Top plate, base assembly and clothes treatment equipment cleaning system
By setting a top plate and positioning structure on the top of the base assembly, the problem of the lack of a fixing structure for the clothing processing machine base is solved, enabling quick positioning and stable fixing, and improving the safety and aesthetics of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NANJING ROBOROCK INNOVATION TECH CO LTD
- Filing Date
- 2025-05-16
- Publication Date
- 2026-05-26
AI Technical Summary
The existing garment processing machine base lacks a positioning structure, resulting in low fixing efficiency with the garment processing machine, unstable assembly, and safety hazards.
A top plate is provided on the top of the base assembly. The top plate has a positioning structure. The positioning structure abuts against the equipment legs of the garment processing machine to position the garment processing machine. Combined with the cooperation of the guide protrusion and guide hole, it can be quickly fixed.
It improves the fixing efficiency and stability of the garment processing machine and the base assembly, enhances safety, reduces assembly time, and improves the overall aesthetics of the equipment.
Smart Images

Figure CN224280817U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of cleaning appliance technology, and in particular relates to a top plate, base assembly, and clothing treatment equipment cleaning system. Background Technology
[0002] In related technologies, the garment processor can be supported on a base, which has a cavity for accommodating the cleaning station. However, the lack of a positioning structure at the top of the base results in time-consuming fixing of the base and the garment processor, leading to low assembly efficiency. Utility Model Content
[0003] The purpose of this application is to provide a top plate, a base assembly, and a garment processing equipment cleaning system to solve the technical problem in the prior art where the base used to support the garment processing machine lacks a positioning structure for positioning the garment processing machine.
[0004] To achieve the above objectives, the technical solution adopted in this application is as follows:
[0005] The first aspect of this application provides a top plate disposed on the top of a base assembly for supporting a garment processing machine. The top plate is provided with a positioning structure for abutting against the equipment legs of the garment processing machine to position the garment processing machine on the top plate.
[0006] In some implementations, the positioning structure is a stamped protrusion on the top plate.
[0007] In some implementations, the height of the positioning structure is less than the height of the device's feet.
[0008] In some implementations, the positioning structure includes two or more first limiting sides, each pair of first limiting sides being arranged opposite each other along a first direction and abutting against the inner sides of two equipment legs arranged opposite each other along the first direction; and / or, the positioning structure includes two or more second limiting sides, each pair of second limiting sides being arranged opposite each other along a second direction and abutting against the inner sides of two equipment legs arranged opposite each other along the second direction.
[0009] In some implementations, the first direction is perpendicular to the second direction.
[0010] In some implementations, the positioning structure includes at least one positioning protrusion, each positioning protrusion having a first limiting side and / or a second limiting side formed thereon.
[0011] In some implementations, two positioning protrusions opposite each other along a first direction are symmetrically arranged, and / or, two positioning protrusions opposite each other along a second direction are symmetrically arranged.
[0012] In some implementations, the positioning protrusion also includes a connecting side surface. In the same positioning protrusion, one end of the first limiting side is connected to one end of the second limiting side, and the other end of the first limiting side is connected to the second limiting side through the connecting side surface.
[0013] In some implementations, within the same positioning protrusion, the first limiting side and the second limiting side are located on the side away from the central axis of the top plate, relative to the connecting side surface.
[0014] In some implementations, the first limiting side is perpendicular to the second limiting side.
[0015] A second aspect of this application provides a base assembly including an internal frame and a top plate as described in any of the above technical solutions, the top plate being disposed on the upper surface of the internal frame.
[0016] In some implementations, a front frame is included, which is located on one side of the inner frame and the two are connected, and an opening is formed on the front frame.
[0017] In some implementations, the base body includes an internal frame, a left side plate, a right side plate, a back plate, and a top plate. The left side plate, right side plate, back plate, and top plate are all connected to the internal frame. The top plate is located on top of the internal frame. The left side plate and right side plate are arranged opposite each other on both sides of the internal frame along a first direction. The back plate and front side frame are arranged opposite each other on both sides of the internal frame along a second direction.
[0018] In some implementations, a guide protrusion is provided on the top plate, and a guide hole that slides with the guide protrusion is provided on the left side plate or the right side plate; or, a guide hole is provided on the top plate, and a guide protrusion that slides with the guide hole is provided on the left side plate or the right side plate.
[0019] In some implementations, a guide protrusion is provided on the top plate, and a guide hole that slides with the guide protrusion is provided on the inner frame; or, a guide hole is provided on the top plate, and a guide protrusion that slides with the guide hole is provided on the inner frame.
[0020] In some implementations, the guide protrusion is inserted into the guide hole and the length of the guide hole is greater than the diameter of the guide protrusion, and the length direction of the guide hole is along a second direction.
[0021] In some implementations, a limiting plate is provided on the edge of the top plate near the back panel, and the limiting plate abuts against the back panel.
[0022] A third aspect of this application provides a garment processing device, including a garment processing machine and a base assembly as provided in any of the above technical solutions, wherein the garment processing machine is supported on the base assembly and the bottom of the garment processing machine is provided with device support feet.
[0023] The fourth aspect of this application provides a cleaning system, including a floor cleaning device and a clothing treatment device as described above. The base assembly has a receiving cavity for accommodating the floor cleaning device, and an opening communicating with the receiving cavity is formed on the side of the base assembly.
[0024] In some implementations, the ground cleaning equipment includes a cleaning base station and a cleaning robot, with the cleaning base station housed in a receiving cavity and the cleaning robot housed in the cleaning base station.
[0025] The beneficial effects of this application are as follows: The top plate provided in the embodiments of this application utilizes a positioning structure to cooperate with the equipment support feet at the bottom of the garment processing machine, so as to quickly position the garment processing machine on the top plate and facilitate the subsequent fixing of the garment processing machine and the base assembly. Attached Figure Description
[0026] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0027] Figure 1 This is a schematic diagram of the structure of the garment processing equipment provided in the embodiments of this application;
[0028] Figure 2 This is a schematic diagram of the structure of the cleaning system provided in the embodiments of this application;
[0029] Figure 3 An exploded view of the clothing processing equipment and cleaning base station provided in an embodiment of this application;
[0030] Figure 4 An exploded view of the base assembly and the clean base station provided in the embodiments of this application;
[0031] Figure 5 This is a schematic diagram of the base assembly provided in an embodiment of this application;
[0032] Figure 6 This is a front view schematic diagram of the base assembly provided in an embodiment of this application;
[0033] Figure 7 A left-side view of the base assembly provided in an embodiment of this application;
[0034] Figure 8 This is a front view schematic diagram of the garment processing equipment provided in an embodiment of this application;
[0035] Figure 9This is a left-side view of the garment processing device provided in an embodiment of this application;
[0036] Figure 10 This is a partial structural schematic diagram of the garment processing equipment provided in the embodiments of this application;
[0037] Figure 11 An exploded view of the base body and front frame provided in the embodiments of this application;
[0038] Figure 12 An exploded view of the base body provided in an embodiment of this application;
[0039] Figure 13 This is a schematic diagram of the structure of the top plate provided in an embodiment of this application;
[0040] Figure 14 This is a schematic diagram of the structure of the base body provided in an embodiment of this application;
[0041] Figure 15 for Figure 14 A magnified view of a section at point A in the middle;
[0042] Figure 16 for Figure 14 A magnified view of a section at point B in the middle;
[0043] Figure 17 A schematic diagram illustrating the structure of the hook and the mating connector provided in an embodiment of this application;
[0044] Figure 18 This is a schematic diagram of the structure of the right side plate provided in an embodiment of this application;
[0045] Figure 19 A top view of the top plate provided in an embodiment of this application;
[0046] Figure 20 Another top view of the top plate provided in an embodiment of this application;
[0047] Figure 21 A front view schematic diagram of the clothing processing device provided in an embodiment of this application (front frame not shown);
[0048] Figure 22 for Figure 21 A magnified view of a section at point C;
[0049] Figure 23 An exploded view of the clothing processor and base assembly provided in an embodiment of this application from one perspective;
[0050] Figure 24 for Figure 23 A magnified view of a section at point D;
[0051] Figure 25 An exploded view of the clothing processor and base assembly provided in an embodiment of this application from another perspective;
[0052] Figure 26 for Figure 25 A magnified view of a section at point E in the middle;
[0053] Figure 27 An enlarged view showing the connection between the first and second mounting components provided in the embodiments of this application and the equipment support legs;
[0054] Figure 28 A schematic diagram of the structure of the first and second mounting components provided in the embodiments of this application, which are disposed on the internal frame;
[0055] Figure 29 Schematic diagrams of the first and second mounting components provided in the embodiments of this application;
[0056] Figure 30 An exploded view of the fixed structure connecting the garment processing machine and the base assembly according to another embodiment of this application;
[0057] Figure 31 for Figure 30 A magnified view of a section at point F in the middle;
[0058] Figure 32 An enlarged view showing the connection between the snap-fit assembly and the device feet provided in the embodiments of this application;
[0059] Figure 33 This is a top view of the snap-fit connector provided in an embodiment of this application;
[0060] Figure 34 This is a partially enlarged view showing the engagement of the snap-fit assembly with the device feet provided in an embodiment of this application;
[0061] Figure 35 A partially enlarged view showing the mating of the locking device and the base assembly provided in an embodiment of this application;
[0062] Figure 36 This is a schematic diagram of the locking device and the base assembly provided in the embodiments of this application (top plate not shown);
[0063] Figure 37 for Figure 36 A magnified view of a section at point G.
[0064] The following are the labeling elements in the figure:
[0065] 100 - Base assembly; 200 - Clothing processor; 300 - Cleaning base station; 400 - Fixing structure;
[0066] 101 - First side section; 102 - Second side section; 103 - Third side section; 104 - Fourth side section; 105 - Clearance opening;
[0067] 110 - Base body; 120 - Front frame; 130 - Receiving cavity; 140 - Opening; 150 - Mounting hole; 160 - Base support; 170 - Front frame connecting plate;
[0068] 11-Internal frame; 12-Left side panel; 13-Right side panel; 14-Back panel; 15-Top panel; 16-Hook; 17-Matching connector; 18-Guide protrusion; 19-Limiting plate;
[0069] 111 - Vertical beam; 112 - Horizontal beam; 113 - Groove; 114 - Bottom groove;
[0070] 1111 - First vertical beam; 1112 - Second vertical beam; 1113 - Third vertical beam; 1114 - Fourth vertical beam;
[0071] 1121 - First transverse beam; 1122 - Second transverse beam; 1123 - Third transverse beam; 1124 - Fourth transverse beam; 1125 - Fifth transverse beam; 1126 - Sixth transverse beam;
[0072] 1141 - First tank wall; 1142 - Second tank wall;
[0073] 121 - Left side panel main body; 122 - Left side shielding part; 123 - Left shielding flange;
[0074] 131-Right side panel main body; 132-Right side shielding part; 133-Upper right flange; 134-Right shielding flange;
[0075] 141 - Pipe through hole;
[0076] 151-Guide hole; 152-Matching hole; 153-First stamping protrusion; 154-First stamping groove; 155-Second stamping groove; 156-Third stamping groove; 157-Positioning protrusion; 158-Notch;
[0077] 1571 - First limiting side surface; 1572 - Second limiting side surface; 1573 - Connecting side surface; 1574 - First side surface; 1575 - Second side surface; 1576 - Third side surface; 1577 - Fourth side surface;
[0078] 191 - Elongated section; 192 - Protruding section; 193 - Depressed area;
[0079] 21-Gate body;
[0080] 31-Base station door; 32-Dust bin door;
[0081] 41-Equipment support leg; 42-First mounting component; 43-Second mounting component; 44-Snap-fit assembly; 45-Gasket;
[0082] 421 - Anti-rotation protrusion;
[0083] 411-First support leg; 412-Second support leg; 413-Slotted support leg; 414-Opening support leg; 415-Mounting hole for support leg; 416-Support leg support part; 417-Connecting part for support leg;
[0084] 4111 - Positioning groove;
[0085] 4171 - Connecting rod; 4172 - Upper limit position;
[0086] 41721 - Disc-shaped segment; 41722 - Connecting segment;
[0087] 441 - Snap-on connector; 442 - Locking fastener;
[0088] 4411 - Snap-fit notch; 4412 - First snap-fit area; 4413 - Second snap-fit area; 4414 - Third snap-fit area; 4415 - Snap-fit assembly hole;
[0089] 44111 - First wall surface of the notch; 44112 - Second wall surface of the notch; 44113 - Connecting wall surface of the notch; 44114 - Free edge of the snap-fit component;
[0090] 4421 - First locking part; 4422 - Second locking part; 4423 - Anti-rotation boss. Detailed Implementation
[0091] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be further described in detail below with reference to the accompanying drawings. The embodiments described with reference to the accompanying drawings are exemplary and intended to explain this application, and should not be construed as limiting this application.
[0092] In the description of this application, it should be understood that the terms "length", "width", "thickness", "top", "bottom", "inner", "outer", "upper", "lower", "left", "right", 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 application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0093] To facilitate a clear description of the technical solutions of this application, the terms "first" and "second" are used to distinguish identical or similar items with essentially the same function and effect. Those skilled in the art will understand that the terms "first" and "second" do not limit the quantity or execution order, and that the terms "first" and "second" do not necessarily imply that they are different.
[0094] In this application, unless otherwise expressly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0095] In this application, "and / or" is merely a way of describing the relationship between related objects, indicating that three relationships can exist; for example, A and / or B can represent three cases: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects have an "or" relationship.
