecting them to the panel box can reduce the investment in molds for structural components and lower production costs. Furthermore, by adding adapters, the panel box can be supported between the front and rear panels, meaning that both ends of the panel box can be supported, which helps to improve the stability of the panel box after assembly. Attached Figure Description

[0060] To more clearly illustrate the technical solutions in the embodiments of this disclosure, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this disclosure. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0061] Figure 1 This is a three-dimensional structural diagram of a garment processing device provided according to some embodiments of the present disclosure;

[0062] Figure 2 This is a three-dimensional structural diagram of a garment processing device provided according to some embodiments of the present disclosure after the top plate has been removed;

[0063] Figure 3 This is a top view of a garment processing device provided according to some embodiments of the present disclosure after the top plate has been removed;

[0064] Figure 4 This is a three-dimensional structural diagram of a garment processing device according to some embodiments of the present disclosure after removing the front panel and the top panel;

[0065] Figure 5 This is a schematic front view of a garment processing apparatus provided according to some embodiments of the present disclosure after removing the front panel and the top panel;

[0066] Figure 6 This is a three-dimensional structural diagram of a plate box at one angle according to some embodiments of the present disclosure;

[0067] Figure 7 This is a three-dimensional structural schematic diagram of a panel box provided according to some embodiments of the present disclosure from another angle;

[0068] Figure 8 This is a schematic diagram of the internal structure of a first housing according to some embodiments of the present disclosure;

[0069] Figure 9 This is a schematic diagram of the internal structure of a second housing according to some embodiments of the present disclosure;

[0070] Figure 10 This is a three-dimensional structural diagram of a PCB board provided according to some embodiments of the present disclosure;

[0071] Figure 11 This is a three-dimensional structural diagram of a PCB board mounted in a first housing according to some embodiments of the present disclosure;

[0072] Figure 12 This is a three-dimensional structural schematic diagram of an adapter provided according to some embodiments of the present disclosure;

[0073] Figure 13 This is a three-dimensional structural diagram of an angle for assembling a board box and an adapter according to some embodiments of the present disclosure;

[0074] Figure 14 This is a perspective view of another angle of the assembly of a panel box and an adapter according to some embodiments of the present disclosure;

[0075] Figure 15 This is a top view of a panel box and an adapter assembly provided according to some embodiments of the present disclosure, which are assembled together at the upper opening of the housing.

[0076] The attached figures are labeled as follows:

[0077] 1-Box body, 11-Front panel, 111-Front support, 12-Rear panel, 121-Rear folded edge, 13-Left side panel, 14-Right side panel, 141-Right folded edge, 15-Top panel, 16-Door body;

[0078] 2-Cylinder assembly;

[0079] 3-Plate box, 31-First box body, 311-Supporting rib, 312-Elastic locking block, 313-Angled hook, 314-Snap-on structure, 32-Second box body, 321-Hook hole, 322-T-slot, 323-Curved surface, 33-Connecting part, 34-Pre-installation part, 341-Hook, 342-Anti-reverse structure, 35-Heat dissipation hole;

[0080] 4-PCB board, 41-First large surface, 42-Second large surface, 43-Component group, 431-Heat sink;

[0081] 5-Adapter, 51-T-shaped rib. Detailed Implementation

[0082] The present disclosure will be further described in detail below with reference to the accompanying drawings and embodiments. Through these descriptions, the features and advantages of the present disclosure will become clearer and more apparent.

[0083] Unless otherwise defined, all technical and scientific terms used in this disclosure have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs; the terminology used in this disclosure is for the purpose of describing particular embodiments only and is not intended to limit this disclosure; the terms “comprising” and “having” and any variations thereof in the specification and the foregoing description of this disclosure are intended to cover non-exclusive inclusion.

[0084] The term "embodiment" as used in this disclosure means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this disclosure. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment that is mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described in this disclosure can be combined with other embodiments.

[0085] The specific term "exemplary" used in this disclosure means "serving as an example, embodiment, or illustration." Any embodiment illustrated as "exemplary" is not necessarily to be construed as superior or better than other embodiments. Although various aspects of embodiments are shown in the accompanying drawings, the drawings are not necessarily drawn to scale unless specifically indicated otherwise.

[0086] In the description of this disclosure, the technical terms “first,” “second,” “third,” etc., are used only to distinguish different objects and should not be construed as indicating or implying relative importance or implicitly indicating the number, specific order, or primary or secondary relationship of the indicated technical features.

[0087] In the description of this disclosure, the technical term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects are in an "or" relationship.

[0088] In the description of this disclosure, the technical terms "upper", "lower", "inner", "outer", "front", "back", "left", "right", "top", "bottom", etc., indicate the orientation or positional relationship based on the orientation or positional relationship under the working state of this disclosure. They are only for the convenience of describing this disclosure and simplifying the description, and do not indicate or imply that the device or component 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 disclosure.

[0089] In the description of this disclosure, unless otherwise expressly specified and limited, the technical terms "installation," "connection," "joining," "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this disclosure based on the specific circumstances.

[0090] In the description of this disclosure, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium. Furthermore, "above," "over," and "on top" of the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0091] In the description of this disclosure, "multiple" means two or more (including two), unless otherwise expressly and specifically limited.

