Stacking support and combined clothes processing equipment
By designing a stacking bracket with sliding grooves and pins, the problem of inconvenient installation and disassembly of clothing handling devices in the prior art is solved, realizing a fast and convenient installation and disassembly process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-04-14
AI Technical Summary
In the existing technology, stacking brackets are not convenient or quick enough for installing and removing garment handling devices.
A stacking bracket was designed, comprising a sliding groove, a receiving hole, and a pin. Through the cooperation of the sliding section and the slot section, the garment handling device can be stably installed and disassembled.
It enables quick installation and disassembly of the garment handling device, improving the convenience and user-friendliness of the installation and disassembly process.
Smart Images

Figure CN224119300U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of home appliance technology, and in particular to a stacking bracket and a combined clothing processing device. Background Technology
[0002] With the development of garment processing device technology, the need for stacking garment processing devices has emerged in recent years. To stably stack two garment processing devices, stacking brackets have been developed. Specifically, by placing a stacking bracket between two garment processing devices, the purpose of stacking them can be achieved. However, the stacking brackets in related technologies suffer from inconvenience and slowness in both installing and removing the garment processing devices from the bracket. Utility Model Content
[0003] This application discloses a stacking bracket and a combined garment processing device, which makes it convenient and quick to install the garment processing device on the stacking bracket or to remove the garment processing device from the stacking bracket.
[0004] To achieve the above objectives, in a first aspect, this application discloses a stacking support, comprising:
[0005] The support body, on which the following are provided:
[0006] A placement surface, the placement surface being used to connect to a first garment handling device;
[0007] A bearing surface, which is disposed opposite to the placement surface, is used to support a second garment processing device. The second garment processing device has supporting legs, which include a first supporting leg and a second supporting leg.
[0008] The sliding groove includes a sliding section and a slot section connected in sequence. The sliding section and the slot section are arranged on the bearing surface. The sliding section is used to guide the first support foot to slide to the slot section. The slot section is used to restrict the movement of the first support foot in any direction other than the direction from the slot section to the sliding section.
[0009] A receiving hole is provided on the bearing surface. The receiving hole has an opening. When the first support foot slides to the slot section, the second support foot enters the receiving hole through the opening. The receiving hole is used to restrict the movement of the second support foot along the slot section in the direction of the sliding section.
[0010] A slot, the slot communicating with the receiving hole;
[0011] A pin is slidably inserted into the slot along the direction of the slot section toward the sliding section, such that the pin slides to at least partially bring the second support foot close to or away from the first side of the opening, thereby confining the second support foot within the receiving hole or allowing the second support foot to slide out of the receiving hole through the opening.
[0012] Since the sliding groove includes a sliding section and a slot section connected in sequence, the sliding section and the slot section are arranged on the bearing surface, the receiving hole is set on the bearing surface, and the pin can be slidably inserted into the slot. Since the slot is connected to the receiving hole, when it is necessary to install the second garment handling device on the stacking bracket, it is only necessary to first place the first support leg on the sliding section, and then push the second garment handling device along the direction of the sliding section towards the slot section, so that the first support leg slides to the slot section and the second support leg is inserted into the receiving hole through the opening. Then, push the pin along the slot so that the pin slides to the first side of the second support leg near the opening, thus achieving the purpose of installing the second garment handling device on the stacking bracket.
[0013] When it is necessary to remove the second garment handling device from the stacking bracket, simply push the pin to move away from the first side of the second support foot, then disengage the second support foot from the receiving hole, and finally push the second garment handling device along the direction from the slot section to the sliding section, so that the first support foot slides from the slot section to the sliding section, thereby achieving the purpose of removing the second garment handling device from the stacking bracket. The installation and removal process is very convenient and quick.
[0014] Optionally, the receiving hole extends along the direction from the bearing surface to the placement surface.
[0015] Since the receiving hole extends along the bearing surface towards the placement surface, when it is necessary to insert the support leg into the receiving hole, gravity can be used to insert the support leg into the receiving hole, making it very effortless.
[0016] Optionally, the support body further includes:
[0017] The body peripheral wall is connected between the placement surface and the bearing surface, and the slot is disposed on the body peripheral wall.
[0018] Since the slot is located on the peripheral wall of the main body, when it is necessary for the pin to slide in the slot, it is convenient for personnel to push the pin on one side of the peripheral wall of the main body so that the slot avoids the placement surface and the bearing surface, thereby avoiding interference with the second garment processing device or the first garment processing device.
[0019] Optionally, the stacking support further includes:
[0020] Fasteners for locking the pin to the bracket body.
[0021] By setting fasteners, the pin can be locked to the bracket body, thus preventing the pin from slipping out of the slot abnormally.
[0022] Optionally, the latch includes:
[0023] An insertion portion, which is slidably inserted into the slot, such that the insertion portion slides to at least a portion of the support leg near or away from the first side of the opening;
[0024] A connecting part is connected to the insertion part, and when the insertion part slides to at least part of the support foot near the first side of the opening, the connecting part abuts against the peripheral wall of the body.
[0025] Since the connecting part abuts against the peripheral wall of the body when the insertion part slides to at least part of the support foot near the first side of the opening, the connecting part can play a positioning role. When the personnel insert the pin into the slot, they can judge whether the pin is installed in place by whether the connecting part abuts against the peripheral wall of the body, so that the installation accuracy of the pin is higher.
[0026] Optionally, a portion of the fastener's structure passes through the connection and is fastened to the peripheral wall of the body.
[0027] By having part of the fastener's structure pass through the connecting part and be fastened to the peripheral wall of the body, the connecting part can not only play the aforementioned positioning role, but also play the role of fastening the pin to the bracket body. This multi-purpose feature can simplify the structure of the pin to a certain extent.
[0028] Optionally, the slot extends through the bearing surface in the direction from the placement surface to the bearing surface, and the pin is provided with a thickened portion that is flush with the bearing surface.
[0029] By making the slot penetrate the bearing surface along the direction from the placement surface to the bearing surface, the slot can form a semi-open groove structure. This makes the sliding of the pin in the slot more visible, making it easier to observe the operation of the pin and to carry out maintenance when abnormalities occur.
[0030] By making the thickened part flush with the bearing surface, even if the slot penetrates the bearing surface along the direction from the placement surface to the bearing surface, the plane formed by the bearing surface and the thickened part can still be relatively flat under the action of the thickened part, which can help the second garment processing device to be installed more stably on the bearing surface.
[0031] Optionally, the slot segment includes:
[0032] The bottom of the limiting groove; and,
[0033] A protruding edge is provided on the wall of the sliding groove and is spaced apart from the bottom of the limiting groove to form a limiting gap, and the second support foot is located in the limiting gap.
[0034] Since the protruding edge is set on the wall of the sliding groove and forms a limiting gap with the bottom of the limiting groove, when the second garment handling device is pushed along the direction from the sliding section to the slot section, so that the second support leg slides from the sliding section to the slot section, the second support leg will be stuck in the limiting gap, thereby achieving the purpose of stably installing the second support leg on the stacking bracket.