[0096] It should be noted that, in this application, the words "in one embodiment," "exemplarily," and "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described in this application as "in one embodiment," "exemplarily," or "for example" should not be construed as being more preferred or advantageous than other embodiments or designs. Specifically, the use of words such as "in one embodiment," "exemplarily," and "for example" is intended to present the relevant concepts in a specific manner.
[0097] In related technologies, a garment processor can be supported on a base, which has a cavity forming a housing for the cleaning station. However, the lack of a fixed structure between the base and the garment processor poses a safety hazard. The above does not constitute an admission of prior art in this application.
[0098] This application provides a fixing structure, a garment processing device, and a cleaning system that can fix the garment processing machine on the base assembly, so that the garment processing machine is stably supported on the base assembly, thereby improving safety.
[0099] Please see Figures 1-3 , Figure 1 This is a schematic diagram of the structure of the garment processing equipment provided in the embodiments of this application. Figure 2 This is a schematic diagram of the cleaning system provided in an embodiment of this application. Figure 3This is an exploded view of the clothing processing device and cleaning base station provided in an embodiment of this application. For ease of description, in this embodiment, the width direction of the clothing processing device is defined as the X-axis direction, the length direction of the clothing processing device, i.e., the depth direction of the roller, is defined as the Y-axis direction, and the height direction of the clothing processing device is defined as the Z-axis direction, wherein the X-axis direction, Y-axis direction, and Z-axis direction are mutually perpendicular.
[0100] Please see Figure 1 This application provides a garment processing device, including a garment processing machine 200 and a base assembly 100. The garment processing machine 200 is supported on the base assembly 100, that is, the base assembly 100 is used to support the garment processing machine 200.
[0101] The specific functions of the garment processor 200 are not limited. For example, the garment processor 200 may have washing and / or drying functions. That is to say, the garment processor 200 can be a washing machine, a dryer, or a washer-dryer combo, etc.
[0102] The base assembly 100 can also receive floor cleaning equipment, including a cleaning base station and a cleaning robot. The base assembly 100 is used to place the floor cleaning equipment below the garment processor 200. In one embodiment of this application, please refer to... Figure 2 The diagram illustrates that the base assembly 100 houses the cleaning base station 300. On the one hand, this reduces the indoor space occupied by the cleaning base station 300; on the other hand, the clothes processor 200 is placed near the faucet and floor drain for easy water intake and drainage, thus facilitating the use of the existing water intake and drainage of the clothes processor 200 to supply and drain water to the cleaning base station 300.
[0103] It should be noted that the clothing processing equipment and the cleaning base station 300 can form a cleaning system, or the clothing processing equipment, the cleaning base station 300, and the cleaning robot that works in conjunction with the cleaning base station 300 can form a cleaning system.
[0104] In this embodiment, the cleaning base station 300 refers to a station that houses idle cleaning robots. The cleaning base station 300 serves as a docking station for the cleaning robots, performing preset operations such as charging them, collecting dust from their dustbins, and refilling their water supply. In this embodiment, the cleaning base station 300 can also clean the cleaning module on the cleaning robot. The cleaning module is located on the bottom of the cleaning robot and is used to clean the floor. The cleaning module can include any structure capable of cleaning the floor, such as a mop, rag, sponge, brush, roller, roller brush, or side brush; this application does not limit its scope. The cleaning robot can be any of the following: a sweeping robot, a mopping robot, a floor scrubbing robot, or a combined sweeping and mopping robot.
[0105] The cleaning base station 300 provided in this application embodiment has automatic water supply and drainage functions. Automatic water supply means that it can control the entry of external water sources to clean the cleaning robot's rags and provide clean water to the cleaning robot. Automatic water drainage is mainly to discharge the sewage generated by the cleaning base station 300 and the cleaning robot.
[0106] Regarding the automatic water supply of the cleaning base station 300, specifically, the internal water supply system of the cleaning base station 300 is connected to the external water supply system of the household or building via pipes. In some embodiments, the internal water supply system of the cleaning base station 300 includes components such as an inlet solenoid valve and a water level sensor. When the water level in the clean water tank of the cleaning base station 300 drops to a certain level, the water level sensor sends a signal to the controller of the cleaning base station 300. The controller controls the inlet solenoid valve to open, and water enters the clean water tank under the action of pressure difference. When the water level reaches a set height, the water level sensor sends a signal again, and the controller controls the inlet solenoid valve to close, thereby completing the automatic water supply process.
[0107] Regarding the automatic drainage of the cleaning base station 300, specifically, the internal drainage system of the cleaning base station 300 discharges wastewater into a sewer or other drainage facility through drainage pipes. In some embodiments, wastewater in the cleaning tray of the cleaning base station 300 is discharged to the drainage pipe through the internal drainage system under the action of gravity; in other specific examples, the internal drainage system includes a drainage pump, which is used to pump out the wastewater in the cleaning tray of the cleaning base station 300.
[0108] The clean base station 300 can be embedded within the base assembly 100. For details, please refer to [link / reference]. Figure 1 The base assembly 100 has a receiving cavity 130, and the cleaning base station 300 can be installed in the receiving cavity 130; one side of the base assembly 100 is provided with an opening 140 that communicates with the receiving cavity 130, and the cleaning robot can enter and exit the cleaning base station 300 through the opening 140.
[0109] In some embodiments, see Figure 3 The cleaning base station 300 includes a base station door 31 and a dust bin door 32, with the dust bin door 32 positioned above the base station door 31. When the cleaning base station 300 receives an instruction from the cleaning robot to return to the cleaning base station 300, the controller of the cleaning base station 300 controls the base station door 31 to open, allowing the cleaning robot to enter the cleaning base station 300. The dust collection bag of the cleaning base station 300 is located inside the dust bin door 32; opening the dust bin door 32 allows the dust collection bag to be removed from the cleaning base station 300. Alternatively, in other embodiments, the cleaning base station 300 may only include the dust bin door 32, i.e., without a base station door 31.
[0110] In some embodiments, the opening 140 is along... Figure 3 The width along the X-axis is greater than the width of the clean base station 300, and the opening 140 is along... Figure 3 The height in the Z-axis direction is greater than the height of the cleaning base station 300, so that the cleaning base station 300 can be inserted into the receiving cavity 130 through the opening 140.
[0111] In some embodiments, the width of the opening 140 is slightly larger than the width of the cleaning base station 300, and the height of the opening 140 is slightly larger than the height of the cleaning base station 300, to avoid a large gap between the opening 140 and the cleaning base station 300 affecting the aesthetics of the garment processing equipment. In some embodiments, the difference between the width of the opening 140 and the width of the cleaning base station 300 is in the range of 5mm to 10mm, for example, the difference between the width of the opening 140 and the width of the cleaning base station 300 is 5mm to 6mm, 7mm to 8mm, or 9mm to 10mm, etc.; the difference between the height of the opening 140 and the height of the cleaning base station 300 is in the range of 5mm to 10mm, for example, the difference between the height of the opening 140 and the height of the cleaning base station 300 is 5mm to 6mm, 7mm to 8mm, or 9mm to 10mm, etc.
[0112] Please see Figures 4-5 , Figure 4 An exploded view of the base assembly 100 and the clean base station 300 provided in the embodiments of this application; Figure 5 This is a schematic diagram of the base assembly 100 provided in an embodiment of this application.
[0113] In some embodiments, see Figure 5The base assembly 100 has a clearance opening 105 at its bottom, which communicates with the receiving cavity 130. When the cleaning base station 300 is located within the receiving cavity 130, it is directly supported on the ground. In this embodiment, the base assembly 100 does not include a base plate, allowing the cleaning base station 300 within the receiving cavity 130 to be directly supported on the ground. This reduces the height of the base assembly 100, thereby reducing the height of the garment processing equipment. The lower the height of the base assembly 100, the lower the center of gravity of the garment processing machine 200, and the higher the stability of the garment processing machine 200 during operation.
[0114] Please see Figure 4 and Figure 5 The base assembly 100 includes a first side portion 101, a second side portion 102, a third side portion 103, and a fourth side portion 104. The first side portion 101 and the third side portion 103 are disposed opposite each other, and the second side portion 102 and the fourth side portion 104 are disposed opposite each other. An opening 140 for the base assembly 100 is provided on the first side portion 101. In some embodiments, the distance between the outer surface of the first side portion 101 and the inner surface of the third side portion 103 is perpendicular to the distance along the cleaning base station 300. Figure 4 The lengths in the Y-axis direction are similar. Here, it should be noted that when the inner surface of the third side 103 is not planar, the distance between the outer surface of the first side 101 and the inner surface of the third side 103 refers to the minimum distance between the outer surface of the first side 101 and the inner surface of the third side 103.
[0115] This can be understood as follows: when the cleaning base station 300 is located in the receiving cavity 130 and the rear side of the cleaning base station 300 is in contact with the third side 103, the cleaning base station 300 slightly protrudes from the first side 101, or the front side of the cleaning base station 300 is flush with the outer side of the first side 101, or the outer side of the first side 101 slightly protrudes from the front side of the cleaning base station 300.
[0116] In some embodiments, the distance between the outer surface of the first side portion 101 and the inner surface of the third side portion 103 is perpendicular to the distance along the cleaning base station 300. Figure 4 The difference between the lengths in the Y-axis direction is between 0mm and 10mm. For example, the difference can be between 0mm and 2mm, 3mm and 4mm, 5mm and 7mm, or 9mm and 10mm, etc.
[0117] In this embodiment, the distance between the outer surface of the first side 101 and the inner surface of the third side 103 is set to be along the cleaning base station 300. Figure 4 The lengths in the Y-axis direction are similar to improve the aesthetics of the clean base station 300 when it is located in the base assembly 100.
[0118] Please see Figures 6-7 , Figure 6 This is a front view schematic diagram of the base assembly 100 provided in an embodiment of this application; Figure 7 This is a left-side view of the base assembly 100 provided in an embodiment of this application.
[0119] In some embodiments, the width a1 of the base assembly 100 ranges from 550mm to 630mm, the length b1 of the base assembly 100 ranges from 560mm to 850mm, and the height c1 of the base assembly 100 ranges from 300mm to 400mm.
[0120] For example, the width a1 of the base assembly 100 is 595mm, the length b1 of the base assembly 100 is 610mm, and the height c1 of the base assembly 100 is 345.4mm.
[0121] In some embodiments, the width a2 of the opening 140 in the base assembly 100 ranges from 400mm to 500mm, and the height c2 of the opening 140 ranges from 250mm to 310mm.
[0122] For example, the width a2 of the opening 140 in the base assembly 100 is 440mm, and the height c2 of the opening 140 is 281.6mm.
[0123] In some embodiments, the base assembly 100 supports one or more garment processing machines 200, for example, the base assembly 100 supports one or two garment processing machines 200. For ease of description, the following description mainly uses the example of the base assembly 100 supporting one garment processing machine 200 to illustrate the garment processing equipment provided in the embodiments of this application.
[0124] Please see Figures 8-9 , Figure 8 This is a front view schematic diagram of the garment processing equipment provided in an embodiment of this application; Figure 9 This is a left-side view of the garment processing device provided in an embodiment of this application.
[0125] In some embodiments, the garment processing machine 200 Figure 8 The width along the X-axis is not greater than the width of the base assembly 100 along the X-axis, and the width of the garment processor 200 along the X-axis. Figure 9 The length in the Y-axis direction is not greater than the length of the base assembly 100 in the Y-axis direction, so as to facilitate the stable support of the garment processing machine 200 on the base assembly 100.
[0126] In some embodiments, the width a3 of the garment processor 200 ranges from 240mm to 600mm, the length b1 of the garment processor 200 ranges from 300mm to 850mm, and the height c1 of the base assembly 100 ranges from 380mm to 900mm.
[0127] For example, the width a3 of the garment processor 200 is 595mm, the length b1 of the garment processor 200 is 610mm, and the height c1 of the base assembly 100 is 830mm.
[0128] The garment processor 200 includes a door 21. In some embodiments, the door 21 of the garment processor 200 is located on the top of the garment processor 200. In other embodiments, the door 21 of the garment processor 200 is located on the front side of the garment processor 200.
[0129] When the door 21 of the garment processor 200 is located on the front side of the garment processor 200, in some embodiments, the door 21 of the garment processor 200 and the opening 140 on the base assembly 100 are located on the same side of the garment processing device; in other embodiments, the door 21 of the garment processor 200 and the opening 140 on the base assembly 100 are located on different sides of the garment processing device, for example, the opening 140 on the base assembly 100 is located on the left or right side of the garment processing device.
[0130] Regarding the relative positional relationship between the door 21 of the garment processor 200 and the opening 140 on the base assembly 100, it can be reasonably set according to the design of the user's room to meet the needs of different users. Furthermore, for ease of description, the following description mainly uses the example of the door 21 of the garment processor 200 and the opening 140 on the base assembly 100 being located on the same side of the garment processing device to describe the garment processing equipment provided in this application embodiment.
[0131] Please see Figures 10-12 , Figure 10 This is a partial structural schematic diagram of the garment processing equipment provided in the embodiments of this application; Figure 11 An exploded view of the base body 110 and the front frame 120 provided in the embodiments of this application;
[0132] Figure 12 This is an exploded view of the base body 110 provided in the embodiments of this application. The side of the base assembly 100 with the opening 140 is defined as the front side of the base assembly 100. The first direction refers to the X-axis direction, i.e., the left-right direction of the base assembly 100; the second direction refers to the Y-axis direction, i.e., the front-back direction of the base assembly 100; and the third direction refers to the Z-axis direction, i.e., the height direction of the base assembly 100.
[0133] In some embodiments, the base assembly 100 is assembled from a frame and sheet metal. The frame mainly serves a supporting function, while the sheet metal, supported on the frame, mainly serves an aesthetic function.
