Garment processing device and combined garment processing equipment
The frame design, with its integrated front and rear frames, simplifies the assembly process of the garment processing device, improves processing efficiency, and facilitates the storage and transportation of parts.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HISENSE(SHANDONG)REFRIGERATOR CO LTD
- Filing Date
- 2025-04-24
- Publication Date
- 2026-06-02
AI Technical Summary
The existing garment processing device has a complex frame structure and a large number of parts, which leads to cumbersome assembly and low processing efficiency.
The frame design features a one-piece molded front and rear frame, and the frame is assembled by connecting the bottom and top connectors, which simplifies the assembly process and reduces the number of parts.
The assembly process of the frame is simplified, the processing efficiency of the garment handling device is improved, and the storage and transportation of parts are facilitated.
Smart Images

Figure CN224313892U_ABST
Abstract
Description
[0001] Related cross-references
[0002] This application claims priority to Chinese Patent Application No. 2025204219454, filed on March 11, 2025, entitled "Multi-tub Washing Machine", the entire contents of which are incorporated herein by reference. Technical Field
[0003] This application relates to the field of home appliance technology, and in particular to a clothing processing device and a combined clothing processing device. Background Technology
[0004] Clothing handling devices (such as washing machines) typically include a cabinet, which comprises an outer shell and a frame. The frame is housed within the outer shell and serves to support the shell while also housing the washing machine's drum. Therefore, the frame is crucial in clothing handling devices. However, the frame structures in related technologies are complex, with a large number of parts, leading to cumbersome assembly and consequently, lower manufacturing efficiency for the clothing handling device. Utility Model Content
[0005] This application discloses a garment processing device and a combined garment processing equipment, which simplifies the assembly of the frame and thus increases the processing efficiency of the garment processing device.
[0006] To achieve the above objectives, in a first aspect, this application discloses a garment processing device, comprising:
[0007] Box;
[0008] Two rollers are arranged side by side in the width direction of the box. Both rollers have an opening for feeding clothes into the rollers. The rollers are used for drying or washing clothes.
[0009] The enclosure includes:
[0010] Housing, the housing comprising:
[0011] The front panel has two garment inlets, which are arranged side by side along the width of the box and are connected to the two cylindrical openings.
[0012] A frame, disposed within the housing, for supporting the housing, includes:
[0013] Front frame, the front panel is disposed on the front frame, the front frame is an integrally formed structure;
[0014] The rear frame is disposed opposite to the front frame along the depth direction of the box body, and the rear frame is an integrally formed structure.
[0015] Bottom connector, which is connected to the bottom of the front frame and the bottom of the rear frame respectively;
[0016] A top connector, which is connected to the top of the front frame and the top of the rear frame respectively.
[0017] Since both the front and rear frames are integrally molded structures, when assembling the frame, it is only necessary to connect the bottom connectors to the bottom of the front frame and the bottom of the rear frame, and connect the top connectors to the top of the front frame and the top of the rear frame, respectively. This completes the assembly of the entire frame. The assembly process does not involve the assembly of the front and rear frames themselves. Furthermore, it reduces the number of parts in the entire frame, thus simplifying the assembly steps and increasing the processing efficiency (assembly efficiency) of the garment processing device.
[0018] Furthermore, by making the rear frame also a one-piece molded structure in addition to the front frame, the number of parts in the frame can be further reduced, simplifying the assembly process and improving the processing efficiency of the garment handling device. On the other hand, before the frame is assembled, the rear and front frames are separate components, which facilitates stacking and transportation.
[0019] Furthermore, by making the rear frame also a one-piece structure in addition to the front frame, the front and rear frames, being relatively large, can be fitted together to form a base for placing and storing other smaller parts before the garment handling device is assembled, thus simplifying the storage of these smaller parts.
[0020] Optionally, the front frame is provided with a front frame opening that extends through the front frame along the depth direction of the box body, and the projections of the two cylindrical openings on the front frame along the depth direction of the box body are located within the front frame opening.
[0021] By ensuring that the projections of the two tube openings along the depth direction of the box onto the front frame are located within the front frame opening, the front frame will not obstruct the two tube openings, thus guaranteeing the safe feeding of clothes into the drum through the tube openings.
[0022] In addition, by setting a front frame opening on the front frame, the amount of material used in the front frame can be reduced to some extent, thus reducing the weight of the front frame.
[0023] Optionally, the front frame includes:
[0024] The upper crossbeam extends along the width of the box body, and the top connector is connected to the upper crossbeam;
[0025] The lower crossbeam and the upper crossbeam are spaced apart and opposite to each other along the height direction of the box body, and the bottom connector is connected to the lower crossbeam;
[0026] A first vertical beam, located between the upper horizontal beam and the lower horizontal beam and connected to one end of the upper horizontal beam and one end of the lower horizontal beam, respectively; and...
[0027] The second vertical beam is located between the upper horizontal beam and the lower horizontal beam, and is spaced apart from the first vertical beam along the width direction of the box body. The second vertical beam is connected to the other end of the upper horizontal beam and the other end of the lower horizontal beam respectively.
[0028] The upper horizontal beam, the first vertical beam, the lower horizontal beam, and the second vertical beam are integrally arranged and enclose each other to form the front frame opening;
[0029] The narrowest width of the upper crossbeam along the height direction of the box is H1, the narrowest width of the lower crossbeam along the height direction of the box is H2, the narrowest width of the first vertical beam along the width direction of the box is S1, and the narrowest width of the second vertical beam along the width direction of the box is S2.
[0030] Among them, H1>S1, H1>S2, H2>S1, H2>S2.
[0031] Because the upper crossbeam, the first vertical beam, the lower crossbeam, and the second vertical beam are integrated, the entire front frame can be a one-piece molded structure, which can reduce the number of parts in the entire frame to a certain extent and make the assembly of the frame simpler.
[0032] By ensuring that H1 > S1, H1 > S2, H2 > S1, and H2 > S2, the width of the narrowest part of the vertical beam can be made smaller than the width of the narrowest part of the horizontal beam. This ensures that the vertical beam does not occupy too much space in the frame along the width of the box, thus providing sufficient space within the frame along the width of the box to install the two rollers. This avoids the situation of space constraints during the installation of the rollers.
[0033] On the other hand, when the vertical beam is relatively narrow, by making the width of the narrowest part of the horizontal beam greater than the width of the narrowest part of the vertical beam, the mechanical strength of the horizontal beam can be relatively strong, thereby maximizing the mechanical strength of the entire front frame and thus avoiding or reducing the possibility of bending deformation of the front frame.
