Laundry treating apparatus
By setting a mounting part on the mounting plate of the garment processing device, the rotor assembly is directly connected to the mounting plate, which simplifies the structure of the drive motor, solves the problems of high assembly difficulty and high production cost, and achieves noise reduction and improved stability.
Patent Information
- Application Number
- CN202410627012.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-20
- Publication Date
- 2025-11-21
AI Technical Summary
Existing garment processing devices have numerous structural components, resulting in difficult assembly, high production costs, and serious noise problems.
By setting a mounting section on the mounting plate, the rotor assembly is directly connected to the mounting plate, simplifying the drive motor structure. The end cap on the side of the stator assembly near the barrel is eliminated, and the mounting plate is used to connect to the barrel, simplifying the installation structure and improving structural strength.
It reduces assembly difficulty and production costs, reduces noise, and improves the stability and effectiveness of the garment processing device.
Smart Images

Figure CN120989877A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of clothing processing devices, and more specifically, to a clothing processing device. Background Technology
[0002] Currently, in related technologies, garment processing devices contain a tub with a mounting plate underneath. The device requires a drive motor to power a pulsator within the tub, thus washing the clothes inside. The motor in these devices typically includes a stator assembly and a rotor assembly, each with end caps. These end caps provide rotational support for the rotor assembly and also cover the stator and rotor assemblies. During motor assembly, connectors are used to attach the end caps to the mounting plate, connecting the motor to the garment processing device. However, this structure results in numerous components, increasing assembly difficulty within a limited installation space and raising production costs. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art or related art.
[0004] Therefore, a first aspect of the present invention provides a garment handling apparatus.
[0005] In view of this, a first aspect of the present invention provides a garment handling apparatus, including a tub, a mounting plate, a rotor assembly, and a stator assembly. The tub is capable of holding garments, the mounting plate is connected to the tub and includes a mounting portion, the rotor assembly is connected to the mounting portion and is rotatable relative to the mounting plate, and the stator assembly is arranged opposite to the rotor assembly.
[0006] This application defines a garment processing device, comprising a tub, a mounting plate, a rotor assembly, and a stator assembly. The tub can hold garments. The mounting plate is connected to the tub and includes a mounting portion. The rotor assembly is connected to the mounting portion and can rotate relative to the mounting plate. The stator assembly is arranged opposite to the rotor assembly, ensuring that the stator assembly can stably provide power to the rotor assembly, thereby achieving stable operation of the entire garment processing device. In this embodiment, by providing a mounting portion on the mounting plate, the rotor assembly can be directly assembled and connected to the mounting portion on the mounting plate. This eliminates the need for additional components such as a motor end cover on the side of the stator assembly near the tub, simplifying the drive motor structure within the garment processing device and reducing its cost. By providing a mounting plate that can connect the tub and the rotor assembly separately, additional mounting components are no longer needed between the drive motor and the tub. This improves the structural strength of the garment processing device while assembling the rotor assembly, preventing vibrations caused by loose or worn mounting components, reducing noise generated during operation, and improving usability. Furthermore, since the mounting plate can also be connected to the tub, the installation structure within the garment processing device is simplified.
[0007] Furthermore, by setting a mounting part on the mounting plate and directly assembling and connecting the rotor assembly to the mounting part on the mounting plate, the internal space of the garment processing device can be simplified, making installation easier. No additional mounting parts are required, so there is no need to assemble the mounting parts in a confined space, thereby reducing the assembly difficulty of the garment processing device and improving assembly efficiency.
[0008] Furthermore, when assembling the garment processing device, the rotor assembly can be directly fixed through the mounting part of the mounting plate, which simplifies the assembly process and improves production and installation efficiency.
[0009] Furthermore, by directly installing the mounting plate, the end caps on the side of the stator assembly closest to the barrel can be replaced, which can reduce the number of end caps and lower costs.
[0010] Furthermore, through the rotation of the rotor assembly and the power provided by the stator assembly, the clothes can be fully agitated and tumbled inside the drum, achieving efficient cleaning.
[0011] Furthermore, the end cap is fastened to the side of the stator assembly furthest from the mounting plate, serving to seal and protect the stator assembly. The end cap not only prevents external dust or impurities from entering the stator assembly, but also ensures the stability and safety of the stator assembly.
[0012] Furthermore, the stator and rotor assemblies can be fixedly installed using the mounting plate and end cover, simplifying the installation structure required for the drive motor, reducing costs, and facilitating the disassembly of the stator and rotor assemblies. When maintaining and replacing the garment processing device, the stator and rotor assemblies can be disassembled by removing the end cover and mounting plate, reducing maintenance costs.
[0013] In addition, the clothing processing device in the above-mentioned technical solution provided by the present invention may also have the following additional technical features:
[0014] Optionally, in some technical solutions of the present invention, the mounting part is provided with a first bearing chamber, the rotor assembly includes a rotor core, a rotating shaft and a first bearing, the rotating shaft passes through the rotor core, the first bearing is sleeved on the rotating shaft and located on the side of the rotor core near the mounting plate, and at least part of the first bearing is embedded in the first bearing chamber.
