A drying rack assembly for a garment processing device and a garment processing device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-08-14
AI Technical Summary
然而,这种构型的烘干支架组件的支脚不能折叠,这不仅增大了收纳空间并且提高了运输成本,而且支脚的端部可能会划伤用户,这引起安全隐患
[0004]因此,本申请实施例的一个目的在于提出一种改进的用于衣物处理设备的烘干支架组件,所述烘干支架组件可以在不使用时灵活地减小高度尺寸,从而明显减小收纳空间并且降低包装和运输成本,并消除安全隐患。此外,本申请实施例的另一个目的在于提出一种相应的衣物处理设备。
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Figure CN224633719U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of household appliances, and more particularly to a drying rack assembly for a garment processing device. This application also relates to a corresponding garment processing device. Background Technology
[0002] A drying rack assembly in garment handling equipment, such as a dryer or washer-dryer combo, is a detachable accessory specifically designed to assist in drying items sensitive to drum tumbling, such as wool garments, shoes, and hats. The drying rack assembly provides a stable platform for these items, keeping them stationary during the drying process. This prevents items from tumbling inside the drum or directly contacting hot moving parts, effectively preventing deformation or damage and improving drying efficiency. Therefore, the drying rack assembly needs to be secured to other components of the garment handling equipment.
[0003] In existing drying rack assemblies, the shelf is arranged on a frame structure with legs, or the shelf itself has legs that can be inserted into other components of the garment processing equipment to keep the shelf stable during operation. However, the legs of this type of drying rack assembly cannot be folded, which not only increases storage space and transportation costs, but also poses a safety hazard as the ends of the legs may scratch users. Summary of the Invention
[0004] Therefore, one object of the embodiments of this application is to provide an improved drying rack assembly for a garment processing device, which can flexibly reduce its height when not in use, thereby significantly reducing storage space and lowering packaging and transportation costs, while eliminating safety hazards. Furthermore, another object of the embodiments of this application is to provide a corresponding garment processing device.
[0005] According to a first aspect of this application, a drying rack assembly for a garment processing device is provided, wherein the drying rack assembly includes at least: - First shelf; and - A support leg disposed below the first shelf, the support leg having a rotating shaft and at least two insertion portions configured to be inserted into other components of the garment processing equipment. The first shelf has at least one receiving portion for the support leg on its lower side. The receiving portion has an inserting groove extending in the width direction. The rotation axis of the support leg is inserted into the inserting groove, so that the support leg can switch between an extended state and a retracted state by rotating about the width direction. When viewed in the depth direction perpendicular to the width direction, the insertion portion protrudes beyond the first shelf in the extended state, while the insertion portion is located in the area of the first shelf in the retracted state.
[0006] Compared to existing technologies, in the drying rack assembly according to this application, the rotation axis of the support leg arranged below the first shelf is embedded in the recess of the first shelf, allowing the support leg to switch between an extended state and a retracted state by rotating about its width. In the extended state, the insertion portion of the support leg protrudes beyond the first shelf, allowing it to be inserted into other components of the garment handling equipment. In the retracted state, the insertion portion is located within the area of the first shelf, reducing the overall height of the drying rack assembly and thus significantly reducing storage space and packaging and transportation costs. Furthermore, since the insertion portion of the support leg is located within the area of the first shelf in the retracted state, it reliably prevents the insertion portion from scratching the user, thereby eliminating safety hazards.
[0007] According to an exemplary embodiment of this application, the legs are integral pieces made of metal, such that the various insertion portions are interconnected via a single rotating axis. This simplifies the switching operation of the entire leg between the extended and retracted states.
[0008] According to an exemplary embodiment of this application, the diameter of the embedding groove is greater than or equal to the diameter of the rotating shaft. This allows for smooth rotation of the support's rotating shaft within the embedding groove.
[0009] According to an exemplary embodiment of this application, the receiving part is configured with a guide groove leading to the embedding groove, such that the rotating shaft can be embedded into the embedding groove via the guide groove. The guide groove significantly simplifies the process of inserting the rotating shaft into the embedding groove.
[0010] According to an exemplary embodiment of this application, the width of the guide groove is smaller than the diameter of the rotating shaft; and / or, the guide groove opens rearward along the depth direction or downward along the height direction. This reliably prevents the rotating shaft from undesirably dislodging from the embedded groove.