[0134] In some embodiments, see Figure 10The base assembly 100 includes a base body 110 and a front frame 120. The front frame 120 is disposed on one side of the base body 110 and the two are connected. An opening 140 of the base assembly 100 is formed on the front frame 120.
[0135] In some embodiments, see Figure 10 The base body 110 has multiple base legs 160 at its bottom, which are used to support the base body 110.
[0136] In some embodiments, four base legs 160 are provided on the base body 110, and the four base legs 160 are respectively located at the four corners of the bottom of the base body 110.
[0137] In some embodiments, the bottom of the front frame 120 is flush with the bottom of the base body 110.
[0138] In some embodiments, the top of the front frame 120 protrudes beyond the top of the base body 110, that is, the height of the top of the front frame 120 is greater than the height of the top of the base body 110.
[0139] Typically, a support leg 41 is installed at the bottom of the garment processing machine 200, and the support leg 41 is supported on the base body 110. Please refer to [link / reference]. Figure 11 , Figure 11 This is an exploded view of the base body 110 and the front frame 120. Figure 11 The explosion direction of the front side frame 120 is away from the direction indicated by the arrow on the Y-axis. Figure 10 As can be seen, the front frame 120 can be used to cover the equipment support 41 at the bottom of the clothing processing machine 200.
[0140] This example sets the top of the front frame 120 to protrude from the top of the base body 110, so that the top of the front frame 120 can cover the equipment support 41 at the bottom of the clothing processing machine 200, thereby improving the aesthetics of the clothing processing equipment.
[0141] In some embodiments, see Figure 11 A front side frame connecting plate 170 is provided on the side of the front side frame 120 facing the base body 110. The front side frame connecting plate 170 can be fixed to the base body 110 by means of connectors such as screws or bolts.
[0142] Regarding the base body 110, please refer to some embodiments. Figure 12The base body 110 includes an internal frame 11, a left side plate 12, a right side plate 13, a top plate 15, and a back plate 14. The top plate 15 is located on top of the internal frame 11, the left side plate 12 and the right side plate 13 are located on the left and right sides of the internal frame 11, respectively, and the back plate 14 is located opposite to the front frame 120 and is located on the rear side of the internal frame 11. The left side plate 12, the right side plate 13, the top plate 15, and the back plate 14 are all connected to the internal frame 11.
[0143] In some embodiments, the left side plate 12, right side plate 13, top plate 15, and rear back plate 14 are provided with stamped protrusions and / or stamped grooves to improve the strength of the plates.
[0144] Regarding stamping protrusions and stamping grooves, it can be understood that the grooves recessed inward toward the base body 110 on the side plate are called stamping grooves, and the parts protruding outward toward the base body 110 on the side plate are called stamping protrusions.
[0145] Please see Figure 13 This is a schematic diagram of the structure of the top plate 15 provided in the embodiment of this application. Taking the top plate 15 as an example, the top plate 15 is provided with stamped protrusions and / or stamped grooves. That is, only stamped protrusions can be provided on the top plate 15, or only stamped grooves can be provided on the top plate 15, or both stamped protrusions and stamped grooves can be provided on the top plate 15.
[0146] In some embodiments, see Figure 13 The top plate 15 has a first stamped protrusion 153 in the middle area, and the area of the first stamped protrusion 153 accounts for more than half of the area of the top plate 15.
[0147] In some embodiments, the first stamping protrusion 153 is a rectangle with rounded corners.
[0148] In some embodiments, stamping protrusions and / or stamping grooves are provided on other areas of the top plate 15 besides the first stamping protrusion 153.
[0149] In some embodiments, the first stamping protrusion 153 is provided with a stamping protrusion and / or a stamping groove.
[0150] Specifically, please see Figure 13 The first stamping protrusion 153 is provided with a stamping groove, which includes a first stamping groove 154, a second stamping groove 155 and a third stamping groove 156. The second stamping groove 155 is located on the first stamping groove 154, and the third stamping groove 156 is not located on the first stamping groove 154. There are multiple third stamping grooves 156 and the third stamping grooves 156 are arranged along the outer periphery of the first stamping groove 154.
[0151] In some embodiments, see Figure 13The first stamping groove 154 is circular, and the area of the first stamping groove 154 accounts for more than half of the area of the first stamping protrusion 153.
[0152] In some embodiments, the shape of the second stamping groove 155 mainly serves a decorative purpose; for example, the shape of the second stamping groove 155 may be used as a product identifier.
[0153] In some embodiments, see Figure 13 The third stamping groove 156 is strip-shaped.
[0154] In some embodiments, see Figure 13 There are four third stamping grooves 156, and the four third stamping grooves 156 are respectively close to the corners corresponding to the first stamping protrusions 153.
[0155] In some embodiments, see Figure 13 Two third stamping grooves 156 are arranged in parallel along the diagonal direction of the top plate 15.
[0156] Regarding the internal frame 11, in some embodiments, the internal frame 11 includes vertical beams 111 and horizontal beams 112, and the internal frame 11 is spliced together by multiple vertical beams 111 and multiple horizontal beams 112.
[0157] When the garment processing machine 200, which has equipment support legs 41 at the bottom, is supported on the base assembly 100, each equipment support leg 41 is respectively positioned above the corresponding beam.
[0158] In some embodiments, see Figure 12The internal frame 11 includes four vertical beams 111, each with a base support 160 mounted below it. The four vertical beams 111 are designated as a first vertical beam 1111, a second vertical beam 1112, a third vertical beam 1113, and a fourth vertical beam 1114, located at the four apex corners of the rectangle. The internal frame 11 also includes four horizontal beams 112, designated as a first horizontal beam 1121, a second horizontal beam 1122, a third horizontal beam 1123, and a fourth horizontal beam 1124. The first horizontal beam 1121 is positioned between the first vertical beams 1111 and the second vertical beam 111. The top of the first horizontal beam 1121 is connected to the first vertical beam 1111 and the second vertical beam 1112 at both ends. The second horizontal beam 1122 is located on the top of the third vertical beam 1113 and the fourth vertical beam 1114, and the two ends of the second horizontal beam 1122 are connected to the third vertical beam 1113 and the fourth vertical beam 1114 at both ends. The third horizontal beam 1123 and the fourth horizontal beam 1124 are connected to the first horizontal beam 1121 and the second horizontal beam 1122 respectively. The first horizontal beam 1121, the second horizontal beam 1122, the third horizontal beam 1123 and the fourth horizontal beam 1124 form a rectangle.
[0159] In some embodiments, see Figure 12 The internal frame 11 also includes a transverse beam 112 (fifth transverse beam 1125) connecting the first vertical beam 1111 and the fourth vertical beam 1114, and a transverse beam 112 (sixth transverse beam 1126) connecting the second vertical beam 1112 and the third vertical beam 1113, to improve the strength of the internal frame 11.
[0160] In some embodiments, both the vertical beam 111 and the horizontal beam 112 are made of aluminum profiles.
[0161] Please see Figures 14-18 , Figure 14 This is a schematic diagram of the structure of the base body 110 provided in the embodiments of this application; Figure 15 for Figure 14 A magnified view of a section at point A in the middle; Figure 16 for Figure 14 A magnified view of a section at point B in the middle;
[0162] Figure 17 A schematic diagram of the structure of the hook 16 and the mating connector 17 provided in the embodiments of this application; Figure 18 This is a schematic diagram of the structure of the right side plate 13 provided in an embodiment of this application.
[0163] In some embodiments, see Figure 14The top of the left side plate 12 protrudes upward from the top plate 15, meaning the height of the left side plate 12 is higher than the height of the top plate 15; the top of the right side plate 13 protrudes upward from the top plate 15, meaning the height of the right side plate 13 is higher than the height of the top plate 15, in order to cover the equipment support legs 41 at the bottom of the garment processing machine 200, thereby improving the aesthetics of the garment processing equipment.
[0164] Regarding the left side panel 12, please refer to [link / reference]. Figure 14 The left side panel 12 includes a left side panel main body 121 and a left side blocking part 122. The left side blocking part 122 is disposed above the left side panel main body 121 and is used to block the equipment support leg 41 at the bottom of the clothing processing machine 200.
[0165] In some embodiments, the left side panel main body 121 and the left side shielding part 122 are integrally formed; in other embodiments, the left side panel main body 121 and the left side shielding part 122 are separate structures. Please refer to [link to relevant documentation]. Figure 14 This illustrates that the main body 121 of the left side panel and the left side blocking part 122 are separate structures. Figure 14 The diagram shows the left-side blocking part 122 located on the top plate 15. The following explanation mainly focuses on the left-side plate 12, taking the left-side plate main body 121 and the left-side blocking part 122 as separate structures.
[0166] In some embodiments, see Figure 14 At least one end of the left blocking part 122 is folded inward vertically to form a left blocking flange 123, and the left blocking flange 123 is connected to the equipment support 41 at the bottom of the clothing processing machine 200 by a connector.
[0167] In some embodiments, the bottom edge of the left blocking portion 122 forms an inwardly vertically folded flange, which is connected to the inner frame 11 by a connector; in other embodiments, a hook 16 is formed on the inner side of the left blocking portion 122, which is hung on the connector fixed to the inner frame 11. See [link to relevant documentation]. Figure 14 The diagram illustrates the hook 16 located inside the left-side obstruction 122. The connector that mates with the hook 16 is the mating connector 17; please refer to [link / reference]. Figure 17 , Figure 17 The diagram shows hook 16 hanging on the mating connector 17.
[0168] In some embodiments, a plurality of hooks 16 are spaced apart on the inner side of the left side shield 122, and each hook 16 is respectively hung on a corresponding mating connector 17. For example, please refer to Figure 14 Three hooks 16 are provided at intervals on the inner side of the left side shield 122.
[0169] In some embodiments, the circumferential edge of the left side panel body 121 is formed with an inwardly vertically folded flange, which is used to fix the left side panel body 121 to the inner frame 11 by means of a connector.
[0170] In some embodiments, see Figure 14 The left side panel body 121 is provided with a left upper flange, which is attached to the top surface of the inner frame 11. The top plate 15 covers the left upper flange. The top plate 15 and the left upper flange can be fixed to the inner frame 11 by means of connectors such as bolts or screws passing through the top plate 15, covering the left upper flange and inserting into the inner frame 11.
[0171] In some embodiments, a mating connector 17 that mates with the hook 16 passes through the top plate 15, the upper left flange and inserts into the inner frame 11 to secure the top plate 15 and the upper left flange to the inner frame 11.
[0172] Please return to the previous page. Figure 13 The diagram shows the mating hole 152 near the edge of the top plate 15, through which the mating hole 152 is fitted with the mating connector 17.
[0173] Regarding the right side panel 13, specifically, the right side panel 13 includes a right side panel main body 131 and a right side blocking part 132. The right side blocking part 132 is located above the right side panel main body and is used to block the equipment support leg 41 at the bottom of the clothing processing machine 200.
[0174] In some embodiments, the right side panel main body 131 and the right side shielding part 132 are integrally formed; in other embodiments, the right side panel main body 131 and the right side shielding part 132 are separate structures, see [link to relevant documentation]. Figure 14 This illustrates that the main body 131 of the right side panel and the right side shielding part 132 are separate structures. Figure 14 The diagram shows the right-side blocking part 132 located on the top plate 15. The following explanation mainly focuses on the right-side plate 13, taking the right-side plate main body 131 and the right-side blocking part 132 as separate structures.
[0175] In some embodiments, at least one end of the right-side blocking portion 132 is folded inward vertically to form a right blocking flange 134, and the right blocking flange 134 is connected to the device support 41 at the bottom of the garment processing machine 200 via a connector.
[0176] In some embodiments, the bottom edge of the right-side blocking portion 132 forms an inwardly vertically folded flange, which is connected to the inner frame 11 by a connector; in other embodiments, a hook 16 is formed on the inner side of the right-side blocking portion 132, which is hung on a connector fixed to the inner frame 11, and the connector that cooperates with the hook 16 is a mating connector 17.
[0177] In some embodiments, a plurality of hooks 16 are provided at intervals on the inner side of the right-side blocking portion 132, and each hook 16 is hung on a corresponding mating connector 17.
[0178] In some embodiments, the circumferential edge of the right side panel body 131 is formed with an inwardly vertically folded flange, which is used to fix the right side panel body 131 to the inner frame 11 by means of a connector.
[0179] In some embodiments, see Figure 18 The right side panel body 131 is provided with an upper right flange 133, which fits against the top surface of the inner frame 11. The top plate 15 covers the upper right flange 133. By using connectors such as bolts or screws to pass through the top plate 15 and the upper right flange 133 and insert them into the inner frame 11, the top plate 15 and the upper right flange 133 can be fixed to the inner frame 11.
[0180] In some embodiments, a mating connector 17 that engages with the hook 16 passes through the top plate 15, the upper right flange 133 and is inserted into the inner frame 11 to secure the top plate 15 and the upper right flange 133 to the inner frame 11.
[0181] Regarding rear panel 14, please refer to Figure 14 In some embodiments, the back panel 14 is provided with a pipe through hole 141, through which a water inlet pipe or a water outlet pipe passes.
[0182] like Figure 14 As shown, the back panel 14 is provided with two pipe through holes 141. The two pipe through holes 141 are close to the bottom of the back panel 14 and are set far apart. One of the pipe through holes 141 is connected to the internal water supply system of the cleaning base station 300 through a water inlet pipe, and the other pipe through hole 141 is connected to the internal drainage system of the cleaning base station 300 through a drainage pipe.
[0183] In some embodiments, multiple connectors are provided on the left and right sides of the back panel 14 along the height direction to fix the back panel 14 to the inner frame 11.