[0034] Optionally, the top connector includes:
[0035] Two side beams are connected to the top of the front frame and the top of the rear frame, respectively, and the two side beams are located at both ends of the front frame and the rear frame along the width direction of the box body.
[0036] Normally, the two ends of the front frame and the two ends of the rear frame are prone to swaying when subjected to external forces. Based on this, by placing two side beams at the two ends of the front frame and the two ends of the rear frame respectively along the width direction of the box body, the two ends of the front frame and the rear frame along the width direction of the box body can be fixed by the two side beams, and a tensile force is generated under the action of the two side beams, thereby preventing the two ends of the front frame and the rear frame from swaying, and making the mechanical strength of the entire frame stronger.
[0037] Optionally, the top connector further includes:
[0038] Two central beams are connected to the top of the front frame and the top of the rear frame, respectively, and the two central beams are located between the two rollers along the width direction of the box body.
[0039] By positioning the two central beams between the two rollers along the width direction of the box body, the front and rear frames can be fixed in the middle along the width direction of the box body by the two central beams, thereby further enhancing the mechanical strength of the entire frame.
[0040] In addition, since a large space is usually formed between the two rollers, by setting the two central beams close to the center of the box along the width direction of the box, the two central beams can be positioned to correspond exactly with the space between the two rollers. In this way, interference between the central beams and the rollers can be avoided to a certain extent, making the setting position of the central beams more reasonable.
[0041] Optionally, grooves are provided on both opposite surfaces of the two central beams, and each groove penetrates the corresponding central beam along the depth direction of the box body, with the two grooves forming a through hole.
[0042] Since each groove penetrates the corresponding central beam along the depth direction of the box, and two grooves enclose to form a through hole, the through hole can facilitate the subsequent layout of pipelines. For example, the through hole can be used for pipelines to pass through, thereby making the pipeline layout more convenient and flexible.
[0043] In addition, since the two grooves enclose to form a through hole, the through hole can also limit and fix the pipeline when it passes through, making the pipeline layout more orderly and reliable.
[0044] Furthermore, since the via is formed by two grooves, and the two grooves are respectively set on two opposite sides of the two central beams, in this way, when the size of the via is fixed, each central beam only needs to remove a small amount of material to process the groove to obtain a via of a specific size. This ensures that the mechanical strength of each central beam is not greatly affected by the need to enclose the via, and thus avoids the occurrence of local breakage of the central beam.
[0045] Optionally, a first slot is provided on the front frame, and the two side beams and the two central beams are all connecting beams, with one end of the connecting beam inserted into the first slot.
[0046] By setting a first slot on the front frame, when it is necessary to connect one end of the connecting beam to the front frame, simply insert one end of the connecting beam into the first slot, and then connect one end of the connecting beam to the front frame by screws or other means.
[0047] This design serves two purposes. First, the engagement between the connecting beam and the first slot helps to position the connecting beam against the front frame, resulting in higher installation precision. Second, the engagement between the connecting beam and the first slot also reinforces the connection between the connecting beam and the front frame, making the connection more secure.
[0048] Optionally, the rear frame is provided with a second slot that is opposite to the first slot along the depth direction of the box body, and the other end of the connecting beam is inserted into the second slot.
[0049] By providing a second slot on the rear frame, when it is necessary to connect the other end of the connecting beam to the rear frame, simply insert the other end of the connecting beam into the second slot, and then connect the other end of the connecting beam to the rear frame by screws or other means.
[0050] This design serves two purposes. First, the engagement between the connecting beam and the second slot helps to position the connecting beam against the rear frame, resulting in higher installation precision. Second, the engagement between the connecting beam and the second slot also reinforces the connection between the connecting beam and the rear frame, making the connection more secure.
[0051] Optionally, a first anti-foolproof part is provided on the other end of the connecting beam, and a second anti-foolproof part matching the first anti-foolproof part is provided in the second slot.
[0052] By providing a first anti-mistake part on the other end of the connecting beam and a second anti-mistake part matching the first anti-mistake part in the second slot, when the other end of the connecting beam needs to be inserted into the second slot, it is necessary to ensure that the first anti-mistake part and the second anti-mistake part are matched in position so that the other end of the connecting beam can be smoothly inserted into the second slot, thereby avoiding installation errors.
[0053] Optionally, along the depth direction of the box body, the connecting beam has a first side section, a middle section and a second side section connected in sequence. The first side section is connected to the top of the front frame, the second side section is connected to the top of the rear frame, and the top surface of the middle section is higher than the top surface of the first side section and higher than the top surface of the second side section.
[0054] The top surface of the middle section is flush with the top surface of the front frame and the top surface of the rear frame.
[0055] Because the top surface of the middle section is higher than the top surface of the first side section and also higher than the top surface of the second side section, and because the top surface of the middle section is flush with the top surface of the front frame and the top surface of the rear frame, when the top plate of the outer shell is installed on the top surface of the frame, only the top surface of the middle section can contact the top plate to support it. The top surfaces of the first and second side sections can have gaps with the top plate. In this way, the connecting beam can support the top plate while reducing the contact area with the top plate, thereby reducing the possibility of vibration on the connecting beam being transmitted to the outer shell to a certain extent, making the garment handling device operate more smoothly.
[0056] Secondly, this application discloses a combined garment processing device, comprising:
[0057] First garment processing device; and,
[0058] The second garment processing device is any of the garment processing devices described in the first aspect above, and the second garment processing device is detachably disposed on the top surface of the first garment processing device.
[0059] Because the frame of the second garment processing device is relatively easy to assemble, the processing efficiency of the second garment processing device is relatively high. Therefore, when the combined garment processing equipment includes the second garment processing device, the assembly of the combined garment processing equipment can be relatively simple, thereby improving the processing efficiency of the combined garment processing equipment.
[0060] Compared with the prior art, the beneficial effects of this application are as follows:
[0061] In this application, since the front frame and the rear frame are both integrally molded structures, when assembling the frame, it is only necessary to connect the bottom connector to the bottom of the front frame and the rear frame respectively, and connect the top connector to the top of the front frame and the rear frame respectively, to complete the assembly of the entire frame. The entire assembly process does not involve the assembly of the front frame and the rear frame themselves, and the number of parts of the entire frame is also reduced. Therefore, the assembly steps of the frame can be simplified, thereby increasing the processing efficiency (assembly efficiency) of the garment processing device.
[0062] Furthermore, by making the rear frame also a one-piece molded structure in addition to the front frame, the number of parts in the frame can be further reduced, simplifying the assembly process and improving the processing efficiency of the garment handling device. On the other hand, before the frame is assembled, the rear and front frames are separate components, which facilitates stacking and transportation.
