Base assembly of clothes treatment equipment and clothes treatment equipment

By adding a reinforcing structure to the base plate of the garment processing equipment, the problems of deformation and noise caused by weight and vibration during operation were solved, enhancing the stability and service life of the equipment while reducing production costs.

CN121653944APending Publication Date: 2026-03-13QINGDAO HAIER WASHING ELECTRIC APPLIANCES CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

The existing garment processing equipment base is prone to deformation and cracking when bearing the weight of the equipment and operating vibrations, affecting the stability of the equipment and noise issues. In addition, the traditional design has failed to effectively solve the stability of the equipment on the ground, resulting in a poor user experience.

Method used

The thickness of a portion of the base plate of the garment processing equipment is increased to form a reinforced structure. The structural strength and stability of the equipment are enhanced by the installation of the reinforced plate and the base. The reinforced structure is formed by one-piece molding or by fixing the reinforced plate together.

Benefits of technology

It improves the equipment's resistance to bending and torsion, reduces shaking and noise during operation, extends the equipment's service life, and lowers manufacturing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a base assembly of clothes treating equipment and the clothes treating equipment. The base assembly comprises a shell bottom plate and bottom feet, the thickness of part of the shell bottom plate is larger than that of the other part, a reinforcing structure is formed, and therefore the structural strength and stability of equipment are enhanced. By means of the design, the bending resistance and the deformation resistance of the base can be effectively improved when the base bears the clothes processing equipment, especially when the equipment operates, stress concentration caused by the weight and vibration of the equipment can be resisted, and stable operation of the equipment is guaranteed. The base assembly is simple in structure, convenient and fast in manufacturing process, suitable for various clothes processing devices such as a washing machine, a clothes dryer and a washing and drying all-in-one machine, and good in bearing capacity and durability.
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Description

Technical Field

[0001] This invention applies to the field of household appliance technology, specifically relating to a base assembly and garment processing equipment for a garment processing device. Background Technology

[0002] As people's living standards continue to improve, laundry equipment such as washing machines, dryers, and washer-dryer combos are becoming increasingly common in households. However, with the increase in the capacity of these devices and the demand for efficient and stable operation, problems such as vibration, tilting, and noise generated during operation have gradually become apparent. Especially during high-speed spin-drying or tumble-drying operations, laundry equipment needs to withstand significant dynamic loads, which places higher demands on the stability and strength of the equipment base.

[0003] Existing garment processing equipment bases typically employ a simple shell-like structure. These bases are prone to deformation, cracking, and even affecting the overall stability of the equipment when subjected to its weight and operational vibrations. To improve operational stability, some existing base structures attempt to increase material thickness or add supporting components in specific areas. However, these methods often increase manufacturing costs and fail to fundamentally solve the vibration and noise problems during operation, especially noticeable in high-capacity, high-load operations.

[0004] In addition, many traditional base designs fail to adequately consider the connection strength and stability between the feet and the base plate, which can easily lead to the equipment being unstable on the ground, causing it to shake or tilt, thus affecting the user experience.

[0005] Therefore, given the shortcomings of existing garment processing equipment bases in terms of strength, stability, and manufacturing cost, there is an urgent need to provide an improved base assembly to enhance the vibration resistance of the equipment during operation and ensure its long-term reliability and service life.

[0006] In view of this, the present invention is proposed. Summary of the Invention

[0007] The technical problem to be solved by the present invention is to overcome the shortcomings of the prior art. The purpose is to provide a base assembly for a garment processing device and a garment processing device. The base assembly includes a housing base plate and feet, wherein the thickness of a portion of the housing base plate is greater than that of the rest, forming a reinforcing structure to enhance the structural strength and stability of the device.

[0008] To achieve the above objectives, the first aspect of the present invention discloses a base assembly for a garment processing device, comprising,

[0009] The base plate of the housing is used to mount the garment processing equipment;

[0010] At least part of the shell bottom plate is thicker than the remaining shell bottom plates to form a reinforcing structure;

[0011] The base is installed in conjunction with the reinforcing structure.