[0184] Regarding the assembly of the base body 110, when the left side plate 12 and the right side plate 13 are separate structures, in some embodiments, the internal frame 11 is first assembled using multiple vertical beams 111 and multiple horizontal beams 112. Then, the main body 121 of the left side plate and the main body 131 of the right side plate are installed on the internal frame 11. Next, the back panel 14 is installed on the internal frame 11, followed by the top plate 15. Then, the left side shielding part 122 and the right side shielding part 132 are installed on the internal frame 11, and finally, the front side frame 120 is installed. Specifically, after installing the main body 121 of the left side plate and the main body 131 of the right side plate on the internal frame 11, the top plate 15 can be installed first, followed by the back panel 14.
[0185] Regarding the assembly of the base body 110, when the left side plate 12 and the right side plate 13 are an integral structure, in some embodiments, the internal frame 11 is first assembled using multiple vertical beams 111 and multiple horizontal beams 112. Then, the left side plate 12 and the right side plate 13 are installed on the internal frame 11, followed by the back plate, the top plate 15, and finally the front side frame 120. Alternatively, after installing the left side plate 12 and the right side plate 13 on the internal frame 11, the top plate 15 can be installed first, followed by the back plate 14.
[0186] Regarding the top plate 15, in some embodiments, a guide protrusion 18 is provided on the top plate 15, and a guide hole 151 that mates with the guide protrusion 18 is provided on the inner frame 11, the left side plate 12, or the right side plate 13. The guide protrusion 18 is inserted into the guide hole 151, and the length of the guide hole 151 is greater than the diameter of the guide protrusion 18. The length direction of the guide hole 151 is along the second direction (i.e., Figure 14 (in the direction of the Y-axis); or, a guide hole 151 is provided on the top plate 15, and a guide protrusion 18 that mates with the guide hole 151 is provided on the inner frame 11, the left side plate 12, or the right side plate 13. The guide protrusion 18 is inserted into the guide hole 151, and the length of the guide hole 151 is greater than the diameter of the guide protrusion 18. The length direction of the guide hole 151 is along the second direction (i.e., the direction of the Y-axis). Figure 14 (The direction of the Y-axis). The following explanation mainly takes the top plate 15 with guide holes 151 as an example.
[0187] Please see Figure 15 , Figure 15 The diagram illustrates the guide hole 151 and the guide protrusion 18 located in the guide hole 151. When installing the top plate 15, the guide protrusion 18 can be inserted into the guide hole 151 first, and then the top plate 15 can be pushed horizontally along the second direction. The guide protrusion 18 moves along the length direction of the guide hole 151 until the top plate 15 is pushed into place.
[0188] In some embodiments, please return to see Figure 13Guide holes 151 are provided on both the left and right sides (i.e. both sides along the first direction) of the top plate 15, and there is one or more guide holes 151 on each side of the top plate 15; in other embodiments, one of the left and right sides of the top plate 15 is provided with a guide hole 151, and there is one or more guide holes 151.
[0189] Please see Figure 13 ,exist Figure 13 In the example, the top plate 15 has guide holes 151 on both sides along the left and right directions, and there are two guide holes 151 on each side. Each guide hole 151 corresponds to a guide protrusion 18.
[0190] In some embodiments, see Figure 13 The guide hole 151 on the top plate 15 is along the front-rear direction of the top plate 15 (i.e., Figure 13 The Y-axis direction is respectively set between the two mating sockets 152.
[0191] In some embodiments, the guide protrusion 18 may be provided on the left side plate 12 and / or the right side plate 13. That is, when a guide hole 151 is provided near the left edge of the top plate 15, a guide protrusion 18 is provided on the upper left flange of the left side plate 12; when a guide hole 151 is provided near the right edge of the top plate 15, a guide protrusion 18 is provided on the upper right flange 133 of the right side plate 13; when both the left and right edges of the top plate 15 are provided with guide holes 151, a guide protrusion 18 is provided on the upper left flange of the left side plate 12 and the upper right flange 133 of the right side plate 13. In some embodiments, the guide protrusion 18 on the upper left flange is integrally formed with the upper left flange, and the guide protrusion 18 on the upper right flange 133 is integrally formed with the upper right flange 133.
[0192] In some embodiments, the guide protrusion 18 may also be provided on the inner frame 11. For example, when the left side plate 12 and the right side plate 13 are integral structures, the guide protrusion 18 may be provided on the inner frame 11. In some embodiments, the guide protrusion 18 is integrally formed with the inner frame 11.
[0193] In some embodiments, the cross-sectional shape of the guide protrusion 18 is circular.
[0194] In some embodiments, the guide hole 151 is shaped like a racetrack.
[0195] In this embodiment, by providing matching guide holes 151 and guide protrusions 18, the installation of the top plate 15 is facilitated and the installation efficiency is improved.
[0196] In some embodiments, see Figure 14A limiting plate 19 is provided on the edge of the top plate 15 near the back plate 14, and the limiting plate 19 abuts against the back plate 14.
[0197] When installing the top plate 15, the guide protrusion 18 can be inserted into the guide hole 151 first, and then the top plate 15 can be pushed forward horizontally along the second direction. The guide protrusion 18 moves along the length direction of the guide hole 151 until the limiting plate 19 abuts against the back plate 14, and then the top plate 15 is pushed into position.
[0198] In some embodiments, the limiting plate 19 is integrally formed with the back plate 14, and the limiting plate 19 is a flange with the top vertically downward.
[0199] In some embodiments, see Figure 14 and Figure 16 The limiting plate 19 is provided with mounting holes 150. A connector passes through the mounting holes 150 and the back panel 14 and is inserted into the inner frame 11 to fix the limiting plate 19.
[0200] In some embodiments, the top plate 15 has one or more mounting holes 150 on the side opposite to the limiting plate 19, through which a connector can pass to connect to the inner frame 11. See also... Figure 14 This illustrates that multiple mounting holes 150 are spaced apart along the X-axis on the side of the top plate 15 away from the limiting plate 19.
[0201] Regarding the limiting plate 19, in some embodiments, a portion of the limiting plate 19 is recessed toward the rear back plate 14 to form a recessed area 193, and the recessed area 193 abuts against the rear back plate 14.
[0202] In some embodiments, see Figure 14 and Figure 16 One or more recessed areas 193 are provided on the limiting plate 19 along the first direction.
[0203] In some embodiments, the recessed area 193 is formed by stamping.
[0204] In some embodiments, see Figure 14 and Figure 16 A mounting hole 150 is provided on the recessed area 193.
[0205] In some embodiments, see Figure 14 and Figure 16 The limiting plate 19 includes an elongated portion 191 and a protrusion 192. The edge of the elongated portion 191 along the length direction is connected to the top plate 15. The protrusion 192 is provided on the other side edge of the elongated portion 191 along the length direction. There is one or more protrusions 192. When there are two or more protrusions 192, each protrusion 192 is distributed sequentially at intervals along the length direction of the elongated portion 191.
[0206] In some embodiments, the elongated portion 191 and the protrusion 192 are integrally formed.
[0207] In some embodiments, at least the protrusion 192 forms a recessed area 193.
[0208] In some embodiments, see Figure 16 The area on the length portion that connects with the protrusion 192 together with the protrusion 192 forms a recessed area 193.
[0209] In some embodiments, see Figure 16 From the end connected to the elongated portion 191 to the free end of the protrusion 192, the width of the protrusion 192 gradually decreases along the X-axis direction.
[0210] In some embodiments, see Figure 16 The free end of the protrusion 192 is arc-shaped.
[0211] In some embodiments, each protrusion 192 is provided with a mounting hole 150.
[0212] In this embodiment, a limiting plate 19 is provided on the edge of the top plate 15 near the back plate 14 to limit the installation position of the top plate 15.
[0213] Please see Figure 19-22 , Figure 19 A top view of the top plate 15 provided in an embodiment of this application; Figure 20 Another top view of the top plate 15 provided in the embodiments of this application; Figure 21 A front view schematic diagram of the clothing processing device provided in an embodiment of this application (front frame not shown); Figure 22 for Figure 21 A magnified view of a section at point C.
[0214] In some embodiments, a positioning structure is provided on the top plate 15, which is used to abut against the equipment support 41 of the clothing processor 200 to position the clothing processor 200 on the top plate 15.
[0215] The positioning structure cooperates with the equipment support 41. This can be understood as follows: when the garment processing machine 200 is placed on the base assembly 100 and positioned, the equipment support 41 abuts against the positioning structure to restrict the movement of the equipment support 41 relative to the base assembly 100 in the first direction to the left and / or right, and / or limit the movement of the equipment support 41 relative to the base assembly 100 in the second direction to the forward and / or backward, thereby limiting the movement of the garment processing machine 200.
[0216] In this embodiment, the positioning structure is used in conjunction with the equipment support 41 at the bottom of the garment processing machine 200 to quickly position the garment processing machine 200 on the top plate 15, which facilitates the subsequent fixing of the garment processing machine 200 to the base assembly 100.
[0217] In some embodiments, the positioning structure is a stamped protrusion on the top plate 15, that is, the positioning structure is formed on the top plate 15 by a stamping process, which facilitates the processing of the positioning structure. In other embodiments, the positioning structure and the top plate 15 are separate structures. The positioning structure can be detachably installed on the top plate 15, or the positioning structure can be fixed to the top plate 15 in a non-detachable manner, such as by welding. The following mainly uses the stamped protrusion on the top plate 15 as an example to further explain the positioning structure.
[0218] In some embodiments, the height of the positioning structure is less than the height of the device foot 41.
[0219] When the garment processing machine 200, which has a support leg 41 at the bottom, is supported on the base assembly 100, the support leg 41 supports the area on the top plate 15 where no positioning structure is provided. The support leg 41 abuts against the side of the positioning structure along the height direction, thereby limiting the position of the garment processing machine 200 by the base assembly 100.
[0220] In some embodiments, the height of the positioning protrusion 157 ranges from 1 mm to 5 mm.
[0221] In some embodiments, the positioning structure includes two or more first limiting sides 1571, each pair of first limiting sides 1571 being arranged opposite each other along a first direction and respectively abutting against the inner sides of two device legs 41 arranged opposite each other along the first direction.
[0222] Typically, there are four device feet 41, which are respectively located at the four corners of the bottom of the garment processing machine 200, that is, the four device feet 41 are distributed in a square matrix. Of course, the number of device feet 41 at the bottom of the garment processing machine 200 is not limited to four, and can be more than four. The following mainly uses the example of four device feet 41 to further explain the positioning structure.
[0223] The positioning structure may include two first limiting sides 1571, which are arranged opposite each other along a first direction. Each of the two first limiting sides 1571 abuts against the inner sides of two device legs 41 arranged opposite each other along the first direction, thereby restricting the movement of the two device legs 41 to the left and right along the first direction. It should be noted that the inner side of the two device legs 41 refers to the side of one device leg 41 facing the other device leg 41.
[0224] The positioning structure may also include four first limiting surfaces, wherein two first limiting sides 1571 are arranged opposite each other along the first direction and cooperate with two equipment legs 41 at the bottom of the garment processing machine 200, and the other two first limiting sides 1571 are arranged opposite each other along the first direction and cooperate with the other two equipment legs 41 at the bottom of the garment processing machine 200, so as to restrict the four equipment legs 41 from moving to the left and right along the first direction, thereby better restricting the orientation of the garment processing machine 200 relative to the top plate 15 in the first direction.
[0225] In some embodiments, the number of first limiting sides 1571 corresponds to the number of device feet 41 at the bottom of the garment processor 200.
[0226] In this embodiment of the application, the positioning structure includes two or more first limiting sides 1571 to limit the movement of the device support leg 41 to the left and right along the first direction, thereby limiting the position of the clothing processing machine 200 relative to the top plate 15 in the first direction.
[0227] In some embodiments, the positioning structure includes two or more second limiting sides 1572, each pair of second limiting sides 1572 being disposed opposite to each other along a second direction and respectively abutting against the inner sides of two device legs 41 disposed opposite to each other along the second direction.
[0228] The positioning structure may include two second limiting sides 1572, which are arranged opposite each other along a second direction. Each second limiting side 1572 abuts against the inner sides of two device legs 41 arranged opposite each other along the second direction, thereby restricting the two device legs 41 from moving forward and backward along the second direction. It should be noted that the inner side of the two device legs 41 refers to the side of one device leg 41 facing the other device leg 41, which is the inner side of that device leg 41.
[0229] The positioning structure may also include four second limiting sides 1572, wherein two second limiting sides 1572 are arranged opposite each other along the second direction and cooperate with two equipment legs 41 at the bottom of the garment processor 200, and the other two second limiting sides 1572 are arranged opposite each other along the second direction and cooperate with the other two equipment legs 41 at the bottom of the garment processor 200, so as to restrict the four equipment legs 41 from moving forward and backward along the second direction, thereby better restricting the orientation of the garment processor 200 relative to the top plate 15 in the second direction.
[0230] In some embodiments, the number of second limiting sides 1572 corresponds to the number of device feet 41 at the bottom of the garment processor 200.
[0231] In this embodiment of the application, the positioning structure includes two or more second limiting sides 1572 to limit the movement of the device support leg 41 forward and backward in the second direction, thereby limiting the position of the clothing processing machine 200 relative to the top plate 15 in the second direction.
[0232] In some embodiments, the positioning structure includes both two or more first limiting sides 1571 and two or more second limiting sides 1572. The specific details of the first limiting sides 1571 and the second limiting sides 1572 have been described above and will not be repeated here.
[0233] In some embodiments, the positioning structure is an annular stamped protrusion, on which two or more first limiting sides 1571 and two or more second limiting sides 1572 are formed.
