A hanging piece, a hanging assembly and a pulsator type laundry treating apparatus

CN224784527UActive Publication Date: 2026-09-22GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202521319949.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-25
Publication Date
2026-09-22
Estimated Expiration
2035-06-25

AI Technical Summary

Technical Problem

[0003]本实用新型要解决的技术问题在于克服现有技术中波轮式衣物处理设备中的角板受到吊杆应力时应力集中,导致角板易形变技术问题,提供一种悬挂件、悬挂组件及波轮式衣物处理设备

Benefits of technology

[0022]通过使悬挂位的中心位于由通过第一固定位的中心、第二固定位的中心的直线和角板1的外弧边共同限定的第一区域内使吊杆与箱体之间的配合更加紧凑,同时缩短了角板的悬挂位处与箱体相邻两侧壁之间的距离,既能够将角板所承受的应力更为均匀地传递并分布在箱体相邻两侧壁上,也增加了箱体相邻两侧壁所分担的应力,降低了悬挂件因过度形变而发生断裂的风险,从而提升了悬挂件的可靠性和耐用性。

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Abstract

The utility model relates to a kind of hanging piece, hanging assembly and pulsator type clothes processing equipment in the technical field of clothes processing equipment, and the hanging piece is used for pulsator type clothes processing equipment, and pulsator type clothes processing equipment includes cabinet, and the side wall corner of cabinet is arc corner, and the hanging piece includes angle plate, and angle plate is provided with hanging site, first fixed position and second fixed position;The center of the hanging site is located in the first region defined by the straight line passing through the center of first fixed position, the center of second fixed position and the outer arc edge of angle plate, so that the cooperation between boom and cabinet is more compact, and the distance between the hanging site of angle plate and the two adjacent side walls of cabinet is shortened, which can more evenly transmit and distribute the stress borne by the angle plate on the two adjacent side walls of the cabinet, also increase the stress shared by the two adjacent side walls of the cabinet, reduce the risk of rupture of the hanging piece due to excessive deformation, thereby improving the reliability and durability of the hanging piece.
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Description

Technical Field

[0001] This utility model relates to the field of clothing processing equipment technology, and in particular to a hanging component, a hanging assembly, and a pulsator-type clothing processing device. Background Technology

[0002] In clothing processing equipment technologies, such as top-loading washing machines, the hanging rods are typically supported by corner plates. The corner plates are located at the top corner of the cabinet and are connected to the cabinet by screws. The connection area is small, and the stress on the corner plates is concentrated after being subjected to the stress of the hanging rods, which makes the corner plates prone to deformation. Utility Model Content

[0003] The technical problem to be solved by this utility model is to overcome the technical problem that stress concentration occurs when the corner plate of the impeller-type garment processing equipment is subjected to the stress of the hanging rod, which leads to easy deformation of the corner plate. The present invention provides a hanging component, a hanging assembly, and an impeller-type garment processing equipment.

[0004] This utility model provides a hanging component for a pulsator-type garment processing device, the pulsator-type garment processing device including a housing and a cylinder, and the hanging component comprising:

[0005] An angle plate, the angle plate having an outer arc edge, the outer arc edge being used to abut and cooperate with the arc-shaped corner of the inner wall surface of the box;

[0006] The corner plate is provided with a suspension position for suspending the cylinder on the inner side of the outer arc edge, and a first fixing position and a second fixing position are provided on both sides of the suspension position for fastening the corner plate to the box body.

[0007] The center of the suspension position is located within a first region, which is defined by a straight line passing through the center of the first fixed position, the center of the second fixed position, and the outer arc edge.

[0008] In some embodiments, the suspension position is configured as a ball-and-socket joint, and the center of the suspension position is the center of the ball-and-socket joint.

[0009] Both the first fixing position and the second fixing position are constructed as assembly holes, and the center of the first fixing position and the second fixing position are both the center of the assembly hole.

[0010] In some embodiments, a plurality of first ribs are provided on the corner plate and on the periphery of the hanging position. The plurality of first ribs are arranged radially, and the extension lines of the plurality of first ribs intersect inside the box.

[0011] In some embodiments, a wire-fixing rib is provided on the corner plate to fix the wire harness inside the box. The wire-fixing rib includes a second rib and a rib head. One end of the second rib is connected to the corner plate and the other end is connected to the rib head. The second rib is used to form a second area for fixing the wire harness between itself and the inner wall of the box. The rib head is used to form a limiting opening between itself and the inner wall of the box for the wire harness to enter the second area.

[0012] In some embodiments, the suspension component further includes a connecting arm, one end of which is integrally formed with a corner plate, or both ends of the connecting arm are each integrally formed with a corner plate; the connecting arm is provided with a prepositioning hole and / or a first mounting hole.

[0013] In some embodiments, cushioning material is filled between the corner plate and the arc-shaped corner inside the box, and / or cushioning material is filled between the connecting arm and the inner wall of the box.

[0014] In some embodiments, a suspension assembly is provided, which includes a suspension member as described in any of the above technical solutions and a first support boss. The first support boss is fixedly connected to the arc-shaped corner inside the housing. The first support boss is provided with a third connection position corresponding to a first fixing position on the corner plate and a fourth connection position corresponding to a second fixing position. The corner plate is fixedly connected to the first support boss by a first connector passing through the first fixing position and the third connection position, and a second connector passing through the second fixing position and the fourth connection position.

[0015] In some embodiments, a suspension assembly is provided, which includes a suspension member as described in any of the above technical solutions and a second support boss. The second support boss is fixedly connected to the inner side wall of the housing and is located between adjacent arc-shaped corners. The second support boss is provided with a pre-positioning post corresponding to a pre-positioning hole on the connecting arm, and / or a second mounting hole corresponding to a first mounting hole on the connecting arm. The connecting arm is pre-positioned by inserting into the second support boss through the pre-positioning hole and the pre-positioning post, and / or the connecting arm is fixedly connected to the second support boss through a third connector passing through the first mounting hole and the second mounting hole.

[0016] In some embodiments, a pulsator-type garment processing device is provided, which includes a box, a cylinder, and a suspension rod for suspending the cylinder. The side wall corner of the box is an arc-shaped corner. The pulsator-type garment processing device also includes a suspension component as described in any of the above technical solutions, with a corner plate fixedly connected to the arc-shaped corner inside the box. The suspension end of the suspension rod is suspended at the suspension position.