[0035] Since the limiting seam can restrict the movement of the second support leg in the vertical direction, and the receiving hole can restrict the movement of the first support leg in the horizontal direction, the movement of the second garment handling device in both the vertical and horizontal directions can be limited, thereby better ensuring that the second garment handling device can be stably installed on the stacking bracket.
[0036] Optionally, the support body is further provided with:
[0037] The temporary storage cavity is provided with the pin detachably disposed on the bracket body and located in the temporary storage cavity. When the pin is detached from the temporary storage cavity, the pin can be slidably inserted into the slot.
[0038] Since the pin is detachably mounted on the bracket body and located in the temporary storage cavity, the pin and the bracket body can be integrated before the second garment handling device is installed on the stacking bracket. This reduces the number of parts in the stacking bracket and facilitates its storage and transportation.
[0039] When it is necessary to install the second garment processing device on the stacking bracket, the pin can be removed from the temporary storage cavity, and then the pin can be slidably inserted into the slot to achieve the purpose of installing the second garment processing device on the stacking bracket.
[0040] Optionally, the support body includes:
[0041] The main support frame has two opposite sides, which are the placement surface and the bearing surface.
[0042] A detachable bracket, wherein the two opposite sides of the detachable bracket are a first side and a second side, and the splicing of the detachable bracket and the main bracket has at least a first splicing state and a second splicing state.
[0043] When the detachable bracket is in the first splicing state, the first surface and the placement surface face the same direction and are coplanar. When the detachable bracket is in the second splicing state, the second surface and the placement surface face the same direction but are not coplanar.
[0044] When the detachable bracket is in its first assembled state, the first surface and the placement surface face the same direction and are coplanar. When the detachable bracket is in its second assembled state, the second surface and the placement surface face the same direction but are not coplanar. Therefore, when it is necessary to install the stacking bracket on the first garment processing device with a relatively flat top surface, the detachable bracket can be in its first assembled state. In this state, the first surface and the placement surface face the same direction and are coplanar. This allows the large flat surface formed by the first surface and the placement surface to fit well with the top surface of the first garment processing device, thus enabling the stacking bracket to be stably installed on the top surface of the first garment processing device.
[0045] When it is necessary to install the stacking bracket on the first garment processing device with an uneven top surface, for example, when the top surface of the first garment processing device is a stepped surface, the detachable bracket can be in a second splicing state. At this time, the second surface and the placement surface face the same direction but are not coplanar. Therefore, the large flat surface formed by the second surface and the placement surface can be a stepped surface. This stepped surface can fit well with the top surface of the first garment processing device without being suspended, so that the stacking bracket can be stably installed on the top surface of the first garment processing device.
[0046] It is evident that by allowing the detachable bracket to switch between the first splicing state and the second splicing state, the stacking bracket can be adapted to the top surface of different first garment processing devices, thus achieving greater compatibility.
[0047] Optionally, one of the detachable bracket and the main bracket is provided with a first snap-fit protrusion and the other is provided with a first snap-fit groove. When the detachable bracket is in the first splicing state or the second splicing state, the first snap-fit protrusion is snapped into the first snap-fit groove.
[0048] Since one of the detachable bracket and the main bracket is provided with a first snap-fit protrusion and the other is provided with a first snap-fit groove, when it is necessary to install the detachable bracket on the main bracket, simply make the first snap-fit protrusion snap into the first snap-fit groove to achieve the purpose of installing the detachable bracket on the main bracket, which is very convenient and quick.
[0049] Optionally, the first snap-fit groove is disposed on the placement surface.
[0050] By placing the first snap-fit groove on the placement surface, the flatness of the bearing surface can be avoided, thus allowing the second garment processing device to be installed more stably on the bearing surface.
[0051] Optionally, the first snap-fit protrusion includes a first abutting surface and a second abutting surface that are opposite to each other in the direction from the bearing surface to the placement surface;
[0052] When the detachable bracket is in the first splicing state, the first abutting surface abuts against the bottom of the first snap-fit groove; when the detachable bracket is in the second splicing state, the second abutting surface abuts against the bottom of the first snap-fit groove.
[0053] When the detachable bracket is in the first splicing state, the first abutting surface abuts against the bottom of the first snap-fit groove. When the detachable bracket is in the second splicing state, the second abutting surface abuts against the bottom of the first snap-fit groove. That is, by changing the installation method of the first snap-fit protrusion in the first snap-fit groove, specifically by changing the orientation of the first abutting surface and the second abutting surface, the stacking bracket can be compatible with the top surface of different first garment processing devices without replacing the parts, simply by changing the installation method. This can reduce the number of parts of the stacking bracket and lower the cost of the stacking bracket.
[0054] Optionally, one of the detachable bracket and the main bracket is provided with a first anti-mistake protrusion, and the other is provided with a first anti-mistake groove and a second anti-mistake groove that match the first anti-mistake protrusion.
[0055] When the detachable bracket is in the first splicing state, the first anti-mistake protrusion is located in the first anti-mistake groove; when the detachable bracket is in the second splicing state, the first anti-mistake protrusion is located in the second anti-mistake groove.
[0056] By providing a first anti-mistake protrusion on one of the detachable bracket and the main bracket, and a first anti-mistake groove and a second anti-mistake groove on the other, the detachable bracket and the main bracket can be connected not only through the engagement between the first engagement protrusion and the first engagement groove, but also through the engagement between the first anti-mistake protrusion and the first anti-mistake groove or the second anti-mistake groove. In this way, on the one hand, the installation accuracy between the detachable bracket and the main bracket can be improved, and on the other hand, the installation between the detachable bracket and the main bracket can be made more secure.
[0057] Optionally, one of the detachable bracket and the main bracket is further provided with a second anti-mistake protrusion, and the other is provided with a third anti-mistake groove and a fourth anti-mistake groove that match the second anti-mistake protrusion.
[0058] When the detachable bracket is in the first splicing state, the second anti-mistake protrusion is located in the third anti-mistake groove; when the detachable bracket is in the second splicing state, the second anti-mistake protrusion is located in the fourth anti-mistake groove.
[0059] The structure of the second anti-mistake protrusion is different from that of the first anti-mistake protrusion.
[0060] Because the structure of the second anti-mistake protrusion is different from that of the first anti-mistake protrusion, the second anti-mistake protrusion can only be matched with the third anti-mistake groove or the fourth anti-mistake groove, and the first anti-mistake protrusion can only be matched with the first anti-mistake groove or the second anti-mistake groove. In this way, it can play a role in preventing mistakes to a certain extent, thereby avoiding or reducing problems such as unstable installation or misalignment caused by incorrect installation.
[0061] Secondly, this application discloses a combined garment processing device, comprising:
[0062] First garment processing device;
[0063] The stacking support described in any one of the first aspects above; and,
[0064] The second garment processing device has a stacking bracket located between the first garment processing device and the second garment processing device in the vertical direction, and the stacking bracket is connected to the first garment processing device and the second garment processing device respectively.
[0065] Because the stacking bracket makes it very convenient and quick to remove the second garment processing device from the stacking bracket or to install the second garment processing device on the stacking bracket, the installation and disassembly of the combined garment processing equipment can be made more convenient and more user-friendly.
