Frame body, base assembly and cleaning system
The frame structure formed by multiple linear support members is combined with the decorative panel to form the base assembly, which solves the problem that the base structure is difficult to balance the capacity for accommodating space and bearing capacity, and achieves an improvement in stable support and space utilization.
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
In the existing technology, the base structure used to support clothing processing equipment is difficult to balance the need for storage space and strong load-bearing capacity.
The frame structure is formed by multiple linear support members and combined with decorative panels to form a base assembly. The main frame has a cavity for supporting the clothing processing equipment and accommodating the floor cleaning equipment.
It provides stable support while leaving ample room for other uses, thus improving the utilization rate of home space.
Smart Images

Figure CN224280818U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of cleaning equipment technology, and in particular relates to a frame body, a base assembly, and a cleaning system. Background Technology
[0002] To maximize the use of home space, related technologies offer a solution for stacking different home appliances; for example, washing machines and dryers can be stacked to reduce the floor space occupied by the appliances. However, traditional base structures cannot provide sufficient space while also offering strong stability and high load-bearing capacity.
[0003] To solve the above problems, it is necessary to develop a new type of base structure and a cleaning system with this base structure. Utility Model Content
[0004] The purpose of this application is to provide a frame body, a base assembly, and a cleaning system to solve the technical problem in the prior art that the base used to support clothing processing equipment cannot simultaneously meet the requirements of accommodating space and strong load-bearing capacity.
[0005] To achieve the above objectives, the technical solution adopted in this application is as follows:
[0006] In a first aspect, this application provides a frame body for supporting a garment processing device. The frame body is provided with a receiving cavity and includes a plurality of linear support members, wherein one of the linear support members is fixedly connected to at least two adjacent other linear support members to form the frame body.
[0007] In one possible implementation, one end of one of the linear support members is fixedly connected to an adjacent other linear support member by a connector.
[0008] One of the two linear support members that are fixedly connected has an assembly hole at at least one end in the length direction, and the other has a mounting hole opposite to the assembly hole. The connector passes through the mounting hole and is fixedly connected to the assembly hole.
[0009] In one feasible implementation, all of the linear support members have the same cross-section at any position along the length direction.
[0010] In one feasible implementation, the linear support includes vertical beams and transverse beams that are perpendicular to each other, wherein the number of vertical beams is at least three, all of which extend along a first direction and are spaced apart on a plane perpendicular to the first direction, and the transverse beams are fixedly connected to two adjacent vertical beams to form the frame body.
[0011] In one feasible implementation, the main body of the frame is a frame structure, and the transverse beam includes an end beam, which is fixedly installed at one end of the vertical beam in the first direction.
[0012] The end crossbeam includes a first crossbeam and a second crossbeam. There are at least two first crossbeams. The first crossbeams extend along a second direction and are spaced apart along a third direction. There are at least two second crossbeams. The second crossbeams extend along a third direction and are spaced apart along the second direction. The second direction and the third direction are orthogonal.
[0013] In one feasible implementation, the first crossbeam and the second crossbeam are fixedly connected. The assembly hole on the first crossbeam is a first assembly hole. There are at least two first assembly holes, which are respectively located at both ends of the first crossbeam in the length direction. The mounting hole that passes through the second crossbeam and mates with the first assembly hole is a first mounting hole. The first crossbeam and the second crossbeam are fixedly connected by a connector that passes through the first mounting hole and connects to the first assembly hole. The axial direction of the first mounting hole is parallel to the second direction.
[0014] In one feasible implementation, the second crossbeam is fixedly connected to the vertical beam, the assembly hole on the vertical beam is a second assembly hole, the number of the second assembly holes is at least one and is formed at one end of the vertical beam facing the second crossbeam, the mounting hole that passes through the second crossbeam and mates with the second assembly hole is a second mounting hole, the second crossbeam and the vertical beam are fixedly connected by a connector that passes through the second mounting hole and connects to the second assembly hole; the axial direction of the second mounting hole is parallel to the first direction.
[0015] In one feasible implementation, the first mounting hole and the second mounting hole are arranged at intervals along the third direction.
[0016] In one feasible implementation, the transverse beam includes a central transverse beam, which is fixedly installed at the middle of the vertical beam in the first direction, and the two ends of the central transverse beam in the length direction are respectively fixedly connected to different vertical beams.
[0017] The assembly hole opened on the middle crossbeam is the third assembly hole. There are at least two third assembly holes, which are respectively located at both ends of the middle crossbeam along its length. The mounting hole that passes through the vertical beam and mates with the third assembly hole is the third mounting hole. The middle crossbeam is fixedly connected by the connector that passes through the third mounting hole and connects to the third assembly hole.
[0018] In one feasible implementation, the central crossbeam includes a third crossbeam and a fourth crossbeam, the third crossbeam being parallel to the first crossbeam and the fourth crossbeam being parallel to the second crossbeam;
[0019] Along the first direction, the third crossbeam and the fourth crossbeam are arranged at intervals.
[0020] In one feasible implementation, at least a portion of the linear support member has at least one of a second fixing hole and a guide positioning groove on its circumferential outer side wall. The decorative panel can be movably connected to the frame body through the guide positioning groove, and the decorative panel can be installed on the frame body by fasteners passing through the second fixing hole.
[0021] In one feasible implementation, the frame body further includes bases connected to the vertical beam, the number of bases being at least three and located at one end of the vertical beam in the first direction.
[0022] In one feasible implementation, the foot is an adjustable foot.
[0023] In one feasible implementation, the assembly hole formed on the vertical beam and used to connect with the base is a fourth assembly hole, and the base is threadedly connected to the fourth assembly hole.
[0024] In one feasible implementation, an angle reinforcement is provided at the connection point of the two fixedly connected linear support members, and the two ends of the angle reinforcement are respectively fixedly connected to the two adjacent linear support members.
[0025] In one possible implementation, the linear support includes at least one of aluminum profiles and steel.
[0026] In a second aspect, this application also provides a base assembly for supporting a garment processing device. The base assembly includes a frame body as described in any of the above claims, and a decorative panel fixedly installed on the frame body. The base assembly has an opening communicating with the receiving cavity.
[0027] In a third aspect, this application also provides a cleaning system, including a garment processing device and the aforementioned base assembly, wherein the garment processing device is fixedly installed above the base assembly.
[0028] In one possible implementation, the cleaning system further includes a floor cleaning device, at least partially housed within the receiving cavity.
[0029] In one possible implementation, the ground cleaning equipment includes a cleaning base station and a cleaning host, with at least a portion of the cleaning base station located within the receiving cavity, the cleaning base station having a receiving cavity for accommodating the cleaning host.
[0030] Compared with the prior art, this application includes at least the following beneficial effects:
[0031] The frame body provided in this application embodiment can form a stable frame structure through multiple fixedly connected linear support members, while also leaving a large space within the frame structure for accommodation. After the frame body and decorative panel are combined to form a base assembly, the base assembly can stably support the clothing processing equipment located on it and form a cleaning system with the clothing processing equipment. Attached Figure Description
[0032] 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.