[0092] In the description of this disclosure, the same reference numerals denote the same components, and for brevity, detailed descriptions of the same components are omitted in different embodiments. It should be understood that the thickness, length, and other dimensions of various components in the embodiments of this disclosure shown in the drawings, as well as the overall thickness, length, and other dimensions of the integrated device, are merely illustrative and should not constitute any limitation on this disclosure.

[0093] As part of the inventive concept of this disclosure, before describing the embodiments of this disclosure, it is necessary to analyze the reasons for the problem of unreasonable PCB board layout in related technologies, and obtain the technical solution of the embodiments of this disclosure through reasonable analysis.

[0094] In related technologies, clothing processing equipment is a device that converts electrical energy into mechanical energy to wash or dry clothes. It has become widespread in households. Currently, to meet user needs, clothing processing equipment incorporates various electrical components to enrich its functionality. For example, high-end dryers typically use multiple variable frequency electrical components such as variable frequency compressors, variable frequency motors, and variable frequency fans. Each variable frequency component requires a separate drive board (PCB board + drive component group) and driver program for control. Additionally, an extra independent control board (PCB board + control component group) is needed to control the operating status of all the drive boards of the variable frequency components. The conventional approach is to have an independent drive board for each variable frequency component, installed in different locations within the equipment. This increases production costs due to the multiple independent drive boards, and reduces production efficiency because each drive board needs to be assembled separately. Furthermore, some independent drive boards located near the variable frequency components are subject to significant vibrations due to the influence of the components, thus affecting their performance and lifespan. In summary, the PCB boards in garment processing equipment suffer from unreasonable layout issues, such as inappropriate placement and poor stability after layout.

[0095] To address this, the present disclosure provides a garment processing device that places a PCB board inside a board box, with the board box positioned below a top plate and above a cylindrical assembly. Simultaneously, one large side of the PCB board is laid on the upper inner wall of the board box facing the top plate, providing the board box with ample space for layout and creating a reasonable space for PCB board arrangement. This solves the technical problem of unreasonable PCB board layout in the prior art.

[0096] The technical solutions of the embodiments of this disclosure are described in detail below with reference to the accompanying drawings. The technical features involved in the different embodiments of this disclosure described below can be combined with each other as long as they do not conflict with each other.

[0097] Clothing processing equipment can be a drum washing machine, a drum dryer, or a washer-dryer combo, etc. For ease of description, the following will take a drum dryer as an example to explain the structure of clothing processing equipment.

[0098] The embodiments of this disclosure provide a garment processing device, which includes a housing 1, a tube assembly 2, a board box 3, and a PCB board 4. The PCB board 4 is used to control the electrical components within the housing 1 to achieve corresponding garment processing functions. The PCB board 4 is placed inside the board box 3, and the board box 3 and the tube assembly 2 are disposed within the housing 1.

[0099] In this embodiment, as Figures 1 to 5 As shown, the housing 1 forms the outer shell of the garment processing equipment, which is usually a hollow cuboid structure.

[0100] For example, such as Figures 1 to 3 As shown, the housing 1 includes a top plate 15, a bottom plate, and an outer peripheral wall. The outer peripheral wall has an upper opening and a lower opening that are opposite each other. The top plate 15 and the bottom plate are arranged opposite each other along the top-bottom direction (height direction of the housing 1) and respectively cover the upper opening and the lower opening to form the outer shell of the clothing processing equipment. The outer peripheral wall is formed by a front plate 11, a rear plate 12, and two side plates connected together. The front plate 11 and the rear plate 12 are arranged opposite each other along the front-rear direction of the housing 1. The two side plates are divided into a left side plate 13 and a right side plate 14. The left side plate 13 and the right side plate 14 are arranged opposite each other along the left-right direction of the housing 1, and both the left side plate 13 and the right side plate 14 are located between the front plate 11 and the rear plate 12.

[0101] Among them, the top and bottom directions of box 1, the front and back directions of box 1, and the left and right directions of box 1 are perpendicular to each other.

[0102] The interior of the housing 1 has a receiving cavity, which provides installation space for components such as the cylindrical assembly 2, electrical components, and the board box 3 containing the PCB board 4.

[0103] The housing 1 is provided with a dispensing port, which is roughly circular and located on the front panel 11 of the housing 1. The dispensing port is connected to the receiving cavity.

[0104] The housing 1 is also equipped with a door 16, which is movably connected to the front plate 11 near the dispensing port via a hinge shaft to open or close the dispensing port.

[0105] In this embodiment, as Figure 4 and Figure 5 As shown, the cylinder assembly 2 includes an inner cylinder, which is disposed in the receiving cavity of the box body 1 and can be used for drying clothes, high-temperature sterilization and mite removal, deep cleaning and deodorization, shaping and wrinkle removal of clothes, etc.

[0106] The inner cylinder has an opening, which is roughly circular and located on the front end face of the inner cylinder. The opening is directly opposite the dispensing port.

[0107] The inner tube also has a processing chamber that can hold clothing; after the door 16 is opened, clothing can be put into or taken out of the processing chamber through the inlet and the tube opening.

[0108] The inner drum can be installed in the receiving cavity of the box 1 via a rotating shaft. Driven by the motor, the inner drum can rotate inside the box 1, and the clothes in the inner drum can tumble in the processing cavity as the inner drum rotates, which can improve the drying and care efficiency of clothes.

[0109] Of course, the tube assembly 2 may also include an outer tube, which is fitted outside the inner tube. The outer tube is fixedly set relative to the box 1. The main function of the outer tube is to collect the water discharged from the inner tube and discharge it to the outside of the box 1 or recycle it, so as to avoid the water in the inner tube from entering the electrical components inside the box 1 and affecting the normal operation of the clothing processing equipment.