[0066] Compared with the prior art, the beneficial effects of this application are as follows:
[0067] In this application, since the sliding groove includes a sliding section and a slot section connected in sequence, the sliding section and the slot section are arranged on the bearing surface, the receiving hole is provided on the bearing surface, and the pin is slidably inserted into the slot in the direction from the slot section to the sliding section, and since the slot is connected to the receiving hole, when it is necessary to install the second clothing processing device on the stacking bracket, it is only necessary to first place the first support leg on the sliding section, and then push the second clothing processing device in the direction from the sliding section to the slot section, so that the first support leg slides to the slot section and the second support leg is inserted into the receiving hole through the opening. Then, push the pin along the slot so that the pin slides to the first side of the second support leg near the opening, thereby achieving the purpose of installing the second clothing processing device on the stacking bracket.
[0068] When it is necessary to remove the second garment handling device from the stacking bracket, simply push the pin to move away from the first side of the second support foot, then disengage the second support foot from the receiving hole, and finally push the second garment handling device along the direction from the slot section to the sliding section, so that the first support foot slides from the slot section to the sliding section, thereby achieving the purpose of removing the second garment handling device from the stacking bracket. The installation and removal process is very convenient and quick. Attached Figure Description
[0069] 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.
[0070] Figure 1 This is a schematic diagram of a stacking support structure provided in one embodiment of this application;
[0071] Figure 2 yes Figure 1 A schematic diagram of the stacking support structure when applied to a modular garment processing device;
[0072] Figure 3 yes Figure 2 An exploded view of a modular garment processing equipment;
[0073] Figure 4 yes Figure 3 A magnified view of a portion of location A in the middle;
[0074] Figure 5 yes Figure 3 A schematic diagram of the combined garment processing equipment from another perspective;
[0075] Figure 6 yes Figure 5 A magnified view of the combined garment processing equipment at position B;
[0076] Figure 7 This is an exploded view of another combined garment processing device provided in an embodiment of this application (the pin slides to the first side of the support leg near the opening);
[0077] Figure 8 yes Figure 7 A schematic diagram of the combined garment processing equipment in the middle when the pin is removed from the first side;
[0078] Figure 9 yes Figure 8 A magnified view of a section at position D in the middle;
[0079] Figure 10 yes Figure 7 A schematic diagram of the disassembled structure of the modular garment processing equipment.
[0080] Figure 11 yes Figure 10 A partial cross-sectional view of the combined garment processing equipment at the EE location;
[0081] Figure 12 yes Figure 8 Exploded view of the stacked support structure;
[0082] Figure 13 yes Figure 12 An exploded view of the stacked supports from another perspective;
[0083] Figure 14 yes Figure 13 Schematic diagram of the middle insertion pin;
[0084] Figure 15 yes Figure 12 A magnified view of the area at position F in the middle;
[0085] Figure 16 yes Figure 1 An exploded view of a stacked support structure;
[0086] Figure 17 yes Figure 16 An exploded view of the stacked supports from another perspective.
[0087] Explanation of reference numerals in the attached figures:
[0088] 1-Bracket body; 11-Placement surface; 12-Bearing surface; 13-Accommodation hole; 131-Opening; 14-Slot; 15-Peripheral wall of the body; 16-Sliding groove; 161-Sliding section; 162-Card slot section; 1621-Bottom of limiting groove; 1622-Protruding edge; 1623-Limiting seam; 17-Temporary storage cavity; 18-Main bracket; 181-First locking groove; 182-First anti-foolproof groove; 183-Second anti-foolproof groove; 184-Third anti-foolproof groove; 185-Fourth anti-foolproof groove; 186-First bracket; 187-Second bracket; 188-Third bracket; 19-Detachable bracket; 191-First surface; 192-Second surface; 193-First locking protrusion; 1931-First abutment surface; 1932-Second abutment surface; 194-First anti-foolproof protrusion; 195-Second anti-foolproof protrusion;
[0089] 2-Pin; 21-Insertion part; 22-Connecting part; 23-Thickened part;
[0090] 3-Fasteners;
[0091] 100 - Stacking bracket; 200 - First garment processing device; 300 - Second garment processing device; 301 - Support leg; 3011 - First support leg; 3012 - Second support leg;
[0092] 1000 - Modular garment processing equipment. Detailed Implementation
[0093] 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.
[0094] 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.
[0095] 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.
[0096] 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.
[0097] 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.
[0098] Before explaining the technical solution of this application, the background technology of this application shall be explained first.
[0099] With the development of garment processing device technology, the need for stacking garment processing devices has emerged in recent years. To stably stack two garment processing devices, stacking brackets have been developed. Specifically, by placing a stacking bracket between two garment processing devices, the purpose of stacking them can be achieved. However, the stacking brackets in the related technology suffer from inconvenience and slowness in both installing and removing the garment processing devices from the stacking bracket. Therefore, this application provides a new stacking bracket to solve the above problems.
[0100] The technical solution of this application will be described below with reference to specific embodiments and accompanying drawings.
[0101] Figure 1 This is a schematic diagram of the structure of a stacking support 100 provided in one embodiment of this application. Figure 2 yes Figure 1 The stacking support 100 is a structural diagram of the combined garment processing equipment 1000.
[0102] See Figure 1 and Figure 2 The stacking support 100 includes a support body 1, on which a placement surface 11 is provided. Figure 1 The bottom surface of the stacking support 100 and the placement surface 11 are used to connect to the first garment processing device 200.
[0103] The placement surface 11 can be a plane or any surface that can match the first clothing processing device 200; this embodiment does not limit this.
[0104] By setting the placement surface 11, it is beneficial for the stacking bracket 100 to be installed more stably on the first garment processing device 200 through the placement surface 11.
[0105] The stacking bracket 100 can be installed on the first garment processing device 200 by screws or any other possible means, and this embodiment does not limit this.
[0106] The aforementioned first garment handling device 200 can be a washing machine. Specifically, when the first garment handling device 200 is a washing machine, the first garment handling device 200 can be as follows: Figure 2 The single-drum washing machine shown is an example.
[0107] Of course, the first garment processing device 200 can also be a shoe washing machine or a dryer, etc., and this embodiment does not limit it.
[0108] In some embodiments, see Figure 1 and Figure 2The support body 1 is also provided with a bearing surface 12, which is arranged opposite to the placement surface 11, and is used to support the second clothing processing device 300.
[0109] Since the bearing surface 12 and the placement surface 11 are arranged opposite to each other, when the bearing surface 12 carries the second clothing processing device 300, the second clothing processing device 300 and the first clothing processing device 200 can be stacked together by the stacking bracket 100. This allows the overall footprint of the second clothing processing device 300 and the first clothing processing device 200 to be smaller and make full use of the upper space, thereby achieving the purpose of saving floor space and making full use of the upper space.
[0110] The structure of the bearing surface 12 can be the same as or similar to that of the placement surface 11, which will not be described in detail here.
[0111] The aforementioned second garment handling device 300 can be a dryer or a washing machine, etc. When the second garment handling device 300 is a washing machine, specifically, the second garment handling device 300 can be as follows: Figure 2 The double-drum washing machine shown is of course a single-drum washing machine, etc., but this embodiment does not limit it.