[0012] Optionally, the reinforcing structure is integrally formed, or it is formed by fixing a reinforcing plate to part of the shell bottom plate.

[0013] Optionally, the bottom plate of the shell is a rectangular structure, and the reinforcing structure is provided in the edge area or corner area of ​​the rectangular structure;

[0014] The reinforcing structure is formed by a reinforcing plate being fixedly connected to a portion of the edge area of ​​a rectangular structure.

[0015] Alternatively, reinforcing plates can be placed in the corner areas of the rectangular structure and fixedly connected to them.

[0016] Optionally, the edge area of ​​the housing bottom plate is provided with a pressing process;

[0017] The reinforcing plate is fitted with the corner of the rectangular structure on the side near the edge of the bottom plate of the shell, and fitted with the adjacent pressed part on the side away from the edge of the bottom plate of the shell.

[0018] Optionally, the reinforcing plate has a bent portion on the side away from the edge of the shell bottom plate that is adapted to the adjacent molding.

[0019] Optionally, the corners where the reinforcing plate mates with the corner area of ​​the rectangular structure are chamfered.

[0020] Optionally, the reinforcing plate is disposed on the inner or outer side of the bottom plate of the housing.

[0021] Optionally, the reinforcing plate is a frame structure that covers the edge area of ​​the rectangular structure;

[0022] Alternatively, the reinforcing plate may be a strip structure, with both ends of the strip structure respectively located in the two diagonally opposite corner areas of the frame structure;

[0023] Alternatively, the reinforcing plate may be a cross structure, with the four ends of the cross structure respectively located at the four corners of the frame structure.

[0024] Optionally, the reinforcing plate is a strip structure, with two strip structures respectively disposed on two opposite edge regions of the rectangular structure;

[0025] Alternatively, the reinforcing plate may be a sheet-like structure, which is disposed in the corner region of the rectangular structure.

[0026] The second aspect of the present invention discloses a garment processing device using the base assembly of the above-mentioned garment processing device, wherein the base plate of the garment processing device is a rectangular structure, and each of the four corner regions of the rectangular structure is provided with a foot.

[0027] The present invention has at least the following beneficial effects:

[0028] 1. This invention effectively improves the bending and torsional resistance of the base by increasing the thickness of certain areas of the base plate to form a reinforced structure. This allows the garment handling equipment to withstand greater loads during operation, avoids base plate deformation caused by equipment weight or vibration, ensures smoother equipment operation, and extends the equipment's service life.

[0029] 2. The design of the base and reinforced structure allows the equipment to effectively absorb and disperse vibrations during high-speed operation, reducing equipment shaking and noise. This improvement is particularly suitable for large-capacity, high-speed spin-drying operations, helping to improve user comfort and reduce noise and vibration during operation.

[0030] 3. This invention employs a one-piece molding process or a reinforcement plate fixing method to form a reinforced structure, simplifying the manufacturing process of the equipment base. While ensuring the structural strength of the equipment, it effectively reduces the use of materials and processing steps, thereby lowering the manufacturing cost of the equipment. This design not only improves the production efficiency of the equipment but also saves costs for enterprises and enhances their market competitiveness. Attached Figure Description

[0031] The accompanying drawings, as part of this invention, are provided to further illustrate the invention. The illustrative embodiments and descriptions of the invention are used to explain the invention, but do not constitute an undue limitation thereof. Clearly, the drawings described below are merely some embodiments, and those skilled in the art can obtain other drawings based on these drawings without any creative effort.

[0032] In the attached diagram:

[0033] Figure 1 This is a schematic diagram of the base assembly described in this invention from one direction;

[0034] Figure 2 This is a schematic diagram of the installation of the foot and base assembly described in this invention;

[0035] Figure 3 This is a schematic diagram of the base assembly described in this invention from another direction;

[0036] Figure 4 This is a cross-sectional view of the base assembly foot mounting location described in this invention;

[0037] Figure 5 This is a cross-sectional view of the base assembly and the feet of the present invention after they are properly engaged.

[0038] Figure 6This is a schematic diagram of one arrangement of the reinforcing plate on the housing base according to the present invention.