[0011] According to an exemplary embodiment of this application, the support leg is provided with a transition portion between the rotating shaft and the insertion portion, the insertion portion being bent relative to the plane defined by the rotating shaft and the transition portion, such that the insertion portion is oriented downwards in the extended state and upwards in the retracted state. The transition portion allows for flexible orientation of the insertion portion relative to the rotating shaft, enabling easy insertion of the insertion portion into other components of the garment handling device in the extended state and significantly reducing the overall height of the drying bracket assembly in the retracted state.
[0012] According to an exemplary embodiment of this application, the first shelf has an extendable latching portion on its lower side. In the extended state, the transition portion is latched in the extendable latching portion, wherein the number of extendable latching portions corresponds to the number of insertion portions. The engagement of the extendable latching portion and the transition portion allows the support leg to be securely held in the extended state.
[0013] According to an exemplary embodiment of this application, the first shelf has a retractable latch on its lower side. In the retracted state, the transition portion is latched in the retractable latch, wherein the number of retractable latches corresponds to the number of insertion portions. The cooperation between the retractable latch and the transition portion allows the support leg to be securely held in the retracted state.
[0014] According to an exemplary embodiment of this application, a guide slope is provided at the opening end of the protruding latching portion and / or the retracting latching portion. This allows the leg or the transition portion of the leg to easily latch into the protruding latching portion or the retracting latching portion.
[0015] According to an exemplary embodiment of this application, the first shelf has a plurality of support portions on its lower side, and the rotation shaft remains supported on the support portions during the switching between the extended state and the retracted state. The support portions can improve the support strength of the first shelf for the legs and reliably avoid stress concentration.
[0016] According to an exemplary embodiment of this application, the first shelf is provided with a receiving hole, into which the plug is inserted in the retracted state. By inserting the plug into the receiving hole, the overall height of the drying bracket assembly in the retracted state of the legs can be minimized.
[0017] According to an exemplary embodiment of this application, the receiving hole is constructed as an oblong hole. This increases the receiving area of the receiving hole and makes it easier for the plug to be inserted into the receiving hole.
[0018] According to an exemplary embodiment of this application, the first shelf is additionally provided with a plurality of ventilation holes arranged in an array, the shape of which is selected from the group consisting of: circles, triangles, squares, and polygons; and / or, the first shelf is additionally provided with at least one reinforcing rib. This allows for a simple and high-strength construction of the shelf, and the ventilation holes can improve the drying efficiency of the items.
[0019] According to an exemplary embodiment of this application, the drying rack assembly includes at least one second shelf located above the first shelf. A folding mechanism is arranged between adjacent shelves, allowing each shelf to switch between a folded state and an unfolded state. This significantly increases the support area of the drying rack assembly for items and facilitates easy switching between folded and unfolded states via the folding mechanism, flexibly meeting storage needs and further optimizing space utilization.
[0020] According to an exemplary embodiment of this application, the drying rack assembly further includes a hanging member fixedly disposed on the uppermost shelf. The hanging member allows the drying rack assembly to be easily and securely mounted in the garment processing equipment.
[0021] According to a second aspect of this application, a garment processing apparatus is provided, the garment processing apparatus including a drying rack assembly according to this application.
[0022] According to an exemplary embodiment of this application, the garment processing device includes a lint collector, and the insertion portion of the support leg of the drying bracket assembly can be inserted into the insertion hole of the lint collector in the extended state of the support leg. Attached Figure Description
[0023] The principles, features, and advantages of this application will be better understood below with reference to the accompanying drawings. The drawings include: Figure 1 A perspective view of a garment processing apparatus according to an exemplary embodiment of this application is shown; Figure 2 A partial view of a garment processing apparatus according to an exemplary embodiment of this application is shown; Figure 3a and Figure 3b The images show views of a drying support assembly according to an exemplary embodiment of this application in the extended and retracted states of the legs. Figure 4a and Figure 4b A bottom view and a cross-sectional view along section line AA are shown respectively of a drying support assembly in the extended state of the legs according to an exemplary embodiment of this application. Figure 5a and Figure 5b A bottom view and a cross-sectional view along section line BB are shown respectively of a drying support assembly in the retracted state of the legs according to an exemplary embodiment of this application. Figure 6a and Figure 6b The assembly process of a drying rack assembly according to an exemplary embodiment of this application is shown.