[0063] Furthermore, by making the rear frame also a one-piece structure in addition to the front frame, the front and rear frames, being relatively large, can be fitted together to form a base for placing and storing other smaller parts before the garment handling device is assembled, thus simplifying the storage of these smaller parts. Attached Figure Description
[0064] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments 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.
[0065] Figure 1 This is a schematic diagram of the structure of a garment processing device provided in one embodiment of this application;
[0066] Figure 2 yes Figure 1 A schematic diagram of the clothing handling device after one of the doors is opened;
[0067] Figure 3 yes Figure 2 A schematic diagram of the clothing handling device with some parts omitted;
[0068] Figure 4 yes Figure 1 A schematic diagram of the clothing handling device without the door and outer shell;
[0069] Figure 5 yes Figure 4 A schematic diagram of the middle frame structure;
[0070] Figure 6 yes Figure 5 Schematic diagram of the front frame structure;
[0071] Figure 7 yes Figure 5 Schematic diagram of the middle and rear frame structure;
[0072] Figure 8 yes Figure 5 Schematic diagram of the bottom connector;
[0073] Figure 9 yes Figure 4 A schematic diagram of the clothing handling device from the negative X-axis viewpoint.
[0074] Figure 10 yes Figure 9 A magnified view of a portion of location A in the middle;
[0075] Figure 11 yes Figure 6 A structural diagram of the front frame from another perspective;
[0076] Figure 12 for Figure 4 A schematic diagram of the clothing handling device from the negative Z-axis viewpoint.
[0077] Figure 13 yes Figure 12 A magnified view of the clothing handling device at position B;
[0078] Figure 14 yes Figure 5 A decomposition diagram of the framework in the middle;
[0079] Figure 15 yes Figure 14 A breakdown diagram of the framework from another perspective;
[0080] Figure 16 yes Figure 15 A magnified view of the frame at position C;
[0081] Figure 17 yes Figure 15 Schematic diagram of the middle connecting beam;
[0082] Figure 18 This is a schematic diagram of the structure of a combined clothing processing device provided in one embodiment of this application.
[0083] Explanation of reference numerals in the attached figures:
[0084] 1-Box body; 11-Outer shell; 111-Front panel; 1111-Clothes opening; 112-Door; 12-Frame; 121-Front frame; 1211-Front frame opening; 1212-Front frame surface; 1213-Upper crossbeam; 1214-Lower crossbeam; 1215-First vertical beam; 1216-Second vertical beam; 1217-First slot; 1217a-Second anti-foolproof part; 122-Rear frame; 1221-First Reinforcing rib; 1222-Second slot; 1222a-Second anti-foolproof part; 123-Bottom connector; 1231-Second reinforcing rib; 124-Top connector; 1240-Connecting beam; 1241-Side beam; 1241a-First anti-foolproof part; 1242-First side section; 1243-Middle section; 1244-Second side section; 125-Middle beam; 1250-Through hole; 1251-Groove;
[0085] 2-Drum; 21-Drum opening;
[0086] 100 - Clothing handling device;
[0087] 200 - Combined garment processing equipment; 201 - First garment processing device; 202 - Second garment processing device. Detailed Implementation
[0088] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0089] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "middle," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.
[0090] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.
[0091] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; 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, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.
[0092] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.
[0093] Before explaining the technical solution of this application, the background technology of this application shall be explained first.
[0094] Clothing handling devices (such as washing machines) typically include a cabinet, which comprises an outer shell and a frame. The frame is disposed within the outer shell to support it, thereby preventing or reducing the possibility of deformation when the outer shell is subjected to external forces, which can improve the quality of the clothing handling device to a certain extent. However, the frame structure in related technologies is complex and has a large number of parts, resulting in cumbersome frame assembly and consequently low processing efficiency of the clothing handling device. Based on this, this application provides a new clothing handling device to solve the above problems.
[0095] The technical solution of this application will be described below with reference to specific embodiments and accompanying drawings.
[0096] Figure 1 This is a schematic diagram of the structure of a clothing processing device 100 according to an embodiment of this application. See also... Figure 1 The garment processing device 100 includes a housing 1.
[0097] The clothing processing device 100 can be a washing machine or a dryer, etc., and this embodiment does not limit it.
[0098] The shape of the aforementioned box 1 can be as follows: Figure 1 The rectangular prism shown is, of course, in other embodiments, the shape of the box 1 may also be a cube or the like, depending on the specific application scenario. This embodiment does not limit this.
[0099] To ensure the clothing processing device 100 has good versatility during installation, specifically, to ensure that the clothing processing device 100 can be well adapted to other clothing processing devices 100 and to ensure that the clothing processing device 100 can be stably installed on the top surface of other clothing processing devices 100, the width of the housing 1 can be in the range of 590mm-610mm.
[0100] When the width of the housing 1 is within the range of 590mm-610mm, this size can be made to be roughly the same as the width requirement of the clothing handling device 100 in the European home appliance design specifications. This allows the clothing handling device 100 to be equal to or roughly equal to the width of most clothing handling devices 100 on the market, which is beneficial for the stable installation of the clothing handling device 100 on the top surface of other clothing handling devices 100.
[0101] Specifically, the width of the box 1 can be 590mm, 600mm or 610mm, etc., as long as the width of the box 1 is within the range of 590mm-610mm. This embodiment does not limit this.
[0102] To facilitate the explanation of the positions of the various components in the garment handling device 100 within the housing 1 below, and to better understand the positional relationships between the various components within the housing 1, the housing 1 will be used as a reference standard. It can be assumed that the housing 1 has a width direction ( Figure 1 (X-axis direction) and (depth direction) Figure 1 (in the Y-axis direction) and the height direction ( Figure 1 (Z-axis direction), where, taking a drum washing machine as an example, the height direction of the aforementioned cabinet 1 can be understood as the up-down direction of the cabinet 1 when the washing machine is placed on the ground. The depth direction of the aforementioned cabinet 1 can be understood as the direction perpendicular to the side where the clothes inlet is located, and the width direction of the aforementioned cabinet 1 can be understood as the left-right direction of the cabinet 1 when a person is facing the side where the clothes inlet is located.
[0103] Figure 2 yes Figure 1 A schematic diagram of the structure of the clothing handling device 100 after one of the doors 112 is opened. Figure 3 yes Figure 2 A schematic diagram of the garment handling device 100 with some parts omitted is shown below. Figure 2 and Figure 3 The garment handling device 100 also includes two rollers 2, which are positioned inside the housing 1 along the width direction of the housing 1. Figure 2 The two rollers 2 are arranged side by side in the X-axis direction. Both rollers 2 have a drum opening 21. The drum opening 21 is used to put clothes into the roller 2. The roller 2 is used to dry or wash clothes.