[0110] In this embodiment, as Figures 2 to 5 As shown, the board box 3 is located at the upper opening of the outer peripheral wall of the housing 1, below the top plate 15 and above the cylindrical assembly 2. The board box 3 is a shell structure with an inner cavity, mainly used to hold the PCB board 4. By fixing the board box 3 inside the housing 1, the fixed assembly between the PCB board 4 and the housing 1 is achieved.

[0111] By adopting the above structural design, the PCB board 4 can be effectively protected by placing it inside the board box 3, minimizing damage caused by bumps and knocks. Furthermore, the board box 3 is dustproof and waterproof, so as not to affect the working performance of the PCB board 4.

[0112] Moreover, by placing the board box 3 at the top of the housing 1 and above the cylindrical assembly 2, the board box 3 has sufficient installation space, which allows for a larger internal cavity to accommodate the large-volume PCB board 4, thus facilitating a reasonable layout of the PCB board 4. On the other hand, it keeps the board box 3 away from electrical components such as motors and fans, reducing the vibration impact of these components on the board box 3 and its internal PCB board 4.

[0113] Meanwhile, the board box 3 is located below the top plate 15. The board box 3 can be exposed simply by opening the top plate 15, which helps to improve the efficiency of disassembling and assembling the board box 3.

[0114] It should be noted that, inside the housing 1, "above" refers to the upper left and upper right regions inside the housing 1. Specifically, the upper left region inside the housing 1 is formed between the left side plate 13, the front plate 11, the rear plate 12, the top plate 15, and the outer surface of the cylinder wall of the cylinder assembly 2, while the upper right region inside the housing 1 is formed between the right side plate 14, the front plate 11, the rear plate 12, the top plate 15, and the outer surface of the cylinder wall of the cylinder assembly 2.

[0115] For example, such as Figure 3 and Figure 5 As shown, the upper part of the board box 3 is formed as a relatively flat board structure to fit the lower surface of the top plate 15, allowing the board structure to be laid flat under the top plate 15. It should be understood that the space above the cylindrical assembly 2 inside the box 1 is typically larger in the front-rear direction than in the left-right direction. Therefore, the board structure can be designed to be roughly rectangular, with the long side extending in the front-rear direction and the short side extending in the left-right direction. This allows the board box 3 to fully utilize the space above the cylindrical assembly 2 and enables the top wall of the inner cavity of the board box 3 to form a large mounting surface to accommodate a large-area PCB board 4. Furthermore, the lower part of the board box 3 extends downwards, providing sufficient space in the top-bottom direction of the box 1 to accommodate the PCB board 4.

[0116] Optionally, the outer or inner surface of the panel box 3 may also be provided with reinforcing ribs or grids to increase the structural strength of the panel box 3.

[0117] In this embodiment, as Figure 10 and Figure 11 As shown, PCB board 4 is disposed inside board box 3. PCB board 4 has two large surfaces arranged opposite each other, namely the first large surface 41 and the second large surface 42. The first large surface 41 is laid on the upper part of the inner wall of board box 3 facing the top plate 15. Specifically, PCB board 4 is laid flat on the upper part of the inner cavity of board box 3, so that the first large surface 41 of PCB board 4 faces the top wall of the inner cavity of board box 3 and simultaneously faces the top plate 15; component group 43 is integrated on the second large surface 42.

[0118] It should be noted that PCB board 4 is roughly thin and the two large surfaces of PCB board 4 refer to the two surfaces with the largest area in PCB board 4.

[0119] Optionally, the PCB board 4 can be installed in the board box 3 by adhesive bonding, snap-fitting, bolt assembly locking connection, or a combination of the above methods.

[0120] For example, such as Figure 8 and Figure 11As shown, support ribs 311 are provided around the top wall of the inner cavity of the board box 3, and elastic blocks 312 are provided on the peripheral wall of the inner cavity of the board box 3. A part of the support ribs 311 is located between the top wall of the inner cavity of the board box 3 and the PCB board 4 and abuts against the edge of the first large surface 41 of the PCB board 4, while the elastic blocks 312 abut against the edge of the second large surface 42 of the PCB board 4, so as to realize the positioning and assembly of the PCB board 4 in the top and bottom directions of the box 1. Another part of the support ribs 311 is located between the peripheral wall of the inner cavity of the board box 3 and the PCB board 4, so as to limit the displacement of the PCB board 4 in the front-back direction and the left-right direction of the box 1. At the same time, glue can be poured between the PCB board 4 and the inner cavity of the board box 3 to bond the PCB board 4 and the board box 3 together, so as to further improve the connection strength between the PCB board 4 and the board box 3.

[0121] With the above structural design, the first large surface 41 of the PCB board 4 faces the top plate 15, that is, the PCB board 4 is installed below the top plate 15 of the housing 1 in a horizontal laying manner. Since the top plate 15 is usually a large flat surface and has a certain distance from the cylindrical assembly 2, it can provide a sufficiently large installation area for the PCB board 4 to accommodate the large surface area of ​​the PCB board 4, making the horizontal laying layout of the PCB board 4 more reasonable.