[0015] In this technical solution, the mounting section is provided with a first bearing chamber. The rotor assembly includes a rotor core, a shaft, and a first bearing. The shaft passes through the rotor core, and the first bearing is sleeved on the shaft and located on the side of the rotor core near the mounting plate. At least part of the first bearing is embedded in the first bearing chamber. By providing the first bearing chamber, the first bearing of the rotor assembly can be limited and it also serves as an installation guide, improving assembly efficiency. This allows the mounting section of the mounting plate to axially position the rotor assembly, and the first bearing inside the rotor assembly can also be fixed through the first bearing chamber, thus improving the installation efficiency of the rotor assembly.
[0016] In some technical solutions of the present invention, optionally, the stator assembly includes a stator core, the stator core being provided with a positioning hole that penetrates the stator core axially; the mounting plate also includes a first positioning part, the first positioning part being embedded in the positioning hole.
[0017] In this technical solution, the stator assembly includes a stator core with a positioning hole extending axially through it. The mounting plate also includes a first positioning part, which is embedded in the positioning hole. By embedding the first positioning part into the positioning hole of the stator core, the connection between the stator core and the mounting plate is more secure, enhancing the structural stability of the entire stator assembly. Due to the fitting design of the positioning hole and the first positioning part, the connection between the stator core and the mounting plate is less prone to loosening or detachment, improving the reliability of the stator assembly. The first positioning part embedded in the positioning hole can improve structural rigidity, reduce vibrations generated during the operation of the garment processing device, thereby reducing noise and optimizing the performance of the garment processing device.
[0018] In some technical solutions of the present invention, optionally, the mounting plate is provided with a first mounting hole, which is opposite to the positioning hole; the stator assembly is provided with a second mounting hole, which is opposite to the positioning hole; the garment handling device further includes a fastener, which passes through the first mounting hole, the positioning hole and the second mounting hole.
[0019] In this technical solution, the mounting plate is provided with a first mounting hole, which is opposite to the positioning hole; the stator assembly is provided with a second mounting hole, which is opposite to the positioning hole; the garment handling device also includes fasteners, which pass through the first mounting hole, the positioning hole, and the second mounting hole. These fasteners can cooperate with the first mounting hole, the positioning hole, and the second mounting hole to achieve radial positioning of the stator assembly, improving the stability of the stator assembly, reducing structural sway, and enhancing the internal structural stability of the garment handling device. Furthermore, the pre-set first mounting hole, positioning hole, and second mounting hole facilitate the installation of the fasteners and provide installation guidance, reducing installation difficulty. During maintenance of the garment handling device, the fasteners passing through the first mounting hole, the positioning hole, and the second mounting hole also facilitate disassembly, making later replacement and maintenance easier.
[0020] Optionally, in some technical solutions of the present invention, the mounting part is provided with a mounting groove; a portion of the rotor core is located in the mounting groove.
[0021] In this technical solution, the mounting section is equipped with a mounting slot, within which part of the rotor core is located. The mounting slot guides the rotor core during installation, improving assembly efficiency. Simultaneously, the mounting slot can accommodate part of the rotor core, positioning it and enhancing structural stability. Furthermore, it provides space for the rotor assembly, facilitating assembly.
[0022] In some technical solutions of the present invention, the mounting plate may optionally include a protrusion, which is connected to the bottom wall of the mounting groove and protrudes into the bottom wall of the mounting groove towards the stator core. The protrusion is arranged in a ring shape to enclose the first bearing chamber.
[0023] In this technical solution, the mounting plate also includes a protrusion that is connected to the bottom wall of the mounting groove and protrudes into the stator core. The protrusion is arranged in a ring shape to enclose the first bearing chamber, which can improve the structural strength, reduce the noise generated by the clothing processing device, and improve the performance.
[0024] By setting protrusions, not only can the rotor and stator assemblies be limited, but the positioning structure can also be simplified. When producing garment processing devices, mounting plates with protrusions can be produced by sheet metal stamping, reducing production costs and improving production efficiency.
[0025] In some technical solutions of the present invention, the mounting part, the first positioning part, and the protrusion part are optionally integrated into one structure.
[0026] In this technical solution, the mounting section, the first positioning section, and the protrusion are integrated into a single structure, which improves the stability and robustness of the entire structure. This reduces the risk of performance degradation or failure due to loose or damaged connections between components. The integrated structure simplifies and speeds up the installation process. Since individual components do not need to be installed and secured separately, installation steps and time are reduced, while also lowering the error rate during installation. The integrated structure facilitates automation and standardized production during manufacturing, improving production efficiency. Furthermore, by optimizing the structural layout and reducing unnecessary connectors, the overall size and weight can be reduced, thereby saving space and material costs.
[0027] In some technical solutions of the present invention, optionally, the first positioning part is arranged around the first mounting hole and extends into the positioning hole along the axial direction of the stator core.
