Clothing processing equipment and cleaning systems
By designing a base assembly to house the cleaning base station within the clothing processing equipment, the problem of the clothing processing machine and the cleaning base station occupying too much indoor floor space is solved, thereby improving the stability of the equipment and the efficiency of 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
- 2025-05-19
- Publication Date
- 2026-05-26
AI Technical Summary
In existing technologies, the clothing processing machine and the cleaning base station are placed on the indoor floor, resulting in a large amount of indoor floor space being occupied.
Design a garment processing device, including a garment processing machine and a base assembly. The base assembly is provided with a receiving cavity for storing cleaning base stations, and the ratio of the height of the base assembly to the total height of the garment processing device is no more than 40% to lower the center of gravity of the garment processing machine and ensure stability.
By rationally designing the height and structure of the base assembly, the clothing processor and the cleaning base station are integrated, reducing the area occupied on the indoor floor and improving the working stability of the clothing processor.
Smart Images

Figure CN224280819U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of cleaning equipment technology, and in particular relates to a clothing treatment device and cleaning system. Background Technology
[0002] The cleaning station houses the cleaning robot and serves as its docking station, allowing the robot to perform preset operations. The garment processor typically washes and dries clothes. Currently, both the garment processor and the cleaning station are placed on the indoor floor, resulting in a significant amount of floor space being occupied. Utility Model Content
[0003] The purpose of this application is to provide a clothing processing device and a cleaning system to solve the technical problem in the prior art where placing the clothing processing machine and the cleaning base station on the indoor floor results in a large amount of indoor floor space being occupied.
[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 garment processing device, comprising:
[0006] Clothing processing machine;
[0007] The base assembly has an internal cavity for accommodating the clean base station, and the base assembly has an opening that communicates with the cavity.
[0008] The garment processing machine is supported on the base assembly, and the ratio of the height of the base assembly to the total height of the garment processing equipment is no more than 40%.
[0009] In one implementation, the ratio of the height of the base assembly to the total height of the garment handling equipment ranges from 10% to 30%.
[0010] In one implementation, the ratio of the width of the opening along the first direction to the width of the base assembly along the first direction is 50% to 98%; and / or, the ratio of the height of the upper edge of the opening to the height of the base assembly is 60% to 98%.
[0011] In one implementation, the width of the base assembly along the first direction ranges from 550mm to 630mm; and / or, the length of the base assembly along the second direction ranges from 560mm to 850mm, wherein the first direction is perpendicular to the second direction; and / or, the height of the base assembly ranges from 300mm to 400mm.
[0012] In one implementation, the width of the garment processor along the first direction ranges from 240mm to 600mm; and / or, the length of the garment processor along the second direction ranges from 300mm to 850mm, wherein the first direction is perpendicular to the second direction; and / or, the height of the garment processor ranges from 380mm to 900mm.
[0013] In one implementation, the width of the opening along the first direction ranges from 400 mm to 510 mm; and / or, the height of the opening ranges from 250 mm to 310 mm.
[0014] In one implementation, the bottom of the base assembly is provided with a clearance hole, which is connected to the receiving cavity, and the opening is connected to the clearance hole, so that the clean base station located in the receiving cavity can be directly supported on the ground.
[0015] In one implementation, the base assembly includes a base body and a front side frame, the front side frame being disposed on one side of the base body and connected to it, the base body and the front side frame forming a receiving cavity, and an opening being formed on the front side frame.
[0016] In one implementation, 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.
[0017] A second aspect of this application provides a cleaning system, including a cleaning base station and a clothing processing device as provided in any of the above technical solutions, wherein the cleaning base station is housed within the base assembly of the clothing processing device.
[0018] The beneficial effects of this application are as follows: The clothing processing equipment provided in this application embodiment includes a clothing processing machine and a base assembly. The clothing processing machine can be supported on the base assembly, and the base assembly has the function of storing the cleaning base station, so that the clothing processing machine can be located above the cleaning base station, avoiding the problem of occupying a large indoor floor area due to the clothing processing machine and the cleaning base station being placed separately on the indoor floor; by setting the height of the base assembly to account for no more than 40% of the total height of the base assembly and the clothing processing machine, it is beneficial to lower the center of gravity of the clothing processing machine, so that the clothing processing machine is stable when working. Attached Figure Description
[0019] 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.