[0104] By making the two rollers 2 move along the width direction of the box 1 inside the box 1 ( Figure 2 The two rollers 2 are arranged side by side in the X-axis direction, which allows the two rollers 2 to make full use of the space in the width direction of the box 1, thereby saving the space in the height direction of the box 1. This allows the height of the clothing processing device 100 in the height direction of the box 1 to be designed to be shorter. This ensures that when the clothing processing device 100 is stacked with other clothing processing devices 100, the height of the clothing processing device 100 will not be too high, making it more convenient for people to use and more ergonomic.
[0105] Furthermore, by using two rollers 2, each capable of drying or washing clothes, the clothing processing device 100 can simultaneously perform two different operating modes, increasing its efficiency. On the other hand, the two rollers 2 can process different types of clothing separately, allowing for categorized processing. For example, one roller 2 can be dedicated to washing baby clothes, while the other can be dedicated to washing underwear. This makes the clothing processing device 100 more versatile and avoids cross-contamination issues caused by processing different types of clothing in the same roller 2.
[0106] The shape of the aforementioned opening 21 can be circular, square, or irregular, etc., and this embodiment does not limit it.
[0107] In some embodiments, see Figure 2 and Figure 3 The box body 1 includes an outer shell 11, the outer shell 11 includes a front panel 111, the front panel 111 is provided with two clothes inlets 1111, the two clothes inlets 1111 are arranged side by side along the width direction of the box body 1 and are connected to the two cylinder openings 21.
[0108] Since the two garment inlets 1111 are located on the front panel 111, and are arranged side-by-side along the width of the housing 1 and correspondingly connected to the two cylinder openings 21, clothing can be fed into the drum 2 through the garment inlets 1111 from the side where the front panel 111 is located. In simpler terms, clothing can be fed into the drum 2 from the front side of the garment handling device 100 through the garment inlets 1111, which is more convenient than feeding clothing from the top. Furthermore, when this garment handling device 100 is stacked on top of other garment handling devices 100, the problem of difficulty in feeding due to excessively high garment inlets 1111 is less of a concern.
[0109] Figure 4 yes Figure 1The schematic diagram of the clothing handling device 100, omitting the door 112 and the outer casing 11, is shown below. Figure 5 yes Figure 4 See the structural diagram of the middle frame 12. Figure 1 , Figure 4 and Figure 5 In some embodiments, the housing 1 further includes a frame 12 disposed within the outer shell 11.
[0110] By placing the frame 12 inside the outer shell 11, the frame 12 can support the outer shell 11, making the outer shell 11 more robust and durable, and preventing the outer shell 11 from deforming under stress.
[0111] In some embodiments, see Figure 2 , Figure 5 and Figure 6 , Figure 6 yes Figure 5 A schematic diagram of the structure of the front frame 121. The frame 12 includes the front frame 121, and the front panel 111 is disposed on the front frame 121. The front frame 121 is an integrally formed structure.
[0112] Since the front frame 121 is a one-piece molded structure, on the one hand, when assembling the frame 12, the front frame 121 will be installed into the frame 12 as a whole. Therefore, the number of parts of the entire frame 12 can be reduced, thereby simplifying the assembly steps of the frame 12 and making the assembly work of the frame 12 simpler. This can improve the processing efficiency of the clothing processing device 100 to a certain extent.
[0113] On the other hand, it will make the overall integrity of the front frame 121 better, which can improve the mechanical strength of the front frame 121 to a certain extent, and thus improve the mechanical strength of the entire frame 12 to a certain extent.
[0114] The aforementioned front frame 121 can be integrally formed by injection molding. Of course, the front frame 121 can also be integrally formed by other methods, as long as the front frame 121 is an integrally formed structure. This embodiment does not limit this.
[0115] In some embodiments, see Figure 5 and Figure 7 , Figure 7 yes Figure 5 A schematic diagram of the structure of the middle and rear frame 122 is shown. The frame 12 also includes a rear frame 122, which extends along the depth direction of the box 1. Figure 5 The rear frame 122 is a one-piece molded structure and is positioned opposite to the front frame 121 in the Y-axis direction.
[0116] Since the back frame 122 is a one-piece molded structure, when assembling the frame 12, the back frame 122 will be installed into the frame 12 as a whole. Therefore, the number of parts of the entire frame 12 can be reduced, thereby reducing the assembly steps of the frame 12 and making the assembly work of the frame 12 simpler. This can improve the processing efficiency of the garment processing device 100 to a certain extent.
[0117] On the other hand, it will make the overall integrity of the rear frame 122 better, which can improve the mechanical strength of the rear frame 122 to a certain extent, and thus improve the mechanical strength of the entire frame 12 to a certain extent.
[0118] Furthermore, by making the rear frame 122 also a one-piece structure in addition to the front frame 121, the number of parts in the frame 12 can be further reduced, the assembly steps of the frame 12 can be simplified, and the processing efficiency of the garment handling device 100 can be further improved. On the other hand, before the frame 12 is assembled, when the rear frame 122 and the front frame 121 are independent parts, they are convenient to stack and transport.
[0119] Furthermore, since the front frame 121 is a one-piece molded structure, by making the rear frame 122 also a one-piece molded structure, before the garment handling device 100 is assembled, since the front frame 121 and the rear frame 122 are relatively large, the cooperation between the front frame 121 and the rear frame 122 can form a base for placing and storing other smaller parts, thereby making the storage of other smaller parts simpler.
[0120] In order to make the rear frame 122 relatively lightweight while maintaining a certain level of mechanical strength, in some embodiments, see [reference needed] Figure 5 and Figure 7 Multiple first reinforcing ribs 1221 can be provided on the side of the rear frame 122 facing the front frame 121. The multiple first reinforcing ribs 1221 can be arranged horizontally and vertically on the side of the rear frame 122 facing the front frame 121. In this way, the rear frame 122 can be kept relatively light while having a certain mechanical strength.
[0121] In some embodiments, see Figure 5 and Figure 8 , Figure 8 yes Figure 5 The structural diagram of the bottom connector 123 is shown. The frame 12 also includes a bottom connector 123, which is connected to the bottom of the front frame 121 and the bottom of the rear frame 122 respectively.