[0024] Figure label: Clothing processing equipment 1; Drying rack assembly 10; lint collector 20; door ring bracket 30; first shelf 11; second shelf 12; folding mechanism 13; support leg 14; hanging component 15; insertion hole 21; Receiving part 111; Embedded groove 112; Guide groove 113; Extending buckle part 114; Retracting buckle part 115; Support part 116; Receiving hole 117; Ventilation hole 118; Reinforcing rib 119; Plug-in part 141; Rotating shaft 142; Transition part 143; Width direction X; Depth direction Y; Height direction Z. Detailed Implementation
[0025] To make the technical problems to be solved, the technical solutions, and the beneficial technical effects of this application clearer, the application will be further described in detail below with reference to the accompanying drawings and several exemplary embodiments. It should be understood that the specific embodiments described herein are only for explaining this application and are not intended to limit the scope of protection of this application. Here, for the sake of brevity, elements with the same reference numerals are indicated only once in the drawings when necessary.
[0026] It should be understood that the terms "first," "second," etc., used herein are for descriptive purposes only and should not be construed as indicating or implying relative importance, nor should they be construed as implicitly specifying the number of technical features indicated. Features specified as "first" or "second" may expressly or implicitly indicate that at least one of those features is included.
[0027] In the description of this embodiment, terms such as "upper," "lower," "front," "rear," "vertical," "horizontal," "top," "bottom," "inner," and "outer" are used to indicate orientation or positional relationships in conjunction with the accompanying drawings to illustrate the positional relationships of the constituent elements. This is solely for the convenience of describing this specification and to simplify the description, and is not intended to indicate or imply that the device or element referred to has a specific orientation, or is constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this disclosure. The positional relationships of the constituent elements may be appropriately changed depending on the direction in which each constituent element is described. Therefore, the description is not limited to the terms used in the specification and may be appropriately replaced as needed.
[0028] Here, from the overall perspective of the garment processing equipment 1, the X direction corresponds to the width direction, the Y direction corresponds to the depth direction, and the Z direction corresponds to the height direction.
[0029] Figure 1 A perspective view of a garment processing device 1 according to an exemplary embodiment of this application is shown. Figure 2 A partial view of a garment processing apparatus 1 according to an exemplary embodiment of this application is shown. Here, the garment processing apparatus 1 may be, for example, a dryer or a washer-dryer combo.
[0030] like Figure 1 As shown, the garment processing device 1 includes a drying rack assembly 10, which can be arranged between the front and rear doors of the garment processing device 1 and extends into the drum in a manner that is independently suspended relative to the drum. The drying rack assembly 10 is configured to securely support items sensitive to the tumbling of the drum, such as wool garments, shoes, hats, etc., to assist in drying the items and prevent deformation or damage caused by tumbling. Here, the drying rack assembly 10 includes a first shelf 11 and a second shelf 12 arranged above the first shelf 11, with a folding mechanism 13 arranged between the first shelf 11 and the second shelf 12 to allow the individual shelves to switch between a folded state and an unfolded state. However, it is also possible that the drying rack assembly 10 includes only a single first shelf 11, or that the drying rack assembly 10 includes a first shelf 11 and multiple second shelves 12 located above the first shelf 11. In addition, the drying rack assembly 10 also includes a support leg 14, which has a rotating shaft 142 and at least two insertion portions 141. The insertion portions 141 of the support leg 14 enable the drying rack assembly 10 to be fixedly mounted on other components of the clothing processing equipment 1. A detailed description of the support leg 14 is provided below.
[0031] like Figure 1 and Figure 2 As shown, the garment processing device 1 includes a lint collector 20, which intercepts and collects fibers, hair, or lint that fall from the garments and prevents them from entering the interior of the garment processing device 1, thereby improving drying efficiency and ensuring safe operation of the machine. The lint collector 20 is typically fixedly installed in front of the drum. Exemplarily, the support legs 14 of the drying support assembly 10 can be inserted into the insertion holes 21 of the lint collector 20 via insertion portions 141, so that the first shelf 11 and the second shelf 12 of the drying support assembly 10 remain stable during the operation of the garment processing device 1. Alternatively, other insertion portions that are considered meaningful by those skilled in the art can be considered, which remain stationary during the operation of the garment processing device 1.
[0032] like Figure 1 As shown, the drying rack assembly 10 also includes a hanging member 15, which is fixedly arranged on the uppermost shelf (here, the second shelf 112). In the unfolded state of the drying rack assembly 10, the hanging member 15 can hook onto the upper edge of the door ring bracket 30 of the clothing processing equipment 1 to further ensure the stable assembly of the drying rack assembly 10 in the clothing processing equipment 1.