[0020] Figure 1 This is a schematic diagram of the structure of the garment processing equipment provided in the embodiments of this application;
[0021] Figure 2 This is a schematic diagram of the structure of the cleaning system provided in the embodiments of this application;
[0022] Figure 3 This is a front view schematic diagram of the garment processing equipment provided in an embodiment of this application;
[0023] Figure 4 This is a left-side view of the garment processing device provided in an embodiment of this application;
[0024] Figure 5 This is a front view schematic diagram of the base assembly provided in an embodiment of this application;
[0025] Figure 6 A left-side view of the base assembly provided in an embodiment of this application;
[0026] Figure 7 This is a structural schematic diagram of the base assembly provided in the embodiments of this application from the front view.
[0027] Figure 8 An exploded view of the base assembly provided in the embodiments of this application;
[0028] Figure 9 An exploded view of the base body provided in an embodiment of this application;
[0029] Figure 10 This is a structural schematic diagram of the base assembly provided in an embodiment of this application from the rear view.
[0030] The following are the labeling elements in the figure:
[0031] 100 - Base assembly; 200 - Clothing processor; 300 - Cleaning base station;
[0032] 110 - Base body; 120 - Front frame; 130 - Receiving cavity; 140 - Opening; 150 - Base support; 160 - Front frame connecting plate; 170 - Clearance hole;
[0033] 11-Internal frame; 12-Left side panel; 13-Right side panel; 14-Back panel; 15-Top panel;
[0034] 111 - Vertical beam; 112 - Horizontal beam;
[0035] 1111 - First vertical beam; 1112 - Second vertical beam; 1113 - Third vertical beam; 1114 - Fourth vertical beam;
[0036] 1121 - First transverse beam; 1122 - Second transverse beam; 1123 - Third transverse beam; 1124 - Fourth transverse beam; 1125 - Fifth transverse beam; 1126 - Sixth transverse beam;
[0037] 121 - Left side panel main body; 122 - Left side shielding part;
[0038] 131 - Main body of the right side panel; 132 - Right side shielding part;
[0039] 1201 - First side frame; 1202 - Second side frame; 1203 - Third side frame;
[0040] 141 - Pipe through hole;
[0041] 21-Gate body;
[0042] 31 - Base station door; 32 - Dust bin door. Detailed Implementation
[0043] 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.
[0044] 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.
[0045] 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.
[0046] 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.
[0047] 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.
[0048] 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.
[0049] Please see Figures 1-4 , 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 structure of the base assembly 100 of the clothing processing device provided in this embodiment, which houses the cleaning base station 300. Figure 3 This is a front view schematic diagram of the clothing processing equipment provided in an embodiment of this application. Figure 4 This is a left-side view of the garment processing device provided in an embodiment of this application. For ease of description, in this embodiment, the width direction of the garment processing device is defined as the X-axis direction, the length direction of the garment processing device, i.e., the depth direction of the roller, is defined as the Y-axis direction, and the height direction of the garment processing device is defined as the Z-axis direction. The X-axis, Y-axis, and Z-axis directions are all perpendicular to each other.
[0050] 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.
[0051] 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.
[0052] The base assembly 100 supports one or more garment processing machines 200, for example, one or two garment processing machines 200. Preferably, the base assembly 100 supports one garment processing machine 200.
[0053] The base assembly 100 can also accommodate the cleaning base station 300, please refer to [link / reference]. Figure 2 This illustrates that the base assembly 100 houses the cleaning base station 300, which is placed below the clothing processor 200 using the base assembly 100.
[0054] By setting up a base assembly 100, the clothing processor 200 can be supported and the cleaning base station 300 can be stored. On the one hand, this avoids the problem of the clothing processor 200 and the cleaning base station 300 occupying too much indoor floor space when placed on the indoor floor. On the other hand, the clothing processor 200 is usually placed near the faucet and floor drain, which makes it convenient to use the existing water inlet and drainage of the clothing processor 200 to water inlet and drainage of the cleaning base station 300.
[0055] The garment processor 200 includes a door 21. In one example, the door 21 of the garment processor 200 is located at the top of the garment processor 200. In other examples, the door 21 of the garment processor 200 is located on the front side of the garment processor 200.