[0112] Figure 3 yes Figure 2 An exploded view of a 1000-type modular garment processing machine. Figure 4 yes Figure 3 See the enlarged view of the area at position A in the middle. Figure 3 and Figure 4 In some embodiments, the second garment handling device 300 has a support foot 301.
[0113] The number of support feet 301 can be as follows: Figure 3 The four shown are not limited to six or eight support feet 301, but this embodiment does not limit the number of support feet 301.
[0114] When there are four support feet 301, and the surface of the second clothing processing device 300 used to set the support feet 301 is rectangular, the support feet 301 can be set approximately close to the four corners of the rectangle. In this way, the second clothing processing device 300 can be supported more stably.
[0115] When the second garment processing device 300 also includes a support foot 301, on the one hand, the support foot 301 can stably install the second garment processing device 300 on the stacking bracket 100. On the other hand, when the support foot 301 is a flexible support foot 301, it can also play a role in shock absorption and noise reduction, making the second garment processing device 300 run more smoothly and quietly.
[0116] Specifically, the support foot 301 may include a first support foot 3011 and a second support foot 3012. The number of first support feet 3011 and the number of second support feet 3012 may both be two. Of course, the number of first support feet 3011 and the number of second support feet 3012 may also be other values, and this embodiment does not limit this.
[0117] In some embodiments, see Figure 3 , Figure 12 and Figure 15 The sliding groove 16 may include a sliding segment 161 and a slot segment 162 connected in sequence. The sliding segment 161 and the slot segment 162 are arranged on the bearing surface 12. The sliding segment 161 is used to guide the first support foot 3011 to slide to the slot segment 162. The slot segment 162 is used to restrict the movement of the first support foot 3011 in any direction other than the direction in which the slot segment 162 points to the sliding segment 161.
[0118] Since the first support leg 3011 can restrict the movement of the first support leg 3011 in any direction other than the direction from the slot section 162 to the sliding section 161 when the first support leg 3011 slides to the slot section 162, the first support leg 3011 can be initially fixed by the slot section 162 and the first support leg 3011.
[0119] In some embodiments, see Figure 5 and Figure 6 , Figure 5 yes Figure 3 A structural schematic diagram of the modular garment processing equipment 1000 from another perspective. Figure 6 yes Figure 5 The enlarged view of the combined garment processing equipment 1000 at position B shows that the support body 1 is also provided with a receiving hole 13. The receiving hole 13 has an opening 131. When the first support leg 3011 slides to the slot section 162, the second support leg 3012 enters the receiving hole 13 through the opening 131. The receiving hole 13 is used to restrict the movement of the second support leg 3012 along the slot section 162 towards the sliding section 161.
[0120] That is, with the cooperation of the receiving hole 13 and the second support foot 3012, the second support foot 3012 will be unable to move in the direction from the slot section 162 to the sliding section 161. When the second support foot 3012 is unable to move in the direction from the slot section 162 to the sliding section 161, the first support foot 3011 will also be unable to move in the direction from the slot section 162 to the sliding section 161, thus fixing the second clothing processing device 300 again. At this point, the second clothing processing device 300 has been completely fixed.
[0121] The shape of the receiving hole 13 can be circular or any other possible shape, as long as it matches the support foot 301. This embodiment does not limit this.
[0122] By providing a receiving hole 13 on the bracket body 1, the receiving hole 13 can be specifically used to receive the second support foot 3012. Under the positioning effect of the receiving hole 13, the support foot 301 can be more stably installed on the stacking bracket 100, thereby enabling the second clothing processing device 300 to be more stably installed on the stacking bracket 100.
[0123] In some embodiments, see Figure 6 The bracket body 1 is also provided with a slot 14, which is connected to the receiving hole 13.
[0124] The slot 14 can be rectangular or any other possible shape, as long as the slot 14 is connected to the receiving hole 13. This embodiment does not limit this.
[0125] Figure 7 This is an exploded view of another combined garment processing device 1000 provided in an embodiment of this application (the pin 2 slides to the first side of the support leg 301 near the opening 131). Figure 8 yes Figure 7 A schematic diagram of the structure of the combined garment processing equipment 1000 when the pin 2 is removed from the first side. Figure 9 yes Figure 8 A magnified view of a portion of the area at position D. Figure 10 yes Figure 7 A schematic diagram of the disassembled structure of the modular garment processing equipment 1000. Figure 11 yes Figure 10 A partial sectional view of the combined garment processing equipment 1000 at the EE position.
[0126] See Figure 7 The stacking bracket 100 also includes a pin 2, see [link to details]. Figure 8 and Figure 9 The pin 2 is slidably inserted into the slot 14. Specifically, the pin 2 is slidably inserted into the slot 14 along the direction from the slot section 162 to the sliding section 161. See [reference needed] Figure 9 , Figure 10 and Figure 11 So that the pin 2 slides at least partially onto the first side of the second support foot 3012 near the opening 131. Figure 11 The second support foot 3012 is moved away from the upper side of the second support foot 3012 or from the first side to confine the second support foot 3012 within the receiving hole 13 or allow the second support foot 3012 to slide out of the receiving hole (13) through the opening 131.
[0127] Since the pin 2 is slidably inserted into the slot 14 along the direction from the slot section 162 to the sliding section 161, and since the slot 14 connects to the receiving hole 13, the pin 2 can slide along the slot 14 to the first side of the second support leg 3012 near the opening 131 or be moved away from the first side. When the pin 2 slides to the first side of the second support leg 3012 near the opening 131, the pin 2 will restrict the second support leg 3012 from sliding out of the receiving hole 13 through the opening 131, so that the second garment handling device 300 can be stably installed on the stacking bracket 100. When it is necessary to remove the second garment handling device 300 from the stacking bracket 100, simply move the pin 2 away from the first side of the second support leg 3012, and the pin 2 will allow the second support leg 3012 to slide out of the receiving hole 13 through the opening 131, thus preparing for the removal of the second garment handling device 300 from the stacking bracket 100.
[0128] As can be seen, since the sliding groove 16 includes a sliding section 161 and a slot section 162 connected in sequence, the sliding section 161 and the slot section 162 are arranged on the bearing surface 12, and the receiving hole 13 is provided on the bearing surface 12, the pin 2 is slidably inserted into the slot 14 in the direction from the slot section 162 to the sliding section 161. Since the slot 14 is connected to the receiving hole 13, when it is necessary to install the second clothing handling device 300 on the stacking bracket 100, it is only necessary to first place the first support leg 3011. Place the second garment handling device 300 on the sliding section 161 and push it along the direction from the sliding section 161 to the slot section 162, so that the first support leg 3011 slides to the slot section 162 and the second support leg 3012 is inserted into the receiving hole 13 through the opening 131. Then push the pin 2 along the slot 14 so that the pin 2 slides to the first side of the second support leg 3012 near the opening 131, thereby achieving the purpose of installing the second garment handling device 300 on the stacking bracket 100.
[0129] When it is necessary to remove the second garment processing device 300 from the stacking bracket 100, simply push the pin 2 away from the first side of the second support leg 3012, then disengage the second support leg 3012 from the receiving hole 13, and finally push the second garment processing device 300 along the direction from the slot section 162 to the sliding section 161, so that the first support leg 3011 slides from the slot section 162 to the sliding section 161, thereby achieving the purpose of removing the second garment processing device 300 from the stacking bracket 100. The installation and removal process is very convenient and quick.