[0033] Figure 1 This is a schematic diagram of a certain structure of the cleaning system provided in an embodiment of this application;
[0034] Figure 2 Another structural schematic diagram of the cleaning system provided in the embodiments of this application;
[0035] Figure 3 for Figure 2 An explosion diagram;
[0036] Figure 4 This is a schematic diagram of the base assembly provided in an embodiment of this application;
[0037] Figure 5 This is a schematic diagram of the main frame structure in the base assembly provided in the embodiments of this application;
[0038] Figure 6 This is a structural schematic diagram of the frame body in the base assembly provided in an embodiment of this application from another angle;
[0039] Figure 7 for Figure 5 A schematic diagram of the structure of a linear support component in the diagram;
[0040] Figure 8 for Figure 7 A cross-sectional structural diagram of the linear support component in the diagram;
[0041] Figure 9An assembly structure diagram of the first and second crossbeams in the frame body provided in the embodiments of this application;
[0042] Figure 10 for Figure 9 A schematic diagram of the cross-sectional structure;
[0043] Figure 11 A structural diagram of the assembly of the second horizontal beam and the vertical beam in the frame body provided in the embodiments of this application;
[0044] Figure 12 for Figure 11 A schematic diagram of the cross-sectional structure;
[0045] Figure 13 A structural diagram of the assembly of the third horizontal beam and the vertical beam in the frame body provided in the embodiments of this application;
[0046] Figure 14 for Figure 13 A schematic diagram of the cross-sectional structure;
[0047] Figure 15 A structural diagram of the assembly of the fourth horizontal beam and the vertical beam in the frame body provided in the embodiments of this application;
[0048] Figure 16 for Figure 15 A schematic diagram of the cross-sectional structure;
[0049] Figure 17 A schematic diagram showing the connection between the base and the vertical beam in the frame body provided in an embodiment of this application;
[0050] Figure 18 for Figure 17 Enlarged view of the structure of region A in the middle.
[0051] The following are the labeling elements in the figure:
[0052] 100. Base assembly; 110. Opening; 200. Clothing processing equipment; 300. Floor cleaning equipment;
[0053] 10. Decorative panel; 11. First fixing hole; 101. Top cover plate; 102. Side panel; 102a. Front side panel; 102b. Rear panel; 102c. Left side panel; 102d. Right side panel;
[0054] 20. Frame main body; 21. Second fixing hole; 22. Guide positioning groove; 23. Linear support; 2301. Assembly hole; 23011. First assembly hole; 23012. Second assembly hole; 23013. Third assembly hole; 23014. Fourth assembly hole; 2302. Mounting hole; 23021. First mounting hole; 23022. Second mounting hole; 23023. Third mounting hole; 231. Vertical 232. Horizontal beam; 2321. First horizontal beam; 2322. Second horizontal beam; 2323. Third horizontal beam; 2324. Fourth horizontal beam; 24. Connector; 25. Base; 251. Screw; 26. Angle reinforcement; 201. Top surface; 202. Side surface; 202a. Front side; 202b. Rear side; 202c. Left side; 202d. Right side; 203. Receiving cavity; 204. Clearance clearance;
[0055] 30. Fasteners;
[0056] 40. Pipe passing through a hole;
[0057] X, first direction; Y, second direction; Z, third direction;
[0058] P1, the first plane; P2, the second plane. Detailed Implementation
[0059] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.
[0060] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.
[0061] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, 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, and therefore should not be construed as a limitation of this application.
[0062] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.
[0063] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a connection that allows communication between components; 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, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0064] 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.
[0065] In this application, unless otherwise expressly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0066] In this application, the terms "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0067] To maximize the use of home space, one related technology offers a solution for stacking different home appliances, such as washing machines and dryers, to reduce the floor space they occupy. Based on this idea, a clothing handling device could be placed on a base, creating storage space within which other appliances could be arranged, further improving space utilization. However, traditional base structures cannot simultaneously provide sufficient storage space while also offering strong stability and high load-bearing capacity.
[0068] The purpose of this application is to provide a frame body, a base assembly, and a cleaning system to solve the technical problem in the prior art that the base used to support clothing processing equipment cannot simultaneously meet the requirements of accommodating space and strong load-bearing capacity. Figure 1 This is a schematic diagram of a certain structure of the cleaning system provided in an embodiment of this application. Figure 2 This is another structural schematic diagram of the cleaning system provided in an embodiment of this application. Figure 3 for Figure 2 An explosion diagram.
[0069] Please see Figures 1-3 This application provides a cleaning system. For ease of description, this application defines the height direction of the cleaning system at its top and bottom as the first direction X (i.e., the X-axis direction), the direction of the cleaning system on its front and back sides as the second direction Y (i.e., the Y-axis direction), and the direction of the cleaning system on its left and right sides as the third direction Z (i.e., the Z-axis direction), wherein the X-axis direction, the Y-axis direction, and the Z-axis direction are mutually perpendicular.
[0070] Please see Figure 1 This application provides a cleaning system that includes a clothing processing device 200 and a base assembly 100, wherein the clothing processing device 200 is stacked on top of the base assembly 100.
[0071] Specifically, the base assembly 100 supports the garment processing device 200 via its top surface 201 in the first direction X, that is, the base assembly 100 is used to carry and support the garment processing device 200.
[0072] The specific functions of the garment processing equipment 200 are not limited. Specifically, the garment processing equipment 200 may have washing and / or drying functions. That is to say, the garment processing equipment 200 can be a washing machine, dryer, or washer-dryer combo, etc.
[0073] In one embodiment, a garment processing device 200 is supported on a base assembly 100.
[0074] Specifically, in the third direction Z, the size of the base assembly 100 is basically the same as the size of the garment processing device 200; similarly, in the second direction Y, the size of the base assembly 100 is basically the same as the size of the garment processing device 200.
[0075] In other similar embodiments, a base assembly 100 may support two garment processing devices 200. In this case, in the third direction Z, the size of the base assembly 100 should be substantially consistent with the size of the two garment processing devices 200.
[0076] For ease of description, the following mainly uses the example of a garment processing device 200 supported and installed on the base assembly 100 to introduce the structure of the cleaning system, base assembly 100, frame body 20 and other structures provided in the embodiments of this application.
[0077] The base assembly 100 has a receiving cavity 203, and an opening 110 is formed on one side of the cavity in the circumferential direction. The opening 110 is connected to the receiving cavity 203. Please refer to [link / reference]. Figure 1 The aforementioned receiving cavity 203 has a storage function and can be used to store cleaning supplies and consumables. Users can access the items placed in the receiving cavity 203 through the opening 110.
[0078] The garment processing device 200 has a main garment processing unit for accommodating garments. This main unit has a loading port for loading garments, and a door is located outside the main unit and is movable relative to the loading port to open or close it. The relative position of the door of the garment processing device 200 and the opening 110 on the base assembly 100 can be rationally configured according to the design of the user's room to meet the needs of different users. For example, the door and opening 110 can be configured to face different sides.
[0079] In one embodiment, the door of the garment processing device 200 is located on the periphery of the garment processing device 200 and faces the same direction as the opening 110 formed on the base assembly 100.
[0080] For ease of description, the following description mainly uses the example of the door opening 110 facing the same side to describe the structure of the cleaning system provided in the embodiment of this application.
[0081] In some embodiments, the base assembly 100 can store and accommodate the floor cleaning equipment 300 through the receiving cavity 203. (See also...) Figure 2 and Figure 3 .
[0082] At least a portion of the floor cleaning device 300 can be placed within the receiving cavity 203 of the base assembly 100 through the opening 110, thus spatially arranging it below the garment handling device 200. In this case, the user can perform routine maintenance on the floor cleaning device 300 located within the receiving cavity 203 through the opening 110.