[0056] 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.
[0057] 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.
[0058] In one example, opening 140 is along... Figure 1The width along the X-axis is greater than the width of the clean base station 300, and the opening 140 is along... Figure 1 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.
[0059] Please see Figure 3 The diagram shows that the height of the base assembly 100 is c1, and the total height of the base assembly 100 and the clothing processing machine 200 is c4. In this embodiment, the ratio of the height of the base assembly 100 to the total height of the clothing processing equipment is not greater than 40%, that is, the ratio of c1 / c4 is not greater than 0.4.
[0060] In this embodiment, the ratio of the height of the base assembly 100 to the total height of the garment processing device should not be set too high. When the height of the garment processing machine 200 is a certain value, the smaller the proportion of the height of the base assembly 100 to the total height of the base assembly 100 and the garment processing machine 200, the lower the height of the base assembly 100, and the lower the center of gravity of the garment processing machine 200, which is beneficial to the stability of the garment processing machine 200 during operation.
[0061] In this embodiment of the application, by setting the ratio of the height of the base assembly 100 to the total height of the clothing processing equipment to no more than 40%, it is beneficial to lower the center of gravity of the clothing processing machine 200, so that the clothing processing machine 200 is stable when it is working.
[0062] In some embodiments, the ratio of the height of the base assembly 100 to the total height of the garment handling device ranges from 10% to 30%.
[0063] For example, the ratio of the height of the base assembly 100 to the total height of the garment processing equipment is 10% to 15%, 15% to 20%, 20% to 25%, or 25% to 30%, etc.
[0064] In this embodiment, the ratio of the height of the base assembly 100 to the total height of the clothing processing device is limited to no more than 30%, which helps to lower the center of gravity of the clothing processing machine 200 and make the clothing processing machine 200 stable during operation.
[0065] In this embodiment of the application, the ratio of the height of the base assembly 100 to the total height of the clothing processing device is limited to not less than 10%, so as to ensure that the base assembly 100 can accommodate the cleaning base station 300.
[0066] Please see Figures 5-6 , Figure 5 This is a front view schematic diagram of the base assembly 100 provided in an embodiment of this application; Figure 6This is a left view of the base assembly 100 provided in an embodiment of this application, wherein the width direction (i.e., the left-right direction) of the base assembly 100 is defined as the first direction, and the length direction (i.e., the front-back direction) of the base assembly 100 is defined as the second direction.
[0067] Please see Figure 5 This illustrates the base assembly 100 along the first direction, i.e. Figure 5 The width along the X-axis is a1, and the height of the base assembly is 100. Figure 5 The length in the Z-axis direction is c1, please refer to [link / reference]. Figure 6 This illustrates the base assembly 100 along the second direction, i.e. Figure 6 The length along the Y-axis is b1.
[0068] Please see Figure 5 This indicates that opening 140 is along the first direction, i.e. Figure 5 The width along the X-axis is a2, and the height of the base assembly is 100. Figure 5 The length along the Z-axis is c2.
[0069] In some embodiments, the ratio of the width of the opening 140 along the first direction to the width of the base assembly 100 along the first direction is not less than 40%, that is, the ratio of a2 to a1 is not less than 0.4.
[0070] In this embodiment of the application, it is not advisable to set the ratio of the width of the opening 140 along the first direction to the width of the base assembly 100 along the first direction too small. When the width of the opening 140 along the first direction is a certain value, if the ratio of the width of the opening 140 along the first direction to the width of the base assembly 100 along the first direction is smaller, it means that the width of the base assembly 100 along the first direction is larger, and the base assembly 100 occupies a larger ground area.
[0071] Therefore, in this embodiment of the application, by limiting the ratio of the width of the opening 140 along the first direction to the width of the base assembly 100 along the first direction to be not less than 40%, the width of the base assembly 100 along the first direction is limited, which is beneficial to the compact structure of the base assembly 100 and the reduction of the floor space.
[0072] In some embodiments, the ratio of the width of the opening 140 along the first direction to the width of the base assembly 100 along the first direction is 50% to 98%.
[0073] For example, the ratio of the width of the opening 140 along the first direction to the width of the base assembly 100 along the first direction is 50% to 60%, 60% to 70%, 70% to 80%, 80% to 90%, or 90% to 98%, etc.