[0017] In some embodiments, a pulsator-type garment processing device is provided, which includes a box, a cylinder, and a suspension rod for suspending the cylinder. The side wall corner of the box is an arc corner. The pulsator-type garment processing device also includes a suspension assembly as described in any of the above technical solutions. A first support boss is fixedly connected to the arc corner inside the box, and the suspension end of the suspension rod is suspended at the suspension position.

[0018] In some embodiments, a pulsator-type garment processing device is provided, which includes a box, a cylinder, and a suspension rod for suspending the cylinder. The side wall corner of the box is an arc-shaped corner. The pulsator-type garment processing device also includes a suspension assembly as described in any of the above technical solutions. A first support boss is fixedly connected to the arc-shaped corner inside the box, and a second support boss is fixedly connected to the inner side wall of the box and located between adjacent arc-shaped corners. The suspension end of the suspension rod is suspended at the suspension position.

[0019] In some embodiments, the impeller-type garment handling device further includes a top cover assembly and a housing cover. The top cover assembly includes a top cover plate, the periphery of which is connected to the upper end of the housing to form a connecting seam. The top cover plate has an inclined plate extending into the housing and an opening is formed on the top cover plate. The housing cover is closable and disposed at the upper end of the housing. When the housing cover is closed at the upper end of the housing, the housing cover can cover the connecting seam.

[0020] In some embodiments, the suspension assembly includes a first suspension assembly and a second suspension assembly. The first suspension assembly is installed on one side of the inner wall of the housing, and the second suspension assembly is installed on the other side of the inner wall of the housing. The first suspension assembly and the second suspension assembly are parallel to each other.

[0021] The solution provided by this utility model has the following advantages compared with the prior art:

[0022] By placing the center of the suspension position within the first area defined by the straight line passing through the center of the first fixed position, the center of the second fixed position, and the outer arc edge of the corner plate 1, the fit between the hanger and the housing is made more compact. At the same time, the distance between the suspension position of the corner plate and the adjacent side walls of the housing is shortened. This not only allows the stress borne by the corner plate to be transferred and distributed more evenly on the adjacent side walls of the housing, but also increases the stress shared by the adjacent side walls of the housing, reducing the risk of the suspension component breaking due to excessive deformation, thereby improving the reliability and durability of the suspension component. Attached Figure Description

[0023] The accompanying drawings, as part of this utility model, are used to provide a further understanding of the present utility model. The illustrative embodiments and descriptions of the present utility model are used to explain the present utility model, but do not constitute an undue limitation of the present utility model. Obviously, the drawings described below are merely some embodiments; those skilled in the art can obtain other drawings based on these drawings without creative effort. In the drawings:

[0024] Figure 1 This is one of the schematic diagrams of the arc-shaped corner on the inside of the box shown in this embodiment of the utility model;

[0025] Figure 2 This is one of the schematic diagrams of the suspension component shown in the embodiment of this utility model;

[0026] Figure 3 This is the second schematic diagram of the suspension component shown in this embodiment of the utility model;

[0027] Figure 4 This is the second schematic diagram of the arc-shaped corner on the inside of the box, as shown in this embodiment of the utility model;

[0028] Figure 5 This is a top view of the impeller-type garment processing device shown in an embodiment of the present invention;

[0029] Figure 6 yes Figure 5 Enlarged view of point A in the middle;

[0030] Figure 7 This is the third schematic diagram of the suspension component shown in this embodiment of the utility model;

[0031] Figure 8 This is the fourth schematic diagram of the suspension component shown in this embodiment of the utility model;

[0032] Figure 9 This is one of the exploded views of the suspension assembly shown in this embodiment of the present invention;

[0033] Figure 10 This is the second exploded view of the suspension assembly shown in this embodiment of the present invention;

[0034] Figure 11 This is a schematic diagram showing the suspension assembly installed on the inner side wall of the box, as illustrated in an embodiment of this utility model;

[0035] Figure 12 This is a schematic diagram of a pulsator-type garment processing device shown in an embodiment of the present invention;

[0036] Figure 13 This is one of the cross-sectional views of the impeller-type garment processing device shown in the embodiments of this utility model;

[0037] Figure 14 This is a second cross-sectional view of the impeller-type garment processing device shown in an embodiment of this utility model.

[0038] In the diagram: 1-Angle plate, 101-Suspension position, 102-First fixing position, 103-Second fixing position, 104-First area, 105-Second area, 106-Limiting port, 107-Outer arc edge, 2-Box body, 3-First rib, 4-Fixing rib, 401-Second rib, 402-Rib head, 5-Connecting arm, 501-Pre-positioning hole, 502-First mounting hole, 6-First support boss, 601-Third connecting position, 602-Fourth connecting position, 7-Second support boss, 701-Pre-positioning column, 702-Second mounting hole, 8-Cylinder body, 9-Hanging rod, 11-Top cover assembly, 1101-Top cover plate, 1102-Inclined plate, 1103-Opening, 1104-Accommodation space, 12-Box cover, 13-Connecting seam.

[0039] It should be noted that these accompanying drawings and textual descriptions are not intended to limit the scope of the present invention in any way, but rather to illustrate the concept of the present invention to those skilled in the art by referring to specific embodiments. Detailed Implementation

[0040] In the description of this utility model, it should be noted that the terms "inner" and "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the 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.

[0041] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," "contact," and "communication" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0042] Top-loading washing machines typically use corner plates to support the hanging rods. These corner plates are located at the top corner of the machine and are connected to the machine with screws. The connection area is small, and the stress on the corner plates is concentrated when subjected to the hanging rods, making them prone to deformation.

[0043] Based on this, the following embodiments are proposed:

[0044] Example 1

[0045] like Figure 1-11As shown, this embodiment provides a hanging component for a pulsator-type garment processing device. The pulsator-type garment processing device includes a housing 2 and a cylinder 8. The hanging component includes:

[0046] Angle plate 1 has an outer arc edge 107, which is used to abut against the arc corner of the inner wall of the box 2.

[0047] Angle plate 1 has a suspension position 101 for suspending cylinder 8 on the inner side of the outer arc edge 107. On both sides of the suspension position 101, there are a first fixing position 102 and a second fixing position 103 for fastening angle plate 1 to box 2.

[0048] The center of the suspension position 101 is located within the first region 104, which is a region defined by a straight line passing through the center of the first fixed position 102 and the center of the second fixed position 103 and the outer arc edge 107.