[0130] It should be noted that the above-mentioned sliding of the pin 2 to at least part of the second support foot 3012 near the first side of the opening 131 means that the pin 2 slides to the entire second support foot 3012 near the first side of the opening 131, or that the pin 2 slides to part of the second support foot 3012 near the first side of the opening 131.
[0131] The sliding of the pin 2 to the first side of the second support foot 3012 near the opening 131 can be understood as follows: part of the structure of the second support foot 3012 is located on the first side of the pin 2 near the opening 131, and another part of the structure is located on the second side of the pin 2 away from the opening 131.
[0132] In some embodiments, see Figure 8 and Figure 9 The receiving hole 13 extends along the bearing surface 12 in the direction of the placement surface 11.
[0133] Since the receiving hole 13 extends along the bearing surface 12 toward the placement surface 11, when it is necessary to insert the support foot 301 into the receiving hole 13, gravity can be used to insert the support foot 301 into the receiving hole 13, making it very easy to insert the support foot 301 into the receiving hole 13.
[0134] In some embodiments, see Figure 12 and Figure 13 , Figure 12 yes Figure 8 Exploded view of the stacked support 100. Figure 13 yes Figure 12 The exploded view of the stacking bracket 100 from another perspective shows that the bracket body 1 is also provided with a body peripheral wall 15, which is connected between the placement surface 11 and the bearing surface 12, and the slot 14 is provided in the body peripheral wall 15.
[0135] Since the slot 14 is located on the peripheral wall 15 of the main body, when it is necessary for the pin 2 to slide in the slot 14, it is convenient for personnel to push the pin 2 on the side of the peripheral wall 15 of the main body so that the slot 14 avoids the placement surface 11 and the bearing surface 12, thereby avoiding interference with the second clothing processing device 300 or the first clothing processing device 200.
[0136] In some embodiments, see Figure 13 The slot 14 extends in a direction perpendicular to the extension direction of the receiving hole 13.
[0137] By extending the slot 14 in a direction perpendicular to the extension direction of the receiving hole 13, on the one hand, the arrangement of the slot 14 and the receiving hole 13 can be made more regular, which facilitates the processing of the slot 14 and the receiving hole 13. On the other hand, the slot 14 can also be connected to the peripheral wall of the receiving hole 13. In this way, when the pin 2 is inserted into the slot 14, the pin 2 can play a better role in restricting the support foot 301 in the receiving hole 13.
[0138] After the pin 2 is inserted into the slot 14, in order to prevent the pin 2 from slipping out of the slot 14 abnormally, in some embodiments, see [reference needed]. Figure 13 The stacked bracket 100 also includes a fastener 3 for locking the pin 2 to the bracket body 1.
[0139] By setting the fastener 3, the pin 2 can be locked to the bracket body 1 under the action of the fastener 3, thereby preventing the pin 2 from sliding out of the slot 14 abnormally.
[0140] The fastener 3 can be a screw or any other possible component, as long as it can lock the pin 2 to the bracket body 1. This embodiment does not limit this.
[0141] In some embodiments, see Figure 13 and Figure 14 , Figure 14 yes Figure 13 The schematic diagram of the middle pin 2 shows that the pin 2 includes an insertion part 21 and a connecting part 22. The insertion part 21 is slidably inserted into the slot 14 so that the insertion part 21 slides to at least part of the support foot 301 near the first side of the opening 131 or moves away from the first side. The connecting part 22 is connected to the insertion part 21. When the insertion part 21 slides to at least part of the support foot 301 near the first side of the opening 131, the connecting part 22 abuts against the peripheral wall 15 of the body.
[0142] Since the connecting part 22 abuts against the peripheral wall 15 of the body when the insertion part 21 slides to at least part of the support foot 301 near the first side of the opening 131, the connecting part 22 can play a positioning role. When the personnel insert the pin 2 into the slot 14, they can judge whether the pin 2 is installed in place by whether the connecting part 22 abuts against the peripheral wall 15 of the body, so that the installation accuracy of the pin 2 is higher.
[0143] In some embodiments, a portion of the fastener 3 passes through the connecting portion 22 and is fastened to the peripheral wall 15 of the body.
[0144] By having part of the fastener 3 pass through the connecting part 22 and be fastened to the peripheral wall 15 of the body, the connecting part 22 can not only play the above-mentioned positioning role, but also play the role of fastening the pin 2 to the bracket body 1. It has multiple uses and can simplify the structure of the pin 2 to a certain extent.
[0145] It should be noted that both the connecting part 22 and the insertion part 21 described above can be as follows: Figure 14 The plate-like structure shown can be modified to have other shapes for the connecting part 22 and the insertion part 21. This embodiment does not limit the shape of the plate-like structure shown.
[0146] In some embodiments, see Figure 12 and Figure 14 The slot 14 extends through the bearing surface 12 along the direction from the placement surface 11 to the bearing surface 12, and the pin 2 is provided with a thickened part 23, which is flush with the bearing surface 12.
[0147] By making the slot 14 extend through the bearing surface 12 in the direction from the placement surface 11 to the bearing surface 12, the slot 14 can form a semi-open slot structure. In this way, the sliding of the pin 2 in the slot 14 becomes more visible, making it easier to observe the operation of the pin 2 and to carry out maintenance when abnormalities occur.
[0148] By making the thickened portion 23 flush with the bearing surface 12, even if the slot 14 penetrates the bearing surface 12 along the direction from the placement surface 11 to the bearing surface 12, the plane formed by the bearing surface 12 and the thickened portion 23 can still be relatively flat under the action of the thickened portion 23, which can help the second garment processing device 300 to be installed more stably on the bearing surface 12.
[0149] In some embodiments, see Figure 3 , Figure 12 and Figure 15 , Figure 15 yes Figure 12 A partial enlarged view at position F shows that the bracket body 1 is also provided with a sliding groove 16, which includes a sliding section 161 and a slot section 162 connected in sequence.
[0150] The support foot 301 includes a first support foot 3011 and a second support foot 3012. The receiving hole 13 is used to receive the second support foot 3012. The sliding section 161 is used to guide the first support foot 3011 to slide to the slot section 162. The slot section 162 is used to restrict the movement of the first support foot 3011 in any direction other than the direction from the slot section 162 to the sliding section 161.
[0151] Since the sliding section 161 and the slot section 162 are connected in sequence, when the second garment processing device 300 needs to be installed on the stacking bracket 100, firstly, the first support foot 3011 can be placed on the sliding section 161. Then, the second garment processing device 300 can be pushed along the sliding section 161 towards the slot section 162, so that the first support foot 3011 slides from the sliding section 161 to the slot section 162 and the second support foot 3012 enters the receiving hole 13. In this way, the second garment processing device 300 can be more stably installed on the stacking bracket 100 under the dual limiting effect of the receiving hole 13 and the slot section 162.