[0039] 1. Shell base plate; 11. Reinforcing structure; 111. Forming; 12. Reinforcing plate; 121. Bending part; 122. Chamfer; 2. Foot.

[0040] It should be noted that these accompanying drawings and textual descriptions are not intended to limit the scope of the invention in any way, but rather to illustrate the concept of the invention to those skilled in the art by referring to specific embodiments. Detailed Implementation

[0041] Exemplary embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. Those skilled in the art will understand that the following embodiments are only used to explain the technical principles of the present invention and are not intended to limit the scope of protection of the present invention.

[0042] like Figures 1 to 6 As shown, the present invention provides a base assembly for a garment processing device, which includes a housing base plate 1 and feet 2, and has a stable structure and enhances the overall load-bearing capacity of the device.

[0043] Specifically, the base plate 1 is a crucial component supporting the entire garment processing equipment and serves as the mounting base for the equipment's feet 2. To enhance the strength of the base plate 1, a portion of the base plate 1 is thicker than the rest, forming a reinforcing structure 11 through this thickness difference. This reinforcing structure 11 effectively improves the base's resistance to deformation when bearing the equipment, particularly enabling it to withstand stresses generated by vibration or weight during equipment operation.

[0044] The base 2 is installed in conjunction with the reinforcing structure 11. The reinforcing structure 11 allows the base 2 to more stably support the entire garment processing equipment under load, preventing tilting or unnecessary shaking. This design not only ensures the safety of equipment operation but also extends its service life.

[0045] In this embodiment, the reinforcing structure 11 of the base plate 1 is integrally formed, that is, the reinforcing structure 11 is directly formed by increasing the material thickness in a specific area of ​​the base plate 1. This integrally formed structural design simplifies the manufacturing process while ensuring the strength and integrity of the base.

[0046] Furthermore, the base assembly is compatible with various garment handling equipment, including but not limited to washing machines, dryers, and washer-dryer combos. This design not only enhances the structural stability of the equipment but also improves production efficiency and reduces manufacturing costs.

[0047] Furthermore, the reinforcing structure 11 is integrally formed, or it is formed by fixing a reinforcing plate 12 to part of the shell bottom plate 1. The reinforcing structure 11 of the shell bottom plate 1 is further optimized.

[0048] The base plate 1 of the housing is made of metal and is used to support and secure the feet 2 of the garment processing equipment. In a portion of the base plate 1, the thickness is increased to form a reinforcing structure 11 to enhance the strength and stability of the equipment base.

[0049] As one specific implementation of this embodiment, the reinforcing structure 11 can be formed by integral molding. During the manufacturing of the housing base plate 1, the thickness of a portion of the housing base plate 1 is increased by adjusting the mold, directly forming the reinforcing structure 11 in that area. Using integral molding reduces the number of parts while ensuring the overall strength and durability of the housing base plate 1.

[0050] As another specific implementation of this embodiment, the reinforcing structure 11 can be formed by a fixed connection of the reinforcing plate 12. The reinforcing plate 12 is used to reinforce weak areas of the base plate 1. Specifically, a separately processed reinforcing plate 12 is fixedly connected to a portion of the base plate 1 to form the reinforcing structure 11. The reinforcing plate 12 can be firmly fixed to the base plate 1 by welding, bolts, or rivets, thereby further enhancing the load-bearing capacity of the base.

[0051] Furthermore, the base plate 1 of the housing is a rectangular structure, and the reinforcing structure 11 is disposed in the edge region or corner region of the rectangular structure. The reinforcing structure 11 is formed by fixing a reinforcing plate 12 to the edge region of the rectangular structure. Alternatively, the reinforcing plate 12 is disposed in the corner region of the rectangular structure and fixedly connected thereto.

[0052] The base plate 1 of the housing is rectangular, and its shape facilitates matching with the overall shape of the garment processing equipment, providing better support and stability. To enhance the strength of this rectangular base plate, a reinforcing structure 11 is designed and installed in a specific area, specifically including the following two methods:

[0053] In the edge region of the base plate 1, the material thickness is increased to form a reinforcing structure 11. The edge region is a critical location for equipment support and load-bearing. By setting the reinforcing structure 11 in these areas, the bending and torsional resistance of the base plate can be effectively improved, ensuring the stability of the equipment during use.