[0074] In this embodiment of the application, the ratio of the width of the opening 140 along the first direction to the width of the base assembly 100 along the first direction is not less than 50%, that is, the width of the base assembly 100 along the first direction is limited to not more than twice the width of the opening 140 along the first direction, which is beneficial to the compact structure of the base assembly 100 and the reduction of the floor area occupied by the base assembly 100.
[0075] In this embodiment of the application, the ratio of the width of the opening 140 along the first direction to that of the base assembly 100 along the first direction is not greater than 98%, so as to ensure that the structure of the base assembly 100 has a certain strength to support the clothing processing machine 200.
[0076] In some embodiments, the ratio of the height of the upper edge of the opening 140 to the height of the base assembly 100 is not less than 40%, that is, the ratio of c2 to c1 is not less than 0.4.
[0077] In this embodiment, the ratio of the height of the upper edge of the opening 140 to the height of the base assembly 100 should not be set too small. Given a fixed height of the upper edge of the opening 140, a smaller ratio results in a higher base assembly 100. The base assembly 100 supports the garment processing machine 200. A higher base assembly 100 leads to a relatively higher garment processing machine 200, meaning a higher center of gravity, which is detrimental to the stability of the garment processing machine 200 during operation.
[0078] In this embodiment, by limiting the ratio of the height of the upper edge of the opening 140 to the height of the base assembly 100 to be no less than 40%, the stability of the garment processing machine 200 during operation is facilitated when the base assembly 100 can accommodate the cleaning base station 300.
[0079] In one example, the ratio of the height of the upper edge of the opening 140 to the height of the base assembly 100 is 60% to 98%.
[0080] For example, the ratio of the height of the upper edge of the opening 140 to the height of the base assembly 100 is 60% to 70%, 70% to 80%, 80% to 90%, or 90% to 98%, etc.
[0081] In this embodiment of the application, the ratio of the height of the upper edge of the opening 140 to the height of the base assembly 100 is not less than 60%, so as to help lower the center of gravity of the clothing processing machine 200.
[0082] In this embodiment, the ratio of the height of the upper edge of the opening 140 to the height of the base assembly 100 is no greater than 98%, so as to ensure that the structure of the base assembly 100 has a certain strength to support the clothing processing machine 200.
[0083] Regarding the dimensions of the base assembly 100, in some embodiments, the width a1 of the base assembly 100 along the first direction ranges from 550mm to 630mm; and / or, the length b1 of the base assembly 100 along the second direction ranges from 560mm to 850mm; and / or, the height c1 of the base assembly 100 ranges from 300mm to 400mm.
[0084] For example, the width a1 of the base assembly 100 along the first direction ranges from 550mm to 560mm, or 560mm to 570mm, or 570mm to 580mm, or 580mm to 590mm, or 600mm to 610mm, or 610mm to 620mm, or 620mm to 630mm, etc.
[0085] For example, the length b1 of the base assembly 100 along the second direction ranges from 560mm to 600mm, or 600mm to 650mm, or 650mm to 700mm, or 700mm to 750mm, or 750mm to 800mm, or 800mm to 850mm, etc.
[0086] For example, the height c1 of the base assembly 100 can range from 300mm to 310mm, or 310mm to 320mm, or 320mm to 330mm, or 330mm to 340mm, or 340mm to 350mm, or 350mm to 360mm, or 360mm to 370mm, or 370mm to 380mm, or 380mm to 390mm, or 390mm to 400mm, etc.
[0087] In one 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.
[0088] In this embodiment, the length, width, and height of the base assembly 100 can be reasonably limited according to the dimensions of the cleaning base station 300 and the clothing processing machine 200.
[0089] Regarding the dimensions of the opening 140, in some embodiments, the width a2 of the opening 140 along the first direction ranges from 400mm to 510mm; and / or, the height c2 of the opening 140 ranges from 250mm to 310mm.
[0090] For example, the width a2 of the opening 140 along the first direction can range from 400mm to 410mm, or 410mm to 420mm, or 420mm to 430mm, or 430mm to 440mm, or 440mm to 450mm, or 450mm to 460mm, or 460mm to 470mm, or 470mm to 480mm, or 490mm to 500mm, or 500mm to 510mm, etc.