[0234] In some embodiments, the positioning structure includes at least one positioning protrusion 157, and each positioning protrusion 157 has a first limiting side 1571 and / or a second limiting side 1572 formed thereon. That is, when the positioning structure includes one positioning protrusion 157, the positioning protrusion 157 has a first limiting side 1571 and a second limiting side 1572 formed thereon; when the positioning structure includes multiple positioning protrusions 157 (i.e., two or more positioning protrusions 157), the positioning protrusion 157 may have only a first limiting side 1571 formed thereon, or the positioning protrusion 157 may have only a second limiting side 1572 formed thereon, or the positioning protrusion 157 may have both a first limiting side 1571 and a second limiting side 1572 formed thereon.
[0235] For example, when the positioning structure includes a positioning protrusion 157, in some embodiments, the number of first limiting sides 1571 on the positioning protrusion 157 is consistent with the number of equipment feet 41 at the bottom of the garment processing machine 200, and the number of second limiting sides 1572 on the positioning protrusion 157 is consistent with the number of equipment feet 41 at the bottom of the garment processing machine 200. Each first limiting side 1571 is engaged with a corresponding equipment foot 41, and each second limiting side 1572 is engaged with a corresponding equipment foot 41.
[0236] For example, when one positioning protrusion 157 has only a first limiting side 1571 and another positioning protrusion 157 has only a second limiting side 1572, these two positioning protrusions 157 can be configured to cooperate with a device support leg 41 at the same time.
[0237] In some embodiments, the positioning structure includes two positioning protrusions 157, each positioning protrusion 157 having two first limiting sides 1571 and two second limiting sides 1572 formed thereon.
[0238] In some embodiments, see Figure 19 and Figure 20 The positioning structure includes four positioning protrusions 157 arranged in a square matrix. Each positioning protrusion 157 has a first limiting side 1571 and a second limiting side 1572 formed on it. Please refer to [link / reference]. Figure 19 and Figure 20 Four positioning protrusions 157 are respectively located near the four corners of the top plate 15. When the garment processor is placed on the base assembly 100, it is placed on the base assembly 100 from top to bottom.
[0239] Additionally, please see Figure 22 ,pass Figure 22 It can be seen that the height of the positioning protrusion 157 is less than the height of the equipment support leg 41.
[0240] In this embodiment of the application, by adopting a positioning structure including four positioning protrusions 157, which can cooperate with other stamped protrusions on the top plate 15, the top plate 15 is aesthetically pleasing while increasing the top strength and positioning the equipment legs 41.
[0241] In some embodiments, the four positioning protrusions 157 have different shapes.
[0242] In some embodiments, see Figure 19 and Figure 20 Along the first direction Figure 19In some embodiments, two positioning protrusions 157 opposite each other along the X-axis are symmetrically arranged, and the two symmetrical positioning protrusions 157 have the same shape; in other embodiments, two positioning protrusions 157 opposite each other along the second direction are symmetrically arranged. For the four positioning protrusions 157 provided on the top plate 15, in some embodiments, two positioning protrusions 157 opposite each other along the first direction are symmetrically arranged, and at the same time, two positioning protrusions 157 opposite each other along the second direction are also symmetrically arranged.
[0243] Please see Figure 19 The position of the equipment support 41 is indicated by a rectangular dashed box. Each equipment support 41 abuts against the first limiting side 1571 and the second limiting side 1572 of the corresponding positioning protrusion 157, thereby restricting the movement of the garment processing machine 200 along the second direction and relative to the base assembly 100 in the second direction.
[0244] In this embodiment, the positioning protrusions 157 are arranged symmetrically. Since the two symmetrical positioning protrusions 157 have the same shape, the processing efficiency of the positioning protrusions 157 can be improved.
[0245] In some embodiments, see Figure 20 The positioning protrusion 157 also includes a connecting side surface 1573. In the same positioning protrusion 157, one end of the first limiting side surface 1571 is connected to one end of the second limiting side surface 1572, and the other end of the first limiting side surface 1571 is connected to the other end of the second limiting side surface 1572 through the connecting side surface 1573.
[0246] Please see Figure 20 This illustrates that one end of the first limiting side 1571 is connected to one end of the second limiting side 1572. In some embodiments, the first limiting side 1571 and the second limiting side 1572 are perpendicular to each other; in some embodiments, there is an arc transition between the first limiting side 1571 and the second limiting side 1572.
[0247] Please see Figure 20 In the same positioning protrusion 157, the first limiting side 1571 and the second limiting side 1572 are located on the side away from the central axis of the top plate 15, relative to the connecting side curved surface 1573.
[0248] Regarding the shape of the connecting side surface 1573, please refer to some embodiments. Figure 20 The connecting side surface 1573 includes a first side surface 1574, a second side surface 1575, a third side surface 1576, and a fourth side surface 1577. The first side surface 1574 is connected to one end of the first limiting side surface 1571, and the second side surface 1575 is connected to one end of the first side surface 1574. The extension direction of the second side surface 1575 is along the second direction (i.e., Figure 20(in the Y-axis direction), the fourth side surface 1577 is connected to the second limiting side surface 1572, and the extension direction of the fourth side surface 1577 is along the second direction (i.e., the Y-axis direction). Figure 20 (in the Y-axis direction), the third side surface 1576 connects the second side surface 1575 and the fourth side surface 1577.
[0249] In some embodiments, see Figure 20 The two positioning protrusions 157 are set at the bottom, and the first side curved surface 1574 is an arc surface.
[0250] In some embodiments, see Figure 20 Two positioning protrusions 157 are set at the top, the first side surface 1574 is a plane, and the extension direction of the first side surface 1574 is along the first direction (i.e. Figure 20 (X-axis direction in the middle).
[0251] In some embodiments, see Figure 20 The third side curved surface 1576 section is in line with the shape of the arc apex of the first stamping protrusion 153, that is, the third side curved surface 1576 section is arc-shaped; optionally, the arc-shaped section of the third side curved surface 1576 is set with the same center as the arc apex of the first stamping protrusion 153.
[0252] In some embodiments, the first side surface 1574 transitions to the first limiting side surface 1571 by an arc, the first side surface 1574 transitions to the second side surface 1575 by an arc, the second side surface 1575 transitions to the third side surface 1576 by an arc, the third side surface 1576 transitions to the fourth side surface 1577 by an arc, and the fourth side surface 1577 transitions to the second limiting side surface 1572 by an arc.
[0253] In some embodiments, the garment processor 200 is fixed to the base assembly 100 by a fixing structure 400, so that the garment processor 200 is stably supported on the base assembly 100, thereby improving safety.
[0254] In some embodiments, two or more fixing structures 400 are provided between the garment processor 200 and the base assembly 100, for example, four fixing structures 400 are provided between the garment processor 200 and the base assembly 100.
[0255] In some embodiments, the fixing structures 400 between the garment processor 200 and the base assembly 100 are identical; or, in other embodiments, some fixing structures 400 between the garment processor 200 and the base assembly 100 are different from the other fixing structures 400, for example, see [link to relevant documentation]. Figure 27 The diagram illustrates a fixing structure 400 provided in an embodiment of this application. Please refer to [link / reference]. Figure 32This illustrates a different type of fixing structure 400 provided in the embodiments of this application. Two types of fixing structures 400 can be used between the clothing processing machine 200 and the base assembly 100.
[0256] In some embodiments, the fixing structure 400 includes device legs 41, that is, the device legs 41 are part of the fixing structure 400 and are used to connect the garment processor 200 and the base assembly 100. In some embodiments, each device leg 41 at the bottom of the garment processor 200 may be part of a separate fixing structure 400, that is, each device leg 41 is connected to the base assembly 100; in other embodiments, some of the legs at the bottom of the garment processor 200 may be part of a separate fixing structure 400, that is, some of the device legs 41 at the bottom of the garment processor 200 are connected to the base assembly 100, while other parts of the device legs 41 are not connected to the base assembly 100, but are only supported on the base assembly 100.
[0257] Please see Figures 23-28 , Figure 23 An exploded view of the garment processing machine 200 and base assembly 100 provided in an embodiment of this application; Figure 24 for Figure 23 A magnified view of a section at point D; Figure 25 An exploded view of the clothing processor 200 and base assembly 100 provided in an embodiment of this application from another perspective; Figure 26 for Figure 25 A magnified view of a section at point E in the middle; Figure 27 An enlarged view showing the connection between the first mounting member 42 and the second mounting member 43 and the equipment support leg 41, as provided in the embodiments of this application; Figure 28 A schematic diagram of the structure of the first mounting component 42 and the second mounting component 43 provided in the embodiments of this application, which are disposed on the internal frame 11; Figure 29 A schematic diagram of the structure of the first mounting component 42 and the second mounting component 43 provided in the embodiments of this application.
[0258] The following is in conjunction with the appendix Figures 23-28 The following is a detailed description of a fixing structure 400 provided in the embodiments of this application.
[0259] Please see Figure 25 The fixed structure 400 provided in this application embodiment includes a device support 41, a first mounting component 42, and a second mounting component 43.
[0260] The first mounting member 42 is slidably connected to the base assembly 100. That is, the first mounting member 42 is not only connected to the base assembly 100, but also can slide horizontally relative to the base assembly 100 to adjust the position of the first mounting member 42 on the base assembly 100.
[0261] In some embodiments, the first mounting member 42 slides relative to the base assembly 100 along a first direction or along a second direction; in other embodiments, the first mounting member 42 may slide relative to the base assembly 100 in directions other than the first and second directions, for example, the first mounting member 42 may slide relative to the base assembly 100 along the diagonal direction of the top plate 15 of the base assembly 100.
[0262] Please see Figure 26 A second mounting member 43 is disposed on the first mounting member 42, and the second mounting member 43 is used to press the device leg 41 against the base assembly 100. Specifically, the garment processor 200, which is provided with the device leg 41, is supported on the base assembly 100. The first mounting member 42 on the base assembly 100 is slid, causing the second mounting member 43 disposed on the first mounting member 42 to move towards the device leg 41, so that the second mounting member 43 can press the device leg 41 against the base assembly 100. Please refer to [link to previous section]. Figure 27 This illustrates that the second mounting component 43 is pressed against the base assembly 100.
[0263] In this embodiment, the fixing structure 400 not only fixes the garment processor 200 to the base assembly 100, ensuring stable support for the garment processor 200 and improving safety, but also, because the fixing structure 400 uses a first mounting member 42 that can slide toward the device support leg 41 and utilizes a second mounting member 43 mounted on the first mounting member 42 to press against the device support leg 41, it achieves the goal of fixing the garment processor 200 to the base assembly 100 even when the distance between the garment processor 200 and the base assembly 100 is limited.
[0264] Regarding the connection relationship between the first mounting member 42 and the second mounting member 43, please refer to some embodiments. Figure 26 The first mounting part 42 and the second mounting part 43 are threaded together.
[0265] The garment processing machine 200, which is equipped with the equipment support foot 41, is supported on the base assembly 100. The first mounting member 42 on the base assembly 100 is slid, so that the second mounting member 43 provided on the first mounting member 42 moves toward the equipment support foot 41. After the second mounting member 43 moves into place, the second mounting member 43 is rotated to move the second mounting member 43 toward the base assembly 100 until the second mounting member 43 presses the equipment support foot onto the base assembly 100.
[0266] In this embodiment, the first mounting component 42 and the second mounting component 43 are connected by threads, which is a simple connection method and can stably fix the equipment support 41 on the base assembly 100.
[0267] Regarding the connection relationship between the first mounting member 42 and the second mounting member 43, in some embodiments, the second mounting member 43 is fixed to the first mounting member 42, and the second mounting member 43 includes an elastic material.
[0268] The garment processing machine 200, which is equipped with the equipment support leg 41, is supported on the base assembly 100. The first mounting member 42 on the base assembly 100 is slid, so that the second mounting member 43 provided on the first mounting member 42 moves toward the equipment support leg 41. After the second mounting member 43 moves into place, the elastic area of the second mounting member 43 undergoes elastic deformation, thereby pressing the equipment support leg 41 onto the base assembly 100.
[0269] In this embodiment, the second mounting component 43 is used to fix the first mounting component 42, which can reduce the number of parts and improve the assembly efficiency of the fixing structure 400.
[0270] In some embodiments, for the fixing structure 400 between the garment processor 200 and the base assembly 100, the first mounting member 42 and the second mounting member 43 of each fixing structure 400 are threadedly connected, or each fixing structure 400 is fixed to the first mounting member 42 by the second mounting member 43 and the second mounting member 43 includes an elastic material; in other embodiments, for the fixing structure 400 between the garment processor 200 and the base assembly 100, the first mounting member 42 and the second mounting member 43 of some fixing structures 400 are threadedly connected, and some fixing structures 400 are fixed to the first mounting member 42 by the second mounting member 43 and the second mounting member 43 includes an elastic material.
[0271] Regarding the positional relationship between the device leg 41 and the second mounting member 43, in some embodiments, a portion of the second mounting member 43 is embedded within the device leg 41.
[0272] For example, in some embodiments, a foot groove is provided on the end face of the device foot 41 facing the first mounting member 42, and a portion of the second mounting member 43 can be inserted into the foot groove so that a portion of the second mounting member 43 is embedded in the device foot 41.
[0273] In this embodiment of the application, when the first mounting member 42 and the second mounting member 43 are threadedly connected, the first mounting member 42 on the sliding base assembly 100 causes a portion of the second mounting member 43 to extend into the support foot groove, and then the second mounting member 43 is rotated so that the second mounting member 43 is pressed against the groove wall surface of the support foot groove.