[0054] Reinforcing plates 12 are installed at the four corners of the base plate 1, or a reinforcing structure 11 is formed by integral molding. The corner areas usually bear greater stress. By reinforcing the base plate 12, the supporting strength of the base plate can be further enhanced, preventing local deformation during equipment operation.

[0055] By strengthening the reasonable design of structure 11, the overall structural strength of the equipment is effectively improved, avoiding deformation or damage to the base plate caused by vibration or load during use, extending the service life of the equipment, and ensuring the stability of operation.

[0056] Furthermore, the edge region of the housing base plate 1 is provided with a molding 111. The side of the reinforcing plate 12 near the edge of the housing base plate 1 mates with the corner of the rectangular structure, and the side away from the edge of the housing base plate 1 mates with the adjacent molding 111.

[0057] The edge region of the housing base plate 1 is provided with a pressed 111 structure. This pressed 111 structure forms a specific geometry (such as a folded edge, groove, or protrusion) in the edge region by pressing or folding it, thereby increasing the strength of that region. The pressed 111 treatment not only improves the bending resistance of the housing base plate 1, but also reduces the risk of deformation due to vibration or load during equipment operation.

[0058] The design of the reinforcing plate 12 is coordinated with the pressed form 111 structure of the shell base plate 1. Specifically, the side of the reinforcing plate 12 closest to the edge of the shell base plate 1 mates with the corner area of ​​the rectangular structure, ensuring that the structural strength of the corner area is enhanced. The other side of the reinforcing plate 12, away from the edge of the shell base plate 1, mates with the adjacent pressed form 111 structure. This arrangement of the reinforcing plate 12 not only increases the overall rigidity of the shell base plate 1, but also forms a stable support system with the pressed form 111 structure, effectively distributing the load on the base plate.

[0059] Furthermore, the reinforcing plate 12 has a bent portion 121 on the side away from the edge of the shell bottom plate 1, which is adapted to the adjacent molding 111. The bent portion 121 is designed to better fit the reinforcing plate 12 with the molding 111 structure of the shell bottom plate 1, so as to provide higher structural strength and stability.

[0060] Specifically, the bending portion 121 is formed by machining or stamping the edge of the reinforcing plate 12 to create a shape (such as an L-shape, U-shape, or V-shape) that matches the structure of the molding 111. This bending design not only makes it easier to install the reinforcing plate 12 onto the shell base plate 1, but also effectively disperses pressure through its tight fit with the molding 111 structure, further improving the load-bearing capacity and deformation resistance of the shell base plate 1.

[0061] For example, in this embodiment, the bending portion 121 of the reinforcing plate 12 is U-shaped. One end of the bending portion 121 is connected to the main body of the reinforcing plate 12, and the other end is fitted into the molding 111 structure on the bottom plate 1 of the housing. Through the fitting of the bending portion 121 and the molding 111 structure, a solid support system is formed, which can effectively resist deformation caused by vibration or the weight of the equipment during operation.

[0062] This design is particularly suitable for high-load operation scenarios of garment processing equipment, maintaining the stability of the base during long-term use and preventing the equipment from tilting or shaking. At the same time, the bend 121 also improves the impact resistance of the base assembly, extending the service life of the equipment.

[0063] Furthermore, the corners where the reinforcing plate 12 mates with the corner area of ​​the rectangular structure are chamfered 122. The chamfer 122 is designed to avoid interference between the reinforcing plate 12 and the corner area of ​​the housing bottom plate 1, thereby ensuring that the reinforcing plate 12 can be installed smoothly and fit tightly.

[0064] Specifically, the chamfer 122 is formed by beveling or rounding the corner of the reinforcing plate 12 to create a transition area at a specific angle. The purpose of the chamfer 122 design is to ensure a perfect fit between the corner area of ​​the reinforcing plate 12 and the base plate 1 of the housing, avoiding installation difficulties or local stress concentration caused by geometric mismatch during installation.