[0083] Specifically, the aforementioned floor cleaning device 300 may have a cleaning base station and a cleaning host that cooperate with each other. The cleaning host has a cleaning module disposed on the bottom surface of the cleaning host for cleaning the floor. The cleaning module may include at least one of the following: mop, rag, sponge, brush, roller, roller brush, or side brush, etc., capable of cleaning the floor; this application does not limit this. The cleaning host has sweeping and / or mopping functions. The cleaning host may be at least one of the following: a sweeping robot, a mopping robot, a floor washing robot, or a sweeping and mopping robot.
[0084] The cooperation between the cleaning base station and the cleaning host means that the cleaning base station acts as a docking station for the cleaning host. When the cleaning host starts working, it can start from the cleaning base station and perform the corresponding cleaning task. When the cleaning host completes the cleaning task or other situations require the cleaning task to be stopped, the cleaning host can return to the cleaning base station to perform at least one or more of the following tasks: charging, water replenishment, cleaning, dust collection, etc.
[0085] In one embodiment, the cleaning base station can be entirely located within the receiving cavity 203 of the base assembly 100. Correspondingly, when the cleaning host is located within the cleaning base station, it can also be entirely located within the receiving cavity 203. In this case, the cleaning host can enter and exit relative to the cleaning base station through the opening 110. When only a portion of the cleaning base station's structure is located within the receiving cavity 203, the cleaning host docked within the cleaning base station can be entirely located within the receiving cavity 203, or only a portion of its structure can be located within the receiving cavity 203. This embodiment does not impose any limitations on this.
[0086] In one embodiment, the aforementioned cleaning base station can be integrated with the base assembly 100, meaning the base assembly 100 can constitute at least part of the outer shell of the cleaning base station. The various electrical components within the cleaning base station can be directly arranged within the receiving cavity 203, making the cleaning base station and the base assembly 100 a single integrated structure. Correspondingly, when the cleaning host is located within the cleaning base station, it can also be entirely located within the receiving cavity 203, in which case the cleaning host can enter and exit relative to the cleaning base station through the opening 110. When only a portion of the cleaning base station's structure is located within the receiving cavity 203, the cleaning host docked within the cleaning base station can be entirely located within the receiving cavity 203, or only a portion of its structure can be located within the receiving cavity 203. This embodiment does not impose any limitations on this.
[0087] The ground cleaning equipment 300 provided in this application embodiment has automatic water supply and drainage functions. Automatic water supply means that the external water source can be controlled to automatically flow into the clean water tank of the cleaning base station in the ground cleaning equipment 300 so as to clean the cleaning host's rags, etc. Automatic drainage is mainly to drain the wastewater generated during the cleaning of the rags.
[0088] Regarding the automatic water supply of the ground cleaning equipment 300, specifically, the internal water supply system of the cleaning base station is connected to the external water supply system of a household or building via pipes. In one embodiment, the internal water supply system of the cleaning base station 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 drops to a certain level, the water level sensor sends a signal to the controller of the cleaning base station. 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.
[0089] Regarding the automatic drainage of the ground cleaning equipment 300, specifically, the internal drainage system of the cleaning base station discharges wastewater into sewers or other drainage facilities through drainage pipes. In one embodiment, wastewater in the cleaning tray of the cleaning base station is discharged to the drainage pipe through the internal drainage system under the action of gravity; in other embodiments, the internal drainage system includes a drainage pump, which is used to pump out the wastewater from the cleaning tray of the cleaning base station.
[0090] This arrangement reduces the space occupied by cleaning equipment by stacking different cleaning devices, thus improving the utilization of indoor space. On the other hand, since the clothing handling equipment 200 is generally placed near functional components with water supply and drainage (such as faucets and floor drains), when the floor cleaning equipment 300 and the clothing handling equipment 200 are placed in the same location, the floor cleaning equipment 300 and / or the clothing handling equipment 200 can utilize the existing water supply and drainage components to achieve water inlet and outlet, thus making full use of the original water supply and drainage components.
[0091] It should be noted that the clothing handling equipment 200 and the floor cleaning equipment 300 can form a unified cleaning system, or the clothing handling equipment 200 and a part of the floor cleaning equipment 300 can form a unified cleaning system.
[0092] It should be noted that the water supply pipes of the clothing processing device 200 and the floor cleaning device 300 can be the same pipe or separate pipes; correspondingly, the drain pipes can also be the same pipe or separate pipes, and this application embodiment does not limit them.
[0093] In some embodiments, the cleaning base station has a accommodating cavity and a base station door communicating with the accommodating cavity. When the cleaning base station receives a command from the cleaning host to return to the cleaning base station, the controller of the cleaning base station controls the base station door to open, so that the cleaning host can enter the accommodating cavity.
[0094] In some embodiments, the cleaning base station further includes a dust collection bag and a dust chamber door corresponding to the dust collection bag, the dust collection bag being detachably installed inside the cleaning base station. The dust chamber door can be positioned above the base station door in a first direction X, or on one side of the base station door in a third direction Z. The dust chamber door can be opened and closed via a controller or manually. When the dust chamber door is open, the user can manually replace the dust collection bag.
[0095] Of course, in other embodiments, only the dust chamber door can be provided as needed. In this case, the cleaning base station has no base station door structure, and the accommodating cavity for the cleaning host is always in an open state.
[0096] In one embodiment, please refer to Figure 3 The opening 110 formed on the base assembly 100 has a dimension in the third direction Z that is not less than the dimension of the cleaning base station in the third direction Z, and the upper end height of the opening 110 in the first direction X is not less than the height of the top surface 201 of the cleaning host placed in the accommodating cavity. This is to facilitate the cleaning host to enter and exit relative to the cleaning base station through the opening 110.
[0097] Specifically, the size of the opening 110 in the third direction Z is larger than the size of the cleaning base in the third direction Z, so as not to affect the normal movement of the cleaning host and the mounting and dismounting of the piles.
[0098] In other embodiments, the size of the opening 110 in the third direction Z can be set to be slightly larger than the size of the cleaning base station in the same direction, with a size difference of 5mm to 10mm. For example, the difference can be at least one of 5mm, 6mm, 7mm, 8mm, 9mm, and 10mm. Similarly, the difference between the height of the opening 110 and the top surface 201 of the cleaning host can also be the above-mentioned values.
[0099] Figure 4 This is a schematic diagram of the structure of the base assembly 100 provided in the embodiments of this application. Figure 5 This is a structural schematic diagram of the frame body 20 in the base assembly 100 provided in this embodiment of the application.
[0100] Please see Figure 4 The top surface 201 of the base assembly 100 is used to connect to and support the garment processing device 200, and a receiving cavity 203 is formed inside it. The base assembly 100 is also provided with an opening 110 that communicates with the receiving cavity 203.
[0101] Specifically, the opening 110 is located on one side of the base assembly 100 in the second direction Y. The cleaning host can enter and exit relative to the receiving cavity 203 through the opening 110. Users can also perform routine maintenance on the cleaning base station located in the receiving cavity 203 through the opening 110, such as wiping the sensors, cleaning the cleaning tray, and replacing consumable parts.
[0102] To facilitate the installation and layout of the clean base station, in some embodiments, the aforementioned base assembly 100 is configured as a baseless structure.
[0103] Specifically, there is a gap between the base assembly 100 and the ground on the side of the base assembly 100 near the ground in the second direction Y, which forms a clearance gap 204 that communicates with the aforementioned receiving cavity 203.