[0028] In this technical solution, the first positioning part is arranged around the first mounting hole and extends axially into the positioning hole along the stator core. This can improve the structural strength of the mounting plate and the stator assembly, while simplifying the positioning structure and reducing costs.
[0029] In some technical solutions of the present invention, optionally, the number of first positioning parts is multiple, and the multiple first positioning parts are arranged circumferentially along the mounting groove.
[0030] In this technical solution, there are multiple first positioning parts arranged circumferentially along the mounting groove. These multiple first positioning parts can fix the stator core, improving structural strength and eliminating the need for additional mounting components. While fixing the stator assembly, this also enhances the structural strength of the garment processing device, preventing vibrations caused by loose or worn mounting components, reducing noise generated during operation, and improving equipment performance. Furthermore, the circumferential arrangement of the first positioning parts also improves the accuracy of stator core positioning.
[0031] Furthermore, multiple first positioning parts can be set according to the size of the garment processing device and the usage environment. By setting multiple first positioning parts around the stator core, the shaking inside the garment processing device can be reduced, thereby reducing vibration and noise.
[0032] In some technical solutions of the present invention, optionally, the mounting plate abuts against one side of the stator core.
[0033] In this technical solution, the mounting plate abuts against one side of the stator core. The mounting plate provides axial support for the stator core, thereby positioning the stator assembly axially. This improves the structural strength of the stator assembly and the mounting plate, eliminating the need for an additional end cap on the side of the stator assembly near the drum, simplifying the drive motor structure within the garment processing device, and reducing the cost. By using mounting plates that can connect the drum and rotor assembly separately, no additional mounting components are needed between the drive motor and the drum. This allows for the assembly of the rotor assembly while simultaneously improving the structural strength of the garment processing device, preventing vibrations caused by loose or worn mounting components, reducing noise generated during operation, and improving overall performance.
[0034] In some technical solutions of the present invention, the stator assembly may optionally include an end cover, which is fastened to the side of the stator core away from the mounting plate, and a second mounting hole is provided on the end cover.
[0035] In this technical solution, the stator assembly also includes an end cover, which is fastened to the side of the stator core away from the mounting plate, and a second mounting hole is provided on the end cover. By setting the end cover, the stator assembly can be fixedly installed, protecting the side of the stator core away from the mounting plate, preventing external contaminants and debris from entering the stator assembly, facilitating the assembly of the stator assembly, and extending the service life of the stator assembly.
[0036] In some technical solutions of the present invention, the end cover may optionally include a second positioning part, which is arranged around the second mounting hole and extends into the positioning hole along the axial direction of the stator core.
[0037] In this technical solution, the end cover includes a second positioning part, which is arranged around the second mounting hole and extends axially into the positioning hole along the stator core. This can improve the structural strength of the end cover and the stator assembly, facilitate installation, simplify the positioning structure between the end cover and the stator assembly, and reduce costs.
[0038] In some technical solutions of the present invention, optionally, the end cover is provided with a second bearing chamber, and the rotor assembly further includes a second bearing, which is sleeved on the rotating shaft and located on the side of the rotor core away from the mounting plate, and at least part of the second bearing is embedded in the second bearing chamber.
[0039] In this technical solution, the end cover is provided with a second bearing chamber, and the rotor assembly also includes a second bearing. The second bearing is sleeved on the rotating shaft and located on the side of the rotor core away from the mounting plate, with at least a portion of the second bearing embedded in the second bearing chamber. The second bearing provides support and positioning for the rotor assembly, ensuring that the rotating shaft maintains a stable axial and radial position during high-speed rotation, thereby reducing wear and noise caused by vibration or misalignment. Furthermore, by embedding the second bearing in the second bearing chamber, the installation process of the garment handling device is simplified. Simultaneously, when bearing replacement or maintenance is required, only the end cover needs to be removed, without disassembling the entire rotor assembly, thus improving the convenience and efficiency of maintenance.
[0040] In some technical solutions of the present invention, the stator assembly may optionally include a plastic-coated portion, which is plastic-coated onto the stator core, and a second mounting hole is provided on the plastic-coated portion.
[0041] In this technical solution, the stator assembly also includes a plastic-coated portion, which is coated onto the stator core. By providing the plastic-coated portion, the stator core can be tightly covered, enhancing the structural stability and integrity of the stator assembly and improving its stability during operation. The second mounting hole located on the plastic-coated portion improves the assembly efficiency of the stator assembly and reduces the installation cost of the garment processing device.
[0042] By incorporating a plastic-coated part onto the stator core, the adaptability of the plastic-coated part can be improved, further reducing costs while increasing the assembly efficiency of the garment processing device.
[0043] In some technical solutions of the present invention, the stator assembly may optionally include a support cover, which is embedded in the plastic-coated part and located on the side of the stator core away from the mounting plate. The support cover is provided with a third bearing chamber. The rotor assembly may also include a third bearing, which is sleeved on the rotating shaft and located on the side of the rotor core away from the mounting plate. At least part of the third bearing is embedded in the third bearing chamber.
