Packaging components and garment processing equipment
By using packaging components made of biodegradable wood and cardboard, the problem of EPS materials failing to meet environmental regulations is solved, achieving an environmentally friendly and economical packaging solution.
Patent Information
- Application Number
- CN202311291180.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-07
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2043-10-07
AI Technical Summary
The packaging components of existing garment processing equipment use EPS materials that are difficult to degrade, which cannot meet environmental regulations.
The top cover and side panels are made of biodegradable wooden and cardboard components, forming a space to protect the equipment body. The structural strength of the wooden components meets the protection requirements, while the biodegradable materials reduce environmental pollution.
It achieves the goal of meeting protection requirements while having strong degradation ability, reducing the use of non-degradable materials, complying with environmental regulations, and reducing transportation and manufacturing costs.
Smart Images

Figure CN119774103B_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of packaging technology, and in particular relates to a packaging component and clothing processing equipment. Background Technology
[0002] This section provides only background information relevant to this disclosure and is not necessarily prior art.
[0003] Existing garment processing equipment requires corresponding packaging components after leaving the factory to protect the equipment and reduce the risk of collision damage.
[0004] In the present technology, packaging components typically use EPS (Expanded Polystyrene foam). However, EPS is a difficult-to-degrade material and cannot meet the requirements of current environmental regulations. Summary of the Invention
[0005] The purpose of this application is to at least address the problem that packaging components fail to meet environmental regulations. This purpose is achieved through the following technical solution:
[0006] A first aspect of this application provides a packaging assembly for packaging the body of a garment processing device, the packaging assembly comprising:
[0007] Base;
[0008] Side plates, the side plates being disposed circumferentially around at least a portion of the base;
[0009] The top cover is spaced above the base, and the base, the top cover, and the side panels form a receiving space for accommodating the device body. The top cover is a first biodegradable composite structure, which includes wooden parts and cardboard parts.
[0010] According to the packaging assembly of this application, the base, top cover, and side panels of the packaging assembly form an accommodating space to house the main body of the garment processing equipment, thereby protecting the equipment and reducing damage caused by impacts and other factors. The top cover of the packaging assembly is configured as a first biodegradable composite structure, comprising a wooden component and a cardboard component. Since both the wooden and cardboard components are biodegradable materials, and the wooden component possesses good structural strength, the top cover's structural strength meets requirements. This ensures the top cover's biodegradability while maintaining sufficient strength, reducing the use of non-biodegradable materials and enabling the packaging assembly to meet environmental regulations to a certain extent.
[0011] In addition, the packaging component according to this application may also have the following additional technical features:
[0012] In some embodiments of this application, the top cover is a box-shaped structure with an opening facing the base and for the top of the device body to be inserted into the interior of the box-shaped structure. The cardboard component includes a first cardboard component that forms at least part of the box-shaped structure. The wooden component is connected to the first cardboard component. Along a first direction, the wooden component has two oppositely arranged clamping ends. The first direction is the length direction of the device body.
[0013] In some embodiments of this application, the side panel includes a first end and a second end disposed opposite to each other, the first end being connected to the base and the top cover being connected to the second end, the side panel being a second biodegradable composite structure and a frame structure, and at least along the first direction, the frame structure having deformable space.
[0014] In some embodiments of this application, the second biodegradable composite structure includes a second cardboard piece, the second cardboard piece having creases, and the bodies of the second cardboard piece located on both sides of the creases being angled and forming the frame structure having a hollow cavity.
[0015] In some embodiments of this application, the second cardboard piece further includes a slit, the slit being a bent structure, and the second cardboard piece having a bent body on one side of the slit, the bent body being angled to the second cardboard piece to form a perforation at the location of the slit, and a portion of the free bent end of the second cardboard piece engaging with a portion of the perforations.