[0104] When the base assembly 100 is directly placed on the mounting surface (e.g., the ground), the receiving cavity 203 is directly connected to the mounting surface, and the cleaning base station located in the receiving cavity 203 is directly placed on the mounting surface. This structure can reduce the impact of the height of the base assembly 100 on the installation of the cleaning base station. Correspondingly, the cleaning host that cooperates with the cleaning base station can also smoothly drive out or return relative to the cleaning base station before and after the height of the base assembly 100 is adjusted, provided that the size of the opening 110 is large enough for the cleaning host to pass through.
[0105] In addition, the absence of a base plate on the base assembly 100 helps to reduce the height of the base assembly 100, thereby helping to reduce the installation height of the garment processing equipment 200. The lower the height of the base assembly 100, the lower the center of gravity of the garment processing equipment 200 arranged on the base assembly 100, and the higher the stability of the garment processing equipment 200 during operation.
[0106] Of course, in other embodiments, the base assembly 100 may also have a base plate. In this case, when the cleaning substrate is located within the receiving cavity 203, the cleaning base station is directly arranged on the base plate.
[0107] Please see Figure 4 The base assembly 100 includes a frame body 20 and a decorative panel 10, wherein the decorative panel 10 is mounted on the frame body 20 to form the outer wall of the frame body 20. A receiving cavity 203 is formed inside the frame body 20. The frame body 20 mainly provides a certain supporting function, and the decorative panel 10 mounted on the frame body 20 can be used to close the side walls of the frame body 20, while also having a certain aesthetic function.
[0108] It is understood that after the decorative panel 10 is installed on the frame body 20 and forms the outer wall of the frame body 20, the aforementioned receiving cavity 203 is defined between the frame body 20 and the decorative panel 10.
[0109] In some embodiments, the frame body 20 constituting the base assembly 100 includes a plurality of linear support members 23 and a base foot 25 located at the bottom of the frame body 20 for contacting the mounting surface and supporting the frame structure assembled from the linear support members 23.
[0110] Specifically, the aforementioned clearance 204 and the base 25 are formed at the same height.
[0111] In some embodiments, the frame body 20 has a generally cubical structure. Four linear support members 23 constituting the frame body 20 extend along the first direction X and form vertical beams 231. Base feet 25 are installed at the ends of the vertical beams 231 near the mounting surface in the first direction X. The four vertical beams 231 are located on the four edges of the frame body 20, and correspondingly, the four base feet 25 are installed at the four apex corners of the bottom of the frame body 20 near the mounting surface. (See also...) Figure 5 .
[0112] Please see Figure 4 and Figure 5 The frame body 20 has eight vertices. Four vertical beams 231 are parallel and of equal length. Four horizontal edges formed at the top of the frame body 20 are composed of four horizontally extending transverse beams 232, connected sequentially to form a square or rectangular structure. The four vertical edges are perpendicularly connected to the four horizontal edges, forming an approximately cubic structure. One end of each of the four vertical edges formed by the vertical beams 231 contacts the square frame formed by the transverse beams 232, forming a load-bearing end face supporting the clothing processing equipment 200. The other end of the vertical beams 231 can directly or through the base 25 contact the mounting surface to transmit the load provided by the clothing processing equipment 200.
[0113] Of course, in other embodiments, the frame body 20 may also be approximately triangular prism or other similar structures. For ease of description, the following description uses the frame body 20 and the base assembly 100 as an example, which are approximately cubic in shape.
[0114] All decorative panels 10 are installed on the outside of the frame body 20 and fixedly connected to the frame body 20. In some embodiments, the decorative panel 10 is provided with a first fixing hole 11, and the frame body 20 is provided with a second fixing hole 21 that mates with the first fixing hole 11. The decorative panel 10 and the frame body 20 can be fixedly connected by fasteners 30 passing through the first fixing hole 11 and the second fixing hole 21.
[0115] In some embodiments, the fastener 30 may be a bolt or screw with external threads, and the fastener 30 may pass through the decorative panel 10 and the frame body 20 arranged opposite to each other, and fix the decorative panel 10 to the outside of the frame body 20.
[0116] To facilitate installation, at least one linear support member 23 can be pre-drilled to form multiple second fixing holes 21, facilitating the fixed connection between the linear support member 23 and the decorative panel 10. It should be noted that the drilling positions of the linear support members 23 at different installation locations can be the same or different. The actual drilling positions need to be adjusted adaptively according to design requirements.
[0117] Specifically, the second fixing hole 21 formed on the frame body 20 can be set as a threaded hole, and the fastener 30 can be threadedly connected to the second fixing hole 21; or, the second fixing hole 21 can be set as a through hole structure that penetrates the frame body 20, and after the fastener 30 passes through the first fixing hole 11 and the second fixing hole 21, it can be threadedly fastened to the nut or other structure located in the frame body 20, so as to achieve a fixed connection between the decorative panel 10 and the frame body 20.
[0118] In other embodiments, a plurality of guide positioning grooves 22 extending along their length direction may be provided on the outer surface of the linear support member 23 constituting the frame body 20. The guide positioning grooves 22 may be used to engage with the decorative panel 10 or to hang the protruding part of the decorative panel 10 to achieve initial fixation of the decorative panel 10.
[0119] After the decorative panel 10 is initially fixed to the frame body 20 formed by assembling multiple linear support members 23, the decorative panel 10 can be further fixed by fasteners 30. This structure helps to reduce the assembly difficulty of the decorative panel 10 and improve the assembly efficiency of the base assembly 100.
[0120] Please see Figure 4 and Figure 5 The aforementioned frame body 20 has at least a top surface 201 and a side surface 202, wherein the top surface 201 is the end of the frame body 20 away from the base 25 in the first direction X, and the side surface 202 is the outer peripheral side of the frame body 20 in the first direction X. The decorative panel 10 installed on the top surface 201 of the frame body 20 is a top cover plate 101, and the decorative panel 10 installed on the side surface 202 of the frame body 20 is a side plate 102.
[0121] The frame body 20 has at least a plurality of sides 202, and therefore, the number of side plates 102 installed on the sides 202 of the frame body 20 is also a plurality.
[0122] For ease of description, the sides 202 of the frame body 20 are defined as including a front side 202a, a rear side 202b, a left side 202c, and a right side 202d. The side panel 102 installed on the front side 202a of the frame body 20 is called the front side panel 102a, and the side panel 102 installed on the rear side 202b of the frame body 20 is called the rear back panel 102b (due to angle limitations). Figure 4 The 102b mid-rear backplate is not visible; please refer to [link / reference]. Figure 3 The side plate 102 installed on the left side 202c of the frame body 20 is the left side plate 102c, and the side plate 102 installed on the right side 202d of the frame body 20 is the right side plate 102d.
[0123] If the garment processing device 200 is directly installed on the base assembly 100, and because the garment processing device 200 has support legs, there is a certain gap between the base assembly 100 and the bottom surface of the garment processing device 200, which affects the aesthetics of the device.
[0124] To solve the above problems, at least one side plate 102 is provided to protrude upward and extend a certain length relative to the top surface 201 of the upper cover plate 101 and the frame body 20, in order to cover the legs of the clothing processing device 200 and the gap formed between the upper cover plate 101 and the clothing processing device 200.