[0152] Furthermore, by setting the sliding groove 16, the sliding groove 16 can guide the sliding direction of the second clothing processing device 300. In this way, when installing the second clothing processing device 300 on the stacking bracket 100, simply push the second clothing processing device 300, and the sliding groove 16 can automatically guide the first support foot 3011 and the second support foot 3012 to the appropriate position, which is very convenient.
[0153] In some embodiments, see Figure 3 , Figure 5 and Figure 12 The number of sliding grooves 16 can be two, and correspondingly, the number of receiving holes 13 can also be two. Of course, the number of sliding grooves 16 and receiving holes 13 can also be other possible numbers, which are not limited in this embodiment.
[0154] In some embodiments, see Figure 15 The sliding groove 16 is provided on the bearing surface 12, and the sliding section 161 and the slot section 162 are arranged in a direction parallel to the bearing surface 12.
[0155] Since the sliding groove 16 is located on the bearing surface 12, when the second garment processing device 300 is installed on the stacking bracket 100, the sliding groove 16 can be covered by the second garment processing device 300 as much as possible, making it difficult to see the sliding groove 16 from the outside, and thus making the combined garment processing equipment 1000 look cleaner.
[0156] By arranging the sliding section 161 and the slot section 162 in a direction parallel to the bearing surface 12, when installing the second clothing processing device 300 on the stacking bracket 100, it is only necessary to push the second clothing processing device 300 horizontally, which is convenient for personnel to exert force and can achieve the purpose of saving effort.
[0157] In some embodiments, see Figure 15The slot section 162 includes a limiting slot bottom 1621 and a protruding edge 1622. The protruding edge 1622 is disposed on the slot wall of the sliding slot 16 and is spaced apart from the limiting slot bottom 1621 to form a limiting gap 1623. The second support foot 3012 is limited in the limiting gap 1623.
[0158] Since the protruding edge 1622 is provided on the groove wall of the sliding groove 16 and forms a limiting gap 1623 with the limiting groove bottom 1621, when the second clothing handling device 300 is pushed along the direction from the sliding section 161 to the slot section 162, the second support foot 3012 will be locked in the limiting gap 1623 when it slides from the sliding section 161 to the slot section 162, thereby achieving the purpose of stably installing the second support foot 3012 on the stacking bracket 100.
[0159] Since the limiting slot 1623 can restrict the second support leg 3012 from moving in the vertical direction, and the receiving hole 13 can restrict the first support leg 3011 from moving in the horizontal direction, the movement of the second garment processing device 300 in both the vertical and horizontal directions can be limited, thereby ensuring that the second garment processing device 300 can be stably installed on the stacking bracket 100.
[0160] Considering that the pin 2 is usually small and easily lost, to avoid this situation, in some embodiments, see Figure 1 and Figure 12 The bracket body 1 is also provided with a temporary storage cavity 17. The pin 2 is detachably disposed on the bracket body 1 and located in the temporary storage cavity 17. When the pin 2 is detached from the temporary storage cavity 17, the pin 2 can be slidably inserted into the slot 14.
[0161] Since the pin 2 is detachably mounted on the bracket body 1 and located in the temporary storage cavity 17, the pin 2 and the bracket body 1 can be integrated before the second clothing handling device 300 is installed on the stacking bracket 100. This reduces the number of parts in the stacking bracket 100 and facilitates the storage and transportation of the stacking bracket 100.
[0162] When it is necessary to install the second garment processing device 300 on the stacking bracket 100, the pin 2 can be removed from the temporary storage cavity 17, and then the pin 2 can be slidably inserted into the slot 14, so as to achieve the purpose of installing the second garment processing device 300 on the stacking bracket 100.
[0163] In some embodiments, see Figure 1 , Figure 16 and Figure 17 , Figure 16 yes Figure 1 An exploded view of the stacked support 100. Figure 17 yes Figure 16 The exploded view of the stacked support 100 from another perspective shows that the support body 1 includes a main support 18 and a detachable support 19. The two opposite sides of the main support 18 are the placement surface 11 and the bearing surface 12, and the two opposite sides of the detachable support 19 are the first surface 191 and the second surface 192. The splicing of the detachable support 19 and the main support 18 can be at least in a first splicing state and a second splicing state.
[0164] When the detachable bracket 19 is in the first splicing state, the first surface 191 and the placement surface 11 face the same direction and are coplanar. When the detachable bracket 19 is in the second splicing state, the second surface 192 and the placement surface 11 face the same direction but are not coplanar.
[0165] When the detachable bracket 19 is in the first splicing state, the first surface 191 and the placement surface 11 face the same direction and are coplanar. When the detachable bracket 19 is in the second splicing state, the second surface 192 and the placement surface 11 face the same direction but are not coplanar. Therefore, when it is necessary to install the stacking bracket 100 on the first garment processing device 200 with a relatively flat top surface, the detachable bracket 19 can be in the first splicing state. At this time, the first surface 191 and the placement surface 11 face the same direction and are coplanar. Therefore, the large flat surface formed by the first surface 191 and the placement surface 11 can fit well with the top surface of the first garment processing device 200, so that the stacking bracket 100 can be stably installed on the top surface of the first garment processing device 200.
[0166] When it is necessary to install the stacking bracket 100 on the first garment processing device 200 with an uneven top surface, for example, when the top surface of the first garment processing device 200 is a stepped surface, the detachable bracket 19 can be in a second splicing state. At this time, the second surface 192 and the placement surface 11 face the same direction but are not coplanar. Therefore, the large plane formed by the second surface 192 and the placement surface 11 can be a stepped surface. This stepped surface can fit well with the top surface of the first garment processing device 200 without being suspended. Thus, the stacking bracket 100 can be stably installed on the top surface of the first garment processing device 200.
[0167] It can be seen that by allowing the detachable bracket 19 to switch between the first splicing state and the second splicing state, the stacking bracket 100 can be adapted to the top surface of different first garment processing devices 200, thus achieving higher compatibility.
[0168] Specifically, when the second surface 192 and the placement surface 11 face the same direction but are not coplanar, the second surface 192 can protrude from the placement surface 11 or be recessed into the placement surface 11. This embodiment does not limit this.
[0169] For example, in some scenarios, the circumference of the top surface of the first garment processing device 200 protrudes from the center. In this scenario, the detachable bracket 19 can be in a second splicing state with its second surface 192 protruding from the placement surface 11. In this way, when the stacking bracket 100 is installed on the top surface of the first garment processing device 200, the placement surface 11 of the main bracket 18 can be set to correspond to the circumference of the top surface, and the second surface 192 of the detachable bracket 19 can correspond to the center of the first garment processing device 200. In this way, the placement surface 11 of the main bracket 18 can fit with the circumference of the top surface of the first garment processing device 200, and the second surface 192 of the detachable bracket 19 can fit with the center of the first garment processing device 200, without any suspension. This allows the stacking bracket 100 to be stably installed on the top surface of the first garment processing device 200.
[0170] In some embodiments, see Figure 16 and Figure 17 One of the detachable bracket 19 and the main bracket 18 is provided with a first snap-fit protrusion 193 and the other is provided with a first snap-fit groove 181. When the detachable bracket 19 is in the first splicing state or the second splicing state, the first snap-fit protrusion 193 is snapped into the first snap-fit groove 181.