[0016] In some embodiments of this application, the hollow cavity includes a first hollow cavity, and the frame structure includes:
[0017] A first buffer section is provided, which extends along a second direction. The first buffer section is a first winding structure with a first hollow cavity formed by winding a portion of the second cardboard part located on one side of the cut. The second direction is the width direction of the device body.
[0018] In some embodiments of this application, the hollow cavity further includes a second hollow cavity, and the frame structure further includes a second buffer portion. The second buffer portion extends along a third direction and is a second winding structure with the second hollow cavity formed by winding a portion of the edge of the second cardboard piece. The third direction is the height direction of the device body.
[0019] In some embodiments of this application, along the second direction, a second buffer portion is provided on both opposite sides of the first buffer portion, and each second buffer portion is used to cover the corner position between the side wall and adjacent side wall of the device body.
[0020] In some embodiments of this application, the cross-section of the first hollow cavity is triangular in shape in a section perpendicular to the second direction;
[0021] And / or, in a cross-section perpendicular to the third direction, the second hollow cavity has a quadrilateral cross-section;
[0022] And / or, the edge of the second cardboard piece located within the second hollow cavity is inclined within the second hollow cavity to divide the second hollow cavity into at least two chambers.
[0023] In some embodiments of this application, the second biodegradable composite structure further includes a third cardboard component, wherein the first buffer portion and the second buffer portion are spaced apart and form a receiving space, and the third cardboard component is disposed within the receiving space.
[0024] In some embodiments of this application, a first clearance space is provided on the second buffer portion at the corner position for covering the front side of the device body, and the first clearance space is used to accommodate the protruding structure of the control panel of the device body.
[0025] In some embodiments of this application, the number of wooden components is two, and the two wooden components are arranged in parallel and spaced apart along the second direction. The two wooden components include a first wooden board component and a second wooden board component. The first wooden board component, the second wooden board component, and the first cardboard component form the box-shaped structure. The first wooden board component and the second wooden board component constitute two oppositely arranged sidewalls of the box-shaped structure. The first wooden board component is arranged to correspond to the front side of the device body, and the second wooden board component is arranged to correspond to the rear side of the device body.
[0026] In some embodiments of this application, the second buffer portion is provided with a second clearance space, which is used to accommodate the clamping end.
[0027] In some embodiments of this application, the top cover further includes a paper liner connected to the inner wall of the box-shaped structure, the paper liner covering the second wooden board and part of the inner bottom surface of the box-shaped structure, and the paper liner being spaced apart from the first wooden board.
[0028] In some embodiments of this application, the number of wooden parts is two, and the two wooden parts are arranged in parallel and spaced apart along the second direction. The first cardboard part surrounds the box-shaped structure. The two wooden parts are respectively arranged on the outside of the box-shaped structure and include a first wooden board and a second wooden board. The second wooden board is connected to the outer surface of the box-shaped structure away from the opening, and the first wooden board is connected to the outer surface of the box-shaped structure corresponding to its inner wall.
[0029] In some embodiments of this application, the top cover further includes a fourth cardboard piece, which is connected to the outer surface of the box-shaped structure and located between the first wooden board piece and the second wooden board piece. The fourth cardboard piece is a honeycomb cardboard, and the thickness of the second wooden board piece is less than the thickness of the fourth cardboard piece.
[0030] In some embodiments of this application, at least two of the bent bodies are provided in the second hollow cavity, and the at least two bent bodies are staggered along the third direction.
[0031] In some embodiments of this application, the base includes a plurality of protruding structures, the plurality of protruding structures are spaced apart circumferentially along the base, the second end is provided with a limiting plate consistent with the number of the protruding structures, the side plate abuts against the plurality of protruding structures, and each of the protruding structures is provided with a limiting plate corresponding to the side facing the device body.
[0032] A second aspect of this application provides a garment processing apparatus, the garment processing apparatus comprising:
[0033] Equipment body;
[0034] According to the packaging assembly described above, the device body is disposed within the receiving space of the packaging assembly.