[0125] Please see Figure 4 and Figure 5 In the figure, the front side plate 102a is fixedly installed on the frame body 20 and closes the front side 202a of the frame body 20. The opening 110 formed on the base assembly 100 is opened on the front side plate 102a and communicates with the receiving cavity 203. The left side plate 102c is fixedly installed on the left side 202c of the frame body 20 to close the left side of the frame body 20. Correspondingly, the right side plate 102d is installed on the right side 202d of the frame body 20 to close the right side of the frame body 20. The left side plate 102c and the right side plate 102d are respectively arranged on both sides of the frame body 20 in the third direction Z. The rear back plate 102b is installed on the rear side 202b of the frame body 20 to close the rear side of the frame body 20. The rear back plate 102b and the front side plate 102a are respectively arranged on both sides of the frame body 20 in the second direction Y.
[0126] Considering that the floor cleaning equipment 300 arranged in the receiving cavity 203 needs to be connected to a component with water supply and drainage functions through pipes, in some embodiments, one of the back panel 102b, left side panel 102c, and right side panel 102d may be provided with a pipe through hole 40 (see [reference]). Figure 1 The inlet and / or drain pipes for connection with components having water supply and drainage functions extend outward from the receiving cavity 203 through the pipe through hole 40.
[0127] Please see Figure 3 The aforementioned pipe through-hole 40 is located on the rear back plate 102b (due to angle limitations). Figure 3 (The pipe through-hole 40 in the middle is not exposed).
[0128] Specifically, two pipe through holes 40 are provided on the back panel 102b. The two pipe through holes 40 are close to the bottom of the back panel 102b and are set far apart. One of the pipe through holes 40 can be used to connect a water inlet pipe to the internal water supply system of the cleaning base station, and the other pipe through hole 40 can be used to connect a drainage pipe to the internal drainage system of the cleaning base station.
[0129] The connection method between each decorative panel 10 and the frame body 20 has been disclosed in related technologies.
[0130] This application embodiment also provides a frame body 20, which can be used to fix the decorative panel 10 and form the base assembly 100 described above.
[0131] The frame body 20 is used to provide the load required to support the clothing handling equipment 200, and a receiving cavity 203 for accommodating the floor cleaning equipment 300 is formed within the frame body 20.
[0132] Please see Figure 5 The frame body 20 constituting the base assembly 100 includes a plurality of linear support members 23, at least one of which has an elongated shape and can be fixedly connected to at least two other adjacent linear support members 23 to form the frame body 20.
[0133] The linear support member 23 has a strong load-bearing capacity and can be used to support and transfer loads. In the frame body 20, different linear support members 23 can be arranged along a specific straight line direction, thereby providing linear support between multiple linear support members 23, and are fixedly connected by welding, bolting or other methods to form a stable spatial structure.
[0134] It should be noted that the frame body 20 formed by the fixed connection of the above-mentioned multiple linear support members 23 is a rigid structural unit with strong bending strength. It can maintain its shape unchanged in the structure. While the decorative panel 10 is installed on it and provides stable support for the clothing processing equipment 200, it maintains strong geometric stability. The length and cross-sectional dimensions of the long strip linear support member 23 can be adaptively adjusted according to the size of the frame body 20 and the installation position.
[0135] Of course, the linear support member 23 is also provided with the second fixing hole 21 mentioned above, for fixing the decorative part to the frame body 20. The second fixing hole 21 can be provided at intervals on the circumferential sidewall of the linear support member 23.
[0136] Please see Figure 5 At least one linear support member 23 can be fixedly connected to another adjacent linear support member 23. The length directions of any two connected linear support members 23 are different. For example, the two connected linear support members 23 are perpendicular to each other.
[0137] The connection methods mentioned above can include welding, mortise and tenon joints, and other structures.
[0138] In some embodiments, at least two adjacent linear support members 23 can be connected by a connector 24. In the two fixedly connected linear support members 23, one linear support member 23 has an assembly hole 2301 at at least one end in the length direction, and the other linear support member 23 has a mounting hole 2302 corresponding to the assembly hole 2301 in its opposite area. The connector 24 can pass through the mounting hole 2302 and be fixedly connected to the assembly hole 2301, thereby achieving a fixed connection between the two adjacent linear support members 23. The connector 24 can be a bolt or other component with a fastening function.
[0139] Specifically, the assembly hole 2301 can be set as a threaded hole, and the connector 24 can be threadedly engaged with the linear support 23 through the assembly hole 2301. The mounting hole 2302 can be formed in the guide positioning groove 22 of the linear support 23.
[0140] In some embodiments, the linear support 23 is an aluminum profile with a through hole in the middle.
[0141] In other embodiments, materials with strong supporting properties, such as steel, can also be used to prepare the linear support 23.
[0142] To further enhance the connection strength of the two fixedly connected linear support members 23 and improve the load-bearing capacity of the frame body 20, in some embodiments, corner stiffeners 26 can be fixedly installed at the connection point of the two fixedly connected linear support members 23. The corner stiffeners 26 can be fixedly connected to both connected linear support members 23 simultaneously.
[0143] Specifically, the aforementioned connection point refers to the area where the end of one linear support member 23 connects to another linear support member 23 and the surrounding area.
[0144] The aforementioned corner stiffener 26 can be a triangular structure, a bent L-shaped structure, or a similar structure. The corner stiffener 26 can be installed on the linear support 23 by bolt fixing. Its structure and assembly method have been disclosed in related technologies and will not be described in detail here.
[0145] Please see Figure 5The linear support member 23 includes vertical beams 231 and horizontal beams 232 that are perpendicular to each other. The vertical beams 231 extend along a first direction X, and the horizontal beams 232 are perpendicular to the vertical beams 231. Multiple horizontal beams 232 and vertical beams 231 are interconnected to form a stable frame body 20.
[0146] In some embodiments, the number of vertical beams 231 is at least three, and the number of horizontal beams 232 is also at least three. All the vertical beams 231 extend along a first direction X and are spaced apart in a plane perpendicular to the first direction X. At least one horizontal beam 232 is fixedly connected to two adjacent vertical beams 231 to form the frame body 20. Correspondingly, at least one vertical beam 231 is connected to at least two horizontal beams 232 to form the frame body 20.
[0147] In some embodiments, the frame body 20 has a cube-like structure with eight vertices. Among the linear support members 23 constituting the frame body 20, four linear support members 23 extend along the first direction X and form vertical beams 231, which are located on the four edges of the frame body 20 respectively.
[0148] Four vertical beams 231 are parallel to each other and of equal length. The four horizontal edges formed at the top of the frame body 20 are composed of four horizontal beams 232 extending in the horizontal direction and connected in sequence to form a rectangular structure. The four vertical edges are perpendicularly connected to the four horizontal edges to form an approximately cubic frame body 20. One end of the four vertical edges formed by the vertical beams 231 contacts the square frame formed by the horizontal beams 232, and is used to form the load-bearing end face supporting the clothing processing equipment 200.
[0149] Of course, in other similar embodiments, the frame body 20 can also be approximately triangular prism or other similar structures. For ease of description, the following description uses the frame body 20 and the base assembly 100 as an example, which are approximately cubic in shape.
[0150] Angle stiffeners 26 are fixedly installed at the joint of two horizontal beams 232 that are at least partially fixedly connected; alternatively, angle stiffeners 26 can also be fixedly installed at the joint of a horizontal beam 232 and a vertical beam 231 that are at least partially fixedly connected. The number and distribution of the angle stiffeners 26 can be adjusted adaptively according to the reinforcement needs of the frame body 20.
[0151] The transverse beams 232 on the frame body 20 include end beams. The end beams are located at one end of the frame body 20 in the first direction X. (See also...) Figure 5 In this embodiment, the frame body 20 is only provided with the aforementioned end beam at its top. In other embodiments, the frame body 20 may also be provided with the aforementioned end beam at its bottom, as needed.