[0044] In this technical solution, the stator assembly also includes a support cover, which is embedded within the plastic-coated portion and located on the side of the stator core furthest from the mounting plate. This enhances structural stability. The support cover is equipped with a third bearing chamber. The rotor assembly also includes a third bearing, which is sleeved on the shaft and located on the side of the rotor core furthest from the mounting plate. This ensures that the shaft maintains a stable axial and radial position during high-speed rotation, thereby reducing wear and noise caused by vibration or misalignment. At least a portion of the third bearing is embedded within the third bearing chamber, further enhancing the stability of the rotor assembly during high-speed rotation. The fact that at least a portion of the third bearing is embedded within the third bearing chamber also facilitates the installation and maintenance of the rotor assembly.
[0045] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0046] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0047] Figure 1 This is one of the structural schematic diagrams of a garment processing apparatus according to an embodiment of the present invention;
[0048] Figure 2 for Figure 1 A schematic cross-sectional view of the garment processing apparatus of the embodiment shown in the diagram.
[0049] Figure 3 This is a second schematic diagram of a clothing processing device according to an embodiment of the present invention;
[0050] Figure 4 This is a third schematic diagram of a clothing processing device according to an embodiment of the present invention;
[0051] Figure 5 This is a schematic diagram of the structure of a mounting plate according to an embodiment of the present invention;
[0052] Figure 6 This is a fourth schematic diagram of a clothing processing device according to an embodiment of the present invention;
[0053] Figure 7 for Figure 6 A schematic cross-sectional view of the garment processing apparatus of the embodiment shown.
[0054] in, Figures 1 to 7 The correspondence between the reference numerals and component names in the attached drawings is as follows:
[0055] 100 Clothing handling device, 110 Drum body, 120 Mounting plate, 122 First positioning part, 124 First mounting hole, 126 Protrusion, 130 Mounting part, 132 First bearing chamber, 134 Mounting groove, 140 Rotor assembly, 142 Rotor core, 144 Shaft, 146 First bearing, 148 Second bearing, 150 Stator assembly, 152 Stator core, 154 Positioning hole, 156 Plastic coating part, 158 Support cover, 160 End cover, 162 Second mounting hole, 164 Second positioning part, 166 Second bearing chamber, 170 Fastener, 172 Third bearing, 174 Third bearing chamber. Detailed Implementation
[0056] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0057] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and therefore the scope of protection of the invention is not limited to the specific embodiments disclosed below.
[0058] The following reference Figures 1 to 7 A garment processing apparatus 100 according to some embodiments of the present invention is described.
[0059] In embodiments of the present invention, such as Figure 1 and Figure 2 As shown, a clothing handling device 100 is provided, including a tub 110, a mounting plate 120, a rotor assembly 140, and a stator assembly 150. The tub 110 is capable of holding clothing. The mounting plate 120 is connected to the tub 110 and includes a mounting portion 130. The rotor assembly 140 is connected to the mounting portion 130 and is rotatable relative to the mounting plate 120. The stator assembly 150 is arranged opposite to the rotor assembly 140.
[0060] This application defines a garment processing device 100, including a tub 110, a mounting plate 120, a rotor assembly 140, and a stator assembly 150. The tub 110 can hold garments. The mounting plate 120 is connected to the tub 110 and includes a mounting portion 130. The rotor assembly 140 is connected to the mounting portion 130 and can rotate relative to the mounting plate 120. The stator assembly 150 is arranged opposite to the rotor assembly 140, ensuring that the stator assembly 150 can stably provide power to the rotor assembly 140, thereby achieving stable operation of the entire garment processing device 100. In this embodiment, by providing the mounting portion 130 on the mounting plate 120, the rotor assembly 140 can be directly assembled and connected to the mounting portion 130 on the mounting plate 120, and can be interconnected with the rotor assembly 140. This eliminates the need for additional components such as a motor end cap on the side of the stator assembly 150 near the tub 110, simplifying the drive motor structure within the garment processing device 100 and reducing the cost of the garment processing device 100. By providing a mounting plate 120 that can connect the drum body 110 and the rotor assembly 140 respectively, no additional mounting parts are needed between the drive motor and the drum body 110. This allows for the assembly of the rotor assembly 140 while improving the structural strength of the garment processing device 100, preventing vibrations caused by loose or worn mounting parts, reducing noise generated during operation, and improving performance. Furthermore, since the mounting plate 120 can also be connected to the drum body 110, the internal installation structure of the garment processing device 100 can be simplified.
[0061] Furthermore, by providing a mounting part 130 on the mounting plate 120 and directly assembling and connecting the rotor assembly 140 to the mounting part 130 on the mounting plate 120, the internal space of the garment processing device 100 can be simplified, making installation easier. No additional mounting parts are required, so there is no need to assemble the mounting parts in a confined space, thereby reducing the assembly difficulty of the garment processing device 100 and improving assembly efficiency.
[0062] Furthermore, when assembling the garment processing device 100, the rotor assembly 140 can be directly fixed through the mounting part 130 of the mounting plate 120, which simplifies the assembly process and improves production and installation efficiency.