[0035] According to the garment processing equipment of this application, the base, top cover, and side panels of the packaging assembly form a receiving space to house the equipment body, thereby protecting the equipment body and reducing damage caused by impacts and other factors. The top cover of the packaging assembly is configured as a first biodegradable composite structure, comprising a wooden component and a cardboard component. Since both the wooden and cardboard components are biodegradable materials, and the wooden component possesses good structural strength, the top cover's structural strength meets requirements. This ensures the top cover's biodegradability, reducing the use of non-biodegradable materials and, to a certain extent, enabling the packaging assembly to meet environmental regulations. Attached Figure Description
[0036] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of this application. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings:
[0037] Figure 1 A schematic diagram of the structure of a garment processing device according to an embodiment of this application is shown;
[0038] Figure 2 for Figure 1 A schematic diagram of the exploded structure of the garment processing equipment shown;
[0039] Figure 3 for Figure 1 A schematic diagram of the exploded structure of the garment processing equipment shown;
[0040] Figure 4 for Figure 1 A structural schematic diagram of the garment processing equipment shown from another perspective;
[0041] Figure 5 for Figure 4 A schematic diagram of the AA cross-section of the garment processing equipment shown;
[0042] Figure 6 for Figure 3 Structural schematic diagrams of some embodiments of the top cover shown;
[0043] Figure 7 for Figure 6 A schematic diagram of the mechanism from another perspective of the top cover shown;
[0044] Figure 8 for Figure 3 Structural schematic diagrams of some embodiments of the top cover shown;
[0045] Figure 9 for Figure 3 Structural schematic diagrams of some embodiments of the side plate shown;
[0046] Figure 10 for Figure 9 A schematic diagram of the mechanism from another perspective of the side plate shown;
[0047] Figure 11 for Figure 9 A schematic diagram of the mechanism from another perspective of the side plate shown;
[0048] Figure 12 for Figure 11 A schematic diagram of the BB cross-section of the garment processing equipment shown;
[0049] Figure 13 for Figure 11 The diagram shows a structural schematic of the CC section of the garment processing equipment.
[0050] The attached figures are labeled as follows:
[0051] 1000. Garment processing equipment;
[0052] 100. Equipment body; 101. Control panel;
[0053] 200. Packaging components;
[0054] 10. Cardboard boxes;
[0055] 20. Top cover;
[0056] 21. First cardboard component; 22. Wooden component; 221. First wooden board component; 222. Second wooden board component; 223. Clamping end; 23. Paper backing board; 24. Fourth cardboard component;
[0057] 30. Side panels;
[0058] 31. Second cardboard component; 311. First buffer section; 3111. First hollow cavity; 312. Second buffer section; 3121. First clearance space; 3122. Second clearance space; 3123. Crease; 3124. Cut slit; 3125. Hollow hole; 3126. Limiting plate; 3127. Second hollow cavity; 3128. Bending body; 3129. First edge; 32. Third cardboard component;
[0059] 40. Base;
[0060] 41. Protruding structure;
[0061] a) First direction; b) Second direction; c) Third direction. Detailed Implementation
[0062] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.
[0063] It should be understood that the terminology used herein is for the purpose of describing particular exemplary embodiments only and is not intended to be limiting. Unless the context clearly indicates otherwise, the singular forms “a,” “an,” and “described” as used herein may also include the plural forms. The terms “comprising,” “including,” “containing,” and “having” are inclusive and therefore indicate the presence of the stated features, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, elements, components, and / or combinations thereof. The method steps, processes, and operations described herein are not construed as requiring them to be performed in a particular order described or illustrated unless the order of performance is explicitly indicated. It should also be understood that additional or alternative steps may be used.
[0064] Although terms such as first, second, third, etc., may be used in this document to describe multiple elements, components, regions, layers, and / or segments, these elements, components, regions, layers, and / or segments should not be limited by these terms. These terms may be used only to distinguish one element, component, region, layer, or segment from another. Unless the context clearly indicates otherwise, terms such as "first," "second," and other numerical terms used herein do not imply order or sequence. Therefore, the first element, component, region, layer, or segment discussed below may be referred to as the second element, component, region, layer, or segment without departing from the teachings of the exemplary embodiments.