[0152] For ease of description, the following explanation will use the example of the main frame 20 having only end beams at the top.
[0153] Figure 7 for Figure 5 A schematic diagram of the structure of a linear support member 23 in the diagram. Figure 8 for Figure 7 A cross-sectional structural diagram of the linear support member 23 in the diagram.
[0154] The cross-sectional shape of at least one linear support member 23 at different positions along the length direction may be the same or different. For ease of description, this application embodiment mainly takes the example that the outer contour shape of the cross-section of the linear support member 23 at various positions along the length direction is consistent to further illustrate the structure of the linear support member 23.
[0155] In some embodiments, the linear support 23 is a prismatic structure in its entirety, and its cross-section at any position along its length can be rectangular, T-shaped, or other similar shapes.
[0156] It is understood that the surface of the linear support 23 on one side in the circumferential direction can be a smooth surface, or partially recessed to form a groove extending along the length direction (e.g., the guide positioning groove 22 mentioned above). The linear support 23 has a quadrangular prism structure and a guide positioning groove 22 is provided on at least one side in the circumferential direction for guiding and pre-positioning at least a portion of the decorative panel 10. The outer contour of the linear support 23 in cross-section is a rectangular structure, with the corresponding edge of its cross-section protruding towards the center of the cross-section to form a groove. The structure corresponding to the groove is the guide positioning groove 22. Please refer to [link to relevant documentation]. Figure 7 and Figure 8 In other similar embodiments, the linear support 23 has a reinforcing rib protruding outward on at least one side in the circumferential direction. The corresponding edge of its cross-section protrudes to the side away from the center of the cross-section and forms a protrusion. The structure corresponding to the protrusion is the reinforcing rib.
[0157] In some embodiments, taking a linear support member 23 formed by machining an aluminum profile with a through hole as an example, the portion of the through hole on the aluminum profile near the end is used to form an assembly hole 2301. In this embodiment, the assembly hole 2301 with threads can be formed by tapping the portion of the through hole near the end of the linear support member 23.
[0158] Please see Figure 8The linear support member 23 has two parallel and spaced-apart through holes along its length. When tapping at least one end of the linear support member 23 along its length, both through holes can be tapped simultaneously, only one through hole can be tapped, or the ends of the two through holes pointing in different directions can be tapped separately. This embodiment does not impose any specific limitations on these methods.
[0159] In some embodiments, the transverse beams 232 constituting the frame body 20 further include a central transverse beam. The central transverse beam is located at the center of the frame body 20 in the first direction X. (See [link to relevant documentation]). Figure 5 The embodiment of this application provides three central crossbeams that avoid the opening 110 of the base assembly 100 to prevent obstruction of the opening 110.
[0160] Please see Figure 5 and Figure 6 , Figure 6 This is a structural schematic diagram of the frame body 20 of the base assembly 100 provided in this embodiment of the application from another angle. As can be seen, a central crossbeam is provided in the middle of the frame body 20 in the first direction X.
[0161] The assembly method of the linear support members 23 located at different positions of the frame body 20 is described below.
[0162] Figure 9 This is an assembly structure diagram of the first crossbeam 2321 and the second crossbeam 2322 in the frame body 20 provided in the embodiments of this application. Figure 10 for Figure 9 A schematic diagram of the cross-sectional structure.
[0163] The end crossbeams include a first crossbeam 2321 and a second crossbeam 2322. There are at least two first crossbeams 2321, all extending along a second direction Y and spaced apart along a third direction Z. There are also two second crossbeams 2322, extending along a third direction Z and spaced apart along the second direction Y, with the second direction Y and the third direction Z being orthogonal. The two first crossbeams 2321 and the two second crossbeams 2322 are connected sequentially to form a rectangular structure. Vertical beams 231 are fixedly installed at the four apex positions of the rectangular structure formed by the end crossbeams.
[0164] The first crossbeam 2321 and the second crossbeam 2322 can be fixedly connected in sequence through the assembly hole 2301 and the mounting hole 2302 under the action of the connector 24 to form a rectangular frame.
[0165] Specifically, the assembly hole on the first crossbeam 2321 is designated as a first assembly hole 23011, and there are at least two first assembly holes 23011. At least one first assembly hole 23011 is provided at least one end of the first crossbeam 2321 along its length. A first mounting hole 23021 is provided on the second crossbeam 2322 opposite to the first assembly hole 23011. The first mounting hole 23021 is arranged opposite to the first assembly hole 23011, and the connector 24 passes through and connects to the first mounting hole 23021 to achieve a fixed connection between the first crossbeam 2321 and the second crossbeam 2322. (See also...) Figure 9 and Figure 10 .
[0166] The first crossbeam 2321 extends along the second direction Y, therefore, the straight line containing the axis of all the first assembly holes 23011 also extends along the second direction Y. Correspondingly, the straight line containing the axis of the first mounting holes 23021 opened on the second crossbeam 2322 also extends along the second direction Y.
[0167] In order to facilitate the processing of the first mounting hole 23021 that penetrates the second crossbeam 2322, holes can be drilled in the area where the through hole is opened in the second crossbeam 2322, so as to reduce the processing difficulty of the first mounting hole 23021 by shortening the drilling length.
[0168] Please see Figure 9 and Figure 10 The first crossbeam 2321 and the second crossbeam 2322 are fixedly connected, and the through hole in the first crossbeam 2321 and the through hole in the second crossbeam 2322 are located on the same horizontal plane (i.e., a plane perpendicular to the first direction X). In this embodiment, a first mounting hole 23021 is provided on the second crossbeam 2322, and the first mounting hole 23021 penetrates the two opposite surfaces of the second crossbeam 2322 in the second direction Y. The first mounting hole 23021 cooperates with the first assembly hole 23011 in the first crossbeam 2321 near the middle of the frame body 20, and adjacent first crossbeams 2321 and second crossbeams 2322 are fixedly connected by a connector 24.
[0169] Two first crossbeams 2321 and two second crossbeams 2322 are connected in sequence to form a rectangular frame structure. At least one first crossbeam 2321 has a first assembly hole 23011 at at least one end in the length direction, and the axes of the two first assembly holes 23011 formed on the same first crossbeam 2321 coincide exactly. At least one second crossbeam 2322 has two first mounting holes 23021, and the first mounting holes 23021 are arranged opposite to the first assembly holes 23011 formed on the first crossbeam 2321.
[0170] Figure 11 This is a structural diagram of the assembled portion of the second horizontal beam 2322 and the vertical beam 231 in the frame body 20 provided in this embodiment of the application. Figure 12 for Figure 11 A schematic diagram of the cross-sectional structure.
[0171] Since the end of the second crossbeam 2322 extends relative to the end of the first crossbeam 2321 and forms the apex of the rectangular frame, the vertical beam 231 extending along the first direction X is fixedly connected to the second crossbeam 2322.
[0172] In this embodiment, there are four vertical beams 231, which are respectively installed at the four vertices of the rectangular frame formed by the end beams, and finally form an approximately cubic frame body 20.
[0173] The four vertical beams 231 are connected to the end crossbeams in the same way. The following description will only take the assembly structure of one vertical beam 231 and the second crossbeam 2322 as an example.