[0171] Since one of the detachable bracket 19 and the main bracket 18 is provided with a first snap-fit protrusion 193 and the other is provided with a first snap-fit groove 181, when it is necessary to install the detachable bracket 19 onto the main bracket 18, it is only necessary to snap the first snap-fit protrusion 193 into the first snap-fit groove 181 to achieve the purpose of installing the detachable bracket 19 onto the main bracket 18, which is very convenient and quick.
[0172] In some embodiments, see Figure 16 The first snap-fit groove 181 is provided on the placement surface 11. By making the first snap-fit groove 181 provided on the placement surface 11, the first snap-fit groove 181 can avoid affecting the flatness of the bearing surface 12, thereby allowing the second clothing processing device 300 to be installed more stably on the bearing surface 12.
[0173] In some embodiments, see Figure 16 and Figure 17 The first snap-fit protrusion 193 includes a first abutting surface 1931 and a second abutting surface 1932 that are opposite each other in the direction from the bearing surface 12 to the placement surface 11.
[0174] When the detachable bracket 19 is in the first splicing state, the first abutting surface 1931 abuts against the bottom of the first snap-fit groove 181. When the detachable bracket 19 is in the second splicing state, the second abutting surface 1932 abuts against the bottom of the first snap-fit groove 181.
[0175] When the detachable bracket 19 is in the first splicing state, the first abutting surface 1931 abuts against the bottom of the first snap-fit groove 181. When the detachable bracket 19 is in the second splicing state, the second abutting surface 1932 abuts against the bottom of the first snap-fit groove 181. That is, by changing the installation method of the first snap-fit protrusion 193 in the first snap-fit groove 181, specifically by changing the orientation of the first abutting surface 1931 and the second abutting surface 1932, the stacking bracket 100 can be compatible with the top surface of different first clothing processing devices 200 without replacing the parts, simply by changing the installation method. This can reduce the number of parts of the stacking bracket 100 and reduce the cost of the stacking bracket 100.
[0176] The first snap-fit protrusion 193 can be disposed on the peripheral wall of the detachable bracket 19. It is understood that the first snap-fit protrusion 193 can be disposed off-center from the center of the detachable bracket 19 along the thickness direction.
[0177] To ensure a more secure connection between the first snap-fit protrusion 193 and the first snap-fit groove 181, in some embodiments, see [reference needed]. Figure 17 The first snap-fit protrusion 193 can be connected to the first snap-fit groove 181 by means of screws or the like, so that the connection between the first snap-fit protrusion 193 and the first snap-fit groove 181 can be more secure.
[0178] In some embodiments, see Figure 16 and Figure 17 One of the detachable bracket 19 and the main bracket 18 is provided with a first anti-mistake protrusion 194, and the other is provided with a first anti-mistake groove 182 and a second anti-mistake groove 183 that match the first anti-mistake protrusion 194.
[0179] When the detachable bracket 19 is in the first splicing state, the first anti-mistake protrusion 194 is located in the first anti-mistake groove 182. When the detachable bracket 19 is in the second splicing state, the first anti-mistake protrusion 194 is located in the second anti-mistake groove 183.
[0180] By providing a first anti-mistake protrusion 194 on one of the detachable bracket 19 and the main bracket 18, and a first anti-mistake groove 182 and a second anti-mistake groove 183 on the other, in addition to connecting the detachable bracket 19 and the main bracket 18 through the cooperation between the first snap-fit protrusion 193 and the first snap-fit groove 181, the detachable bracket 19 and the main bracket 18 can also be connected through the cooperation between the first anti-mistake protrusion 194 and the first anti-mistake groove 182 or the second anti-mistake groove 183 respectively. In this way, on the one hand, the installation accuracy between the detachable bracket 19 and the main bracket 18 can be improved, and on the other hand, the installation between the detachable bracket 19 and the main bracket 18 can be made more secure.
[0181] It should be noted that the first anti-mistake protrusion 194 can be disposed on the detachable bracket 19, and the first anti-mistake groove 182 and the second anti-mistake groove 183 can be disposed on the main bracket 18. Of course, in other embodiments, the first anti-mistake protrusion 194 can be disposed on the main bracket 18, and the first anti-mistake groove 182 and the second anti-mistake groove 183 can be disposed on the detachable bracket 19. This embodiment does not limit this.
[0182] In some embodiments, one of the detachable bracket 19 and the main bracket 18 is provided with a second anti-mistake protrusion 195, and the other is provided with a third anti-mistake groove 184 and a fourth anti-mistake groove 185 that match the second anti-mistake protrusion 195.
[0183] When the detachable bracket 19 is in the first splicing state, the second anti-mistake protrusion 195 is located in the third anti-mistake groove 184. When the detachable bracket 19 is in the second splicing state, the second anti-mistake protrusion 195 is located in the fourth anti-mistake groove 185. The structure of the second anti-mistake protrusion 195 is different from that of the first anti-mistake protrusion 194.
[0184] Because the structure of the second anti-mistake protrusion 195 is different from that of the first anti-mistake protrusion 194, the second anti-mistake protrusion 195 can only be matched with the third anti-mistake groove 184 or the fourth anti-mistake groove 185, and the first anti-mistake protrusion 194 can only be matched with the first anti-mistake groove 182 or the second anti-mistake groove 183. In this way, it can play a role in preventing mistakes to a certain extent, thereby avoiding or reducing the problems of unstable installation or misalignment caused by incorrect installation.
[0185] It should be noted that, see Figure 17 The shapes of the second anti-mistake protrusion 195 and the first anti-mistake protrusion 194 can be L-shaped or any other possible shape, and this embodiment does not limit them.
[0186] In some embodiments, see Figure 17The main support 18 may also include a first support 186, a second support 187 and a third support 188, wherein the first support 186 and the detachable support 19 are spaced apart and opposite to each other, the second support 187 is located between the first support 186 and the detachable support 19 and is connected to the first support 186 and the detachable support 19 respectively, and the third support 188 is spaced apart and opposite to the second support 187 and is connected to the first support 186 and the detachable support 19 respectively.
[0187] The connections between the first bracket 186, the second bracket 187, the third bracket 188, and the detachable bracket 19 can all be detachable, for example, by means of snap-fit connections. When the connections between the first bracket 186, the second bracket 187, the third bracket 188, and the detachable bracket 19 are all detachable, on the one hand, the stacking bracket 100 can be made smaller after disassembly, making it more convenient for storage and transportation; on the other hand, it can also reduce the materials used in the processing of the stacking bracket 100, thereby reducing the cost of the stacking bracket 100.
[0188] One embodiment of this application also provides a combined garment processing device 1000, see [link to relevant documentation]. Figure 2 The combined garment processing equipment 1000 includes a first garment processing device 200, a stacking bracket 100 and a second garment processing device 300. The stacking bracket 100 is located between the first garment processing device 200 and the second garment processing device 300 in the vertical direction, and the stacking bracket 100 is connected to the first garment processing device 200 and the second garment processing device 300 respectively.
[0189] The structure of the stacking bracket 100 can be the same as that of any of the stacking brackets 100 described in the above embodiments, and can bring the same or similar beneficial effects. For details, please refer to the description in the above embodiments. This embodiment will not repeat the description here.