[0063] Furthermore, by directly setting the mounting plate 120, the end cap 160 on the side of the stator assembly 150 near the barrel 110 can be replaced, which can reduce the number of end caps 160 and reduce costs.
[0064] Furthermore, through the rotation of the rotor assembly 140 and the power provided by the stator assembly 150, the clothes can be fully agitated and tumbled within the tub 110, achieving efficient cleaning.
[0065] Furthermore, the end cap 160 is fastened to the side of the stator assembly 150 away from the mounting plate 120, serving to seal and protect the stator assembly 150. The end cap 160 not only prevents external dust or impurities from entering the stator assembly 150, but also ensures the stability and safety of the stator assembly 150.
[0066] Furthermore, the stator assembly 150 and rotor assembly 140 can be fixedly installed using the mounting plate 120 and end cover 160, simplifying the installation structure required for the drive motor, reducing costs, and facilitating the disassembly of the stator assembly 150 and rotor assembly 140. When maintaining and replacing the garment processing device 100, the stator assembly 150 and rotor assembly 140 can be disassembled by removing the end cover 160 and mounting plate 120, thus reducing maintenance costs.
[0067] Furthermore, the mounting plate 120 can support and assemble components such as motors and clutches.
[0068] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0069] like Figure 2 and Figure 5 As shown, the mounting part 130 is provided with a first bearing chamber 132, and the rotor assembly 140 includes a rotor core 142, a rotating shaft 144 and a first bearing 146. The rotating shaft 144 passes through the rotor core 142, and the first bearing 146 is sleeved on the rotating shaft 144 and located on the side of the rotor core 142 near the mounting plate 120. At least part of the first bearing 146 is embedded in the first bearing chamber 132.
[0070] In this embodiment, the mounting portion 130 is provided with a first bearing chamber 132. The rotor assembly 140 includes a rotor core 142, a rotating shaft 144, and a first bearing 146. The rotating shaft 144 passes through the rotor core 142, and the first bearing 146 is sleeved on the rotating shaft 144, located on the side of the rotor core 142 near the mounting plate 120. At least a portion of the first bearing 146 is embedded in the first bearing chamber 132. By providing the first bearing chamber 132, the first bearing 146 of the rotor assembly 140 can be limited and also serves as a guide for installation, improving assembly efficiency. This allows the mounting portion 130 of the mounting plate 120 to axially position the rotor assembly 140, and also allows the first bearing 146 within the rotor assembly 140 to be fixed through the first bearing chamber 132, improving the installation efficiency of the rotor assembly 140. By providing the first bearing chamber 132, the shaking of the first bearing 146 can be reduced, avoiding vibration caused by bearing loosening and wear after installation, thereby reducing the noise generated by the clothing processing device 100 during operation and improving the performance.
[0071] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0072] like Figure 2 and Figure 3 As shown, the stator assembly 150 includes a stator core 152, and the stator core 152 is provided with a positioning hole 154 that passes through the stator core 152 along the axial direction; the mounting plate 120 also includes a first positioning part 122, which is embedded in the positioning hole 154.
[0073] In this embodiment, the stator assembly 150 includes a stator core 152, which has a positioning hole 154 extending axially through it. The mounting plate 120 also includes a first positioning part 122, which is embedded in the positioning hole 154. By embedding the first positioning part 122 into the positioning hole 154 of the stator core 152, the connection between the stator core 152 and the mounting plate 120 is made more stable, enhancing the structural stability of the entire stator assembly 150, reducing structural vibration, and decreasing noise. Due to the fitting design of the positioning hole 154 and the first positioning part 122, the connection between the stator core 152 and the mounting plate 120 is less prone to loosening or detachment, improving the reliability of the stator assembly 150. The first positioning part 122 embedded in the positioning hole 154 can improve structural rigidity, reduce vibration generated during operation of the garment processing device 100, thereby reducing noise and optimizing the performance of the garment processing device 100. It also facilitates the assembly of the clothing processing device 100 and improves installation efficiency.
[0074] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0075] like Figure 3 and Figure 5 As shown, the mounting plate 120 is provided with a first mounting hole 124, which is opposite to the positioning hole 154; the stator assembly 150 is provided with a second mounting hole 162, which is opposite to the positioning hole 154; the garment handling device 100 also includes a fastener 170, which passes through the first mounting hole 124, the positioning hole 154 and the second mounting hole 162.
[0076] In this embodiment, the mounting plate 120 is provided with a first mounting hole 124, which is opposite to the positioning hole 154; the stator assembly 150 is provided with a second mounting hole 162, which is opposite to the positioning hole 154; the garment handling device 100 also includes a fastener 170, which passes through the first mounting hole 124, the positioning hole 154, and the second mounting hole 162. The fastener 170 can cooperate with the first mounting hole 124, the positioning hole 154, and the second mounting hole 162 to achieve radial positioning of the stator assembly 150, improve the stability of the stator assembly 150, reduce structural shaking of the stator assembly 150, and enhance the internal structural stability of the garment handling device 100. Furthermore, the pre-set first mounting hole 124, positioning hole 154, and second mounting hole 162 facilitate the installation of the fastener 170 and provide installation guidance, reducing installation difficulty. When maintaining the garment handling device 100, the fasteners 170 passing through the first mounting hole 124, the positioning hole 154, and the second mounting hole 162 are easy to disassemble, making it convenient for later replacement and maintenance.