[0065] For ease of description, spatial relative terms may be used in the text to describe the relationship of one element or feature relative to another element or feature, as shown in the figure. These relative terms include, for example, "inside," "outside," "middle," "outer," "below," "below," "above," "over," etc. Such spatial relative terms are intended to include different orientations of the device in use or operation, other than those depicted in the figure. For example, if the device in the figure is flipped, an element described as "below other elements or features" or "below other elements or features" would subsequently be oriented as "above other elements or features" or "above other elements or features." Therefore, the example term "below" can include both upper and lower orientations. The device may be otherwise oriented (rotated 90 degrees or in other directions), and the spatial relative descriptors used in the text will be interpreted accordingly.
[0066] like Figures 1 to 13 As shown, according to an embodiment of this application, a packaging component 200 for the main body 100 of a garment processing device 1000 is provided, the packaging component 200 including a base 40, a side plate 30 and a top cover 20.
[0067] Specifically, the top cover 20 is spaced above the base 40, and the side plate 30 has a first end and a second end, which are located on opposite sides of the side plate 30. The first end is connected to the base 40, and the second end is connected to the top cover 20. The base 40, the side plate 30, and the top cover 20 together form an accommodating space. This accommodating space is used to accommodate the equipment body 100 of the garment processing equipment 1000. When the equipment body 100 is placed inside the accommodating space, the base 40, the side plate 30, and the top cover 20 provide protection for the equipment body 100 from different directions.
[0068] In this application, the top cover 20 is configured as a first biodegradable composite structure, which includes cardboard and wood components 22.
[0069] It should be understood that both the wooden part 22 and the cardboard part are biodegradable materials, meaning that the wooden part 22 and the cardboard part can be degraded through weathering or burial, in order to reduce the pollution to the environment caused by the non-degradable top cover 20.
[0070] In addition, in the first biodegradable composite structure, the wooden part 22 is effectively combined with the cardboard part to form the structure of the top cover 20, so as to protect the equipment body 100 of the clothing processing equipment 1000.
[0071] Furthermore, when the main body 100 of the garment processing equipment 1000 is housed within the accommodating space, the base 40 provides support for the main body 100, and the side plate 30 and the top cover 20 abut against the main body 100 to limit the movement of the main body 100. This reduces the likelihood of the main body 100 shaking within the accommodating space, thereby reducing the risk of scratches or tipping due to instability caused by shaking.
[0072] When the packaging component 200 of this application is used in the garment processing equipment 1000, the equipment body 100 of the garment processing equipment 1000 is housed within the accommodating space. The top cover 20, side panels 30, and base 40 provide multi-dimensional protection for the equipment body 100, reducing damage caused by impacts and other factors. Specifically, the top cover 20 of the packaging component 200 is configured as a first biodegradable composite structure composed of wooden parts 22 and cardboard parts. Because the wooden parts 22 have good structural strength, the top cover 20's structural strength meets the requirements. Therefore, with sufficient strength, the top cover 20 can be degraded, reducing the use of non-degradable materials and, to a certain extent, enabling the packaging component 200 to meet environmental regulations.
[0073] It should be noted that, in this application, when the wooden part 22 and the cardboard part are combined, the connection and fixing methods between the two include, but are not limited to, one or more of adhesive, snap-fit, and fastener connection. Furthermore, at the connection point between the wooden part 22 and the cardboard part, protruding hard structures (such as protruding fasteners, burrs, or edges of the protruding wooden part 22) need to be removed to reduce the possibility of hard structures scratching the user or the device body 100 of the clothing processing equipment 1000.