[0049] In this embodiment, as Figure 1-11 As shown, the hanging component is used in a pulsator-type garment processing device. The pulsator-type garment processing device includes a housing 2, and the hanging component is located inside the housing 2. It forms a corner at the connection between adjacent side walls of the housing 2. This corner is formed by two side edges and an arc, creating an arc-shaped corner with a certain curvature. The hanging component includes a corner plate 1, which is provided with a hanging position 101, a first fixing position 102, and a second fixing position 103. Related components such as hanging rods can be suspended on the corner plate 1 by cooperating with the hanging position 101. The first fixing position 102 and the second fixing position 103 are used to cooperate with other connecting components to define the relative position between the corner plate 1 and the side wall of the housing 2, so as to fix the corner plate 1 inside the housing 2. When the hanging component is installed on the inner wall of the housing 2, it is located within the arc-shaped corner formed between adjacent side walls of the housing 2, with the first fixing position 102 and the second fixing position 103 respectively close to the adjacent side walls of the housing 2 forming the arc-shaped corner. Connect the center of the first fixed position 102 with the center of the second fixed position 103 to form a line connecting the centers of the first fixed position 102 and the second fixed position 103, such as Figure 4As shown, the two ends of the center line are extended towards the adjacent side walls of the box 2 forming the arc corner and intersect with the outer arc edge 107 at points A and B respectively. At this time, the extended line of the center line and the outer arc edge 107 together form the first region 104, i.e., the shaded area, and the center of the suspension position 101 is set within this first region 104. Preferably, the suspension position 101 is constructed as a ball socket, and the center of the suspension position 101 is the center of the ball socket; the first fixing position 102 and the second fixing position 103 are both constructed as assembly holes, and the centers of the first fixing position 102 and the second fixing position 103 are the centers of the assembly holes. The center of the ball socket is located within the first region 104, which allows the distance between the suspension position 101 and the adjacent side walls of the box 2 to be closer, avoiding the suspension position 101 from sinking due to deformation. After the hanger and other related components are installed on the suspension position 101, the angle plate 1 can more evenly transfer and distribute the stress it bears to the adjacent side walls of the housing 2. The closer the suspension position 101 of the angle plate 1 is to the adjacent side walls of the housing 2, the smaller the degree of deformation between the suspension position 101 of the angle plate 1 and the adjacent side walls of the housing 2. The smaller the deformation of the angle plate 1, the smaller the stress it absorbs. The greater the stress that the angle plate 1 transmits to the adjacent side walls of the housing 2, the less likely the angle plate 1 and the related components connected to it will break due to excessive deformation, thereby improving the reliability and durability of the suspension components.

[0050] Preferably, the number of hanging parts corresponds to the number of arc corners. The housing 2 of the impeller-type garment processing equipment usually has four arc corners, and the four hanging parts can be fixedly connected to the side wall of the housing 2 and located in each arc corner. No additional connecting parts are needed between each hanging part, resulting in lower production costs and easier installation.

[0051] Preferably, the suspension component can be a long, strip-shaped injection molded part.

[0052] The manufacturing process of this suspension component is simple, with low mold opening costs, which can reduce production costs. By installing and cooperating the suspension component with the adjacent side walls of the box 2 forming the arc-shaped corner, the center of the suspension position 101 is limited to the first area 104 formed by the extension of the line connecting the centers of the first fixed position 102 and the second fixed position 103 and the arc-shaped corner. This makes the fit between the hanger 9 and the box 2 more compact, and at the same time shortens the distance between the suspension position 101 of the corner plate 1 and the adjacent side walls of the box 2. This not only allows the stress borne by the corner plate 1 to be transferred and distributed more evenly on the adjacent side walls of the box 2, but also increases the stress shared by the adjacent side walls of the box 2, reducing the risk of the suspension component breaking due to excessive deformation, thereby improving the reliability and durability of the suspension component.

[0053] Optionally, in one implementation of this embodiment, such as Figure 1-11As shown, multiple first ribs 3 are provided on the corner plate 1 and on the periphery of the hanging position 101. The multiple first ribs 3 are arranged radially, and the extension lines of the multiple first ribs 3 intersect on the inner side of the box body 2.

[0054] In this embodiment, as Figure 1-11 As shown, multiple first ribs 3 are provided on the periphery of the suspension position 101 on the corner plate 1. The first ribs 3 enhance the mechanical properties of the corner plate 1, enabling it to have greater ductility and withstand greater stress, thus adapting to the impact from the hanger rod and other related components located within the suspension position 101. The multiple first ribs 3 are arranged radially on the periphery of the suspension position 101, and this radial arrangement allows for the uniform distribution of stress transmitted from the hanger rod and other related components to the corner plate 1. The radially arranged multiple first ribs 3 are not parallel to each other; the extension lines of each first rib 3 near the interior of the housing 2 intersect on the interior side of the housing 2. That is, the spacing between the multiple first ribs 3 near the interior of the housing 2 is smaller, while the spacing between the multiple first ribs 3 near the side wall of the housing 2 is larger. When the corner plate 1 is impacted by the hanger or other related components, the corner plate 1 can first bear and absorb the stress through a dense array of first ribs 3, and then uniformly transfer the stress to each first rib 3. Subsequently, the stress is uniformly and linearly distributed and transmitted to the side wall of the box 2 through a series of first ribs 3 with increasingly larger spacing.

[0055] By arranging multiple first ribs 3 radially around the suspension position 101 on the corner plate 1, and making the spacing between the multiple first ribs 3 near the inside of the housing 2 smaller and the spacing between the multiple first ribs 3 near the side wall of the housing 2 larger, the relatively concentrated strong stress on the corner plate 1 can be transformed into uniformly distributed weak stress. This ensures that the corner plate 1 will not undergo excessive deformation and breakage when subjected to downward or other directional impacts. At the same time, it also makes the stress on the side wall of the housing 2 more uniform, thereby improving the stress strength of the corner plate 1 and avoiding the breakage of the suspension component due to stress concentration.

[0056] Optionally, in one implementation of this embodiment, such as Figure 4 and Figure 6-8 As shown, a wire-fixing rib 4 is provided on the corner plate 1. The wire-fixing rib 4 is used to fix the wire harness inside the box 2. The wire-fixing rib 4 includes a second rib 401 and a rib head 402. One end of the second rib 401 is connected to the corner plate 1, and the other end is connected to the rib head 402. The second rib 401 is used to form a second area 105 for fixing the wire harness between itself and the inner wall of the box 2. The rib head 402 is used to form a limiting port 106 for the wire harness to enter the second area 105 between itself and the inner wall of the box 2.