[0077] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0078] like Figure 2 and Figure 5 As shown, the mounting part 130 is provided with a mounting groove 134, and part of the rotor core 142 is located in the mounting groove 134.
[0079] In this embodiment, the mounting part 130 is provided with a mounting groove 134, and a portion of the rotor core 142 is located within the mounting groove 134. By providing the mounting groove 134, the rotor core 142 can be guided during installation, thereby improving assembly efficiency. At the same time, the mounting groove 134 can accommodate a portion of the rotor core 142, positioning the rotor core 142 and improving structural stability. It also provides assembly space for the rotor assembly 140, facilitating assembly.
[0080] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0081] like Figure 3 and Figure 5 As shown, the mounting plate 120 also includes a protrusion 126, which is connected to the bottom wall of the mounting groove 134 and protrudes out of the bottom wall of the mounting groove 134 toward the stator core 152. The protrusion 126 is arranged in a ring and surrounds the first bearing chamber 132.
[0082] In this embodiment, the mounting plate 120 also includes a protrusion 126, which is connected to the bottom wall of the mounting groove 134 and protrudes out of the bottom wall of the mounting groove 134 toward the stator core 152. The protrusion 126 is arranged in a ring and surrounds the first bearing chamber 132, which can improve the structural strength, reduce the noise generated by the clothing processing device 100 during operation, and improve the performance.
[0083] By setting the protrusion 126, not only can the rotor assembly 140 and the stator assembly 150 be limited, but the positioning structure can also be simplified. When producing the garment processing device 100, the mounting plate 120 with the protrusion 126 can be produced by sheet metal stamping, thereby reducing production costs and improving production efficiency.
[0084] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0085] like Figure 5 As shown, the mounting part 130, the first positioning part 122, and the protrusion 126 are an integral structure.
[0086] In this embodiment, the mounting portion 130, the first positioning portion 122, and the protrusion 126 are an integrated structure, which improves the stability and robustness of the entire structure. This reduces the risk of performance degradation or failure due to loose or damaged connections between components. The integrated structure makes the installation process simpler and faster. Since individual components do not need to be installed and secured separately, installation steps and time are reduced, while also lowering the error rate during installation. The integrated structure facilitates automation and standardized production during manufacturing, improving production efficiency. Furthermore, by optimizing the structural layout and reducing unnecessary connectors, the overall size and weight can be reduced, thereby saving space and material costs.
[0087] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0088] like Figure 3 and Figure 5 As shown, the first positioning part 122 is arranged around the first mounting hole 124 and extends along the axial direction of the stator core 152 into the positioning hole 154.
[0089] In this embodiment, the first positioning part 122 is arranged around the first mounting hole 124 and extends axially into the positioning hole 154 along the stator core 152. This can improve the structural strength of the mounting plate 120 and the stator assembly 150, while simplifying the positioning structure and reducing costs. Furthermore, the first positioning part 122 surrounding the first mounting hole 124 makes the positioning structure more stable and improves the stability of the first positioning part 122.
[0090] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0091] like Figure 5 As shown, there are multiple first positioning parts 122, and the multiple first positioning parts 122 are arranged circumferentially along the mounting groove 134.
[0092] In this embodiment, there are multiple first positioning parts 122 arranged circumferentially along the mounting groove 134. These multiple first positioning parts 122 can fix the stator core 152, improving structural strength and eliminating the need for additional mounting components. While fixing the stator assembly 150, this also improves the structural strength of the clothing processing device 100, preventing vibrations caused by loose or worn mounting components, reducing noise generated during operation, and improving the device's performance. Simultaneously, the circumferentially arranged first positioning parts 122 can also improve the accuracy of positioning the stator core 152.
[0093] Furthermore, multiple first positioning parts 122 can be provided according to the size of the garment processing device 100 and the usage environment. By providing multiple first positioning parts 122 around the stator core 152, the internal shaking of the garment processing device 100 can be reduced, thereby reducing vibration and noise.
[0094] Specifically, the circumferential direction of the mounting slot 134 is direction C.
[0095] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0096] like Figure 3 As shown, the mounting plate 120 abuts against one side of the stator core 152.
[0097] In this embodiment, the mounting plate 120 abuts against one side of the stator core 152. The mounting plate 120 provides axial support for the stator core 152, thereby positioning the stator assembly 150 axially. This improves the structural strength of the stator assembly 150 and the mounting plate 120, eliminating the need for an additional end cap 160 on the side of the stator assembly 150 near the tub 110. This simplifies the drive motor structure within the garment processing device 100 and reduces its cost. By providing the mounting plate 120, which connects the tub 110 and the rotor assembly 140 respectively, no additional mounting components are needed between the drive motor and the tub 110. This improves the structural strength of the garment processing device 100 while assembling the rotor assembly 140, preventing vibrations caused by loose or worn mounting components. This reduces noise generated during operation and enhances the overall performance.