[0122] Furthermore, the second large surface 42 of the PCB board 4 integrates the component group 43, that is, the component group 43 protrudes downward and is located below the PCB board 4. On the one hand, it can make full use of the lower space inside the board box 3 so that the component group 43 has a suitable assembly space. On the other hand, it can further prevent water and dust and other impurities from accumulating in the component group 43, so as to ensure the working performance of the PCB board 4 and the component group 43 and help extend the service life.

[0123] In some embodiments, at least two of the front panel 11, the rear panel 12, and the side panel are connected to the panel box 3; wherein the side panel may be the left side panel 13 or the right side panel 14.

[0124] Specifically, the connection position of the panel box 3 on the housing 1 can include the following situations:

[0125] 1. The panel box 3 is located in the upper right area inside the box 1. The front end of the panel box 3 is connected to the front panel 11 (front support 111), and the rear end of the panel box 3 is connected to the rear panel 12.

[0126] 2. The panel box 3 is located in the upper right area inside the box 1. The front end of the panel box 3 is connected to the front panel 11, and the right end of the panel box 3 is connected to the right side panel 14.

[0127] 3. The panel box 3 is located in the upper right area inside the box 1. The rear end of the panel box 3 is connected to the rear panel 12, and the right end of the panel box 3 is connected to the right side panel 14.

[0128] IV. Panel box 3 is located in the upper right area inside the housing 1. The front end of panel box 3 is connected to the front panel 11, the rear end of panel box 3 is connected to the rear panel 12, and the right end of panel box 3 is connected to the right side panel 14. Figures 2 to 5 As shown.

[0129] 5. The panel box 3 is located in the upper left area inside the box 1. The front end of the panel box 3 is connected to the front panel 11, and the rear end of the panel box 3 is connected to the rear panel 12.

[0130] VI. The panel box 3 is located in the upper left area inside the box 1. The front end of the panel box 3 is connected to the front panel 11, and the left end of the panel box 3 is connected to the left side panel 13.

[0131] 7. The panel box 3 is located in the upper left area inside the box 1. The rear end of the panel box 3 is connected to the rear panel 12, and the left end of the panel box 3 is connected to the left side panel 13.

[0132] 8. The panel box 3 is located in the upper left area inside the box 1. The front end of the panel box 3 is connected to the front panel 11, the rear end of the panel box 3 is connected to the rear panel 12, and the left end of the panel box 3 is connected to the left side panel 13.

[0133] Optionally, the connection between the panel box 3 and the housing 1 can be a snap-fit ​​connection, a bolt assembly locking connection, or a combination of the above two methods.

[0134] By adopting the above structural design, the board box 3 containing the PCB board 4 is placed at the upper opening of the outer peripheral wall of the housing 1 and connected to at least two boards on the outer peripheral wall, so that the board box 3 can be supported in multiple places, thereby enhancing the stability of the board box 3 and the PCB board 4 after assembly, and making the layout of the board box 3 and the PCB board 4 more reasonable.

[0135] In some embodiments, such as Figures 2 to 4 As shown, a folded edge is formed at the upper opening of the outer peripheral wall of the box 1. The folded edge is located on the inner side of the box 1. A connecting part 33 is provided on the outer wall of the plate box 3. The connecting part 33 is detachably connected to the folded edge.

[0136] Optionally, the upper part of the front panel 11, rear panel 12, left side panel 13 and right side panel 14 are all formed with folded edges in the outer peripheral wall of the housing 1.

[0137] It should be understood that a front support 111 is provided on the inner side of the front panel 11, and the folded edge on the upper part of the front panel 11 can also be understood as the folded edge on the upper part of the front support 111.

[0138] Optionally, the folded edge is integrally formed with the outer peripheral wall and is bent toward the inside of the box 1.

[0139] Of course, the folded edge can also be formed on the outer peripheral wall of the housing 1 by welding or by locking the connection with bolt assembly.

[0140] By adopting the above structural design, by setting a folded edge at the upper opening of the outer peripheral wall of the box 1 and connecting the folded edge with the connecting part 33 on the panel box 3, on the one hand, it can avoid opening holes in the outer peripheral wall to avoid affecting the overall structural strength of the box 1. On the other hand, it can facilitate the disassembly and assembly of the panel box 3 and the box 1. The panel box 3 can be installed or removed from the top of the box 1 simply by opening the top plate 15, which helps to improve the disassembly and assembly efficiency of the panel box 3.

[0141] Furthermore, such as Figures 2 to 4 As shown, the upper part of the folded edge has a mounting area corresponding to the connecting part 33, and the connecting part 33 abuts against the upper part of the mounting area; that is, the connecting part 33 and the mounting area on the folded edge are arranged vertically and vertically respectively.

[0142] For example, in the top and bottom direction of the housing 1, the connecting part 33 has a first abutting surface facing the mounting area, and the mounting area on the folded edge forms a second abutting surface that is adapted to the first abutting surface; during assembly, the connecting part 33 is placed on the mounting area of ​​the folded edge so that the first abutting surface abuts against the second abutting surface.

[0143] With the above structural design, the connecting part 33 of the panel box 3 can abut against the upper part of the folded edge, and the folded edge can be used to support the panel box 3, which helps to improve the convenience of panel box 3 during assembly and the stability after assembly.

[0144] Optionally, the outer periphery of the panel box 3 is provided with multiple connecting parts 33, and the folded edge is provided with multiple mounting areas; wherein, the multiple connecting parts 33 are provided one-to-one with the multiple mounting areas. This structural design can further enhance the connection stability between the panel box 3 and the folded edge.