[0057] In this embodiment, as Figure 4 and Figure 6-8As shown, a wire-fixing rib 4 is provided on the corner plate 1. The wire-fixing rib 4 is used to fix and limit the wire harness inside the housing 2, preventing the scattered wire harness from coming into contact with other components and causing breakage or short circuits, which would affect the normal operation of the impeller-type garment processing equipment. The wire-fixing rib 4 includes a second rib 401 and a rib head 402. The outer diameter of the rib head 402 is larger than the outer diameter of the second rib 401. One end of the second rib 401 is connected to the corner plate 1, and the rib head 402 is connected to the other end of the second rib 401. The second rib 401 and the inner wall of the housing 2 can form a second area 105 for fixing the wire harness. The second area 105 can be a non-closed area with an opening 1103. Since the outer diameter of the rib head 402 is larger than the inner diameter of the second rib 401, the distance between the rib head 402 and the adjacent inner wall of the housing 2 is smaller than the inner diameter of the second area 105. Therefore, a limiting opening 106 can be formed between the rib head 402 and the adjacent inner wall of the housing 2. The second rib 401 can undergo elastic deformation within a certain range. After the suspension component is installed, multiple wire harnesses inside the housing 2, under the deformation of the second rib 401, enter the second region 105 through the limiting port 106 to form a bus bundle. The bus bundle will disperse within the second region 105 and contact the second rib 401. At this time, the outer diameter of the bus bundle is greater than the length of the limiting port 106. During vibration, the bus bundle will move along the second rib 401 towards the limiting port 106, thus contacting the rib head 402. Since the outer diameter of the rib head 402 is greater than the inner diameter of the second rib 401, the rib head 402 protrudes radially from the second rib 401 and forms a sidewall at the other end of the second rib 401, restricting the movement of the bus bundle towards the limiting port 106 and preventing the bus bundle from coming out of the second region 105.

[0058] Preferably, the second rib 401 can be an arc or other polygon with an opening 1103.

[0059] By setting the wire fixing rib 4 on the corner plate 1, the scattered wire bundles can be concentrated and fixed in position. Since the corner plate 1 in this application is close to the adjacent side walls of the box 2, the bus bundle formed after multiple wire bundles enter the second area 105 will be far away from the center of the box 2, thereby reducing the encroachment on the space of the box 2 and improving the utilization rate of the space of the box 2.

[0060] Optionally, in one implementation of this embodiment, such as Figure 5 , Figure 7-11 As shown, the suspension component also includes a connecting arm 5, one end of which is integrally formed with a corner plate 1, or both ends of the connecting arm 5 are integrally formed with a corner plate 1; the connecting arm 5 is provided with a prepositioning hole 501 and / or a first mounting hole 502.

[0061] In this embodiment, as Figure 5 , Figure 7-11As shown, the suspension component also includes a connecting arm 5. The connecting arm 5 increases the area of ​​the fixed connection between the suspension component and the housing 2, thereby sharing the stress borne by the corner plate 1. The corner plate 1 is integrally formed from one end of the connecting arm 5, or the two corner plates 1 are integrally formed from both ends of the connecting arm 5 respectively. The integral forming of the connecting arm 5 and the corner plate 1 can reduce the connection gap and ensure the connection strength between the two. A pre-positioning hole 501 or a first mounting hole 502 is provided on the connecting arm 5, or both the pre-positioning hole 501 and the first mounting hole 502 can be provided simultaneously. The pre-positioning hole 501 is used for simple and quick mating with the corresponding housing 2 component, making it easy for the operator to quickly place the connecting arm 5 in the mounting position. The first mounting hole 502 is used for precise mating with related components to fix the connecting arm 5 inside the housing 2.

[0062] Since the suspension needs to be installed inside the housing 2, it is difficult to align the first fixing position 102, the second fixing position 103, and the first mounting hole 502 with the relevant components. When the connecting arm 5 has both the pre-positioning hole 501 and the first mounting hole 502, the operator can quickly place the connecting arm 5 on the mounting position by cooperating with the housing 2 components corresponding to the pre-positioning hole 501. At the same time, the corner plate 1 will also be placed on its mounting position. Then, by precisely connecting the first fixing position 102, the second fixing position 103, and the first mounting hole 502 with the relevant components, the suspension can be quickly fixed to the inner wall of the housing 2, avoiding the operator spending too much time aligning the first fixing position 102, the second fixing position 103, and the first mounting hole 502 in sequence.

[0063] Preferably, the inner circumference of the prepositioning hole 501 extends towards the center of the prepositioning hole 501, forming a smooth arc-shaped structure, which allows the relevant components to enter or leave the prepositioning hole 501 more quickly during prepositioning, further shortening the installation time of the suspension component.

[0064] By opening a prepositioning hole 501 and a first mounting hole 502 on the connecting arm 5, the installation speed of the suspension component can be accelerated. After the suspension component is installed, the connecting arm 5 can increase the area of ​​the fixed connection between the suspension component and the housing 2, thereby increasing the connection strength between the suspension component and the housing 2.

[0065] Optionally, in one implementation of this embodiment, such as Figure 5 , Figure 7-11 As shown, cushioning material is filled between the corner plate 1 and the arc-shaped corner inside the box 2, and / or cushioning material is filled between the connecting arm 5 and the inner wall of the box 2.

[0066] In this embodiment, as Figure 5 , Figure 7-11As shown, during the operation of the pulsator-type garment processing equipment, the hanging component and the housing 2 will inevitably come into contact multiple times. Therefore, opposing stresses will be generated between the corner plate 1 and the side wall of the housing 2 located at the curved corner, and opposing stresses will also be generated between the inner side wall of the housing 2 and the connecting arm 5 fixed thereon. Therefore, cushioning material is filled between the corner plate 1 and the curved corner inside the housing 2, or between the connecting arm 5 and the inner side wall of the housing 2. In this embodiment, cushioning material can be filled between the corner plate 1 and the curved corner inside the housing 2, and between the connecting arm 5 and the inner side wall of the housing 2, thereby reducing the opposing stresses between the hanging component and the housing 2, and further increasing the connection strength between the hanging component and the housing 2.

[0067] Preferably, the cushioning material can be any material with elastic deformation and cushioning effect, such as sponge, felt, or silicone.