[0098] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0099] like Figure 3 As shown, the stator assembly 150 also includes an end cover 160, which is fastened to the side of the stator core 152 away from the mounting plate 120, and a second mounting hole 162 is provided on the end cover 160.
[0100] In this embodiment, the stator assembly 150 further includes an end cap 160, which is fastened to the side of the stator core 152 away from the mounting plate 120. A second mounting hole 162 is provided on the end cap 160. By providing the end cap 160, the stator assembly 150 can be fixedly installed, protecting the side of the stator core 152 away from the mounting plate 120, preventing external contaminants and debris from entering the stator assembly 150, facilitating the assembly of the stator assembly 150, and extending the service life of the stator assembly 150.
[0101] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0102] like Figure 3 As shown, the end cap 160 includes a second positioning part 164, which is arranged around the second mounting hole 162 and extends into the positioning hole 154 along the axial direction of the stator core 152.
[0103] In this embodiment, the end cover 160 includes a second positioning portion 164, which is arranged around the second mounting hole 162 and extends axially into the positioning hole 154 along the stator core 152. This can improve the structural strength of the end cover 160 and the stator assembly 150, facilitate installation, simplify the positioning structure between the end cover 160 and the stator assembly 150, and reduce costs.
[0104] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0105] like Figure 2 As shown, the end cover 160 is provided with a second bearing chamber 166, and the rotor assembly 140 also includes a second bearing 148. The second bearing 148 is sleeved on the rotating shaft 144 and located on the side of the rotor core 142 away from the mounting plate 120. At least part of the second bearing 148 is embedded in the second bearing chamber 166.
[0106] In this embodiment, the end cap 160 is provided with a second bearing chamber 166, and the rotor assembly 140 also includes a second bearing 148. The second bearing 148 is sleeved on the rotating shaft 144 and located on the side of the rotor core 142 away from the mounting plate 120. At least a portion of the second bearing 148 is embedded in the second bearing chamber 166. The second bearing 148 can provide support and positioning for the rotor assembly 140, ensuring that the rotating shaft 144 maintains a stable axial and radial position during high-speed rotation, thereby reducing wear and noise caused by vibration or deviation. Furthermore, by embedding the second bearing 148 in the second bearing chamber 166, the installation process of the garment handling device 100 is simplified. At the same time, when the bearing needs to be replaced or repaired, only the end cap 160 needs to be removed, without disassembling the entire rotor assembly 140, thereby improving the convenience and efficiency of maintenance.
[0107] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0108] like Figure 7 As shown, the stator assembly 150 also includes a plastic-coated portion 156, which is coated on the stator core 152, and a second mounting hole 162 is provided on the plastic-coated portion 156.
[0109] In this embodiment, the stator assembly 150 further includes a plastic-coated portion 156, which is coated onto the stator core 152. By providing the plastic-coated portion 156, the stator core 152 can be tightly covered, enhancing the structural stability and integrity of the stator assembly 150 and improving its stability during operation. The second mounting hole 162, located on the plastic-coated portion 156, can improve the assembly efficiency of the stator assembly 150 and reduce the installation cost of the garment handling device 100.
[0110] By setting the plastic coating part 156 to coat the stator core 152, the adaptability of the plastic coating part 156 can be improved, further reducing costs while improving the assembly efficiency of the garment processing device 100.
[0111] This embodiment provides a clothing processing device 100, which, in addition to the technical features of the above embodiments, further includes the following technical features.
[0112] like Figure 1 , Figure 6 and Figure 7 As shown, the stator assembly 150 also includes a support cover 158, which is embedded in the plastic-coated portion 156 and located on the side of the stator core 152 away from the mounting plate 120. The support cover 158 is provided with a third bearing chamber 174. The rotor assembly 140 also includes a third bearing 172, which is sleeved on the shaft 144 and located on the side of the rotor core 142 away from the mounting plate 120. At least part of the third bearing 172 is embedded in the third bearing chamber 174.
[0113] In this embodiment, the stator assembly 150 further includes a support cover 158, which is embedded within the plastic-coated portion 156 and located on the side of the stator core 152 away from the mounting plate 120. This enhances structural stability. The support cover 158 is provided with a third bearing chamber 174. The rotor assembly 140 also includes a third bearing 172, which is sleeved on the rotor shaft 144 and located on the side of the rotor core 142 away from the mounting plate 120. This ensures that the rotor shaft 144 maintains a stable axial and radial position during high-speed rotation, thereby reducing wear and noise caused by vibration or deviation. At least a portion of the third bearing 172 is embedded within the third bearing chamber 174, further enhancing the stability of the rotor assembly 140 during high-speed rotation. The embedding of at least a portion of the third bearing 172 within the third bearing chamber 174 also facilitates the installation and maintenance of the rotor assembly 140.