[0065] Furthermore, the reinforcing plate 12 is disposed on the inner or outer side of the bottom plate 1 of the housing.

[0066] In one specific embodiment of this invention, the reinforcing plate 12 is installed on the inner side of the housing base plate 1 by welding or bolting. The reinforcing plate 12, located on the inner side, does not affect the appearance design of the base while effectively enhancing the internal structural strength of the housing base plate 1. During operation of the garment processing equipment, the inner reinforcing plate 12 can withstand the weight of the equipment and vibrations during operation, preventing deformation or damage to the base plate due to stress concentration. The design of installing the reinforcing plate 12 on the inner side also protects it from corrosion or impact from the external environment, improving the durability of the equipment.

[0067] In another specific embodiment of this invention, the reinforcing plate 12 is fixed to the outside of the housing base plate 1. The externally mounted reinforcing plate 12 is directly exposed to the bottom of the equipment and can be quickly installed using simple installation operations (such as bolting or snap-fitting). The advantage of external mounting is ease of maintenance and replacement, and in some cases, the design of the external reinforcing plate 12 allows for better integration with other bottom components of the equipment, providing additional support.

[0068] Whether the reinforcing plate 12 is located on the inner or outer side, its main purpose is to increase the structural strength of the base plate 1 of the housing and prevent deformation or cracking of the base plate due to the load and vibration borne by the equipment during operation. When selecting the installation position of the reinforcing plate 12, it can be installed on the inner or outer side according to the needs of the specific application scenario to optimize the overall performance of the equipment.

[0069] For example, in a large washing machine, the reinforcing plate 12 is placed on the inner side of the base plate 1 of the casing. This maintains a neat and aesthetically pleasing exterior while ensuring that the stability of the machine is not affected by deformation of the base plate structure during high-load operation. In smaller machines, the reinforcing plate 12 is placed on the outer side, which facilitates installation and maintenance while also providing sufficient strength support.

[0070] When the reinforcing plate 12 covers not only the edge and corner areas of the bottom plate 1 of the housing.

[0071] The reinforcing plate 12 is a strip structure, with the two ends of the strip structure respectively located at the two diagonally opposite corners of the frame structure.

[0072] Alternatively, the reinforcing plate 12 may be a cross structure, with the four ends of the cross structure respectively located at the four corners of the frame structure.

[0073] In one specific embodiment of this invention, the reinforcing plate 12 is a strip structure, with two strip reinforcing plates 12 respectively disposed on opposite edges of the rectangular structure. The design focus of the strip structure is to reinforce specific areas of the base plate, rather than covering the entire edge. The two ends of each strip reinforcing plate 12 are located at opposite corners of the rectangular base plate 1 and are fixed to the base plate by welding or bolts. The strip reinforcing plates 12 effectively enhance the local rigidity of the equipment base while reducing material usage and lowering production costs.

[0074] For example, each strip reinforcing plate 12 spans opposite sides of the rectangular structure, forming a pair of reinforcing beams, which is particularly suitable for equipment base structures that require localized reinforcement.

[0075] In another specific implementation of this embodiment, the reinforcing plate 12 has a cross structure, which can be integrally formed or formed by the intersection of two strip structures. Its four ends are respectively located at the four corner areas of the rectangular structure of the base plate 1. The cross structure design provides additional support in the central area of ​​the equipment, effectively dispersing the stress on the corner areas. Through the reinforcement of the cross structure reinforcing plate 12, the equipment base has better bending and torsional resistance under stress, making it particularly suitable for scenarios where the equipment is subjected to uneven loads during operation.

[0076] For example, the reinforcing plate 12 with a cross structure is installed by pre-drilling holes in the bottom plate 1 of the housing and fixed with bolts or rivets. The four ends of the cross structure are connected to the four corner areas of the bottom plate 1 of the housing, providing stable support.

[0077] The above three types of reinforcing plate 12 structures can be selected and combined according to different equipment requirements to ensure the structural stability of the equipment under load and during operation. At the same time, these designs also provide flexible reinforcement methods, allowing for an optimal balance between different production needs and cost control.