[0122] By connecting the bottom connector 123 to the bottom of the front frame 121 and the bottom of the rear frame 122 respectively, on the one hand, the bottom connector 123 is similar to a base for the front frame 121 and the rear frame 122 to be placed on. On the other hand, by connecting the bottom connector 123 to the bottom of the front frame 121 and the bottom of the rear frame 122 respectively, a structural guarantee can be provided for the subsequent formation of a complete and interconnected frame 12.
[0123] The bottom connector 123 mentioned above can be as follows: Figure 8 The plate-like structure shown can be modified to have other shapes for the bottom connector 123, but this embodiment does not limit this.
[0124] When the bottom connector 123 is a plate-like structure, in order to make the bottom connector 123 relatively lightweight while having a certain mechanical strength, in some embodiments, see Figure 8 Multiple second reinforcing ribs 1231 can be provided on the side of the bottom connector 123 facing the inside of the frame 12. The multiple second reinforcing ribs 1231 can be arranged in a crisscross pattern, so that the bottom connector 123 can be relatively lightweight while having a certain mechanical strength.
[0125] In some embodiments, see Figure 5 The frame 12 also includes a top connector 124, which is connected to the top of the front frame 121 and the top of the rear frame 122 respectively.
[0126] By connecting the top connector 124 to the top of the front frame 121 and the top of the rear frame 122 respectively, the top connector 124, the front frame 121, the bottom connector 123 and the rear frame 122 can be connected in sequence to form the frame 12 structure. The top connector 124, the front frame 121, the bottom connector 123 and the rear frame 122 can be mutually restrained and constrained, thereby ensuring the structural stability of the entire frame 12.
[0127] The top connector 124 can be a connecting beam or a connecting plate, etc., and this embodiment does not limit it.
[0128] As can be seen, since the front frame 121 and the rear frame 122 are both integrally formed structures, when assembling the frame 12, it is only necessary to connect the bottom connector 123 to the bottom of the front frame 121 and the rear frame 122 respectively, and connect the top connector 124 to the top of the front frame 121 and the rear frame 122 respectively, to complete the assembly of the entire frame 12. The entire assembly process does not involve the assembly of the front frame 121 and the rear frame 122 themselves. Furthermore, the number of parts of the entire frame 12 is reduced. Therefore, the assembly steps of the frame 12 can be simplified, thereby increasing the processing efficiency (assembly efficiency) of the clothing processing device 100.
[0129] In some embodiments, see Figure 3 , Figure 5 and Figure 6 The front frame 121 is provided with a feature along the depth direction of the housing 1. Figure 5 The front frame opening 1211 (in the Y-axis direction) penetrates the front frame 121, and the projections of the two cylindrical openings 21 on the front frame 121 along the depth direction of the box body 1 are located inside the front frame opening 1211.
[0130] By ensuring that the projections of the two tube openings 21 along the depth direction of the box body 1 onto the front frame 121 are located within the front frame opening 1211, the front frame 121 will not obstruct the two tube openings 21, thereby ensuring that clothes can be safely placed into the drum 2 through the tube openings 21.
[0131] In addition, by providing a front frame opening 1211 on the front frame 121, the amount of material used in the front frame 121 can be reduced to a certain extent, thus reducing the weight of the front frame 121.
[0132] It should be noted that, see Figure 6 The shape of the front frame opening 1211 can be rectangular or irregular, as long as the projection of the two cylindrical openings 21 along the depth direction of the box body 1 onto the front frame 121 is located within the front frame opening 1211. In this embodiment, the shape of the front frame opening 1211 is not limited.
[0133] In some embodiments, see Figure 6 , Figure 9 and Figure 10 , Figure 9 yes Figure 4 A schematic diagram of the clothing handling device 100 along the negative X-axis. Figure 10 yes Figure 9 A partial enlarged view at position A shows that the front frame 121 has a front frame surface 1212 disposed opposite to the rear frame 122, and at least a portion of the edge of the cylinder opening 21 protrudes from the front frame surface 1212 along the depth direction of the box body 1.
[0134] By making at least a portion of the edge of the opening 21 along the depth direction of the box body 1 ( Figure 9 The cylinder opening 21 protrudes from the front frame 1212 in the Y-axis direction. On the one hand, this makes the cylinder opening 21 relatively close to the front of the clothing handling device 100. This makes it easier for people to put clothes into the roller 2 through the cylinder opening 21, making the putting of clothes simpler, more convenient, and more user-friendly.
[0135] On the other hand, the opening 21 allows space within the frame 12 to accommodate other structures of the roller 2, thus eliminating the need for the frame 12 to be too large, making the entire garment processing device 100 more compact and small.
[0136] Of course, in other embodiments, the edge of the cylinder opening 21 may not protrude beyond the front frame surface 1212 along the depth direction of the box body 1, and this embodiment does not limit this.
[0137] In some embodiments, see Figure 5 and Figure 6 The front frame 121 includes an upper crossbeam 1213, which extends along the width direction of the housing 1, and the top connector 124 is connected to the upper crossbeam 1213.
[0138] The upper crossbeam 1213 can be a plate-shaped crossbeam, a cylindrical crossbeam, or an irregularly shaped crossbeam, etc., and this embodiment does not limit it.
[0139] The material of the upper crossbeam 1213 can be plastic or hard rubber, etc., and this embodiment does not limit it.
[0140] In some embodiments, see Figure 6 The front frame 121 also includes a lower crossbeam 1214, which is arranged opposite to the upper crossbeam 1213 at intervals along the height direction of the box body 1, and the bottom connector 123 is connected to the lower crossbeam 1214.
[0141] The structure of the lower crossbeam 1214 can be the same as or similar to that of the upper crossbeam 1213. For details, please refer to the description in the above embodiments. This embodiment will not repeat the description here.
[0142] In some embodiments, see Figure 5 and Figure 6 The front frame 121 also includes a first vertical beam 1215, which is located between the upper horizontal beam 1213 and the lower horizontal beam 1214 and is connected to one end of the upper horizontal beam 1213 and one end of the lower horizontal beam 1214, respectively.
[0143] By connecting the first vertical beam 1215 between the upper horizontal beam 1213 and the lower horizontal beam 1214, the upper horizontal beam 1213 and the lower horizontal beam 1214 can form a whole under the action of the first vertical beam 1215.
[0144] The first vertical beam 1215 can be a plate-shaped beam, a cylindrical beam, or an irregularly shaped beam, etc., and this embodiment does not limit this. The material of the first vertical beam 1215 can be plastic or hard rubber, etc., and this embodiment does not limit this.