[0091] For example, the height c2 of opening 140 can range from 250mm to 260mm, or 260mm to 270mm, or 270mm to 280mm, or 280mm to 290mm, or 290mm to 300mm, or 300mm to 310mm, etc.
[0092] In one example, the width a2 of the opening 140 in the base assembly 100 is 440 mm, and the height c2 of the opening 140 is 281.6 mm.
[0093] In this embodiment of the application, the width and height of the opening 140 can be reasonably limited according to the size of the clean base station 300.
[0094] Regarding the relationship between the size of the opening 140 and the cleaning base station 300, in some embodiments, the gap between the opening 140 and the cleaning base station 300 in the receiving cavity 130 along the first direction is 0mm to 10mm; and / or, the gap between the height of the upper edge of the opening 140 and the cleaning base station 300 in the receiving cavity 130 is 0mm to 10mm.
[0095] The gap between the opening 140 and the cleaning base station 300 in the receiving cavity 130 along the first direction is 0mm to 10mm. That is, the gap between each side of the opening 140 and the cleaning base station 300 along the first direction is 0mm to 10mm.
[0096] The gap between the opening 140 and the cleaning base station 300 in the receiving cavity 130 along the first direction is 0mm to 10mm. For example, the gap between the opening 140 and the cleaning base station 300 in the receiving cavity 130 along the first direction is 0mm to 1mm, 1mm to 2mm, 2mm to 3mm, 3mm to 4mm, 4mm to 5mm, 5mm to 6mm, 6mm to 7mm, 7mm to 8mm, 8mm to 9mm, or 9mm to 10mm, etc.
[0097] The height of the upper edge of the opening 140 and the gap between it and the clean base station 300 inside the cavity 130 are in the range of 0mm to 10mm. For example, the height of the upper edge of the opening 140 and the gap between it and the clean base station 300 inside the cavity 130 are in the range of 0mm to 1mm, 1mm to 2mm, 2mm to 3mm, 3mm to 4mm, 4mm to 5mm, 5mm to 6mm, 6mm to 7mm, 7mm to 8mm, 8mm to 9mm, or 9mm to 10mm, etc.
[0098] In this embodiment of the application, the gap between the opening 140 and the cleaning base station 300 in the receiving cavity 130 along the first direction is set to be 0mm to 10mm, that is, the width of the opening 140 is slightly larger than the width of the cleaning base station 300, so as to improve the aesthetics of the cleaning base station 300 when it is located in the base assembly 100.
[0099] In this embodiment, the height of the upper edge of the opening 140 and the gap between the cleaning base station 300 in the receiving cavity 130 are set to 0mm to 10mm, that is, the height of the opening 140 is slightly greater than the height of the cleaning base station 300, so as to improve the aesthetics of the cleaning base station 300 when it is located in the base assembly 100.
[0100] In some embodiments, the side of the base assembly 100 with the opening 140 is the front side, and the distance difference between the front side of the base assembly 100 and the front side of the clean base station 300 in the receiving cavity 130 is -10mm to 10mm, that is, the absolute value of the distance difference between the front side of the base assembly 100 and the front side of the clean base station 300 in the receiving cavity 130 is 0mm to 10mm.
[0101] In this embodiment of the application, it can be understood that 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 cavity wall surface of the rear side of the base assembly 100, the front side of the cleaning base station 300 protrudes from the front side of the base assembly 100, or the front side of the cleaning base station 300 is flush with the front side of the base assembly 100, or the front side of the base assembly 100 slightly protrudes from the front side of the cleaning base station 300.
[0102] When the front side of the cleaning base station 300 protrudes beyond the front side of the base assembly 100, the distance difference between the front side of the base assembly 100 and the front side of the cleaning base station 300 inside the receiving cavity 130 is negative.
[0103] The absolute value of the distance difference between the front side of the base assembly 100 and the front side of the clean base station 300 inside the receiving cavity 130 is 0mm to 10mm. For example, the absolute value of the distance difference between the front side of the base assembly 100 and the front side of the clean base station 300 inside the receiving cavity 130 is 0mm to 1mm, 1mm to 2mm, 2mm to 3mm, 3mm to 4mm, 4mm to 5mm, 5mm to 6mm, 6mm to 7mm, 7mm to 8mm, 8mm to 9mm, or 9mm to 10mm, etc.