[0033] Figure 3a and Figure 3b The following are views of the drying support assembly 10 according to an exemplary embodiment of this application in the extended and retracted states of the support leg 14.
[0034] like Figure 3a As shown, in the normal use state of the drying rack assembly 10, the first shelf 11 and the second shelf 12 are unfolded by the folding mechanism 13, thereby increasing the support area for the items to be dried, and the legs 14 and the hanging member 15 are extended, so that the legs 14 can be fixedly inserted into the lint collector 20 and the hanging member 15 can be fixedly assembled with the door ring bracket 30. When viewed along the depth direction Y perpendicular to the width direction X, the insertion portion 141 of the legs 14 protrudes beyond the first shelf 11.
[0035] like Figure 3b As shown, in the folded state of the drying rack assembly 10, the first shelf 11 and the second shelf 12 are folded by the folding mechanism 13, and the legs 14 and the hanging member 15 are retracted. When viewed along the depth direction Y perpendicular to the width direction X, the insertion part 141 of the legs 14 is located in the area of the first shelf 11. This can significantly reduce the overall height of the drying rack assembly 10 along the height direction Z, thereby significantly reducing the storage space and reducing packaging and transportation costs. It can also effectively prevent the insertion part 141 of the legs 14 from scratching the user, thus eliminating safety hazards.
[0036] Figure 4a and Figure 4b The following are shown: a bottom view and a cross-sectional view along section line AA of a drying support assembly 10 in the extended state of the support leg 14 according to an exemplary embodiment of the present application. Figure 5a and Figure 5b The following are shown: a bottom view of the drying support assembly 10 in the retracted state of the support leg 14, and a cross-sectional view along section line BB, respectively, according to an exemplary embodiment of this application. Figure 6a and Figure 6b The assembly process of the drying rack assembly 10 according to an exemplary embodiment of this application is shown.
[0037] like Figures 4a to 5b As shown, the support leg 14 has a rotating shaft 142 and two insertion portions 141, and the first shelf 11 has at least one, here two, receiving portions 111 for the support leg 14 on its lower side. Each receiving portion 111 has an inserting groove 112 extending in the width direction X. The rotating shaft 142 of the support leg 14 is inserted into the inserting groove 112, allowing the support leg 14 to switch between an extended state and a retracted state by rotating about the width direction X. When the support leg 14 switches from the extended state to the retracted state, the insertion portion 141 of the support leg 14 retracts towards the interior of the first shelf 11 in the depth direction Y. When the support leg 14 switches from the retracted state to the extended state, the insertion portion 141 of the support leg 14 protrudes beyond the first shelf 11 in the depth direction Y. Here, the first shelf 111 may have other numbers of receiving portions 111 that are considered meaningful by those skilled in the art.
[0038] For example, such as Figure 4a and Figure 5a As shown, the foot 14 is a single piece of metal, with each connector 141 interconnected via a single rotating shaft 142. In this configuration, the user can rotate multiple connectors 141 simultaneously by rotating only the single rotating shaft 142, allowing multiple connectors 141 to switch between extended and retracted states simultaneously. This simplifies the overall operation of the foot. Alternatively, the foot 14 can have more connectors 141 interconnected via the same rotating shaft 142 for a more secure connection.
[0039] For example, such as Figure 4b and Figure 5b As shown, the diameter of the embedding groove 112 of the receiving part 111 is greater than or equal to the diameter of the rotating shaft 142 of the support 14, which enables the rotating shaft 142 to rotate smoothly in the embedding groove 112.
[0040] For example, such as Figure 4b and Figure 5b As shown, the receiving part 111 is constructed with a guide groove 113 leading to the insertion groove 112, so that the rotating shaft 142 can be guided into the insertion groove 112 via the guide groove 113, thereby significantly simplifying the insertion process of the rotating shaft 142 into the insertion groove 112. The width of the guide groove 113 is smaller than the diameter of the rotating shaft 142 to reliably prevent the rotating shaft 142 from undesirably dislodging from the insertion groove 112. During the insertion process of the rotating shaft 142 via the guide groove 113, the receiving part 111 undergoes elastic deformation.