[0145] In some embodiments, see Figure 6The front frame 121 also includes a second vertical beam 1216, which is located between the upper horizontal beam 1213 and the lower horizontal beam 1214, and is spaced apart from the first vertical beam 1215 along the width direction of the box body 1. The second vertical beam 1216 is connected to the other end of the upper horizontal beam 1213 and the other end of the lower horizontal beam 1214 respectively.
[0146] The structure of the second vertical beam 1216 can be the same as or similar to that of the first vertical beam 1215. For details, please refer to the description of the first vertical beam 1215 in the above embodiments. This embodiment will not repeat the description here.
[0147] In some embodiments, see Figure 6 The upper horizontal beam 1213, the first vertical beam 1215, the lower horizontal beam 1214 and the second vertical beam 1216 are integrally set and enclosed to form the front frame opening 1211.
[0148] Since the upper crossbeam 1213, the first vertical beam 1215, the lower crossbeam 1214 and the second vertical beam 1216 are integrated, the entire front frame 121 can be a one-piece molded structure, which can reduce the number of parts in the entire frame 12 to a certain extent, making the assembly of the frame 12 simpler.
[0149] For a garment handling device 100 with two rollers 2, the space within the frame 12 along the width direction of the housing 1 is usually quite limited. To ensure sufficient space within the frame 12 along the width direction of the housing 1 for installing the two rollers 2, in some embodiments, see [reference needed]. Figure 6 and Figure 11 , Figure 11 yes Figure 6 A structural schematic diagram of the front frame 121 from another perspective, with the upper crossbeam 1213 along the height direction of the box body 1. Figure 11 The narrowest width in the Z-axis direction is H1, the narrowest width of the lower crossbeam 1214 along the height direction of the box 1 is H2, the narrowest width of the first vertical beam 1215 along the width direction of the box 1 is S1, the narrowest width of the second vertical beam 1216 along the width direction of the box 1 is S2.
[0150] Among them, H1>S1, H1>S2, H2>S1, H2>S2.
[0151] By making H1 > S1, H1 > S2, H2 > S1, and H2 > S2, the width of the narrowest part of the vertical beam can be made smaller than the width of the narrowest part of the horizontal beam. In this way, on the one hand, the vertical beam will not occupy too much space in the frame 12 along the width direction of the box 1, thereby ensuring that there is sufficient space in the frame 12 along the width direction of the box 1 to install the two rollers 2, thus avoiding the situation of space shortage during the installation of the rollers 2.
[0152] On the other hand, when the vertical beam is relatively narrow, by making the width of the narrowest part of the horizontal beam greater than the width of the narrowest part of the vertical beam, the mechanical strength of the horizontal beam can be relatively strong, thereby maximizing the mechanical strength of the entire front frame 121, thus avoiding or reducing the possibility of bending deformation of the front frame 121.
[0153] In some embodiments, see Figure 5 The top connector 124 includes two side beams 1241, which are respectively connected to the top of the front frame 121 and the top of the rear frame 122. The two side beams 1241 are along the width direction of the box body 1. Figure 5 Located at both ends of the front frame 121 and the two ends of the rear frame 122 in the X-axis direction.
[0154] Normally, the two ends of the front frame 121 and the two ends of the rear frame 122 are prone to shaking when subjected to external forces. Based on this, by making the two side beams 1241 along the width direction of the box body 1 ( Figure 5 Located at both ends of the front frame 121 and the rear frame 122 along the X-axis, the two side beams 1241 fix the two ends of the front frame 121 and the rear frame 122 along the width direction of the box body 1, and generate a tensile force under the action of the two side beams 1241, thereby preventing the two ends of the front frame 121 and the rear frame 122 from shaking, and making the mechanical strength of the entire frame 12 stronger.
[0155] To further enhance the mechanical strength of frame 12, in some embodiments, see [reference needed]. Figure 4 and Figure 5 The top connector 124 also includes two central beams 125, which are respectively connected to the top of the front frame 121 and the top of the rear frame 122, and the two central beams 125 are along the width direction of the box body 1. Figure 5 Located between the two rollers 2 in the X-axis direction.
[0156] By making the two central beams 125 along the width direction of the box body 1 ( Figure 5 Located between the two rollers 2 in the X-axis direction, the two central beams 125 are positioned close to the center of the box body 1 along the width direction of the box body 1. Thus, the center of the front frame 121 and the rear frame 122 along the width direction of the box body 1 can be fixed by the two central beams 125, thereby further enhancing the mechanical strength of the entire frame 12.
[0157] Furthermore, since a relatively large space is usually formed between the two rollers 2, the two central beams 125 are positioned along the width direction of the housing 1. Figure 5The two central beams 125 are positioned close to the center of the housing 1 in the X-axis direction, so that they correspond to the space between the two rollers 2. This can avoid interference between the central beams 125 and the rollers 2 to a certain extent, making the position of the central beams 125 more reasonable.
[0158] In some embodiments, see Figure 4 , Figure 12 and Figure 13 , Figure 12 for Figure 4 A schematic diagram of the garment handling device 100 as viewed from the negative Z-axis direction. Figure 13 yes Figure 12 A partial enlarged view of the clothing handling device 100 at position B, showing the two central beams 125 along the width direction of the box body 1. Figure 12 (Interval setting in the X-axis direction)
[0159] By making the two central beams 125 along the width direction of the box body 1 ( Figure 12 The spacing between the two central beams 125 (in the X-axis direction) allows for a gap between them. This prevents the two central beams 125 from affecting each other. For example, if one of the central beams 125 vibrates, the vibration at that beam will not be transmitted to the other central beam 125, making each central beam 125 more independent. This, in turn, can prevent large vibrations from occurring in the clothing handling device 100 during operation to a certain extent.
[0160] In some embodiments, see Figure 13 Each of the two central beams 125 has a groove 1251 on its two opposite surfaces, and each groove 1251 extends along the depth direction of the box body 1. Figure 13 The central beam 125 is penetrated along the Z-axis, and two grooves 1251 enclose it to form a through hole 1250.
[0161] Since each groove 1251 penetrates the corresponding central beam 125 along the depth direction of the box 1, and two grooves 1251 enclose to form a through hole 1250, the through hole 1250 can facilitate the subsequent pipeline layout. For example, the through hole 1250 can be used for pipelines to pass through, thereby making the pipeline layout more convenient and flexible.
[0162] In addition, since the two grooves 1251 enclose and form a through hole 1250, when the pipeline passes through the through hole 1250, the through hole 1250 can also limit and fix the pipeline, making the pipeline layout more regular and reliable.