[0174] Specifically, the assembly hole on the vertical beam 231 is a second assembly hole 23012. There is at least one second assembly hole 23012, formed at one end of the vertical beam 231 facing the second horizontal beam 2322. A second mounting hole 23022 is formed on the second horizontal beam 2322 opposite to the first assembly hole 23011, penetrating the second horizontal beam 2322. The second mounting hole 23022 is positioned opposite to the second assembly hole 23012. The connector 24 passes through the second mounting hole 23022 and connects to the second assembly hole 23012 to achieve a fixed connection between the second horizontal beam 2322 and the vertical beam 231. Please refer to [link to relevant documentation]. Figure 11 and Figure 12 .
[0175] Please refer to the previous text for the arrangement of the second crossbeam 2322. It should be noted that, at this time, the two through holes opened on the vertical beam 231 are spaced apart along the second direction Y to ensure that the two through holes on the vertical beam 231 point to the two through holes on the second crossbeam 2322 and correspond one-to-one.
[0176] Since the second crossbeam 2322 has both a first mounting hole 23021 and a second mounting hole 23022, in order to avoid interference, the first mounting hole 23021 and the second mounting hole 23022 need to be arranged at intervals along the third direction Z.
[0177] Please see Figure 11 and Figure 12 The second mounting hole 23022 is formed on the outer side of the first mounting hole 23021 in the third direction Z.
[0178] In some embodiments, two through holes on the vertical beam 231 pointing towards one end of the second crossbeam 2322 are each machined to form a second assembly hole 23012. Two second assembly holes 23012 are formed through the two side surfaces 202 of the second crossbeam 2322 in the first direction X. The two assembly holes 23012 can be configured one-to-one with the second assembly holes 23012 formed on the vertical beam 231. The second assembly holes 23012 penetrate the opposite side surfaces of the second crossbeam 2322 in the first direction X. Adjacent vertical beams 231 and second crossbeams 2322 can be fixedly connected by two connectors 24.
[0179] After the vertical beam 231 is fixedly connected to the second horizontal beam 2322, the axial direction of the second assembly hole 23012 opened on the vertical beam 231 is consistent with the first direction X.
[0180] The transverse beam 232 includes a central transverse beam, which is fixedly installed at the middle of the vertical beam 231 in the first direction X, and at least one of the two ends of the central transverse beam in the length direction is fixedly connected to different vertical beams 231 respectively.
[0181] In some embodiments, the number of the above-mentioned central crossbeams is one, which is used to reinforce two adjacent vertical beams 231.
[0182] In other embodiments, the number of central crossbeams is two or three.
[0183] The assembly hole provided on the middle crossbeam is the third assembly hole 23013. For at least one middle crossbeam, the third assembly hole 23013 is provided at both ends in the length direction. That is, there are at least two third assembly holes 23013 on the middle crossbeam, and they are respectively provided at both ends in the length direction of the middle crossbeam.
[0184] Correspondingly, a third mounting hole 23023 is provided at the position opposite to the middle crossbeam of the vertical beam 231, which penetrates the vertical beam 231. The third mounting hole 23023 and the third assembly hole 23013 cooperate with each other, and the middle crossbeam can be fixedly connected by a connector 24 that passes through the third mounting hole 23023 and is connected to the third assembly hole 23013.
[0185] Figure 13 This is a structural diagram of the assembled portion of the third horizontal beam 2323 and the vertical beam 231 in the frame body 20 provided in this embodiment of the application. Figure 14 for Figure 13 A schematic diagram of the cross-sectional structure. Figure 15 This is a structural diagram of the assembled portion of the fourth horizontal beam 2324 and the vertical beam 231 in the frame body 20 provided in this embodiment of the application. Figure 16 for Figure 15 A schematic diagram of the cross-sectional structure.
[0186] The middle crossbeam includes a third crossbeam 2323 and a fourth crossbeam 2324, wherein the third crossbeam 2323 is parallel to the first crossbeam 2321, and the fourth crossbeam 2324 is parallel to the second crossbeam 2322.
[0187] Specifically, there are two third crossbeams 2323, each fixedly connected to a different vertical beam 231, and one fourth crossbeam 2324.
[0188] The third crossbeam 2323 has at least one third assembly hole 23013 at at least one end in the length direction. The vertical beam 231 has a third mounting hole 23023 that passes through the vertical beam 231 at a position opposite to the third assembly hole 23013. The third assembly hole 23013 and the third mounting hole 23023 are arranged opposite to each other. The connector 24 passes through the third mounting hole 23023 and the third assembly hole 23013 to connect with the third crossbeam 2323 and the vertical beam 231 to achieve a fixed connection between the third crossbeam 2323 and the vertical beam 231.
[0189] The third crossbeam 2323 extends along the second direction Y, therefore, the straight line containing the axis of all the third assembly holes 23013 also extends along the second direction Y. Correspondingly, the straight line containing the axis of the third mounting holes 23023 opened on the vertical beam 231 also extends along the second direction Y.
[0190] In this embodiment, each of the two through holes on the third crossbeam 2323 is provided with a third assembly hole 23013. Since the two through holes in the third crossbeam 2323 are spaced apart along the first direction X, the two third assembly holes 23013 on the third crossbeam 2323 are also spaced apart along the first direction X. Correspondingly, the two third mounting holes 23023 on the vertical beam 231 are also spaced apart along the first direction X. Adjacent third crossbeams 2323 and vertical beams 231 are fixedly connected by two connectors 24. Please refer to [link / reference]. Figure 13 and Figure 14 .
[0191] The structure of the fourth crossbeam 2324 is the same as that of the third crossbeam 2323. The difference is that, except that the lengths of the third crossbeam 2323 and the fourth crossbeam 2324 are not necessarily the same, the two through holes in the fourth crossbeam 2324 are arranged at intervals along the second direction Y. Please refer to [link / reference]. Figure 15 and Figure 16 Two third mounting holes 23023, opened on the vertical beam 231, are also arranged at intervals along the second direction Y. The adjacent third cross beams 2323 are fixedly connected to the vertical beam 231 by two connectors 24.
[0192] Considering that two vertical beams 231 need to connect the third horizontal beam 2323 and the fourth horizontal beam 2324 at the same time, in order to avoid interference during the installation of the third horizontal beam 2323 and the fourth horizontal beam 2324, the third horizontal beam 2323 and the fourth horizontal beam 2324 are arranged at intervals along the first direction X.
[0193] Since the aforementioned frame body 20 needs to be combined with the decorative panel 10 to form a base assembly 100 that can be made into a garment processing device 200, considering that the ground (or mounting surface) on which the aforementioned base assembly 100 is installed may not be perfectly level, in order to enable the frame body 20 to better adapt to uneven mounting surfaces, in some embodiments, the frame body 20 is further provided with a foot 25, which is installed at one end of the vertical beam 231 in the frame body 20 in the first direction X, that is, the end of the vertical beam 231 facing away from the top crossbeam.
[0194] Figure 17 This is a schematic diagram showing the connection between the base 25 and the vertical beam 231 in the frame body 20 provided in an embodiment of this application. Figure 18 for Figure 17 Enlarged view of the structure of region A in the middle.
[0195] In some embodiments, the frame body 20 has four vertical beams 231, and therefore four feet 25 are also present, each mounted on one of the four vertical beams 231. In this case, the vertical beams 231 can contact the mounting surface through the feet 25 to transmit the load provided by the garment handling device 200.
[0196] The aforementioned foot 25 is an adjustable foot 25. By adjusting the length of the foot 25 extending relative to the vertical beam 231 in the first direction X, the height of the four top corners of the frame body 20 can be adjusted so that the frame body 20 can better adapt to the not completely horizontal mounting surface, thereby achieving precise adjustment of the level of the clothing processing equipment 200 and ensuring that the clothing processing equipment 200 can work normally.