[0041] For example, such as Figure 6a and Figure 6bAs shown, the guide groove 113 opens rearward along the depth direction Y. During the assembly of the support leg 14 to the receiving part 111, the rotation shaft 142 of the support leg 14 is inserted into the insertion groove 112 along the depth direction Y via the guide groove 113. The guide groove 113, which opens rearward along the depth direction Y, further prevents the rotation shaft 142 from undesirably dislodging from the insertion groove 112 under the action of gravity. However, it is also possible for the guide groove 113 to open downward along the height direction Z.
[0042] For example, such as Figures 4a to 5b As shown, the support leg 14 has a transition portion 143 between the rotating shaft 142 and the insertion portion 141. The orientation of the insertion portion 141 relative to the rotating shaft can be flexibly changed through the transition portion 143. The insertion portion 141 is bent relative to the plane defined by the rotating shaft 142 and the transition portion 143, so that the insertion portion 141 is oriented downward in the extended state so that the insertion portion 141 can be easily inserted into the lint collector 20, and is oriented upward in the retracted state to reduce the overall height of the drying support assembly 10.
[0043] For example, such as Figure 4a As shown, the first shelf 11 has an extension latch 114 on its lower side. In the extended state, the transition portion 143 of the support leg 14 can be latched into the extension latch 114. The latching action between the extension latch 114 and the transition portion 143 allows the support leg 14 to be securely held in the extended state. The number of extension latches 114 corresponds to the number of insertion portions 141, for example, two. Here, the extension latches 114 are constructed, for example, as protrusions spaced apart along the width direction X, and the transition portion 143 can be clamped between the protrusions.
[0044] For example, such as Figure 5a and Figure 5b As shown, the first shelf 11 has a retractable latch 115 on its lower side. In the retracted state, the transition portion 143 of the support leg 14 is latched in the retractable latch 115. The latching action between the retractable latch 115 and the transition portion 143 can keep the support leg 14 stably in the retracted state. The number of retractable latches 115 also corresponds to the number of insertion portions 141, for example, two.
[0045] In particular, guide slopes are provided at the open ends of the protruding latch portion 114 and the retracting latch portion 115, so that the insertion portion 143 of the support leg 14 can be more easily engaged into the protruding latch portion 114 and the retracting latch portion 115.
[0046] For example, such as Figure 4a and Figure 5aAs shown, the first shelf 11 has multiple support portions 116 on its lower side. During the switching between the extended and retracted states, the rotation shaft 142 remains supported on the support portions 116. The support portions 116 advantageously increase the support strength of the first shelf 11 on the rotation shaft 142 of the support leg 14, allowing the pressure applied by the rotation shaft 142 to be more evenly distributed on the first shelf 11, thereby avoiding stress concentration. Here, the support portions 116 can be arranged between the receiving portion 111 and the extending latch portion 114. However, it is also possible that the support portions 116 are also arranged between the receiving portions 111.
[0047] For example, such as Figure 4a and Figure 5a As shown, the first shelf 11 is provided with a receiving hole 117. The position of the receiving hole 117 corresponds to the position of the plug 141 in the retracted state, so that the plug 141 can be inserted into the receiving hole 117 in the retracted state, so that the support leg 14 fits the first shelf 11 as closely as possible in the retracted state, thereby reducing the overall height of the drying bracket assembly 10 in the stored state. In particular, the receiving hole 117 is constructed as an oblong hole, which increases the receiving area of the receiving hole 117 and makes it easier for the plug 141 to be inserted into the receiving hole 117.
[0048] For example, such as Figures 4a to 5b As shown, the first shelf 11 and the second shelf 12 are additionally provided with a plurality of ventilation holes 118 arranged in an array. These ventilation holes 118 increase the contact area between hot air and the items, thereby improving the drying efficiency and uniformity of the items. The shape of the ventilation holes 118 is selected from the group consisting of: circles, triangles, squares, and polygons. Of course, other shapes deemed meaningful by those skilled in the art can also be considered. Furthermore, at least one reinforcing rib 119 may be additionally provided on the first shelf 11 and the second shelf 12. This reinforcing rib 119 compensates for any decrease in torsional strength that may be caused by the ventilation holes 118, thereby preventing deformation of the shelf under the weight of the items.
[0049] Although specific embodiments have been described above, these embodiments are not intended to limit the scope of this application, even when only a single embodiment is described with respect to a particular feature. The feature examples provided in this application are intended for illustrative purposes and not for limitation, unless otherwise stated. In practice, multiple features may be combined with each other as needed and where technically feasible. Various substitutions, modifications, and alterations are also conceived without departing from the spirit and scope of this application.