[0274] Regarding the positional relationship between the equipment support leg 41 and the second mounting member 43, please refer to some embodiments. Figure 24The equipment support leg 41 includes a first support leg 411 and a second support leg 412. The first support leg 411 is connected to the second support leg 412, and the height of the second support leg 412 is less than the height of the first support leg 411.
[0275] In this embodiment, since the height of the second leg 412 is less than the height of the first leg 411, please refer to [link / reference needed]. Figure 24 A gap is formed between the second leg 412 and the bottom of the garment processing machine 200, which can be used to accommodate the second mounting member 43, such that the second mounting member 43 is pressed against the second leg 412.
[0276] In some embodiments, the first leg 411 is detachably connected to the garment processor 200 via a connector; in other embodiments, the second leg 412 is detachably connected to the garment processor 200 via a connector.
[0277] In some embodiments, the first leg 411 and the second leg 412 are integrally formed; in other embodiments, the first leg 411 and the second leg 412 are detachably connected.
[0278] In this embodiment, when the first mounting member 42 and the second mounting member 43 are threadedly connected, the first mounting member 42 on the sliding base assembly 100 causes a portion of the second mounting member 43 to be located above the second foot 412. Then, the second mounting member 43 is rotated so that the second mounting member 43 is pressed against the second foot 412.
[0279] In this embodiment, the height of the second support leg 412 is set to be less than the height of the first support leg 411 so that the second mounting member 43 can press the support leg 41 of the equipment.
[0280] In some embodiments, see Figure 24 The second support leg 412 is provided with a support leg slot 413, which connects the two opposite sides of the second support leg 412 along the height direction. The length extension direction of the support leg slot 413 is along the sliding direction of the first mounting member 42, and the support leg slot 413 forms a support leg opening 414 on the second support leg 412 so that the first mounting member 42 can move to the support leg slot 413 through the support leg opening 414.
[0281] The garment processing machine 200, which is equipped with the equipment feet 41, is supported on the base assembly 100. The first mounting member 42 on the base assembly 100 is slid so that the first mounting member 42 moves through the foot opening 414 to the foot slot 413. Then, the second mounting member 43 is rotated so that the second mounting member 43 moves toward the base assembly 100 until the second mounting member 43 is pressed against the equipment feet 41.
[0282] In this embodiment, by setting the first mounting member 42 to move from the foot opening 414 to the foot slot 413, it is beneficial to increase the contact area between the second mounting member 43 and the second foot 412, thereby facilitating the stable connection between the clothing processing machine 200 and the base assembly 100 through the fixing structure 400.
[0283] In some embodiments, see Figure 24 The first support leg 411 has a block structure and a support leg mounting hole 415 is provided on the first support leg 411. A connector passes through the support leg mounting hole 415 to connect the first support leg 411 and the clothing processing machine 200.
[0284] Please see Figure 24 The diagram shows the foot mounting hole 415 on the first foot 411, which extends through the first foot 411 along its height direction.
[0285] In some embodiments, the foot mounting hole 415 is a countersunk hole to prevent the head of the connector from interfering with the base assembly 100.
[0286] As mentioned above, in some embodiments, please refer to Figure 14 At least one end of the left-side blocking portion 122 is folded inward vertically to form a left blocking flange 123, which is connected to the device support 41 at the bottom of the garment processing machine 200 via a connector; and as mentioned above, in some embodiments, at least one end of the right-side blocking portion 132 is folded inward vertically to form a right blocking flange 134, which is connected to the device support 41 at the bottom of the garment processing machine 200 via a connector. Please refer to Figure 24 In some embodiments, a positioning groove 4111 is provided on the side of the first foot 411, and the left blocking flange 123 and the right blocking flange 134 can be respectively provided in the positioning groove 4111 on the corresponding first foot 411.
[0287] Please see Figure 24 ,exist Figure 24 In the example, among the two device legs 41 arranged opposite each other along the Y-axis, the front device leg 41 is provided with a positioning groove 4111 on its front side. The positioning groove 4111 extends along the X-axis. The bottom surface of the positioning groove 4111 is provided with a mounting hole for fixing the left shielding flange 123 or the right shielding flange 134 by means of a connector.
[0288] In addition, it should be noted that by passing the connector through the foot mounting hole 415, not only can the equipment foot 41 be fixed on the garment processing machine 200, but the bottom plate and side plate of the garment processing machine 200 can also be connected by the connector. That is, the connector passing through the foot mounting hole 415 can also be used to connect some components on the garment processing machine 200.
[0289] In this embodiment, by setting the first support leg 411 into a block structure, the garment processing machine 200 is stably supported on the base assembly 100 by the first support leg 411.
[0290] In some embodiments, see Figure 24 The second leg 412 is located at one end of the first leg 411, and the second leg 412 has a plate-like structure.
[0291] In some embodiments, the bottom surface of the second leg 412 is on the same plane as the bottom surface of the first leg 411.
[0292] In some embodiments, a foot opening 414 is formed on the second foot portion 412 at one end of the second foot portion 412 away from the first foot portion 411.
[0293] Optionally, the foot slot 413 on the second foot 412 extends to the end where the second foot 412 connects to the first foot 411.
[0294] In some embodiments, see Figure 24 The extension direction of the support leg groove 413 is along the front-to-back direction of the garment processing machine 200, that is... Figure 24 The direction of the Y-axis.
[0295] In some embodiments, see Figure 24 Along the front and back direction of the garment processing machine 200 Figure 24 Two device feet 41 opposite each other in the Y-axis direction are symmetrically arranged, and the foot openings 414 on the two device feet 41 face each other.
[0296] Regarding the sliding connection between the first mounting component 42 and the base assembly 100, please refer to some embodiments. Figure 26 The top surface of the base assembly 100 is provided with a base slot 113 that cooperates with the first mounting member 42. The base slot 113 forms a groove on the top surface of the base assembly 100. The length direction of the base slot 113 is along the moving direction of the first mounting member 42. The first mounting member 42 includes a head, which is located in the base slot 113. Along the moving direction perpendicular to the first mounting member 42, the length of the head of the first mounting member 42 is greater than the width of the groove of the base slot 113.
[0297] In this embodiment, the first mounting member 42 can move along the length direction of the base slot 113; in addition, since the length of the head is greater than the width of the slot opening of the base slot 113 along the direction perpendicular to the movement of the first mounting member 42, the movement of the first mounting member 42 in the direction extending out of the base slot 113 along the height direction can be restricted.
[0298] When the second support leg 412 is provided with a support leg slot 413, the support leg slot 413 is located above the base slot 113, so that when the first mounting member 42 moves along the base slot 113 toward the equipment support leg 41, the first mounting member 42 can move toward the support leg slot 413 through the support leg opening 414 on the equipment support leg 41.
[0299] In this embodiment, the head of the first mounting component 42 is inserted into the base slot 113 to achieve a sliding connection between the first mounting component 42 and the base assembly 100. The connection structure is simple and easy to process and manufacture.
[0300] The foregoing describes that in some embodiments, the base assembly 100 includes an inner frame 11 and a top plate 15 disposed on top of the inner frame 11. In some embodiments, see [link to relevant documentation]. Figure 26 The top plate 15 has a notch 158 to avoid the first mounting member 42, and the first mounting member 42 slides through the notch 158 on the top plate 15 to connect with the internal frame 11. Please refer back to the previous section. Figure 13 The diagram illustrates a notch 158 on the top plate 15, the size of which defines the sliding stroke of the first mounting member 42 relative to the inner frame 11. Regarding the structure of the base assembly 100, in other embodiments, the base assembly 100 includes the inner frame 11 but does not include the top plate 15 disposed on the inner frame 11, and the garment processor 200 is directly supported on the inner frame 11. The following description primarily uses the base assembly 100 including the top plate 15 as an example.
[0301] In some embodiments, please refer back to the previous section. Figure 13 The notch 158 on the top plate 15 extends to the edge of the top plate 15; in other embodiments, the notch 158 on the top plate 15 is a hole on the top plate 15.
[0302] In some embodiments, please refer back to the previous section. Figure 13 The top plate 15 has four notches 158, with two notches 158 on each of the two opposite edges. Each notch 158 is used to avoid the corresponding first mounting piece 42.
[0303] In some embodiments, the internal frame 11 is constructed from aluminum profiles (i.e., the vertical beams 111 and horizontal beams 112 of the internal frame 11 are aluminum profiles), and slots 113 extending along the length of the aluminum profiles are formed on the outer surface of the aluminum profiles. Please refer to [link to relevant documentation]. Figure 28 The diagram illustrates the slot 113 provided on the transverse beam 112, wherein the slot 113 on the aluminum profile is used to form the base slot 113 on the base assembly 100.
[0304] In this embodiment of the application, the slot 113 on the aluminum profile is used as the base slot 113 that cooperates with the first mounting part 42.
[0305] In some embodiments, see Figure 28 The transverse beam 112 located on the left side along the X-axis has a slot 113 for forming two bottom slots 114, into which both first mounting members 42 are inserted. Similarly, in Figure 28 The slot 113 on the transverse beam 112 located on the right side along the X-axis can be used to form two bottom slots 114.
[0306] In this embodiment of the application, by utilizing the slot 113 on the aluminum profile as a base slot 113 that cooperates with the first mounting member 42, it is possible to avoid additionally opening a bottom slot 114 on the internal frame 11.
[0307] Regarding the first mounting member 42 and the second mounting member 43, in some embodiments, the first mounting member 42 and the second mounting member 43 are bolt assemblies, that is, the first mounting member 42 is a bolt and the second mounting member 43 is a nut.
[0308] In some embodiments, see Figure 29 The head of the first mounting member 42 is T-shaped with the screw part, and the length of the head of the first mounting member 42 is greater than the width of the slot 114 at the bottom. When the first mounting member 42 is inserted into the bottom slot 114, the head of the first mounting member 42 is inserted into the bottom slot 114 with the length direction of the head parallel to the length direction of the bottom slot 114, and then the first mounting member 42 is rotated (rotated about 90°) so that the head of the first mounting member 42 cannot disengage from the bottom slot 114 along the height direction.
[0309] In some embodiments, the bottom slot 114 is provided with a flared opening, the width of which along the direction perpendicular to the movement of the first mounting member 42 is greater than the diameter of the head, so that when the first mounting member 42 is inserted into the bottom slot 114, it can be inserted into the bottom slot 114 through the flared opening. In this embodiment, the head of the first mounting member 42 may be hexagonal.
[0310] In some embodiments, see Figure 29 The first mounting member 42 has an anti-rotation protrusion 421, see [reference]. Figure 26 The anti-rotation protrusion 421 cooperates with the wall surface of the bottom slot 114 to prevent the first mounting member 42 from rotating relative to the inner frame 11 when the second mounting member 43 is screwed onto the first mounting member 42.
[0311] The slot 114 at the bottom includes a first slot wall surface 1141 and a second slot wall surface 1142 that are arranged opposite to each other along the width direction of the slot. In one example, an anti-rotation protrusion 421 can be provided to cooperate with the first slot wall surface 1141. When the second mounting member 43 is screwed into the first mounting member 42 in the first rotation direction (e.g., clockwise), the anti-rotation protrusion 421 is in contact with the first slot wall surface 1141, which can restrict the first mounting member 42 from rotating in the first rotation direction. Alternatively, in other examples, the anti-rotation protrusion 421 can be provided to cooperate with both the first slot wall surface 1141 and the second slot wall surface 1142, thereby restricting the first mounting member 42 from rotating relative to the inner frame 11.
[0312] It is worth noting that when the first mounting part 42 is a T-bolt, the anti-rotation protrusion 421 is formed on the screw part of the first mounting part 42. When the first mounting part 42 is inserted into the bottom slot 114, the head of the first mounting part 42 is inserted into the bottom slot 114 in such a way that the length direction of the head of the first mounting part 42 is parallel to the length direction of the bottom slot 114. Then the first mounting part 42 is rotated in the first rotation direction (rotated about 90°) so that the anti-rotation protrusion 421 contacts the wall surface 1141 of the first slot.
[0313] It is worth noting that when the first mounting part 42 is a hexagonal bolt, the anti-rotation protrusion 421 is formed on the screw part of the first mounting part 42. The first mounting part 42 is inserted into the bottom slot 114 by flaring the opening, and then the first mounting part 42 is slid along the length direction of the bottom slot 114. After sliding into place, the first mounting part 42 is rotated in the first rotation direction (rotated about 90°) so that the anti-rotation protrusion 421 contacts the wall surface 1141 of the first slot.
[0314] It is worth noting that the above embodiment describes the formation of an anti-rotation protrusion 421 on the first mounting member 42. The anti-rotation protrusion 421 cooperates with the wall surface of the bottom slot 114 to prevent the first mounting member 42 from rotating relative to the inner frame 11 when the second mounting member 43 is screwed onto the first mounting member 42. In other embodiments, an abutment surface can also be provided on the inner frame 11. When the first mounting member 42 slides into place along the length direction of the bottom slot 114, the first mounting member 42 (e.g., the head of the first mounting member) contacts the abutment surface to prevent the first mounting member 42 from rotating relative to the inner frame 11 when the second mounting member 43 is screwed onto the first mounting member 42.
[0315] In some embodiments, see Figure 29 A gasket 45 is also fitted onto the first mounting member 42. In some embodiments, a gasket 45 is provided between the second mounting member 43 and the equipment support leg 41, and / or, a gasket 45 is provided between the head of the first mounting member 42 and the inner side of the bottom slot 114.
[0316] In this embodiment, the first mounting component 42 and the second mounting component 43 are bolt assemblies, and the structures of the first mounting component 42 and the second mounting component 43 are simple.