[0197] Please see Figure 18 The assembly hole opened at one end of the vertical beam 231 facing away from the top crossbeam is the fourth assembly hole 23014. The base 25 is movably connected to the vertical beam 231 through the fourth assembly hole 23014 and moves relative to the vertical beam 231 to adjust the height of the frame body 20 at the four top corners.
[0198] It should be noted that, Figure 18 The figure is mainly used to show the fourth assembly hole 23014 and the base 25. The structure of the vertical beam 231 in the figure is only schematic and is not intended to limit the structure of the vertical beam 231 in this embodiment or other similar embodiments.
[0199] Specifically, the base 25 includes a screw 251, and the fourth assembly hole 23014 is a threaded hole. The base 25 can be threadedly connected to the fourth assembly hole 23014 via the screw 251. By rotating the base 25, the height of the vertical beams 231 at the four corners of the frame body 20 can be easily adjusted.
[0200] In some embodiments, the plane on which the ends of all the feet 25 face away from the frame body 20 is the first plane P1, and the base plate of the floor cleaning device 300 located in the base assembly 100 is also located on the first plane P1.
[0201] In some embodiments, the base assembly 100 for supporting the clothing processing device 200 does not have a base plate. Therefore, the adjustment of the feet 25 will not affect the placement and use of the floor cleaning device 300 placed in the receiving cavity 203. Correspondingly, the cleaning unit can always move in and out of the receiving cavity 203 without being affected by the adjustment of the feet 25.
[0202] The plane containing the end of the frame body 20 facing away from the base 25 is the second plane P2. When the mounting surface of the base 25 is horizontal, the first plane P1 is parallel to the second plane P2. At this time, all the vertical beams 231 are perpendicular to the first plane P1.
[0203] The description of the various embodiments above tends to emphasize the differences between the various embodiments. The similarities or similarities between them can be referred to, and for the sake of brevity, they will not be repeated here.
[0204] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A frame structure, characterized in that, The frame body is used to support the clothing processing equipment. The frame body is provided with a receiving cavity. The frame body includes a plurality of linear support members, one of which is fixedly connected to at least two other adjacent linear support members to form the frame body.
2. The frame body according to claim 1, characterized in that, One end of one of the linear support members is fixedly connected to an adjacent other linear support member via a connector. One of the two linear support members that are fixedly connected has an assembly hole at at least one end in the length direction, and the other has a mounting hole opposite to the assembly hole. The connector passes through the mounting hole and is fixedly connected to the assembly hole.
3. The frame body according to claim 2, characterized in that, The linear support includes vertical beams and horizontal beams that are perpendicular to each other. The number of vertical beams is at least three. All the vertical beams extend along a first direction and are spaced apart on a plane perpendicular to the first direction. The horizontal beams are fixedly connected to two adjacent vertical beams to form the frame body.
4. The frame body according to claim 3, characterized in that, The main body of the frame is a frame structure, and the transverse beam includes an end beam, which is fixedly installed at one end of the vertical beam in the first direction; The end crossbeam includes a first crossbeam and a second crossbeam. There are at least two first crossbeams. The first crossbeams extend along a second direction and are spaced apart along a third direction. There are at least two second crossbeams. The second crossbeams extend along a third direction and are spaced apart along the second direction. The second direction and the third direction are orthogonal.
5. The frame body according to claim 4, characterized in that, The first crossbeam and the second crossbeam are fixedly connected. The assembly hole opened on the first crossbeam is the first assembly hole. There are at least two first assembly holes, which are respectively located at both ends of the first crossbeam in the length direction. The mounting hole that passes through the second crossbeam and cooperates with the first assembly hole is the first mounting hole. The first crossbeam and the second crossbeam are fixedly connected by the connector that passes through the first mounting hole and is connected to the first assembly hole. The axial direction of the first mounting hole is parallel to the second direction.
6. The frame body according to claim 5, characterized in that, The second crossbeam is fixedly connected to the vertical beam. The assembly hole opened on the vertical beam is the second assembly hole. There is at least one second assembly hole, which is formed at one end of the vertical beam facing the second crossbeam. The mounting hole that passes through the second crossbeam and mates with the second assembly hole is the second mounting hole. The second crossbeam and the vertical beam are fixedly connected by a connector that passes through the second mounting hole and connects to the second assembly hole. The axial direction of the second mounting hole is parallel to the first direction.
7. The frame body according to claim 6, characterized in that, Along the third direction, the first mounting hole and the second mounting hole are arranged at intervals.
8. The frame body according to claim 4, characterized in that, The transverse beam includes a central transverse beam, which is fixedly installed in the middle of the vertical beam in the first direction, and the two ends of the central transverse beam in the length direction are respectively fixedly connected to different vertical beams; The assembly hole opened on the middle crossbeam is the third assembly hole. There are at least two third assembly holes, which are respectively located at both ends of the middle crossbeam along its length. The mounting hole that passes through the vertical beam and mates with the third assembly hole is the third mounting hole. The middle crossbeam is fixedly connected by the connector that passes through the third mounting hole and connects to the third assembly hole.
9. The frame body according to claim 8, characterized in that, The central crossbeam includes a third crossbeam and a fourth crossbeam, the third crossbeam being parallel to the first crossbeam and the fourth crossbeam being parallel to the second crossbeam; Along the first direction, the third crossbeam and the fourth crossbeam are arranged at intervals.
10. The frame body according to claim 1, characterized in that, All of the linear support members have the same cross-section at any position along the length direction.
11. The frame body according to any one of claims 1-10, characterized in that, At least some of the linear support members have at least one of a second fixing hole and a guide positioning groove on their circumferential outer side wall. The decorative panel can be movably connected to the frame body through the guide positioning groove, and the decorative panel can be installed on the frame body by fasteners passing through the second fixing hole.
12. The frame body according to claim 3, characterized in that, The main frame also includes bases connected to the vertical beam, the number of which is at least three and located at one end of the vertical beam in the first direction.
13. The frame body according to claim 12, characterized in that, The feet are adjustable.
14. The frame body according to claim 12, characterized in that, The assembly hole, which is formed on the vertical beam and is used to connect with the base, is the fourth assembly hole, and the base is threadedly connected to the fourth assembly hole.
15. The frame body according to any one of claims 1-10, characterized in that, An angle reinforcement is provided at the connection point of the two fixedly connected linear support members, and the two ends of the angle reinforcement are respectively fixedly connected to the two adjacent linear support members.
16. The frame body according to claim 15, characterized in that, The linear support includes at least one of aluminum profiles and steel.
17. A base assembly, characterized in that, The base assembly is used to support the garment processing equipment. The base assembly includes a frame body as described in any one of claims 1-16, and a decorative panel fixedly installed on the frame body. The base assembly has an opening that communicates with the receiving cavity.
18. A cleaning system, characterized in that, It includes a garment processing device and a base assembly as described in claim 17, wherein the garment processing device is fixedly installed above the base assembly.
19. The cleaning system according to claim 18, characterized in that, The cleaning system also includes floor cleaning equipment, at least partially housed within the receiving cavity.
20. The cleaning system according to claim 19, characterized in that, The ground cleaning equipment includes a cleaning base station and a cleaning host, with at least a portion of the cleaning base station located within the receiving cavity, the cleaning base station having a receiving cavity for accommodating the cleaning host.