[0145] Furthermore, such as Figures 2 to 6 As shown, a pre-installation part 34 is also provided on the outer wall of the plate box 3, and a pre-installation hole is provided on the folded edge; wherein, the pre-installation part 34 passes through the pre-installation hole and engages with the pre-installation hole to restrict the connecting part 33 to be located in the upper part of the installation area.

[0146] Specifically, such as Figure 3 and Figure 6 As shown, the pre-installation part 34 includes a hook 341 with a hook portion. The hook 341 passes through the pre-installation hole from bottom to top and rests on the outer periphery of the pre-installation hole, so that the hook portion abuts against the upper surface of the folded edge, thereby hooking the hook 341 onto the folded edge and playing a pre-installation fixing role.

[0147] Optionally, multiple hooks 341 are provided to enhance the pre-installation fixing effect between the panel box 3 and the housing 1, thereby improving the pre-installation effect.

[0148] By adopting the above structural design, the pre-assembly part 34 and the pre-assembly hole can be used to position and assemble the board box 3 and the folded edge, which helps to improve the assembly efficiency of the board box 3.

[0149] Furthermore, such as Figure 3 and Figure 6 As shown, the pre-installation part 34 may also include a backstop structure 342, which has a certain elasticity and can engage the hook 341 passing through the pre-installation hole in the pre-installation hole.

[0150] For example, the anti-retraction structure 342 has a first pressing surface and the hook 341 has a second pressing surface. After the hook 341 passes through the pre-installation hole and the hook part abuts against the upper surface of the folded edge, the anti-retraction structure 342 enters into the pre-installation hole and the first pressing surface and the second pressing surface abut against the two opposite inner wall surfaces of the pre-installation hole, thereby realizing the engagement of the pre-installation part 34 with the pre-installation hole.

[0151] It should be understood that only one anti-reverse structure 342 can be provided, and one anti-reverse structure 342 can be used to make the second clamping surfaces of multiple hooks 341 abut against the inner wall of the corresponding pre-installed hole.

[0152] With the above structural design, the pre-installation part 34 is connected to the pre-installation hole by a snap-fit ​​method, which can prevent the pre-installation part 34 from falling off the pre-installation hole due to factors such as production line vibration before the fixed plate box 3 and the folded edge, so as to prevent the installation area on the connecting part 33 and the folded edge from being misaligned, thus affecting the assembly efficiency of the plate box 3.

[0153] For example, such as Figure 2 and Figure 3 As shown, taking the upper right area of ​​the panel box 3 inside the housing 1 as an example, the folded edge on the upper part of the rear panel 12 is defined as the rear folded edge 121, and the folded edge on the upper part of the right side panel 14 is defined as the right folded edge 141. One way to connect the panel box 3 to the housing 1 is as follows: the front end and the rear end of the panel box 3 are each provided with a connecting part 33, and the right end of the panel box 3 is provided with a pre-installation part 34; correspondingly, the upper part of the front support 111 on the inner side of the front panel 11 and the upper surface of the rear folded edge 121 respectively form an installation area, and a pre-installation hole is opened on the right folded edge 141. During installation, the two connecting parts 33 are placed on the two installation areas one to one. The hook 341 in the pre-installation part 34 passes through the pre-installation hole, so that the hook abuts against the upper surface of the right folded edge 141, and the anti-reverse structure 342 is inserted into the pre-installation hole, so that the pre-installation part 34 is engaged with the pre-installation hole, completing the pre-installation fixation, and placing the connecting parts 33 on the upper part of the corresponding installation area. Then, the two connecting parts 33 are locked on the front support 111 and the rear folded edge 121 using the bolt assembly, completing the assembly of the panel box 3 and the housing 1.

[0154] In some embodiments, such as Figures 6 to 9As shown, the box 3 includes a first box body 31 and a second box body 32 that are detachably connected; in the top-bottom direction of the box body 1, the first box body 31 is located above the second box body 32.

[0155] Specifically, such as Figure 8 As shown, the first box 31 has a first recessed groove facing the top plate 15, and a PCB board 4 is laid in the first groove; as Figure 9 As shown, the second housing 32 has a second recessed groove on the side opposite to the top plate 15, which is configured to accommodate the component group 43 on the PCB board 4. The first and second recesses together form the inner cavity of the housing 3 for accommodating the PCB board 4 and the component group 43 thereon.

[0156] Optionally, the connection between the first housing 31 and the second housing 32 can be a snap-fit ​​connection, a bolt assembly locking connection, or a combination of the above two methods.

[0157] For example, such as Figures 6 to 9 As shown, taking the upper right area of ​​the box 3 inside the box 1 as an example, a slanted hook 313 is provided at the right end of the first box 31, and a hook hole 321 is provided at the right end of the second box 32. During installation, the slanted hook 313 on the first box 31 is inserted into the hook hole 321 of the second box 32. Then, the first box 31 is rotated and the left end of the first box 31 is brought close to and in contact with the left end of the second box 32. Then, the left end of the first box 31 and the left end of the second box 32 are fixed by the buckle structure 314.

[0158] With the above structural design, the board box 3 adopts a split structure design, which on the one hand facilitates the processing of the board box 3 and allows the board box 3 to be designed into a more complex shape to meet the needs of accommodating the PCB board 4, and on the other hand facilitates the assembly and disassembly of the PCB board 4 in the board box 3.