[0068] By filling the space between the corner plate 1 and the inner side of the box 2 with buffer material and between the connecting arm 5 and the inner side wall of the box 2, the opposing stresses between the suspension and the box 2 can be buffered and a supporting force opposite to the stress can be provided, further increasing the connection strength between the suspension and the box 2.

[0069] Example 2

[0070] like Figure 9 and Figure 10 As shown, this embodiment provides a suspension assembly, including the suspension component in Embodiment 1 and a first support boss 6. The first support boss 6 is fixedly connected to the arc-shaped corner inside the housing 2. The first support boss 6 is provided with a third connection position 601 corresponding to the first fixing position 102 on the corner plate 1 and a fourth connection position 602 corresponding to the second fixing position 103. The corner plate 1 is fixedly connected to the first support boss 6 by a first connector passing through the first fixing position 102 and the third connection position 601, and a second connector passing through the second fixing position 103 and the fourth connection position 602.

[0071] In this embodiment, as Figure 9 and Figure 10As shown, the suspension assembly includes the suspension member as in Embodiment 1 and a first support boss 6. The first support boss 6 supports the suspension member and is fixedly connected to it. Both the first support boss 6 and the suspension member can undergo elastic deformation simultaneously under stress; therefore, the connection between the first support and the suspension member can be considered a flexible connection. The first support boss 6 is fixedly connected to the arc-shaped corner inside the housing 2 to cooperate with the corner plate 1. The first support boss 6 is provided with a third connecting position 601 and a fourth connecting position 602. The third connecting position 601 corresponds to the position of the first fixing position 102 on the corner plate 1, and the fourth connecting position 602 corresponds to the position of the second fixing position 103 on the corner plate 1. A first connecting member passes through the first fixing position 102 and the third connecting position 601, and a second connecting member passes through the second fixing position 103 and the fourth connecting position 602, thereby fixing the corner plate 1 to the first support boss 6.

[0072] Preferably, the first connector and the second connector can be screws, pins or rivets, respectively or simultaneously.

[0073] By setting the first support boss 6, it can provide a certain support for the corner plate 1 and share some of the stress borne by the corner plate 1. The first fixing position 102 and the second fixing position 103 on the corner plate 1 are respectively aligned with the third connecting position 601 and the fourth connecting position 602 on the first support boss 6, so that multiple fixed connection points are formed between the corner plate 1 and the first support boss 6, thereby enhancing the connection strength between the corner plate 1 and the first support boss 6.

[0074] Example 3

[0075] like Figure 9 and Figure 10 As shown, this embodiment provides a suspension assembly, including the suspension member in Embodiment 1 and a second support boss 7. The second support boss 7 is fixedly connected to the inner side wall of the housing 2 and is located between adjacent arc-shaped corners. The second support boss 7 is provided with a pre-positioning post 701 corresponding to the pre-positioning hole 501 on the connecting arm 5, and / or a second mounting hole 702 corresponding to the first mounting hole 502 on the connecting arm 5. The connecting arm 5 is pre-positioned by inserting into the second support boss 7 through the pre-positioning hole 501 and the pre-positioning post 701, and / or the connecting arm 5 is fixedly connected to the second support boss 7 through the first mounting hole 502 and the second mounting hole 702 via a third connector.

[0076] In this embodiment, as Figure 9 and Figure 10As shown, the suspension assembly includes the suspension member and the second support boss 7 as in Embodiment 1. The second support boss 7 supports the connecting arm 5 and is fixedly connected to it. The second support boss 7 is located between two adjacent arc-shaped corners and is fixedly connected to the inner surface of the side wall of the housing 2. The second support boss 7 is provided with a prepositioning post 701 or a second mounting hole 702, or both a prepositioning post 701 and a second mounting hole 702 can be provided. The prepositioning post 701 corresponds to the position of the prepositioning hole 501 on the connecting arm 5, and the second mounting hole 702 corresponds to the position of the first mounting hole 502 on the connecting arm 5. In this embodiment, the second support boss 7 is provided with a prepositioning post 701 and a second mounting hole 702, and the connecting arm 5 is provided with a prepositioning hole 501 and a first mounting hole 502. When the operator installs the connecting arm 5, he first inserts the prepositioning post 701 into the prepositioning hole 501 to quickly complete the prepositioning of the connecting arm 5, and then inserts the third connector through the first mounting hole 502 and the second mounting hole 702 to fix the connecting arm 5 on the inner surface of the side wall of the housing 2.

[0077] Preferably, the third connector can be a screw, pin, or rivet.

[0078] By setting the second support boss 7, it can provide a certain degree of support for the connecting arm 5 and share some of the stress borne by the connecting arm 5. Aligning the pre-positioning hole 501 and the second mounting hole 702 on the connecting arm 5 with the pre-positioning post 701 and the first mounting hole 502 on the second support boss 7, respectively, allows the operator to quickly pre-position the connecting arm 5 with the second support boss 7. This automatically aligns the first mounting hole 502 and the second mounting hole 702, and also automatically aligns the first fixing position 102 and the second fixing position 103 with the third connecting position 601 and the fourth connecting position 602, respectively. This avoids the operator spending excessive time sequentially aligning the first fixing position 102, the second fixing position 103, and the first mounting hole 502. Furthermore, when the pre-positioning post 701 is inserted into the pre-positioning hole 501, it can also counteract the shearing force generated by the third connector during the fixing of the connecting arm 5. This not only enhances the connection strength between the connecting arm 5 and the second support boss 7 but also improves the assembly efficiency and reliability of the suspension assembly.

[0079] Example 4

[0080] like Figure 13 and Figure 14 As shown, this embodiment provides a pulsator-type garment processing device, including a box 2, a cylinder 8, and a hanging rod 9 for suspending the cylinder 8. The side wall corner of the box 2 is an arc corner. The pulsator-type garment processing device also includes the hanging component in Embodiment 1. Angle plate 1 is fixedly connected to the arc corner inside the box 2. The hanging end of the hanging rod 9 is suspended at the hanging position 101.