[0317] Please see Figures 30-37 , Figure 30 An exploded view of the fixed structure 400 connected to the clothing processor 200 and the base assembly 100 in another embodiment of this application (the left obstructing flange 123 is not shown). Figure 31 for Figure 30 A magnified view of a section at point F in the middle; Figure 32 An enlarged view showing the connection between the snap-fit assembly 44 and the device foot 41 provided in this embodiment of the application; Figure 33 A top view of the snap-fit connector 441 provided in an embodiment of this application; Figure 34 This is a partial enlarged view of the engagement of the snap-fit component 44 with the device foot 41 provided in the embodiments of this application; Figure 35 A partially enlarged view of the locking fastener 442 and the base assembly 100 provided in the embodiments of this application; Figure 36 A schematic diagram of the locking fastener 442 and the base assembly 100 provided in this application embodiment cooperating (top plate 15 is not shown); Figure 37 for Figure 36 A magnified view of a section at point G.
[0318] The following is in conjunction with the appendix Figures 30-37 The following is a further detailed description of another fixing structure 400 provided in the embodiments of this application.
[0319] Please see Figure 30 The fixing structure 400 provided in this application embodiment includes a device support 41 and a snap-fit assembly 44.
[0320] Please see Figure 31 The diagram illustrates the device support 41 and the snap-fit assembly 44. The device support 41 is installed at the bottom of the garment processing machine 200, and the snap-fit assembly 44 is connected to the base assembly 100.
[0321] The snap-fit component 44 is slidably connected to the base assembly 100. This can be understood as follows: when the snap-fit component 44 is not connected to the device leg 41, the snap-fit component 44 is slidably connected to the base assembly 100. When the snap-fit component 44 is connected to the device leg 41, that is, when the snap-fit component 44 is snapped onto the device leg 41, the position of the snap-fit component 44 is fixed. Since the snap-fit component 44 is connected to the base assembly 100, the snap-fit component 44 can restrict the device leg 41 from moving away from the base assembly 100. Alternatively, it can be understood that the snap-fit component 44 has a locked state and an unlocked state. When the snap-fit component 44 is in the locked state, it is fixed to the base assembly 100. When the snap-fit component 44 is in the unlocked state, it can slide along the base assembly 100. When using the fixing structure 400 to fix the garment processing machine 200 and the equipment support 41, the snap-fit component 44 can be adjusted to be in the unlocked state first, and then the snap-fit component 44 can be slid to snap onto the equipment support 41. Then the snap-fit component 44 can be adjusted to be in the locked state. Since the snap-fit component 44 is locked to the base assembly 100, its position on the base assembly 100 is fixed, and the snap-fit component 44 can restrict the equipment support 41 from moving away from the base assembly 100.
[0322] In this embodiment, the fixing structure 400 can fix the garment processor to the base assembly 100, which not only makes the garment processor stably supported on the base assembly 100 and improves safety, but also, since the fixing structure 400 uses a snap-fit component 44 that can slide toward the device support leg 41 so that the snap-fit component 44 snaps onto the device support leg 41, the garment processor 200 can be fixed to the base assembly 100 even when the distance between the garment processor 200 and the base assembly 100 is limited.
[0323] Regarding the connection between the device leg 41 and the snap-fit assembly 44, in some embodiments, the device leg 41 is provided with a leg insertion hole, into which the snap-fit assembly 44 can be inserted; in other embodiments, the device leg 41 includes a leg support portion 416 and a leg connecting portion 417 provided on the leg support portion 416, wherein the leg connecting portion 417 is used for mounting on the garment processing machine 200; the snap-fit assembly 44 is provided with a snap-fit notch 4411, through which the leg connecting portion 417 can pass. The following description mainly uses the snap-fit assembly 44 with a snap-fit notch 4411 as an example to further describe the fixing structure 400.
[0324] Please see Figure 31 The diagram illustrates the support leg 416 and the support leg connecting part 417. In some embodiments, the support leg connecting part 417 is threadedly connected to the garment processing machine 200.
[0325] Please see Figure 31The snap-fit assembly 44 has a snap-fit notch 4411. The leg connecting portion 417 can pass through the snap-fit notch 4411, so that a portion of the snap-fit assembly 44 is located above the leg support portion 416. Please refer to... Figure 32 The diagram illustrates the positional relationship between the snap-fit assembly 44, the support leg 41, and the garment processing machine 200. Due to the blocking effect of the snap-fit assembly 44, the movement of the support leg 416 in the direction of disengaging from the base assembly 100 is restricted.
[0326] In some embodiments, the snap-fit notch 4411 of the snap-fit component 44 can undergo elastic deformation, thereby enabling the snap-fit component 44 to be snapped onto the leg connection portion 417.
[0327] In some embodiments, the device leg 41 includes an elastically deformable material that undergoes elastic deformation to secure the snap-fit assembly 44 to the leg connection portion 417.
[0328] In this embodiment, since the fixing structure 400 adopts a snap-fit component 44 that can slide toward the device foot 41 and the foot connecting part 417 passes through the snap-fit notch 4411 to restrict the foot support part 416 from moving away from the base assembly 100, the clothing processor can be fixed on the base assembly even when the distance between the clothing processor and the base assembly 100 is limited.
[0329] In some embodiments, see Figure 34 The support leg connection part 417 includes a connecting rod 4171 and an upper limit part 4172. The support leg support part 416 is disposed at one end of the connecting rod 4171. The upper limit part 4172 is sleeved on the connecting rod 4171 and is inserted into the snap-fit notch 4411.
[0330] In some embodiments, the connecting rod 4171 is a threaded rod.
[0331] In some embodiments, the upper limit portion 4172 is threadedly connected to the connecting rod 4171.
[0332] In some embodiments, the upper limit portion 4172 is made of vibration-damping material.
[0333] In this embodiment, by setting an upper limit part 4172 and sleeved on the connecting rod 4171, the device support leg 4 is better engaged with the engagement component 44.
[0334] For details regarding the specific structure of the upper limit section 4172, please refer to some embodiments. Figure 34The upper limit part 4172 includes a disc-shaped section 41721 and a connecting section 41722 connected to the disc-shaped section 41721. The connecting section 41722 is located between the disc-shaped section 41721 and the support leg part 416. The diameter of the disc-shaped section 41721 is larger than the distance between the two opposite sides of the snap-fit notch 4411. The connecting section 41722 is inserted into the snap-fit notch 4411.
[0335] In this embodiment of the application, please refer to Figure 34 A space is formed between the disc-shaped segment 41721 and the support leg 416 for inserting the snap-fit assembly 44.
[0336] In some embodiments, the connecting segment 41722 is made of an elastic material, and the snap-fit assembly 44 is tightly fitted with the connecting segment 41722; in other embodiments, the distance between the two opposite sides of the snap-fit notch 4411 is not less than the diameter of the connecting segment 41722.
[0337] In this embodiment of the application, the upper limit part 4172 is provided to include a disc-shaped section 41721 and a connecting section 41722, so as to facilitate the device support foot 4 to be better engaged on the engagement component 44.
[0338] In some embodiments, see Figure 31 The snap-fit assembly 44 includes a snap-fit member 441 and a locking member 442. The snap-fit member 441 is disposed on the locking member 442. One end of the locking member 442 is slidably connected to the base assembly 100. A snap-fit notch 4411 is formed on the snap-fit member 441.
[0339] In this embodiment, the snap-fit 441 is disposed on the locking member 442. When the locking member 442 slides along the base assembly 100, the snap-fit 441 moves together with the locking member 442.
[0340] In some embodiments, the locking fastener 442 has a locked state and an unlocked state. When the locking fastener 442 is in the locked state, it is fixed to the base assembly 100. When the locking fastener 442 is in the unlocked state, it can slide along the base assembly 100. In this embodiment, the locking fastener 442 can be configured to fasten the snap-fit member 441 to the base assembly 100. Specifically, when using the fixing structure 400 to fix the garment processing machine 200 and the equipment support leg 41, the locking fastener 442 can be first adjusted to the unlocked state, and then the locking fastener 442 can be slid so that the support leg connecting part 417 passes through the snap-fit notch 4411 on the snap-fit member 441. Then, the locking fastener 442 can be adjusted to the locked state. When the locking fastener 442 is adjusted to the locked state, the snap-fit member 441 can also be fixed to the base assembly 100 at the same time.
[0341] In this embodiment of the application, by setting the snap-fit component 44 to include a snap-fit member 441 and a locking member 442, the locking member 442 can be used to achieve a sliding connection with the base assembly 100, and the snap-fit member 441 can be used to achieve a connection with the device support foot 41.
[0342] In some embodiments, see Figure 31 The connector 441 is plate-shaped.
[0343] Since the snap-fit component 441 needs to extend into the gap between the support leg 416 and the bottom of the garment processor 200 to prevent the support leg 416 from moving away from the base assembly 100, it is preferable that the snap-fit component 441 be plate-shaped, so that one end of the snap-fit component 441 with a snap-fit notch 4411 can extend into the gap between the support leg 416 and the bottom of the garment processor 200.
[0344] In some embodiments, see Figure 31 The snap-fit component 441 includes a first snap-fit area 4412, a second snap-fit area 4413 and a third snap-fit area 4414. The second snap-fit area 4413 connects the first snap-fit area 4412 and the second snap-fit area 4413. The height of the third snap-fit area 4414 is greater than the height of the first snap-fit area 4412. A snap-fit notch 4411 is provided on the third snap-fit area 4414.
[0345] In some embodiments, see Figure 31 A notch 4411 is provided on the edge of the third latching area 4414 on the side opposite to the second latching area 4413.
[0346] Please see Figure 31 The second contact area 4413 connects the first contact area 4412 and the second contact area 4413, and the second contact area 4413 serves as a transition area for the height change between the first contact area 4412 and the second contact area 4413.
[0347] Please see Figure 31 The height of the third latching area 4414 is greater than the height of the first latching area 4412. There is a gap between the third latching area 4414 and the base assembly 100 so that the third latching area 4414 can be inserted between the support leg 416 and the garment processing machine 200.
[0348] Please see Figure 31 The first snap-fit area 4412 is lower than the third snap-fit area 4414. The first snap-fit area 4412 is attached to the base assembly 100 to facilitate fastening the snap-fit piece 441 to the base assembly 100.
[0349] In some embodiments, the snap-fit component 441 is a one-piece molded structure.
[0350] Please see Figure 33The first snap-fit area 4412 of the snap-fit component 441 is provided with a snap-fit component assembly hole 4415. The locking fastener 442 passes through the snap-fit component assembly hole 4415. In some embodiments, the snap-fit component assembly hole 4415 is a strip hole. The length extension direction of the snap-fit component assembly hole 4415 is at an angle to the sliding direction of the locking fastener 442 along the base assembly 100. For example, the length extension direction of the snap-fit component assembly hole 4415 is perpendicular to the sliding direction of the locking fastener 442 along the base assembly 100, so as to facilitate the assembly of the snap-fit component 441 and the locking fastener 442.
[0351] In this embodiment, the snap-fit component 441 includes a first snap-fit area 4412, a second snap-fit area 4413, and a third snap-fit area 4414. This allows the third snap-fit area 4414 to be inserted between the support leg 416 and the garment processing machine 200, while simultaneously securing the first snap-fit area 4412 to the base assembly 100 using the fastener 442.
[0352] Regarding the shape of the snap-fit notch 4411, please refer to some embodiments. Figure 33 The snap-fit notch 4411 includes a first notch wall surface 44111, a second notch wall surface 44112, and a connecting wall surface 44113. The first notch wall surface 44111 and the second notch wall surface 44112 are arranged opposite to each other (i.e., the first notch wall surface 44111 and the second notch wall surface 44112 are two opposite sides of the snap-fit notch 4411). The connecting wall surface 44113 connects the first notch wall surface 44111 and the second notch wall surface 44112. When the leg connecting part 417 is located in the snap-fit notch 4411, the snap-fit notch 4411 partially surrounds the leg connecting part 417.
[0353] In some embodiments, the notch connecting wall 44113 is arc-shaped.
[0354] In some embodiments, the notch connecting wall 44113 is fitted with the leg connecting portion 417.
[0355] In some embodiments, the distance between the first wall surface 44111 and the second wall surface 44112 of the notch is not less than the diameter of the leg connection portion 417.
[0356] In some embodiments, the edge of the snap-fit notch 4411 on the snap-fit member 441 is the free edge 44114 of the snap-fit member, and the maximum distance between the notch connecting wall 44113 and the free edge is not less than the diameter of the leg connecting portion 417.
[0357] In some embodiments, a chamfer is formed between the first wall surface 44111 of the notch and the free edge 44114 of the snap-fit member, and / or a chamfer is formed between the second wall surface 44112 of the notch and the free edge 44114 of the snap-fit member, so as to facilitate the insertion of the leg connection portion 417 into the snap-fit notch 4411.
[0358] In this embodiment of the application, by defining the shape of the snap-fit notch 4411, the snap-fit notch 4411 is made to cooperate with the device leg 41, so as to better restrict the movement of the leg support 416 in the direction of disengaging from the base assembly 100.
[0359] For details regarding the specific structure of the locking device 442, please refer to [link / reference] in some embodiments. Figure 31 The locking component 442 includes a first locking part 4421 and a second locking part 4422. One end of the first locking part 4421 is slidably connected to the base assembly 100. The second locking part 4422 is disposed on the first locking part 4421. The snap-fit member 441 is movably connected to the first locking part 4421 and is located below the second locking part 4422.
[0360] In some embodiments, the snap-fit member 441 is provided with a hole, and the first locking part 4421 passes through the hole on the snap-fit member 441 and the diameter of the first locking part 4421 is smaller than the diameter of the hole on the snap-fit member 441, so as to realize the snap-fit member 441 and the first locking part 4421 in a movable connection.