[0159] Optionally, the panel box 3 is provided with a connecting part 33 for fixed connection with the box body 1. The connecting part 33 can be provided on one of the first box body 31 and the second box body 32; or, the edges of the first box body 31 and the second box body 32 are provided with extension plates, and the two extension plates are stacked up and down to form the connecting part 33.

[0160] Optionally, the plate box 3 is also provided with a pre-installation part 34 for pre-installation and fixing with the box body 1. The pre-installation part 34 can be provided on the outer peripheral edge of the second box body 32.

[0161] Furthermore, such as Figure 5As shown, a curved surface 323 is formed on the side of the plate box 3 near the cylindrical assembly 2. The curved surface 323 is adapted to the outer peripheral surface of the cylindrical assembly 2, that is, the plate box 3 adopts a curved surface 323 with a design that covers the outer peripheral surface of the cylindrical assembly 2. A gap a is formed between the curved surface 323 and the outer peripheral surface of the cylindrical assembly 2, and the gap a satisfies: 6 mm < a < 12 mm; for example, the gap a can be 7 mm, 8 mm, 9 mm, 10 mm, 11 mm, etc.

[0162] Optionally, the curved surface 323 is formed on one side of the bottom of the second housing 32.

[0163] By adopting the above structural design, the side of the board box 3 near the cylindrical assembly 2 is designed as a curved surface 323 that matches the outer peripheral surface of the cylindrical assembly 2, and the range of the gap between the curved surface 323 and the cylindrical assembly 2 is limited. On the one hand, the board box 3 can be arranged with a larger structure in the housing 1, so as to form a larger internal cavity in the board box 3, which is conducive to the rational layout of the PCB board 4. On the other hand, sufficient distance can be reserved between the board box 3 and the cylindrical assembly 2 to facilitate the installation of the board box 3 and the cylindrical assembly 2 and to minimize interference between the two.

[0164] It should be noted that if 'a' is not greater than 6 mm, the distance between the curved surface 323 on the board box 3 and the outer peripheral surface of the cylindrical assembly 2 will be too small. During the assembly process, due to assembly errors, interference problems will occur between the board box 3 and the cylindrical assembly 2. Furthermore, during operation, due to vibration, the distance between the board box 3 and the cylindrical assembly 2 will change. Affected by this, an excessively small gap is prone to interference problems between the board box 3 and the cylindrical assembly 2. If 'a' is not less than 12 mm, the distance between the curved surface 323 on the board box 3 and the outer peripheral surface of the cylindrical assembly 2 will be too large, failing to fully utilize the internal space of the housing 1. This will reduce the internal cavity space of the board box 3, affecting the rational layout of the PCB board 4 and its component group 43.

[0165] In some embodiments, such as Figure 10 As shown, a component group 43 is integrated on the second large surface 42 of the PCB board 4. The component group 43 includes a control component group and at least one drive component group. The control component group is electrically connected to the at least one drive component group to control the at least one drive component group. The drive component group is electrically connected to the electrical components inside the housing 1 to drive the electrical components to work.

[0166] It should be noted that integrating the control component group and at least one drive component group on PCB board 4 can be understood as integrating the control board and at least one drive board into a single board.

[0167] For example, on the second large surface 42 of the PCB board 4, there are integrated control component groups, variable frequency compressor drive component groups, variable frequency motor drive component groups and variable frequency fan drive component groups; that is, the control board, variable frequency compressor drive board, variable frequency motor drive board and variable frequency fan drive board are integrated into one board.

[0168] By adopting the above structural design, compared with laying out the control component group and the drive component group on different PCB boards 4, the number of components is reduced by integrating the control component group and at least one drive component group on PCB board 4, making the structure simpler and more centralized. While reducing production costs, it also makes the equipment easy to assemble and maintain.

[0169] Since the PCB board 4 of the integrated board formed by combining the control board and the driver board has a large area and a large number of component groups 43, it is necessary to arrange the integrated board reasonably within the housing 1. Based on this, using a board box 3 to hold the integrated board and placing the board box 3 above the cylindrical assembly 2 inside the housing 1 can provide sufficient space for assembling the board box 3 and the integrated board inside, making the layout of the integrated board more reasonable.

[0170] In some embodiments, such as Figures 6 to 11 As shown, heat dissipation holes 35 are provided through the wall of the board box 3; a heat sink 431 is provided on the second large surface 42 of the PCB board 4 to transfer heat from the PCB board 4; a fan (not shown in the figure) is also provided on the board box 3, which is configured to blow air onto the heat sink 431 and allow the air flowing through the heat sink 431 to be discharged from the inside of the board box 3 through the heat dissipation holes 35.

[0171] Optionally, there are multiple heat dissipation holes 35, and the multiple heat dissipation holes 35 are distributed at the front and rear ends of the board box 3; designing multiple heat dissipation holes 35 can accelerate the heat dissipation inside the board box 3.

[0172] Optionally, the heat sink 431 protrudes downward from the second large surface 42 of the PCB board 4 and extends along the front-back direction of the housing 1, and the heat sink 431 has heat dissipation holes 35 at both ends of its extension direction.

[0173] Optionally, in the front-rear direction of the housing 1, the fan is located at one end of the heat sink 431.

[0174] With the above structural design, by setting heat dissipation holes 35, heat sinks 431 and fans, the PCB board 4 and the component group 43 on it can be cooled by blowing air in real time as needed, so as to quickly cool down the PCB board 4 and the component group 43 on it and keep the PCB board 4 and the component group 43 on it at a suitable working temperature, thereby ensuring the working performance of the PCB board 4 and the component group 43 on it.