[0104] In this embodiment, the distance difference between the front side of the base assembly 100 and the front side of the cleaning base station 300 in the receiving cavity 130 is set to -10mm to 10mm, which helps to improve the aesthetics of the cleaning base station 300 when it is located in the base assembly 100.
[0105] Regarding the dimensions of the garment processing machine 200, in some embodiments, the width a3 of the garment processing machine 200 along the first direction ranges from 240mm to 600mm; and / or, the length b3 of the garment processing machine 200 along the second direction ranges from 300mm to 850mm; and / or, the height c3 of the garment processing machine 200 ranges from 380mm to 900mm.
[0106] The width a3 of the garment processing machine 200 along the first direction ranges from 240mm to 600mm. For example, the width a3 of the garment processing machine 200 along the first direction ranges from 240mm to 300mm, 300mm to 350mm, 350mm to 400mm, 400mm to 450mm, 450mm to 500mm, 500mm to 550mm, or 550mm to 600mm, etc. In one example, the width a3 of the garment processing machine 200 along the first direction is 595mm.
[0107] The length b3 of the garment processor 200 along the second direction ranges from 300mm to 850mm. For example, the length b3 of the garment processor 200 along the second direction ranges from 300mm to 400mm, 400mm to 500mm, 500mm to 600mm, 600mm to 700mm, 700mm to 800mm, or 800mm to 850mm, etc. In one example, the length b3 of the garment processor 200 along the second direction is 640mm.
[0108] The height c3 of the garment processing machine 200 ranges from 380mm to 900mm. For example, the height c3 of the garment processing machine 200 can range from 380mm to 500mm, 500mm to 600mm, 600mm to 700mm, 700mm to 800mm, or 800mm to 900mm, etc.
[0109] Please see Figures 7-10 , Figure 7 A structural schematic diagram of the base assembly 100 provided in the embodiments of this application from the front view; Figure 8 An exploded view of the base assembly 100 provided in the embodiments of this application; Figure 9 An exploded view of the base body 110 provided in the embodiments of this application; Figure 10 This is a structural schematic diagram of the base assembly 100 provided in the embodiments of this application from the rear side view.
[0110] In some embodiments, see Figure 7 The bottom of the base assembly 100 is provided with a clearance hole 170, which is connected to the receiving cavity 130. The opening 140 is connected to the clearance hole 170 so that the clean base station 300 located in the receiving cavity 130 can be directly supported on the ground.
[0111] In this embodiment, the cleaning base station 300 does not include a base plate, allowing the cleaning base station 300 located within the receiving cavity 130 to be directly supported on the ground. This reduces the height of the base assembly 100, and consequently, reduces the height of the garment processor 200. The lower the height of the base assembly 100, the lower the center of gravity of the garment processor 200, and the higher the stability of the garment processor 200 during operation.
[0112] In some embodiments, see Figure 7 The base assembly 100 includes a base body 110 and a front side frame 120. The front side frame 120 is disposed on one side of the base body 110 and the two are connected. The base body 110 and the front side frame 120 form a receiving cavity 130, and an opening 140 is formed on the front side frame 120.
[0113] In one example, see Figure 8 The front frame 120 includes a first side frame portion 1201, a second side frame portion 1202, and a third side frame portion 1203. The first side frame portion 1201 and the second side frame portion 1202 are arranged at intervals relative to each other along a first direction. The third side frame portion 1203 connects the top ends of the first side frame portion 1201 and the second side frame portion 1202. The first side frame portion 1201, the second side frame portion 1202, and the third side frame portion 1203 form the opening 140 of the base assembly 100.
[0114] In one example, see Figure 7 The base body 110 has multiple base legs 150 at its bottom, which are used to support the base body 110.
[0115] In one example, four base legs 150 are provided on the base body 110, and the four base legs 150 are respectively located at the four corners of the bottom of the base body 110.
[0116] In one example, the bottom of the front frame 120 is flush with the bottom of the base body 110.
[0117] In one example, the top of the front frame 120 protrudes beyond the top of the base body 110, meaning the height of the top of the front frame 120 is greater than the height of the top of the base body 110.