Claims
1. A drying rack assembly (10) for a garment processing device (1), characterized in that, The drying rack assembly (10) includes at least: - First shelf (11); and - A support leg (14) arranged below the first shelf (11), the support leg (14) having a rotating shaft (142) and at least two plug-in portions (141) configured to be plugged into other components of the garment processing device (1), The first shelf (11) has at least one receiving portion (111) for the support leg (14) on its lower side. The receiving portion (111) has an inserting groove (112) extending in the width direction (X). The rotation axis (142) of the support leg (14) is embedded in the inserting groove (112), so that the support leg (14) can switch between an extended state and a retracted state by rotating about the width direction (X). When viewed along the depth direction (Y) perpendicular to the width direction (X), in the extended state, the inserting portion (141) protrudes beyond the first shelf (11), while in the retracted state, the inserting portion (141) is located in the area of the first shelf (11).
2. The drying support assembly (10) according to claim 1, characterized in that, The support leg (14) is a single piece made of metal, so that the various plugs (141) are connected to each other by a single rotating shaft (142).
3. The drying support assembly (10) according to claim 1 or 2, characterized in that, The diameter of the embedded groove (112) is greater than or equal to the diameter of the rotating shaft (142).
4. The drying support assembly (10) according to claim 1 or 2, characterized in that, The receiving part (111) is configured with a guide groove (113) leading to the embedding groove (112), so that the rotating shaft (142) can be embedded into the embedding groove (112) via the guide groove (113).
5. The drying support assembly (10) according to claim 4, characterized in that, The width of the guide groove (113) is smaller than the diameter of the rotating shaft (142); and / or The guide groove (113) opens backward along the depth direction (Y) or downward along the height direction (Z).
6. The drying support assembly (10) according to claim 1 or 2, characterized in that, The leg (14) has a transition portion (143) between the rotating shaft (142) and the plug portion (141), the plug portion (141) being bent relative to the plane defined by the rotating shaft (142) and the transition portion (143), such that the plug portion (141) is oriented downward in the extended state and upward in the retracted state.
7. The drying support assembly (10) according to claim 6, characterized in that, The first shelf (11) has an extension latch (114) on its lower side. In the extended state, the transition part (143) is latched in the extension latch (114). The number of extension latches (114) corresponds to the number of insertion parts (141).
8. The drying support assembly (10) according to claim 7, characterized in that, The first shelf (11) has a retraction latch (115) on its lower side. In the retracted state, the transition part (143) is latched in the retraction latch (115), wherein the number of the retraction latches (115) corresponds to the number of the plugs (141).
9. The drying support assembly (10) according to claim 8, characterized in that, A guide slope is provided at the opening end of the protruding latch (114) and / or the retracting latch (115).
10. The drying support assembly (10) according to claim 1 or 2, characterized in that, The first shelf (11) has multiple support portions (116) on its lower side. During the switching between the extended state and the retracted state, the rotating shaft (142) remains supported on the support portions (116).
11. The drying support assembly (10) according to claim 1 or 2, characterized in that, The first shelf (11) is provided with a receiving hole (117), and in the retracted state, the plug (141) is inserted into the receiving hole (117).
12. The drying support assembly (10) according to claim 11, characterized in that, The receiving hole (117) is constructed as an oblong hole; and / or The first shelf (11) is additionally provided with a plurality of ventilation holes (118) arranged in an array, the shape of which is selected from the group consisting of: circles, triangles, squares, polygons; and / or The first shelf (11) is additionally provided with at least one reinforcing rib (119).
13. The drying support assembly (10) according to claim 1 or 2, characterized in that, The drying rack assembly (10) includes at least one second shelf (12) located above the first shelf (11), wherein a folding mechanism (13) is arranged between adjacent shelves, allowing each shelf to switch between a folded state and an unfolded state; and / or The drying rack assembly (10) also includes a hanging member (15) fixedly arranged on the uppermost shelf.
14. A garment processing device (1), characterized in that, The garment processing device (1) includes a drying rack assembly (10) according to any one of claims 1 to 13.
15. The garment processing equipment according to claim 14, characterized in that, The garment processing device (1) includes a lint collector (20), and the insertion part (141) of the support leg (14) of the drying bracket assembly (10) can be inserted into the insertion hole (21) of the lint collector (20) when the support leg (14) is extended.