[0175] In some embodiments, such as Figures 12 to 15As shown, the garment processing equipment also includes an adapter 5, which is detachably connected to one side of the plate box 3 in the front-rear direction of the housing 1; in the front-rear direction of the housing 1, the side of the adapter 5 away from the plate box 3 is the first side; in the front-rear direction of the housing 1, the side of the plate box 3 away from the adapter 5 is the second side; wherein, one of the first side and the second side is connected to the front plate 11, and the other is connected to the rear plate 12.

[0176] Optionally, the adapter 5 is generally in the shape of a thin plate, and reinforcing ribs are provided on the surface of the adapter 5. This structural design, while ensuring that the adapter 5 has a certain structural strength, can minimize the space occupied by the adapter in the top and bottom directions of the housing 1, so as to provide sufficient layout space for other components.

[0177] Optionally, the connection between the adapter 5 and the board box 3 can be a snap-fit ​​connection, a bolt assembly locking connection, or a combination of the above two methods.

[0178] For example, one way to connect the adapter 5 to the panel box 3 and the housing 1 is as follows: a T-slot 322 is provided at the front end of the panel box 3, and a T-rib 51 is provided at the rear end of the adapter 5. During assembly, the T-rib 51 is inserted into the T-slot 322 to position the adapter 5 to the front end of the panel box 3. Then, a bolt assembly is used to lock the adapter 5 to the panel box 3 to complete the fixed assembly of the adapter 5 and the panel box 3. After assembly, the adapter 5 and the panel box 3 are then installed to the housing 1. The rear end of the panel box 3 and the front end of the adapter 5 are respectively provided with connecting parts 33. The connecting part 33 at the rear end of the panel box 3 is positioned with the mounting area on the rear folded edge 121 and locked by the bolt assembly. The connecting part 33 at the front end of the adapter 5 is positioned with the mounting area on the upper part of the front support 111 and locked by the bolt assembly.

[0179] By adopting the above structural design, the external adapter 5 of the panel box 3 allows the dimensions of the panel box 3 in the front and rear directions of the housing 1 to be adapted to equipment with different depth dimensions (dimensions in the front and rear directions of the housing 1), thus expanding the application range of the panel box 3.

[0180] Moreover, in order to adapt to equipment with different depth dimensions, instead of directly changing the size of the plate box 3, it is possible to design adapters 5 of different sizes and detachably connect them to the plate box 3, which can reduce the investment in molds for structural components and reduce production costs.

[0181] In addition, by adding the adapter 5, the board box 3 can be supported between the front plate 11 and the rear plate 12, that is, both the front and rear ends of the board box 3 can be supported, which helps to improve the stability of the board box 3 after assembly.

[0182] Embodiments of this disclosure also provide a garment processing device, such as... Figures 12 to 15As shown, the garment processing equipment includes a housing 1, a tube assembly 2 disposed inside the housing 1, a board box 3 containing a PCB board 4, and an adapter 5.

[0183] The main difference between this embodiment and the embodiments described above is that: the board box 3 is externally connected to the adapter 5 and both are assembled into the housing 1 together, and there is no restriction on the specific layout of the PCB board 4 in the board box 3.

[0184] Specifically, in the garment processing equipment, the housing 1 includes a top plate 15, a front plate 11, a rear plate 12, and two side plates connected together. The front plate 11 has an inlet facing the opening of the tubular assembly 2. The front plate 11 and the rear plate 12 are arranged opposite each other along the front-rear direction of the housing 1. The two side plates are located between the front plate 11 and the rear plate 12, and are arranged opposite each other along the left-right direction of the housing 1, so that the front plate 11, the rear plate 12, and the two side plates form the outer peripheral wall of the housing 1, with an upper opening at the top of the outer peripheral wall. The top plate 15 is connected to the outer peripheral wall and covers the upper opening. A tray 3 is located at the upper opening, below the top plate 15 and above the tubular assembly 2. The adapter 5 is detachably connected to one side of the panel box 3 in the front-rear direction of the housing 1; in the front-rear direction of the housing 1, the side of the adapter 5 away from the panel box 3 is the first side; in the front-rear direction of the housing 1, the side of the panel box 3 away from the adapter 5 is the second side; and one of the first side and the second side is connected to the front panel 11, and the other is connected to the rear panel 12.

[0185] By adopting the above structural design, the PCB board 4 can be effectively protected by placing it inside the board box 3, minimizing damage caused by bumps and knocks. Furthermore, the board box 3 is dustproof and waterproof, so as not to affect the working performance of the PCB board 4.

[0186] Moreover, by placing the board box 3 at the top of the housing 1 and above the cylindrical assembly 2, the board box 3 has sufficient installation space, which allows for a larger internal cavity to accommodate the large-volume PCB board 4, thus facilitating a reasonable layout of the PCB board 4. On the other hand, it keeps the board box 3 away from electrical components such as motors and fans, reducing the vibration impact of these components on the board box 3 and its internal PCB board 4.

[0187] Meanwhile, the board box 3 is located below the top plate 15. The board box 3 can be exposed simply by opening the top plate 15, which helps to improve the efficiency of disassembling and assembling the board box 3.