[0118] Typically, a support foot is installed at the bottom of the garment processing machine 200, which is supported on the base body 110. By setting the height of the top of the front frame 120 to be greater than the height of the top of the base body 110, the front frame 120 can be used to cover the support foot at the bottom of the garment processing machine 200, which is beneficial to the overall aesthetics of the equipment.
[0119] In one example, see Figure 8A front side frame connecting plate 160 is provided on the side of the front side frame 120 facing the base body 110. The front side frame connecting plate 160 can be fixed to the base body 110 by means of connectors such as screws or bolts.
[0120] In this embodiment of the application, the base assembly 100 is provided to include a base body 110 and a front frame 120, so as to facilitate the processing of the opening 140 of the base assembly 100 through the front frame 120.
[0121] In some embodiments, see Figure 9 The base body 110 includes an internal frame 11, a left side plate 12, a right side plate 13, a back plate 14, and a top plate 15. The left side plate 12, the right side plate 13, the back plate 14, and the top plate 15 are all connected to the internal frame 11. The top plate 15 is located on the top of the internal frame 11. The left side plate 12 and the right side plate 13 are arranged opposite each other on both sides of the internal frame 11 along a first direction. The back plate 14 and the front side frame 120 are arranged opposite each other on both sides of the internal frame 11 along a second direction.
[0122] In one example, the left side plate 12, right side plate 13, top plate 15, and back plate 14 are provided with stamped protrusions and / or stamped grooves to improve the strength of the plates.
[0123] 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.
[0124] Regarding the internal frame 11, in one example, the internal frame 11 includes vertical beams 111 and horizontal beams 112, and the internal frame 11 is assembled from multiple vertical beams 111 and multiple horizontal beams 112. When the garment processing machine 200, which has equipment feet at the bottom, is supported on the base assembly 100, each equipment foot is positioned above the corresponding beam.
[0125] In one example, see Figure 9The internal frame 11 includes four vertical beams 111, each with a base support 150 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 first horizontal beam 1121 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.
[0126] In one example, see Figure 9 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.
[0127] In one example, both the vertical beam 111 and the horizontal beam 112 are made of aluminum profiles.
[0128] In one example, see Figure 10 The 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 feet at the bottom of the clothing processing machine 200 and improve the aesthetics of the equipment.
[0129] Regarding the left side panel 12, please refer to [link / reference]. Figure 9 The left side panel 12 includes a left side panel main body 121 and a left side blocking part 122, please refer to Figure 10 The left side shielding part 122 is located above the main body of the left side plate 12, and the left side shielding part 122 is used to shield the equipment support feet at the bottom of the clothing processing machine 200.
[0130] In one example, the left side panel main body 121 and the left side blocking portion 122 are integrally formed; in other examples, the left side panel main body 121 and the left side blocking portion 122 are separate structures, please refer to [link / reference]. Figure 10 This illustrates that the main body 121 of the left side panel and the left side blocking part 122 are separate structures. Figure 10 The diagram shows that the left-side shielding part 122 is located on the top plate 15.
[0131] Regarding right side panel 13, please refer to [link / reference]. Figure 9 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 131 and is used to block the equipment support feet at the bottom of the clothing processing machine 200.
[0132] In one example, the right side panel main body 131 and the right side shielding part 132 are integrally formed; in other examples, the right side panel main body 131 and the right side shielding part 132 are separate structures.
[0133] Regarding rear panel 14, please refer to Figure 10 In one example, the back panel 14 is provided with a pipe through hole 141, through which an inlet pipe or an outlet pipe passes.
[0134] like Figure 10 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.
[0135] In one example, multiple connectors are provided on the left and right sides of the back panel 14 along the height direction, and the back panel 14 is fixed to the inner frame 11 by the connectors.
[0136] Regarding the assembly of the base body 110, when the left side panel 12 and the right side panel 13 are separate structures, in one example, the internal frame 11 is first assembled using multiple vertical beams 111 and multiple horizontal beams 112. Then, the left side panel main body 121 and the right side panel main body 131 are installed on the internal frame 11. Next, the back panel 14 is installed on the internal frame 11, followed by the top panel 15. Finally, the left side shielding part 122 and the right side shielding part 132 are installed on the internal frame 11. After installing the left side panel main body 121 and the right side panel main body 131 on the internal frame 11, the top panel 15 can be installed first, followed by the back panel 14.