[0114] Specifically, such as Figure 3 As shown, fastener 170 can be a riveted or threaded connection.
[0115] Specifically, the axial direction of the stator core 152 is the direction indicated by arrow B.
[0116] Specifically, such as Figure 4 As shown, the end cap 160 can prevent contaminants from entering the clothing processing device 100, thus extending the service life of the clothing processing device 100.
[0117] Specifically, such as Figure 5 As shown, the mounting part 130, the first positioning part 122 and the protrusion 126 can be integrally stamped with the mounting plate 120, which makes it easier to achieve automated and standardized production and improves production efficiency.
[0118] Specifically, the stator assembly 150, rotor assembly 140, end cover 160 and mounting plate 120 can be integrated and assembled to improve assembly efficiency.
[0119] In the claims, description, and accompanying drawings of this invention, the term "plural" refers to two or more. Unless otherwise explicitly defined, the terms "upper," "lower," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and simplifying the descriptive process, and are not intended to indicate or imply that the device or element referred to must have the described specific orientation, or be constructed and operated in a specific orientation. Therefore, these descriptions should not be construed as limiting the invention. The terms "connected," "installed," "fixed," etc., should be interpreted broadly. For example, "connected" can be a fixed connection between multiple objects, a detachable connection between multiple objects, or an integral connection; it can be a direct connection between multiple objects or an indirect connection between multiple objects through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in this invention can be understood based on the specific circumstances described above.
[0120] In the claims, description, and accompanying drawings of this invention, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of the invention. In the claims, description, and accompanying drawings of this invention, illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0121] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A garment processing device, characterized in that, include: A bucket body, the bucket body being capable of holding clothing; Mounting plate, which is connected to the barrel body, and the mounting plate includes a mounting part; A rotor assembly connected to the mounting portion and capable of rotating relative to the mounting plate; A stator assembly, which is arranged opposite to the rotor assembly.
2. The garment processing device according to claim 1, characterized in that, The mounting section is provided with a first bearing chamber, and the rotor assembly includes: Rotor core; A rotating shaft, which passes through the rotor core; A first bearing is sleeved on the rotating shaft and located on the side of the rotor core near the mounting plate, with at least a portion of the first bearing embedded in the first bearing chamber.
3. The garment processing device according to claim 2, characterized in that, The stator assembly includes a stator core, and the stator core is provided with a positioning hole that penetrates the stator core axially. The mounting plate also includes a first positioning part, which is embedded in the positioning hole.
4. The garment processing device according to claim 3, characterized in that, The mounting plate is provided with a first mounting hole, which is opposite to the positioning hole; The stator assembly is provided with a second mounting hole, which is opposite to the positioning hole; The garment handling device further includes fasteners, which are inserted into the first mounting hole, the positioning hole, and the second mounting hole.
5. The garment processing apparatus according to claim 4, characterized in that, The mounting section is provided with a mounting groove; Part of the rotor core is located within the mounting slot.
6. The garment processing apparatus according to claim 5, characterized in that, The mounting plate also includes: The protrusion is connected to the bottom wall of the mounting groove and protrudes out of the bottom wall of the mounting groove toward the stator core. The protrusion is arranged in a ring and surrounds the first bearing chamber.
7. The garment processing apparatus according to claim 6, characterized in that, The mounting part, the first positioning part, and the protrusion are an integral structure.
8. The garment processing apparatus according to claim 4, characterized in that, The first positioning part is arranged around the first mounting hole and extends into the positioning hole along the axial direction of the stator core.
9. The garment processing apparatus according to claim 5, characterized in that, The number of the first positioning parts is multiple, and the multiple first positioning parts are arranged circumferentially along the mounting groove.
10. The garment processing apparatus according to claim 3, characterized in that, The mounting plate abuts against one side of the stator core.
11. The garment processing apparatus according to claim 4, characterized in that, The stator assembly further includes: An end cap is attached to the side of the stator core away from the mounting plate, and a second mounting hole is provided on the end cap.
12. The garment processing apparatus according to claim 11, characterized in that, The end cap includes a second positioning portion, which is arranged around the second mounting hole and extends into the positioning hole along the axial direction of the stator core.
13. The garment processing apparatus according to claim 11, characterized in that, The end cover is provided with a second bearing chamber, and the rotor assembly further includes: The second bearing is sleeved on the rotating shaft and located on the side of the rotor core away from the mounting plate, with at least a portion of the second bearing embedded in the second bearing chamber.
14. The garment processing apparatus according to claim 4, characterized in that, The stator assembly further includes: The plastic-coated part is coated on the stator core, and the second mounting hole is provided on the plastic-coated part.
15. The garment processing apparatus according to claim 14, characterized in that, The stator assembly further includes: A support cover, which is embedded in the plastic-coated portion and located on the side of the stator core away from the mounting plate, the support cover being provided with a third bearing chamber; the rotor assembly further includes: The third bearing is sleeved on the rotating shaft and located on the side of the rotor core away from the mounting plate, with at least a portion of the third bearing embedded in the third bearing chamber.