[0081] In this embodiment, as Figure 13 and Figure 14 As shown, the impeller-type garment processing equipment includes a housing 2, a drum 8, a suspension rod 9 for suspending the drum 8, and the suspension component in Embodiment 1. The drum 8, suspension rod 9, and suspension component in Embodiment 1 are all located inside the housing 2. The drum 8 vibrates to varying degrees during water filling, washing, dehydration, and drainage processes. These vibrations, combined with the weight of the drum 8 itself, generate a significant impact force, which is transmitted to the suspension component via the suspension rod 9. One end of the suspension rod 9 is connected to the drum 8, and the other end is connected to the suspension component. A corner is formed between two adjacent side walls of the housing 2; this corner is an arc-shaped corner. The corner plate 1 in the suspension component is fixedly connected to the side wall of the housing 2 and located within the arc-shaped corner. The other end of the suspension rod 9 is the suspension end, located in and cooperating with the suspension position 101, allowing the suspension rod 9 to be suspended on the suspension component, thereby transmitting and evenly distributing the stress generated by the suspension rod 9 on the suspension component to the side wall of the housing 2.

[0082] Preferably, the fitting methods between the suspension end and the suspension position 101 include, but are not limited to: hook and hanging hole fitting, ball head and ball socket fitting, and shaft universal joint fitting, etc.

[0083] Since the impeller-type garment processing device includes the hanging component in Embodiment 1, it possesses all the beneficial effects of the hanging component in Embodiment 1, which will not be elaborated further here.

[0084] Example 5

[0085] like Figure 13 and Figure 14 As shown, this embodiment provides a pulsator-type garment processing device, including a box 2, a cylinder 8, and a hanging rod 9 for suspending the cylinder 8. The side wall corner of the box 2 is an arc corner. The pulsator-type garment processing device also includes the suspension assembly in Embodiment 2. The first support boss 6 is fixedly connected to the arc corner inside the box 2, and the suspension end of the hanging rod 9 is suspended at the suspension position 101.

[0086] In this embodiment, as Figure 13 and Figure 14As shown, the impeller-type garment processing equipment includes a housing 2, a cylinder 8, a suspension rod 9 for suspending the cylinder 8, and the suspension assembly in Embodiment 2. The cylinder 8, the suspension rod 9, and the suspension assembly in Embodiment 2 are all located inside the housing 2. One end of the suspension rod 9 is connected to the cylinder 8, and the other end is connected to the suspension assembly. A corner is formed between two adjacent side walls of the housing 2. This corner is an arc-shaped corner. A first support boss 6 is fixedly connected to the side wall of the housing 2 and located inside the arc-shaped corner. The other end of the suspension rod 9 is the suspension end, which is located in and cooperates with the suspension position 101 of the suspension assembly, so that the suspension rod 9 can be suspended on the suspension assembly, thereby transferring and evenly distributing the stress generated by the suspension rod 9 on the suspension assembly to the side wall of the housing 2.

[0087] Since the impeller-type garment processing device includes the suspension assembly of Embodiment 2, it possesses all the beneficial effects of the suspension assembly of Embodiment 2, which will not be repeated here.

[0088] Example 6

[0089] like Figure 9 , Figure 10 , Figure 13 and Figure 14 As shown, this embodiment provides a pulsator-type garment processing device, including a box 2, a cylinder 8, and a hanging rod 9 for suspending the cylinder 8. The side wall corner of the box 2 is an arc corner. The pulsator-type garment processing device also includes the suspension assembly in Embodiment 3. The first support boss 6 is fixedly connected to the arc corner inside the box 2, and the second support boss 7 is fixedly connected to the inner side wall of the box 2 and located between adjacent arc corners. The suspension end of the hanging rod 9 is suspended at the suspension position 101.

[0090] In this embodiment, as Figure 9 , Figure 10 , Figure 13 and Figure 14 As shown, the impeller-type garment processing device includes a housing 2, a cylinder 8, a suspension rod 9 for suspending the cylinder 8, and the suspension assembly in Embodiment 3. The cylinder 8, the suspension rod 9, and the suspension assembly in Embodiment 3 are all located inside the housing 2. One end of the suspension rod 9 is connected to the cylinder 8, and the other end is connected to the suspension assembly. A corner is formed between two adjacent side walls of the housing 2. This corner is an arc-shaped corner. A first support boss 6 is fixedly connected to the side wall of the housing 2 and located inside the arc-shaped corner. A second support boss 7 is located between two adjacent arc-shaped corners and is fixedly connected to the inner surface of the side wall of the housing 2. The other end of the suspension rod 9 is a suspension end, which is located in and cooperates with the suspension position 101 of the suspension assembly, so that the suspension rod 9 can be suspended on the suspension assembly, thereby transferring and evenly distributing the stress generated by the suspension rod 9 on the suspension assembly to the side wall of the housing 2.

[0091] Since the impeller-type garment processing device includes the suspension assembly of Embodiment 3, it possesses all the beneficial effects of the suspension assembly of Embodiment 3, which will not be repeated here.

[0092] Optionally, in one of the implementations of Embodiments 4, 5, and 6, such as Figure 12-14 As shown, the impeller-type garment processing equipment also includes a top cover assembly 11 and a housing cover 12. The top cover assembly 11 includes a top cover plate 1101. The periphery of the top cover plate 1101 is connected to the upper end of the housing 2 to form a connecting seam 13. The top cover plate 1101 has an inclined plate 1102 extending into the housing 2, and an opening 1103 is formed on the top cover plate 1101. The housing cover 12 is closable and disposed at the upper end of the housing 2. When the housing cover 12 is closed at the upper end of the housing 2, the housing cover 12 can cover the connecting seam 13.

[0093] In this embodiment, as Figure 12-14 As shown, the impeller-type garment processing equipment also includes a top cover assembly 11 and a housing cover 12. The top cover assembly 11 is located inside the upper surface of the housing 2 and is used to seal the gap between the side wall of the housing 2 and the cylinder 8. The housing cover 12 is closable and mounted on the housing 2, located at the upper end of the side wall of the housing 2, and is used to completely cover the upper surface of the housing 2. The top cover assembly 11 includes a top cover plate 1101, which is connected to the upper inner surface of the side wall of the housing 2 near the periphery of the housing 2. A connecting seam 13 is formed between the top cover plate 1101 and the side wall of the housing 2. The connecting seam 13 faces upwards of the housing 2, making the connecting seam 13 between the top cover plate 1101 and the side wall of the housing 2 more concealed and not visible from the side. An opening 1103 is formed in the middle of the top cover plate 1101. The periphery of the opening 1103 extends into the box body 2 to form an inclined plate 1102. The lower side of the inclined plate 1102 faces the center of the box body 2. Water on the top cover plate 1101 can flow into the box body 2 through the inclined plate 1102, preventing water from overflowing the impeller-type clothing processing equipment.