[0163] Furthermore, since the through hole 1250 is formed by two grooves 1251, and the two grooves 1251 are respectively set on two opposite surfaces of the two central beams 125, in this way, when the size of the through hole 1250 is fixed, each central beam 125 only needs to remove a small amount of material to process the grooves 1251 to obtain a through hole 1250 of a specific size. This ensures that the mechanical strength of each central beam 125 is not greatly affected by the need to form the through hole 1250, thereby avoiding the occurrence of local breakage of the central beam 125.
[0164] It should be noted that the aforementioned side beam 1241 and middle beam 125 are both connecting beams 1240.
[0165] In some embodiments, see Figure 5 and Figure 14 , Figure 14 yes Figure 5 An exploded view of the frame 12 shows that a first slot 1217 is provided on the front frame 121, and one end of the connecting beam 1240 is inserted into the first slot 1217.
[0166] By providing a first slot 1217 on the front frame 121, when it is necessary to connect one end of the connecting beam 1240 to the front frame 121, one end of the connecting beam 1240 only needs to be inserted into the first slot 1217, and then the connection between the one end of the connecting beam 1240 and the front frame 121 can be achieved by screws or other means.
[0167] This design serves two purposes. First, the engagement between the connecting beam 1240 and the first slot 1217 helps to position the connection between the connecting beam 1240 and the front frame 121, resulting in higher installation accuracy of the connecting beam 1240 on the front frame 121. Second, the engagement between the connecting beam 1240 and the first slot 1217 also reinforces the connection between the connecting beam 1240 and the front frame 121, making the connection more secure.
[0168] The first slot 1217 can be circular or rectangular, as long as it can match one end of the connecting beam 1240. This embodiment does not limit this.
[0169] In some embodiments, see Figure 14 and Figure 15 , Figure 15 yes Figure 14 An exploded view of frame 12 from another perspective, showing that the rear frame 122 has a feature along the depth direction of the box 1. Figure 15 The second slot 1222 is opposite to the first slot 1217 in the Y-axis direction, and the other end of the connecting beam 1240 is inserted into the second slot 1222.
[0170] By providing a second slot 1222 on the rear frame 122, when it is necessary to connect the other end of the connecting beam 1240 to the rear frame 122, simply insert the other end of the connecting beam 1240 into the second slot 1222, and then connect the other end of the connecting beam 1240 to the rear frame 122 by screws or other means.
[0171] This design serves two purposes. First, the engagement between the connecting beam 1240 and the second slot 1222 helps to position the connection between the connecting beam 1240 and the rear frame 122, resulting in higher installation accuracy of the connecting beam 1240 on the rear frame 122. Second, the engagement between the connecting beam 1240 and the second slot 1222 also reinforces the connection between the connecting beam 1240 and the rear frame 122, making the connection more secure.
[0172] The shape of the second slot 1222 can also be circular or rectangular, as long as it can match the other end of the connecting beam 1240. This embodiment does not limit this.
[0173] In some embodiments, see Figure 15 and Figure 16 , Figure 16 yes Figure 15 The enlarged view of the frame 12 at position C shows that a first anti-foolproof part 1241a is provided on the other end of the connecting beam 1240, and a second anti-foolproof part 1222a matching the first anti-foolproof part 1241a is provided in the second slot 1222.
[0174] By providing a first anti-mistake part 1241a on the other end of the connecting beam 1240 and a second anti-mistake part 1222a matching the first anti-mistake part 1241a in the second slot 1222, when the other end of the connecting beam 1240 needs to be inserted into the second slot 1222, it is necessary to ensure that the first anti-mistake part 1241a and the second anti-mistake part 1222a are matched in position so that the other end of the connecting beam 1240 can be smoothly inserted into the second slot 1222, thereby avoiding installation errors.
[0175] There are multiple ways to implement the first error-proof part 1241a and the second error-proof part 1222a. In one possible implementation, the first error-proof part 1241a is along the width direction of the housing 1. Figure 16 The second anti-foolproof part 1222a is a protrusion protruding from the connecting beam 1240 in the X-axis direction. It is provided on the groove wall of the second slot 1222 and along the depth direction of the box 1. Figure 16The anti-foolproof groove extends along the Y-axis direction, and the protrusion is slidably inserted into the anti-foolproof groove along the depth direction of the housing 1.
[0176] Because the protrusion and groove structures are simple, when the first anti-mistake part 1241a is a protrusion and the second anti-mistake part 1222a is an anti-mistake groove, on the one hand, the cost of the first anti-mistake part 1241a and the second anti-mistake part 1222a can be reduced. On the other hand, the cooperation between the protrusion and the anti-mistake groove can also improve the installation accuracy between the connecting beam 1240 and the rear frame 122.
[0177] In some embodiments, see Figure 15 and Figure 17 , Figure 17 yes Figure 15 A structural schematic diagram of the connecting beam 1240, along the depth direction of box 1 ( Figure 15 (In the Y-axis direction), the connecting beam 1240 has a first side section 1242, a middle section 1243 and a second side section 1244 connected in sequence. The first side section 1242 is connected to the top of the front frame 121, the second side section 1244 is connected to the top of the rear frame 122, and the top surface of the middle section 1243 is higher than the top surface of the first side section 1242 and higher than the top surface of the second side section 1244.
[0178] The top surface of the middle section 1243 is flush with the top surface of the front frame 121 and the top surface of the rear frame 122.
[0179] Since the top surface of the middle section 1243 is higher than the top surface of the first side section 1242 and the top surface of the second side section 1244, and since the top surface of the middle section 1243 is flush with the top surface of the front frame 121 and the top surface of the rear frame 122, when the top plate of the outer shell 11 is installed on the top surface of the frame 12, only the top surface of the middle section 1243 can contact the top plate to support it, while the top surfaces of the first side section 1242 and the second side section 1244 can have gaps with the top plate. In this way, the connecting beam 1240 can support the top plate while reducing the contact area with the top plate, thereby reducing the possibility of vibration on the connecting beam 1240 being transmitted to the outer shell 11 to a certain extent, making the clothing handling device 100 operate more smoothly.
[0180] The first side section 1242, the middle section 1243 and the second side section 1244 can be integrally formed. When the first side section 1242, the middle section 1243 and the second side section 1244 are integrally formed, the structure of the connecting beam 1240 can be simplified, thereby reducing the assembly steps of the entire clothing processing device 100.
[0181] Figure 18This is a schematic diagram of the structure of a combined clothing processing device 200 according to an embodiment of this application. See also... Figure 18 The combined garment processing device 200 includes a first garment processing device 201 and a second garment processing device 202, wherein the second garment processing device 202 is any of the garment processing devices 100 in the above embodiments, and the second garment processing device 202 is detachably disposed on the top surface of the first garment processing device 201.