[0361] In some embodiments, the second locking part 4422 is fixed to the first locking part 4421; in other embodiments, the position of the second locking part 4422 on the first locking part 4421 is adjustable.
[0362] In this embodiment, by providing a first locking part 4421, a sliding connection with the base assembly 100 can be achieved; by providing a second locking part 4422, the snap-fit member 441 is prevented from disengaging upward from the first locking part 4421; by providing a movable connection between the snap-fit member 441 and the first locking part 4421, the position of the snap-fit member 441 can be easily adjusted so that the snap-fit notch 4411 on the snap-fit member 441 faces the support leg connection part 417, making it easy for the support leg connection part 417 to pass through the snap-fit notch 4411.
[0363] In some embodiments, the first locking part 4421 and the second locking part 4422 are threadedly connected.
[0364] In this embodiment of the application, when the garment processing machine 200 and the equipment support leg 41 are fixed by the fixing structure 400, the second locking part 4422 can be loosened so that the snap-fit component 44 is in the unlocked state. The first locking part 4421 is slid so that the snap-fit member 441 extends toward the support leg connecting part 417 so that the support leg connecting part 417 passes through the snap-fit notch 4411. Then the second locking part 4422 is tightened so that the snap-fit member 441 is fixed on the base assembly 100. At the same time, the first locking part 4421 is also fixed on the base assembly 100.
[0365] In this embodiment of the application, by setting the first locking part 4421 and the second locking part 4422 to be threadedly connected, the connection method of the first locking part 4421 and the second locking part 4422 is simple and convenient to fix the first locking part 4421 and the snap-fit part 441 on the base assembly 100.
[0366] Regarding the sliding connection between the first locking part 4421 and the base assembly 100, please refer to some embodiments. Figure 35 The top surface of the base assembly 100 is provided with a base slot 113 that cooperates with the first locking part 4421. The length direction of the base slot 113 is along the moving direction of the first locking part 4421. The first locking part 4421 includes a head, which is located in the base slot 113. Along the moving direction perpendicular to the first locking part 4421, the length of the head of the first locking part 4421 is greater than the width of the slot opening of the base slot 113.
[0367] In this embodiment, the first locking part 4421 can move along the length direction of the base slot 113; in addition, since the length of the head of the first locking part 4421 is greater than the width of the slot opening of the base slot 113 along the direction perpendicular to the movement direction of the first locking part 4421, the movement of the first locking part 4421 in the direction extending out of the base slot 113 along the height direction can be restricted.
[0368] In this embodiment, the head of the first locking part 4421 is inserted into the slot 113 of the base to achieve a sliding connection between the first locking part 4421 and the base assembly 100. The connection structure is simple and easy to process and manufacture.
[0369] The foregoing describes that in some embodiments, the base assembly 100 includes an inner frame 11 and a top plate 15 disposed on top of the inner frame 11. In some embodiments, see [link to relevant documentation]. Figure 35 The top plate 15 has a notch 158 to avoid the first locking part 4421. The first locking part 4421 passes through the notch 158 on the top plate 15 and is slidably connected to the inner frame 11. Please refer back to the previous section. Figure 13The diagram illustrates a notch 158 on the top plate 15, the size of which defines the sliding stroke of the first locking part 4421 relative to the inner frame 11. In other embodiments, the base assembly 100 includes the inner frame 11, but does not include the top plate 15 disposed on top of the inner frame 11; that is, the garment processor 200 is directly supported on the inner frame 11, and the first locking part 4421 is slidably connected to the inner frame 11.
[0370] In some embodiments, please refer back to the previous section. Figure 13 The notch 158 on the top plate 15 extends to the edge of the top plate 15; in other embodiments, the notch 158 on the top plate 15 is a hole on the top plate 15.
[0371] In some embodiments, please refer back to the previous section. Figure 13 The top plate 15 has four notches 158, and two notches 158 are provided on two opposite edges. Each notch 158 is used to avoid the corresponding first locking part 4421.
[0372] In some embodiments, the internal frame 11 is constructed from aluminum profiles (i.e., the vertical beams 111 and horizontal beams 112 of the internal frame 11 are made of aluminum profiles). Please refer to [link to relevant documentation]. Figure 36 A slot 113 extending along the length of the aluminum profile is formed on the outer surface of the aluminum profile. The slot 113 on the aluminum profile is used to form the base slot 113 on the base assembly 100. That is, in this embodiment of the application, the slot 113 on the aluminum profile is used as the base slot 113 that cooperates with the first locking part 4421.
[0373] In some embodiments, two equipment legs 41 arranged opposite to each other along the second direction, i.e. the front-back direction of the garment processing machine 200, are supported on the same transverse beam 112, and two first locking parts 4421 arranged opposite to each other along the second direction are respectively inserted into the same slot 113 on the same transverse beam 112.
[0374] In this embodiment of the application, by utilizing the slot 113 on the aluminum profile as a base slot 113 that cooperates with the first locking part 4421, it is possible to avoid additionally opening a bottom slot 114 on the internal frame 11.
[0375] In some embodiments, the first locking portion 4421 and the second locking portion 4422 are bolt assemblies. By setting the first locking portion 4421 and the second locking portion 4422 as bolt assemblies, the structure of the first locking portion 4421 and the second locking portion 4422 is simplified.
[0376] In some embodiments, the head of the first locking part 4421 is T-shaped with the screw part, and the length of the head is greater than the width of the slot 114 at the bottom. When the first locking part 4421 is inserted into the bottom slot 114, the head of the first locking part 4421 is inserted into the bottom slot 114 with its length direction parallel to the length direction of the bottom slot 114, and then the first locking part 4421 is rotated (approximately 90°) so that the head of the first locking part 4421 cannot disengage from the bottom slot 114 along the height direction. Please refer to [link / reference]. Figure 37 This illustrates that the head of the first locking part 4421 is stuck in the bottom slot 114.
[0377] In some embodiments, the bottom slot 114 is provided with a flared opening, the width of which along the direction perpendicular to the movement of the first locking part 4421 is greater than the diameter of the head, such that when the first locking part 4421 is inserted into the bottom slot 114, the head of the first locking part 4421 can be inserted into the inner frame 11 through the flared opening. In this embodiment, the head of the first mounting member 42 may be hexagonal.
[0378] In some embodiments, see Figure 37 An anti-rotation boss 4423 is formed on the first locking part 4421. The anti-rotation boss 4423 cooperates with the wall surface of the bottom slot 114 to prevent the first locking part 4421 from rotating relative to the inner frame 11 when the second locking part 4422 is screwed onto the first locking part 4421.
[0379] The slot 114 at the bottom includes a first slot wall 1141 and a second slot wall 1142 that are arranged opposite to each other along the width of the slot. In one example, an anti-rotation boss 4423 can be provided to cooperate with the first slot wall 1141. When the second locking part 4422 is screwed into the first locking part 4421 in the first rotation direction (e.g., clockwise), the anti-rotation boss 4423 is in contact with the first slot wall 1141, which can restrict the first locking part 4421 from rotating in the first rotation direction. Alternatively, in other examples, the anti-rotation boss 4423 can be provided to contact both the first slot wall 1141 and the second slot wall 1142, thereby restricting the first locking part 4421 from rotating relative to the inner frame 11.
[0380] It is worth noting that when the first locking part 4421 is a T-bolt, the anti-rotation boss 4423 is formed on the threaded part of the first locking part 4421. When the first locking part 4421 is inserted into the bottom slot 114, the head of the first locking part 4421 is inserted into the bottom slot 114 in such a way that the length direction of the head of the first locking part 4421 is parallel to the length direction of the bottom slot 114. Then, the first locking part 4421 is rotated in the first rotation direction (rotated by about 90°) so that the anti-rotation boss 4423 comes into contact with the wall surface 1141 of the first slot.
[0381] It is worth noting that when the first locking part 4421 is a hexagonal bolt, the anti-rotation boss 4423 is formed on the threaded part of the first locking part 4421. The first locking part 4421 is inserted into the bottom slot 114 by flaring the opening, and then the first locking part 4421 is slid along the length direction of the bottom slot 114. After sliding into place, the first locking part 4421 is rotated in the first rotation direction (rotated about 90°) so that the anti-rotation boss 4423 comes into contact with the wall surface 1141 of the first slot.
[0382] It is worth noting that the above embodiment describes the formation of an anti-rotation boss 4423 on the first locking part 4421. The anti-rotation boss 4423 cooperates with the wall surface of the bottom slot 114 to prevent the first locking part 4421 from rotating relative to the inner frame 11 when the second locking part 4422 is screwed onto the first locking part 4421. In other embodiments, an abutment surface can also be provided on the inner frame 11. When the first locking part 4421 slides into place along the length direction of the bottom slot 114, the first locking part 4421 (such as the head of the first mounting member) contacts the abutment surface to prevent the first locking part 4421 from rotating relative to the inner frame 11 when the second locking part 4422 is screwed onto the first locking part 4421.
[0383] In some embodiments, a gasket 45 is also fitted onto the first locking part 4421. In some embodiments, a gasket 45 is provided between the second locking part 4422 and the snap-fit member 441, and / or, a gasket 45 is provided between the head of the first locking part 4421 and the inner side of the bottom slot 114.
[0384] The above-described embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this application, and should all be included within the protection scope of this application.
Claims
1. A top plate, characterized in that, The top plate is arranged on the top of the base assembly, and the base assembly is used to support the clothes processor; A positioning structure is arranged on the top plate, and the positioning structure is used to abut against the equipment feet on the clothes processor to position the clothes processor on the top plate.
2. The top plate according to claim 1, wherein The positioning structure is a stamping protrusion on the top plate.
3. The top plate according to claim 1, characterized in that, The height of the positioning structure is less than the height of the equipment feet.
4. The top plate according to claim 1, wherein The positioning structure includes more than two first limiting side surfaces, and every two of the first limiting side surfaces are arranged opposite to each other in a first direction and respectively abut against the inner side surfaces of two of the equipment feet arranged opposite to each other in the first direction; and / or, The positioning structure includes more than two second limiting side surfaces, and every two of the second limiting side surfaces are arranged opposite to each other in a second direction and respectively abut against the inner side surfaces of two of the equipment feet arranged opposite to each other in the second direction.
5. The top plate according to claim 4, wherein The first direction is perpendicular to the second direction.
6. The top plate according to claim 4, wherein The positioning structure includes at least one positioning protrusion, and each positioning protrusion is formed with the first limiting side surface and / or the second limiting side surface.
7. The top plate according to claim 6, wherein Two positioning protrusions arranged opposite to each other in the first direction are symmetrically arranged, and / or, two positioning protrusions arranged opposite to each other in the second direction are symmetrically arranged.
8. The top plate according to claim 6, wherein The positioning protrusion further includes a connecting side curved surface. In the same positioning protrusion, one end of the first limiting side surface is connected to one end of the second limiting side surface, and the other end of the first limiting side surface is connected to the other end of the second limiting side surface through the connecting side curved surface.
9. The top plate according to claim 8, characterized in that, In the same positioning protrusion, relative to the connecting side curved surface, the first limiting side surface and the second limiting side surface are located on the side背离 the central axis of the top plate.
10. The top plate according to claim 8, wherein, The first limiting side surface is perpendicular to the second limiting side surface.
11. A base assembly, characterized in that, It includes an internal frame and the top plate according to any one of claims 1-10, and the top plate is arranged on the upper surface of the internal frame.
12. The base assembly according to claim 11, wherein, The base assembly further includes a front side frame, and the front side frame is arranged on one side of the internal frame and the two are connected, and an opening is formed on the front side frame.
13. The base assembly according to claim 11, wherein The base assembly further includes a left side plate, a right side plate and a rear back plate. The left side plate, the right side plate, the rear back plate and the top plate are all connected to the internal frame. The top plate is arranged on the top of the internal frame. The left side plate and the right side plate are arranged opposite to each other in the first direction on both sides of the internal frame. The rear back plate and the front side frame of the base assembly are arranged opposite to each other in the second direction on both sides of the internal frame.
14. The base assembly according to claim 13, wherein A guiding protrusion is arranged on the top plate, and a guiding hole slidably mated with the guiding protrusion is arranged on the left side plate or on the right side plate; or, a guiding hole is arranged on the top plate, and a guiding protrusion slidably mated with the guiding hole is arranged on the left side plate or on the right side plate.
15. The base assembly according to claim 11, wherein, A guiding protrusion is arranged on the top plate, and a guiding hole slidably mated with the guiding protrusion is arranged on the internal frame; or, a guiding hole is arranged on the top plate, and a guiding protrusion slidably mated with the guiding hole is arranged on the internal frame.
16. The base assembly according to claim 14 or 15, characterized in that, The guiding protrusion is inserted into the guiding hole, and the length of the guiding hole is greater than the diameter of the guiding protrusion. The length direction of the guiding hole is along the second direction.
17. The base assembly according to claim 13, wherein A limiting plate is provided on the edge of the top plate close to the rear back plate, and the limiting plate abuts against the rear back plate.
18. A laundry treating apparatus, characterized in that, It includes a laundry processor and the base assembly according to any one of claims 11-17. The laundry processor is supported on the base assembly, and equipment support feet are provided at the bottom of the laundry processor.
19. A cleaning system, characterized in that, It includes a floor cleaning device and the laundry processing device according to claim 18. An accommodation cavity for accommodating the floor cleaning device is formed inside the base assembly of the laundry processing device, and an opening communicating with the accommodation cavity is formed on the side surface of the base assembly.
20. The cleaning system according to claim 19, wherein, The floor cleaning device includes a cleaning base station and a cleaning robot. The cleaning base station is arranged in the accommodation cavity, and the cleaning robot is arranged in the cleaning base station.