[0137] 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 one example, 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, and finally the top plate 15. 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.
[0138] This embodiment of the application sets the base body 110, which includes an internal frame 11, a left side plate 12, a right side plate 13, a back plate 14, and a top plate 15. It not only has sufficient strength to support the clothing processing machine 200, but also has a certain aesthetic appeal.
[0139] This application provides a cleaning system, including a cleaning base station 300 and the clothing processing device provided in the above embodiment. The clothing processing device includes a clothing processor 200 and a base assembly 100. The clothing processor 200 is supported on the base assembly 100, and the cleaning base station 300 is housed in the base assembly 100.
[0140] Regarding the base assembly 100, the details have already been described above, and will not be repeated here.
[0141] The cleaning base station 300 serves as a docking station for the cleaning robot, enabling it to perform preset operations such as charging the robot, collecting dust from its dustbin, and refilling it with water. In some embodiments, 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.
[0142] The cleaning base station 300 provided in this application embodiment has automatic water filling and draining functions. Automatic water filling refers to the ability to control external water sources to automatically flow into the clean water tank of the cleaning base station 300 so as to clean the cleaning robot's rags. Automatic water draining is mainly to discharge the wastewater generated during the cleaning process.
[0143] 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 one example, 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 then controls the inlet solenoid valve to open, allowing water to enter the clean water tank under 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, thus completing the automatic water supply process.
[0144] 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 one example, wastewater in the cleaning tray of the cleaning base station 300 is discharged into 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 from the cleaning tray of the cleaning base station 300.
[0145] 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 garment processing device, characterized in that, include: Clothing processing machine; The base assembly has an internal cavity for accommodating a clean base station, and the base assembly has an opening communicating with the cavity. The garment processing machine is supported on the base assembly, and the ratio of the height of the base assembly to the total height of the garment processing equipment is no more than 40%.
2. The garment processing equipment as described in claim 1, characterized in that, The ratio of the height of the base assembly to the total height of the garment processing equipment is in the range of 10% to 30%.
3. The garment processing equipment as described in claim 1, characterized in that, The ratio of the width of the opening along the first direction to the width of the base assembly along the first direction is 50% to 98%; and / or the ratio of the height of the upper edge of the opening to the height of the base assembly is 60% to 98%.
4. The garment processing equipment as described in claim 1, characterized in that, The width of the base assembly along the first direction ranges from 550mm to 630mm; and / or, the length of the base assembly along the second direction ranges from 560mm to 850mm, wherein the first direction is perpendicular to the second direction; and / or, the height of the base assembly ranges from 300mm to 400mm.
5. The garment processing equipment as described in claim 1, characterized in that, The width of the garment processing machine along the first direction is 240mm to 600mm; and / or the length of the garment processing machine along the second direction is 300mm to 850mm, wherein the first direction is perpendicular to the second direction; and / or the height of the garment processing machine is 380mm to 900mm.
6. The garment processing equipment as described in claim 1, characterized in that, The width of the opening along the first direction ranges from 400mm to 510mm; and / or the height of the opening ranges from 250mm to 310mm.
7. The garment processing equipment as described in any one of claims 1-6, characterized in that, The bottom of the base assembly is provided with a clearance hole, which is connected to the receiving cavity. The opening is connected to the clearance hole so that the cleaning base station located in the receiving cavity can be directly supported on the ground.
8. The garment processing equipment as described in claim 7, characterized in that, The base assembly includes a base body and a front side frame. The front side frame is disposed on one side of the base body and the two are connected. The base body and the front side frame form the receiving cavity, and the opening is formed on the front side frame.
9. The garment processing equipment as described in claim 8, characterized in that, 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, the right side plate, the back plate, and the top plate are all connected to the internal frame. The top plate is located on the top of the internal frame. The left side plate and the right side plate are arranged opposite each other on both sides of the internal frame along a first direction. The back plate and the front side frame are arranged opposite each other on both sides of the internal frame along a second direction.
10. A cleaning system, characterized in that, The device includes a cleaning base station and a clothing processing device according to any one of claims 1-9, wherein the cleaning base station is housed within the base assembly of the clothing processing device.