[0078] When the reinforcing plate 12 only covers the edge and corner areas of the shell bottom plate 1, the reinforcing plate 12 is a frame structure that covers the edge area of ​​a rectangular structure.

[0079] Alternatively, the reinforcing plate 12 may be a strip structure, with two strip structures respectively set on the two opposite edge areas of the rectangular structure.

[0080] Alternatively, the reinforcing plate 12 may be a sheet-like structure, which is disposed in the corner region of the rectangular structure.

[0081] like Figure 6 As shown, in one specific embodiment of this invention, the reinforcing plate 12 is designed as a frame structure that matches the rectangular edge area of ​​the housing base plate 1. This frame structure consists of a single piece of sheet metal or multiple reinforcing strips, covering and distributed along the edge area of ​​the housing base plate 1. The frame structure effectively enhances the overall rigidity of the housing base plate 1, preventing deformation caused by equipment weight or operational vibration, and is particularly suitable for large or heavy-duty garment processing equipment.

[0082] For example, the reinforcing plate 12 of the frame structure is installed on the edge area of ​​the shell bottom plate 1 by welding or bolting to form a closed rectangular frame. This design can provide uniform support to the bottom plate and improve the strength and stability of the overall structure.

[0083] In another specific implementation of this embodiment, the reinforcing plate 12 is designed as a strip structure, with two strip reinforcing plates 12 respectively disposed on two opposite edge regions of the rectangular shell bottom plate 1. Each strip reinforcing plate 12 extends along the long or short side of the shell bottom plate 1, serving to provide symmetrical reinforcement.

[0084] For example, in a large washing machine, two strip-shaped reinforcing plates 12 are fixed to the opposite side edges of the base plate 1 by welding or bolting. This design significantly improves the bending and torsional resistance of the base without adding too much material, ensuring that the base plate will not deform or crack when the equipment is subjected to a large load.

[0085] like Figures 1 to 5As shown, in the third embodiment, the reinforcing plate 12 is a sheet-like structure and is disposed in the corner region of the housing bottom plate 1. The sheet-like reinforcing plate 12 increases the strength of these critical areas by directly covering the corner regions. Especially during equipment operation, corners are usually stress concentration points, and the sheet-like structure can effectively disperse stress and reduce the risk of deformation in the corner regions.

[0086] For example, in the base design of a washing machine, the sheet-like reinforcing plate 12 can be customized according to the weight and size of the machine, selecting appropriate materials and thicknesses, and then installed in the four corner areas of the base plate 1 of the casing by welding or bolting. This design can significantly improve the structural strength of the corner areas and avoid corner wear or deformation caused by long-term use of the machine.

[0087] In a preferred embodiment, the sheet-like reinforcing plate 12 can not only be placed in the corner area, but can also be extended to other areas of the housing base plate 1 as needed, thereby forming a multiple reinforcement effect. The shape and size of the sheet-like structure can be flexibly adjusted according to the equipment design to ensure sufficient support in the most critical load-bearing areas.

[0088] Through the rational design of strip and sheet structures, this embodiment effectively improves the structural stability and fatigue resistance of the equipment base. These two types of reinforcing plates 12 can be used individually or in combination to adapt to different equipment requirements and production cost control.

[0089] This invention discloses a garment processing device that utilizes the aforementioned base assembly. This garment processing device enhances its stability and durability by employing an optimized base assembly.

[0090] The garment processing equipment can be a washing machine, dryer, or washer-dryer combo, and its base adopts the aforementioned reinforced structure 11 housing base plate 1. By setting the reinforced structure 11 (such as an integrally formed thickened area, a reinforcing plate 12, etc.) in a specific area of ​​the housing base plate 1, the structural strength of the equipment during operation is effectively improved, avoiding deformation or damage caused by long-term use of the equipment.

[0091] like Figure 4 and Figure 5 As shown, the base plate 1 of the garment processing equipment has a rectangular structure, and each of the four corner areas of the rectangular structure is provided with a foot 2. The reinforcing plate 12 is provided on the outside of the base plate 1 to form the reinforcing structure 11.