[0188] In addition, by using the external adapter 5 of the panel box 3, the dimensions of the panel box 3 in the front and rear directions of the housing 1 can be adapted to equipment with different depth dimensions (dimensions in the front and rear directions of the housing 1), thus expanding the application range of the panel box 3.

[0189] Furthermore, to adapt to equipment with different depth dimensions, instead of directly changing the size of the board box 3, designing adapters 5 of different sizes and detachably connecting them to the board box 3 can reduce the investment in molds for structural components and lower production costs. In addition, by adding adapters 5, the board box 3 can be supported between the front plate 11 and the rear plate 12, that is, both the front and rear ends of the board box 3 can be supported, which helps to improve the stability of the board box 3 after assembly.

[0190] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this disclosure, and not to limit them. Although this disclosure has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this disclosure, and they should all be covered within the scope of the claims and specification of this disclosure. This disclosure is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A garment processing device, characterized in that, include: The housing and the cylindrical assembly disposed inside the housing, the housing including a top plate, a front plate, a rear plate and two side plates connected together; The front plate is provided with a dispensing port that is directly opposite the opening of the cylinder assembly, and the front plate and the rear plate are arranged opposite each other along the front-rear direction of the box body; The two side panels are disposed between the front panel and the rear panel, and the two side panels are arranged opposite each other along the left and right direction of the box body, so that the front panel, the rear panel and the two side panels form the outer peripheral wall of the box body, and the top of the outer peripheral wall has an upper opening; The top plate is connected to the outer peripheral wall and covers the upper opening; A plate box is disposed at the upper opening, the plate box being located below the top plate and above the cylinder assembly; A PCB board is disposed inside the board box. The PCB board has two large surfaces arranged opposite to each other. The two large surfaces are a first large surface and a second large surface, respectively. The first large surface facing the top plate is laid on the upper part of the inner wall of the box; The second large surface is integrated with a group of components.

2. The garment processing equipment according to claim 1, characterized in that, At least two of the front panel, the rear panel, and the side panel are connected to the panel box.

3. The garment processing equipment according to claim 2, characterized in that, A folded edge is formed at the upper opening of the outer peripheral wall, and the folded edge is located on the inner side of the box body; A connecting part is provided on the outer wall of the plate box; The upper part of the folded edge has a mounting area corresponding to the connecting part; The connecting portion abuts against the upper part of the mounting area and is detachably connected to the folded edge.

4. The garment processing equipment according to claim 3, characterized in that, The outer wall of the plate box is also provided with a pre-assembly part; The folded edge is provided with a pre-installed hole; The pre-installed part passes through the pre-installed hole and engages with the pre-installed hole to restrict the connecting part from being located at the upper part of the installation area.

5. The garment processing equipment according to claim 1, characterized in that, The panel box includes a first box body and a second box body that can be detachably connected; In the top-bottom direction of the box body, the first box body is located above the second box body; The first box has a first groove recessed towards the top plate, and the PCB board is laid in the first groove; The second housing has a second recessed groove on the side opposite to the top plate, the second groove being configured to accommodate a group of components on the PCB board.

6. The garment processing equipment according to claim 1, characterized in that, The plate box has a curved surface on the side near the cylindrical assembly, and the curved surface is adapted to the outer peripheral surface of the cylindrical assembly; Wherein, a gap a is formed between the curved surface and the outer peripheral surface of the cylindrical assembly, and the gap a satisfies: 6 mm < a < 12 mm.

7. The garment processing equipment according to any one of claims 1-6, characterized in that, The component group includes a control component group and at least one drive component group; The control component group is electrically connected to the at least one drive component group to control the at least one drive component group; The drive component group is electrically connected to the electrical components inside the housing to drive the electrical components to work.

8. The garment processing equipment according to any one of claims 1-6, characterized in that, The box wall is provided with heat dissipation holes; A heat sink is provided on the second large surface of the PCB board; The board box is also equipped with a fan, which is configured to blow air onto the heat sink and allow the air flowing through the heat sink to be discharged from the inside of the board box through the heat dissipation holes.

9. The garment processing equipment according to any one of claims 1-6, characterized in that, Also includes: An adapter is detachably connected to one side of the panel box in the front-rear direction of the housing; In the front-rear direction of the housing, the side of the adapter furthest from the panel is the first side; In the front-rear direction of the housing, the side of the panel box away from the adapter is the second side; One of the first side and the second side is connected to the front panel, and the other side is connected to the rear panel.

10. A garment processing device, characterized in that, include: The housing and the cylindrical assembly disposed inside the housing, the housing including a top plate, a front plate, a rear plate and two side plates connected together; The front plate is provided with a dispensing port that is directly opposite the opening of the cylinder assembly, and the front plate and the rear plate are arranged opposite each other along the front-rear direction of the box body; The two side panels are disposed between the front panel and the rear panel, and the two side panels are arranged opposite each other along the left and right direction of the box body, so that the front panel, the rear panel and the two side panels form the outer peripheral wall of the box body, and the top of the outer peripheral wall has an upper opening; The top plate is connected to the outer peripheral wall and covers the upper opening; A board box containing a PCB board is disposed at the upper opening, the board box being located below the top plate and above the cylindrical assembly; An adapter is detachably connected to one side of the panel box in the front-rear direction of the housing; In the front-rear direction of the housing, the side of the adapter furthest from the panel is the first side; In the front-rear direction of the housing, the side of the panel away from the adapter is the second side; wherein, one of the first side and the second side is connected to the front panel, and the other is connected to the rear panel.