[0094] Specifically, the inner diameter of the box body 2 is smaller than the outer diameter of the box cover 12. When the box cover 12 is closed on the upper end face of the box body 2, the connecting seam 13 is located within the vertical projection of the box cover 12 along the direction of the box body 2.

[0095] Preferably, the upper surface of the top cover plate 1101 can be parallel to or lower than the upper end face of the box 2, thereby avoiding the connection seam 13 between the top cover plate 1101 and the box 2 from appearing on the side of the box 2, and also helping to reduce the height of the box 2.

[0096] By setting the inner diameter of the box body 2 to be smaller than the outer diameter of the box cover 12, and setting the top cover assembly 11 inside the upper end face of the box body 2, when the box cover 12 is closed on the upper end face of the box body 2, water can be prevented from overflowing from the impeller-type clothing processing equipment, and the connection seam 13 between the top cover plate 1101 and the box body 2 is difficult to see, thus improving the aesthetics of the impeller-type clothing processing equipment.

[0097] Alternatively, in one implementation of Embodiment Six, such as Figure 9 and Figure 10 As shown, the suspension assembly includes a first suspension assembly and a second suspension assembly. The first suspension assembly is installed on one side of the inner wall of the housing 2, and the second suspension assembly is installed on the other side of the inner wall of the housing 2. The first suspension assembly and the second suspension assembly are parallel to each other.

[0098] In this embodiment, as Figure 9 and Figure 10 As shown, the suspension assembly includes a first suspension assembly and a second suspension assembly, and the suspension components in the first and second suspension assemblies are identical. The first suspension assembly is installed on one side of the inner wall of the housing 2, and the second suspension assembly is installed on the other side of the inner wall of the housing 2. The pre-positioning post 701 and the first mounting hole 502 on the connecting arm 5 of the first suspension assembly and the pre-positioning post 701 and the first mounting hole 502 on the connecting arm 5 of the second suspension assembly are located on both sides of the geometric center of the housing 2 and are arranged symmetrically. This ensures that the first and second suspension assemblies are also symmetrically located on both sides of the geometric center of the housing 2 after installation. This ensures that the stress generated between the multiple hangers 9 and their corresponding suspension assemblies is basically the same, making the cylinder 8 more stable during the operation of the impeller-type garment processing equipment.

[0099] By symmetrically arranging the first and second suspension components on either side of the geometric center of the housing 2, assembly between the suspension components and the housing 2 is simplified, improving the user experience of the pulsator-type garment processing equipment. Furthermore, no additional connecting parts are required between the first and second suspension components, reducing the materials and parts used during installation. Since the multiple suspension components within the housing 2 are identical, only one suspension component mold is needed for universal operation, reducing production costs.

[0100] In summary, the ingenious design of the suspension components lies in:

[0101] First, the design places the center of the suspension position within the first area defined by the straight line passing through the center of the first fixed position, the center of the second fixed position, and the outer arc edge of the corner plate 1. This makes the fit between the hanger and the housing more compact and shortens the distance between the suspension position of the corner plate and the adjacent side walls of the housing. This allows the stress borne by the corner plate to be transferred and distributed more evenly on the adjacent side walls of the housing, and also increases the stress shared by the adjacent side walls of the housing. This reduces the risk of the suspension component breaking due to excessive deformation, thereby improving the reliability and durability of the suspension component.

[0102] Secondly, by arranging multiple first ribs radially around the suspension position on the corner plate, and making the spacing between the first ribs near the inside of the housing smaller and the spacing between the first ribs near the side wall of the housing larger, the relatively concentrated strong stress on the corner plate can be transformed into uniformly distributed weak stress. This ensures that the corner plate will not undergo excessive deformation and breakage when subjected to downward or other directional impacts. At the same time, it also makes the stress on the side wall of the housing more uniform, thereby improving the stress strength of the corner plate and avoiding breakage of the suspension component due to stress concentration.

[0103] Third, by setting wire-fixing ribs on the corner plate, scattered wire bundles can be concentrated and fixed in position. Since the corner plate in this application is close to the adjacent side walls of the box, when multiple wire bundles enter the second area, the resulting bus bundle will be far away from the center of the box, thereby reducing the encroachment on the box space and improving the utilization rate of the box space.

[0104] Fourth, by opening a pre-positioning hole and a first mounting hole on the connecting arm, the installation speed of the suspension component can be accelerated. After the suspension component is installed, the connecting arm can increase the area of ​​the fixed connection between the suspension component and the housing, thereby increasing the connection strength between the suspension component and the housing.

[0105] Fifth, by setting a second support boss, it can provide some support for the connecting arm and share some of the stress borne by the connecting arm. Aligning the pre-positioning hole and the second mounting hole on the connecting arm with the pre-positioning post and the first mounting hole on the second support boss, respectively, allows workers to quickly pre-position the connecting arm and the second support boss. This automatically aligns the first and second mounting holes, and also automatically aligns the first and second fixing positions with the third and fourth connecting positions, respectively. This avoids workers spending excessive time sequentially aligning the first fixing position, the second fixing position, and the first mounting hole. Furthermore, when the pre-positioning post is inserted into the pre-positioning hole, it can also counteract the shearing force generated by the third connector during the fixing of the connecting arm. This not only enhances the connection strength between the connecting arm and the second support boss but also improves the assembly efficiency and reliability of the suspension assembly.

[0106] Sixth, by symmetrically arranging the first and second suspension components on either side of the geometric center of the housing, the assembly of the suspension components to the housing is made easier, improving the user experience of the pulsator-type garment processing equipment. Furthermore, no additional connecting parts are needed between the first and second suspension components, reducing the materials and parts required during installation. Since the multiple suspension components inside the housing are identical, only one suspension component mold is needed for universal operation, reducing production costs.

[0107] It can be further understood that in this disclosure, "many" refers to two or more, and other quantifiers are similar. "And / or" describes the relationship between related objects, indicating that three relationships can exist; for example, A and / or B can represent: A alone, A and B simultaneously, and B alone. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship. The singular forms "a," "the," and "the" are also intended to include the plural forms unless the context clearly indicates otherwise.

[0108] It is further understood that the terms "first," "second," etc., are used to describe various types of information, but this information should not be limited to these terms. These terms are only used to distinguish information of the same type from one another, and do not indicate a specific order or degree of importance. In fact, the expressions "first," "second," etc., are completely interchangeable. For example, without departing from the scope of this disclosure, first information can also be referred to as second information, and similarly, second information can also be referred to as first information.