[0182] The structure of the second garment processing device 202 can be the same as that of the garment processing device 100, and can bring the same or similar beneficial effects. For details, please refer to the description of the garment processing device 100 in the above embodiments. This embodiment will not repeat the description here.
[0183] In this embodiment, since the frame of the second garment processing device 202 is relatively easy to assemble, the processing efficiency of the second garment processing device 202 is relatively high. Based on this, when the combined garment processing equipment 200 includes the second garment processing device 202, the assembly of the combined garment processing equipment 200 is relatively simple, thereby improving the processing efficiency of the combined garment processing equipment 200.
[0184] The first garment handling device 201 can be a washing machine. Specifically, when the first garment handling device 201 is a washing machine, it can be as follows: Figure 18 The single-drum washing machine shown is an example.
[0185] Of course, the first garment processing device 201 can also be a shoe washer or a dryer, etc., and this embodiment does not limit it. The second garment processing device 202 can be a twin-drum washing machine.
[0186] By detachably mounting the second garment processing device 202 on the top surface of the first garment processing device 201, the second garment processing device 202 and the first garment processing device 201 can be stacked together. This results in a smaller overall footprint for the second garment processing device 202 and the first garment processing device 201, making full use of the upper space and achieving the goal of saving floor space and making full use of the upper space.
[0187] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A garment processing device (100), characterized in that, include: Box (1); Two rollers (2) are arranged side by side in the box (1) along the width direction of the box (1). Both rollers (2) have a cylinder opening (21) for feeding clothes into the rollers (2). The rollers (2) are used for drying or washing clothes. The housing (1) includes: Housing (11), said housing (11) comprising: The front panel (111) has two clothes inlets (1111) arranged side by side along the width of the box (1) and correspondingly connected to the two cylinder openings (21). A frame (12), disposed within the outer shell (11), comprising: A front frame (121), wherein the front panel (111) is disposed on the front frame (121), and the front frame (121) is an integrally formed structure; The rear frame (122) is disposed opposite to the front frame (121) along the depth direction of the box (1), and the rear frame (122) is an integrally formed structure; Bottom connector (123), the bottom connector (123) is connected to the bottom of the front frame (121) and the bottom of the rear frame (122) respectively; Top connector (124) is connected to the top of the front frame (121) and the top of the rear frame (122), respectively.
2. The garment processing device (100) according to claim 1, characterized in that, The front frame (121) is provided with a front frame opening (1211) that extends through the front frame (121) along the depth direction of the box (1), and the projections of the two cylindrical openings (21) on the front frame (121) along the depth direction of the box (1) are located within the front frame opening (1211).
3. The garment processing device (100) according to claim 2, characterized in that, The front frame (121) includes: The upper crossbeam (1213) extends along the width direction of the box (1), and the top connector (124) is connected to the upper crossbeam (1213); The lower crossbeam (1214) and the upper crossbeam (1213) are arranged opposite to each other at intervals along the height direction of the box (1), and the bottom connector (123) is connected to the lower crossbeam (1214); A first vertical beam (1215) is located between the upper horizontal beam (1213) and the lower horizontal beam (1214) and is connected to one end of the upper horizontal beam (1213) and one end of the lower horizontal beam (1214), respectively; and, The second vertical beam (1216) is located between the upper horizontal beam (1213) and the lower horizontal beam (1214), and is spaced apart from the first vertical beam (1215) along the width direction of the box (1). The second vertical beam (1216) is connected to the other end of the upper horizontal beam (1213) and the other end of the lower horizontal beam (1214). The upper horizontal beam (1213), the first vertical beam (1215), the lower horizontal beam (1214) and the second vertical beam (1216) are integrally arranged and enclose to form the front frame opening (1211); The narrowest width of the upper crossbeam (1213) along the height direction of the box (1) is H1, the narrowest width of the lower crossbeam (1214) along the height direction of the box (1) is H2, the narrowest width of the first vertical beam (1215) along the width direction of the box (1) is S1, and the narrowest width of the second vertical beam (1216) along the width direction of the box (1) is S2. Among them, H1>S1, H1>S2, H2>S1, H2>S2.
4. The garment handling apparatus (100) according to any one of claims 1-3, characterized in that, The top connector (124) includes: Two side beams (1241) are connected to the top of the front frame (121) and the top of the rear frame (122) respectively. The two side beams (1241) are located at both ends of the front frame (121) and the rear frame (122) respectively along the width direction of the box body (1).
5. The garment processing device (100) according to claim 4, characterized in that, The top connector (124) also includes: Two central beams (125) are connected to the top of the front frame (121) and the top of the rear frame (122) respectively, and the two central beams (125) are located between the two rollers (2) along the width direction of the box body (1).
6. The garment processing apparatus (100) according to claim 5, characterized in that, Grooves (1251) are provided on the two opposite surfaces of the two central beams (125). Each groove (1251) penetrates the corresponding central beam (125) along the depth direction of the box (1). The two grooves (1251) enclose to form a through hole (1250).
7. The garment processing apparatus (100) according to claim 5, characterized in that, The front frame (121) is provided with a first slot (1217), and the two side beams (1241) and the two middle beams (125) are all connecting beams (1240), with one end of the connecting beam (1240) inserted into the first slot (1217); The rear frame (122) is provided with a second slot (1222) that is opposite to the first slot (1217) along the depth direction of the box (1), and the other end of the connecting beam (1240) is inserted into the second slot (1222).
8. The garment processing apparatus (100) according to claim 7, characterized in that, A first anti-foolproof part (1241a) is provided on the other end of the connecting beam (1240), and a second anti-foolproof part (1222a) matching the first anti-foolproof part (1241a) is provided in the second slot (1222).
9. The garment handling apparatus (100) according to claim 7, characterized in that, Along the depth direction of the box body (1), the connecting beam (1240) has a first side section (1242), a middle section (1243) and a second side section (1244) connected in sequence. The first side section (1242) is connected to the top of the front frame (121), and the second side section (1244) is connected to the top of the rear frame (122). The top surface of the middle section (1243) is higher than the top surface of the first side section (1242) and higher than the top surface of the second side section (1244). The top surface of the middle section (1243) is flush with the top surface of the front frame (121) and the top surface of the rear frame (122).
10. A combined garment processing device (200), characterized in that, include: First garment processing device (201); as well as, The second garment processing device (202) is the garment processing device (100) according to any one of claims 1-9, and the second garment processing device (202) is detachably disposed on the top surface of the first garment processing device (201).