[0190] In this embodiment, since the stacking bracket 100 makes it very convenient and quick to remove the second clothing processing device 300 from the stacking bracket 100 or to install the second clothing processing device 300 on the stacking bracket 100, the installation and removal of the combined clothing processing device 1000 can be made more convenient and more user-friendly.
[0191] In some embodiments, the first clothing processing device 200 may be a single-drum washing machine and the second clothing processing device 300 may be a twin-drum washing machine. Of course, the first clothing processing device 200 and the second clothing processing device 300 may also be other possible clothing processing devices, and this embodiment does not limit them.
[0192] 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 stack holder (100) characterized in that, include: The support body (1) is provided with: Placement surface (11), the placement surface (11) is used to connect to the first garment handling device (200); The bearing surface (12) is disposed opposite to the placement surface (11) and is used to support the second clothing processing device (300). The second clothing processing device (300) has a support foot (301), which includes a first support foot (3011) and a second support foot (3012). A sliding groove (16) includes a sliding section (161) and a slot section (162) connected in sequence. The sliding section (161) and the slot section (162) are arranged on the bearing surface (12). The sliding section (161) is used to guide the first support foot (3011) to slide to the slot section (162). The slot section (162) is used to restrict the movement of the first support foot (3011) in any direction other than the direction in which the slot section (162) points to the sliding section (161). A receiving hole (13) is provided on the bearing surface (12). The receiving hole (13) has an opening (131). When the first support foot (3011) slides to the slot section (162), the second support foot (3012) enters the receiving hole (13) through the opening (131). The receiving hole (13) is used to restrict the movement of the second support foot (3012) along the slot section (162) towards the sliding section (161). Slot (14), the slot (14) communicating with the receiving hole (13); A pin (2) is slidably inserted into the slot (14) along the direction of the slot section (162) toward the sliding section (161) so that the pin (2) slides to at least part of the second support foot (3012) near or away from the first side of the opening (131) to restrict the second support foot (3012) within the receiving hole (13) or allow the second support foot (3012) to slide out of the receiving hole (13) through the opening (131).
2. The stacked support (100) of claim 1, characterized in that, The receiving hole (13) extends along the bearing surface (12) toward the placement surface (11).
3. The stacked support (100) of claim 2, characterized in that, The support body (1) is also provided with: The body peripheral wall (15) is connected between the placement surface (11) and the bearing surface (12), and the slot (14) is disposed on the body peripheral wall (15).
4. The stacked support (100) of claim 3, characterized in that, The stacking support (100) also includes: Fastener (3) is used to lock the pin (2) to the bracket body (1).
5. The stacked support (100) of claim 4, characterized in that, The pin (2) includes: An insertion part (21) is slidably inserted into the slot (14) such that the insertion part (21) slides to at least part of the support foot (301) near or away from the first side of the opening (131); The connecting part (22) is connected to the insertion part (21). When the insertion part (21) slides to at least part of the support foot (301) near the first side of the opening (131), the connecting part (22) abuts against the peripheral wall (15) of the body.
6. The stacked support (100) of claim 5, characterized in that Part of the fastener (3) passes through the connecting part (22) and is fastened to the peripheral wall (15) of the body.
7. The stacked support (100) of claim 3, wherein, The slot (14) extends through the bearing surface (12) along the direction from the placement surface (11) to the bearing surface (12), and the pin (2) is provided with a thickened part (23), which is flush with the bearing surface (12).
8. The stacked support (100) of claim 1, wherein, The card slot section (162) includes: The bottom of the limiting groove (1621); and, A protruding edge (1622) is provided on the groove wall of the sliding groove (16) and forms a limiting gap (1623) with the bottom of the limiting groove (1621) at a distance. The second support foot (3012) is limited in the limiting gap (1623).
9. The stacked support (100) of claim 1, wherein, The support body (1) is also provided with: The temporary storage cavity (17) is provided with the pin (2) detachably disposed on the bracket body (1) and located in the temporary storage cavity (17). When the pin (2) is detached from the temporary storage cavity (17), the pin (2) is slidably inserted into the slot (14).
10. The stacked support (100) of claim 1, wherein, The support body (1) includes: The main support (18) has two opposite sides, which are the placement surface (11) and the bearing surface (12). The detachable bracket (19) has two opposite sides, namely the first side (191) and the second side (192). The detachable bracket (19) and the main bracket (18) can be spliced in at least a first splicing state and a second splicing state. When the detachable bracket (19) is in the first splicing state, the first surface (191) and the placement surface (11) face the same direction and are coplanar. When the detachable bracket (19) is in the second splicing state, the second surface (192) and the placement surface (11) face the same direction but are not coplanar.
11. The stacked support (100) of claim 10, characterized in that, One of the detachable bracket (19) and the main bracket (18) is provided with a first snap-fit protrusion (193) and the other is provided with a first snap-fit groove (181). When the detachable bracket (19) is in the first splicing state or the second splicing state, the first snap-fit protrusion (193) is snapped into the first snap-fit groove (181).
12. The stacked support (100) of claim 11, characterized in that, The first snap-fit groove (181) is disposed on the placement surface (11).
13. The stacked support (100) of claim 12, characterized in that, The first snap-fit protrusion (193) includes a first abutting surface (1931) and a second abutting surface (1932) that are opposite each other in the direction from the bearing surface (12) to the placement surface (11); When the detachable bracket (19) is in the first splicing state, the first abutting surface (1931) abuts against the bottom of the first snap-fit groove (181); when the detachable bracket (19) is in the second splicing state, the second abutting surface (1932) abuts against the bottom of the first snap-fit groove (181).
14. The stacked support (100) of claim 11, wherein, One of the detachable bracket (19) and the main bracket (18) is provided with a first anti-mistake protrusion (194), and the other is provided with a first anti-mistake groove (182) and a second anti-mistake groove (183) that match the first anti-mistake protrusion (194). When the detachable bracket (19) is in the first splicing state, the first anti-mistake protrusion (194) is located in the first anti-mistake groove (182). When the detachable bracket (19) is in the second splicing state, the first anti-mistake protrusion (194) is located in the second anti-mistake groove (183).
15. The stacked support (100) of claim 14, characterized in that, One of the detachable bracket (19) and the main bracket (18) is provided with a second anti-mistake protrusion (195), and the other is provided with a third anti-mistake groove (184) and a fourth anti-mistake groove (185) that match the second anti-mistake protrusion (195). When the detachable bracket (19) is in the first splicing state, the second anti-fooling protrusion (195) is located in the third anti-fooling groove (184), and when the detachable bracket (19) is in the second splicing state, the second anti-fooling protrusion (195) is located in the fourth anti-fooling groove (185). The structure of the second anti-mistake protrusion (195) is different from that of the first anti-mistake protrusion (194). 16.A combination laundry treatment apparatus (1000) comprising: include: First garment processing device (200); Stacking support (100) as described in any one of claims 1-15; as well as, The second garment processing device (300) has a stacking bracket (100) located between the first garment processing device (200) and the second garment processing device (300) in the vertical direction, and the stacking bracket (100) is connected to the first garment processing device (200) and the second garment processing device (300) respectively.