[0092] Specifically, the rectangular structure has mounting holes at its four corners, which penetrate the reinforcing structure 11. The reinforcing structure 11 improves the stability of the base 2 as it passes through the mounting holes.

[0093] Furthermore, the mounting hole extends into the inner side of the housing base plate 1 to form a mounting channel, and the foot 2 passes through the reinforcing structure 11 and is installed in the mounting channel, further improving the stability of the foot 2 passing through the mounting hole.

[0094] Furthermore, the base 2 is provided with a support structure. After the base 2 is installed in place on the garment processing equipment, the two ends of the support structure abut against the body of the base 2 and the reinforcing structure 11 respectively, further enhancing the stability of the installation between the base 2 and the garment processing equipment.

[0095] In the description of this invention, unless otherwise explicitly specified and limited, the terms "set" and "connection" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0096] In the description of this invention, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention 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 limiting this invention.

[0097] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any way. Although the present invention has been disclosed above with reference to preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make some modifications or alterations to the above-described technical content to create equivalent embodiments without departing from the scope of the present invention. The implementation schemes in the above embodiments can also be further combined or replaced. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the scope of the present invention.

Claims

1. A base assembly for a garment processing device, characterized in that, include, The housing base plate (1) is used to install the feet (2) of the garment processing equipment; At least part of the shell bottom plate (1) has a thickness greater than the thickness of the remaining shell bottom plates (1) to form a reinforcing structure (11); The base (2) is installed in conjunction with the reinforcing structure (11).

2. The base assembly of a garment processing device according to claim 1, characterized in that, The reinforcing structure (11) is integrally formed, or is formed by fixing the reinforcing plate (12) to part of the shell bottom plate (1).

3. The base assembly of a garment processing device according to claim 2, characterized in that, The shell base plate (1) is a rectangular structure, and the reinforcing structure (11) is provided in the edge area or corner area of ​​the rectangular structure; The reinforcing structure (11) is formed by fixing the reinforcing plate (12) to the edge area of ​​the rectangular structure. Alternatively, a reinforcing plate (12) can be placed in the corner area of ​​the rectangular structure and fixedly connected thereto.

4. The base assembly of a garment processing device according to claim 3, characterized in that, The edge region of the bottom plate (1) of the shell is provided with a pressing (111); The reinforcing plate (12) is fitted with the corner of the rectangular structure on the side near the edge of the bottom plate of the shell, and is fitted with the adjacent molding (111) on the side away from the edge of the bottom plate of the shell.

5. The base assembly of a garment processing device according to claim 4, characterized in that, The reinforcing plate (12) has a bent portion (121) on the side away from the edge of the bottom plate of the shell, which is adapted to the adjacent molded form (111).

6. The base assembly of a garment processing device according to claim 5, characterized in that, The corners where the reinforcing plate (12) meets the corner area of ​​the rectangular structure are chamfered (122).

7. The base assembly of a garment processing device according to any one of claims 2-6, characterized in that, The reinforcing plate (12) is disposed on the inner or outer side of the bottom plate (1) of the housing.

8. The base assembly of a garment processing device according to claim 2, characterized in that, The reinforcing plate (12) is a strip structure, with its two ends respectively located in the two diagonally opposite corner areas of the frame structure; Alternatively, the reinforcing plate (12) may be a cross structure, with the four ends of the cross structure respectively located at the four corners of the frame structure.

9. The base assembly of a garment processing device according to any one of claims 3-7, characterized in that, The reinforcing plate (12) is a frame structure that covers the edge area of ​​the rectangular structure; Alternatively, the reinforcing plate (12) may be a strip structure, with two strip structures respectively set on the two opposite edge areas of the rectangular structure; Alternatively, the reinforcing plate (12) may be a sheet-like structure, which is disposed in the corner region of the rectangular structure.

10. A garment processing device, employing a base assembly of a garment processing device according to any one of claims 1-9, characterized in that, The base plate of the garment processing equipment has a rectangular structure. The rectangular structure has a base at each of its four corners.