[0109] It is further understood that although operations are described in a specific order in the accompanying drawings in the embodiments of this disclosure, this should not be construed as requiring these operations to be performed in the specific order or serial order shown, or requiring all of the shown operations to be performed to obtain the desired result. In certain environments, multitasking and parallel processing may be advantageous.

[0110] Other embodiments of this disclosure will readily occur to those skilled in the art upon consideration of the specification and practice of the utility models disclosed herein. This application is intended to cover any variations, uses, or adaptations of this disclosure that follow the general principles of this disclosure and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this disclosure are indicated by the following claims.

[0111] It should be understood that this disclosure is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this disclosure is limited only by the appended claims.

Claims

1. A suspension component for a pulsator-type garment processing device, the pulsator-type garment processing device comprising a housing (2) and a cylinder (8), characterized in that: The suspension component includes: Angle plate (1), the angle plate (1) has an outer arc edge (107), the outer arc edge (107) is used to abut against the arc corner of the inner wall of the box (2); The corner plate (1) is provided with a suspension position (101) for suspending the cylinder (8) on the inner side of the outer arc edge (107). A first fixing position (102) and a second fixing position (103) for fastening the corner plate (1) to the box (2) are provided on both sides of the suspension position (101). The center of the suspension position (101) is located in the first region (104), which is a region defined by a straight line passing through the center of the first fixed position (102), the center of the second fixed position (103), and the outer arc edge (107).

2. The suspension component according to claim 1, characterized in that, The suspension position (101) is constructed as a ball-and-socket joint, and the center of the suspension position (101) is the center of the ball-and-socket joint; Both the first fixing position (102) and the second fixing position (103) are constructed as assembly holes, and the center of the first fixing position (102) and the second fixing position (103) is the center of the assembly hole.

3. The suspension component according to claim 1, characterized in that, Multiple first ribs (3) are provided on the corner plate (1) and on the periphery of the hanging position (101). The multiple first ribs (3) are arranged radially, and the extension lines of the multiple first ribs (3) intersect the inner side of the box body (2).

4. The suspension component according to claim 1, characterized in that, The corner plate (1) is provided with a wire fixing rib (4), which is used to fix the wire harness inside the box (2); The wire fixing rib (4) includes a second rib (401) and a rib head (402). One end of the second rib (401) is connected to the corner plate (1), and the other end is connected to the rib head (402). The second rib (401) is used to form a second area (105) for fixing the wire harness between itself and the inner wall of the box (2). The rib head (402) is used to form a limiting port (106) for the wire harness to enter the second area (105) between itself and the inner wall of the box (2).

5. The suspension member according to any one of claims 1-4, characterized in that, The suspension component also includes: Connecting arm (5), one end of the connecting arm (5) is integrally formed with the corner plate (1), or both ends of the connecting arm (5) are integrally formed with the corner plate (1). The connecting arm (5) is provided with a prepositioning hole (501) and / or a first mounting hole (502).

6. The suspension component according to claim 5, characterized in that, The corner plate (1) and the arc-shaped corner inside the box (2) are filled with cushioning material, and / or the connecting arm (5) and the inner wall of the box (2) are filled with cushioning material.

7. A suspension assembly, characterized in that, include: The suspension member and the first support boss (6) as described in any one of claims 1-4, wherein the first support boss (6) is fixedly connected to the arc-shaped corner inside the box (2), and the first support boss (6) is provided with a third connection position (601) corresponding to the first fixing position (102) on the corner plate (1) and a fourth connection position (602) corresponding to the second fixing position (103). The corner plate (1) is fixedly connected to the first support boss (6) by a first connector passing through the first fixing position (102) and the third connecting position (601), and a second connector passing through the second fixing position (103) and the fourth connecting position (602).

8. A suspension assembly, characterized in that, include: The suspension member and the second support boss (7) as described in claim 5 or 6, wherein the second support boss (7) is fixedly connected to the inner side wall of the housing (2) and located between adjacent arc corners, and the second support boss (7) is provided with a prepositioning post (701) corresponding to the prepositioning hole (501) on the connecting arm (5), and / or a second mounting hole (702) corresponding to the first mounting hole (502) on the connecting arm (5); The connecting arm (5) is prepositioned in the second support boss (7) by being inserted into the prepositioning post (701) through the prepositioning hole (501), and / or the connecting arm (5) is fixedly connected to the second support boss (7) by the third connector passing through the first mounting hole (502) and the second mounting hole (702).

9. A pulsator-type garment processing device, comprising a housing (2), a drum (8), and a suspension rod (9) for suspending the drum (8), characterized in that, Also includes: The suspension member as described in any one of claims 1-6, wherein the corner plate (1) is fixedly connected to the arc-shaped corner inside the box body (2); The suspension end of the boom (9) is suspended at the suspension position (101).

10. A pulsator-type garment processing device, comprising a housing (2), a cylinder (8), and a suspension rod (9) for suspending the cylinder (8), characterized in that, include: As described in claim 7, the first support boss (6) is fixedly connected to the arc-shaped corner inside the housing (2), and the suspension end of the rod (9) is suspended at the suspension position (101).

11. A pulsator-type garment processing device, comprising a housing (2), a cylinder (8), and a suspension rod (9) for suspending said cylinder (8), characterized in that, include: The suspension assembly and the first support boss (6) as described in claim 8, wherein the first support boss (6) is fixedly connected to the arc-shaped corner inside the box (2), the second support boss (7) is fixedly connected to the inner wall of the box (2) and located between adjacent arc-shaped corners, and the suspension end of the hanger (9) is suspended at the suspension position (101).

12. The impeller-type garment processing device according to any one of claims 9-11, characterized in that, The impeller-type garment processing equipment also includes: Top cover assembly (11), the top cover assembly (11) includes a top cover plate (1101), the periphery of the top cover plate (1101) is connected to the upper end of the box body (2) and forms a connecting seam (13), the top cover plate (1101) has an inclined plate (1102) extending into the box body (2) and an opening (1103) is formed on the top cover plate (1101). Box cover (12), which is openable and closable at the upper end of the box (2), when the box cover (12) is closed at the upper end of the box (2), the box cover (12) can cover the connecting seam (13).

13. The impeller-type garment processing device according to claim 11, characterized in that, The suspension assembly includes a first suspension assembly and a second suspension assembly. The first suspension assembly is installed on one side of the inner wall of the housing (2), and the second suspension assembly is installed on the other side of the inner wall of the housing (2). The first suspension assembly and the second suspension assembly are arranged in parallel.