[0074] Furthermore, in this application, the wooden component 22 can be a board or strip formed by splitting logs (such as poplar, pine or birch), or it can be a multi-layer plywood formed by gluing together wood veneers (such as poplar veneer, pine veneer or birch veneer).
[0075] In some embodiments of this application, such as Figures 2 to 5 As shown, the top cover 20 is spaced above the base 40 and connected to it by a side plate 30. The first end of the side plate 30 is connected to the base 40, and the second end of the side plate 30 is connected to the top cover 20. The side plate 30, the base 40, and the top cover 20 form a receiving space. When the equipment body 100 of the clothing processing equipment 1000 is placed in the receiving space, the base 40 supports the bottom of the equipment body 100, the side plate 30 protects the sides of the equipment body 100, and the top cover 20 cooperates with the top of the equipment body 100 and protects the top of the equipment body 100.
[0076] The top cover 20 is configured as a box-shaped structure with an opening. When the top cover 20 protects the device body 100 of the clothing handling device 1000 located in the receiving space, the top of the device body 100 is inserted into the interior of the box-shaped structure through the opening. The top cover 20 can accommodate the top of the device body 100, thereby increasing the protective area of the top cover 20 on the device body 100 and further reducing the possibility of damage to the device body 100 due to impact.
[0077] The top cover 20 is a composite structure assembled from wooden parts 22 and cardboard parts. The cardboard parts include a first cardboard part 21, which is used to form a box-shaped structure. The box-shaped structure can be partially or completely enclosed by the first cardboard part 21. The wooden parts 22 are connected and fixed to the first cardboard part 21, and the wooden parts 22 have two clamping ends 223 in the first direction a. The two clamping ends 223 are arranged oppositely in the first direction a. The first direction a is the length direction of the equipment body 100 of the clothing processing equipment 1000.
[0078] A wooden component 22 is provided on the top cover 20. The wooden component 22 can improve the structural strength of the top cover 20. Compared with the top cover 20 made of EPS material, the top cover 20 can effectively reduce its size in the height direction of the equipment body 100 while having the same structural strength. This can reduce the volume of the clothing processing equipment 1000, thereby increasing the packing capacity during the transportation of the clothing processing equipment 1000 and effectively reducing transportation costs.
[0079] In addition, the addition of wooden parts 22 to the top cover 20 can improve the structural strength of the top cover 20, thereby enabling the installation of another garment processing device 1000 on top of one garment processing device 1000. This allows the garment processing devices 1000 to be stacked, further increasing the loading capacity of the garment processing devices 1000 during transportation and effectively reducing transportation costs.
[0080] It should be understood that, in this application, when a user faces the device body 100 of the garment processing device 1000, the side of the device body 100 facing the user is the front side of the device body 100, the side of the device body 100 away from the user is the rear side of the device body 100, the side of the device body 100 on the user's left hand is the left side of the device body 100, the side of the device body 100 on the user's right hand is the right side of the device body 100, the side of the device body 100 facing the supporting surface is the bottom side of the device body 100, and the side of the device body 100 away from the supporting surface is the top side of the device body 100. The direction from the left side to the right side of the device body 100 is the length direction of the device body 100, the direction from the front side to the rear side of the device body 100 is the width direction of the device body 100, and the direction from the bottom side to the top side of the device body 100 is the height direction of the device body 100.
[0081] In addition, the opening shape of the box-shaped structure is adapted to the top shape of the equipment body 100 of the garment processing equipment 1000, and the internal structure shape of the box-shaped structure is also matched with the top shape of the equipment body 100, thereby effectively accommodating the top of the equipment body 100 and further enhancing the protection effect of the equipment body 100.
[0082] In this application, the wooden component 22 extends along the first direction a (the length direction of the equipment body 100 of the clothing processing equipment 1000), and the wooden component 22 is provided with two clamping ends 223, which are arranged oppositely in the first direction a. When loading and unloading the clothing processing equipment 1000, the loading and unloading equipment clamps the clothing processing equipment 1000 along the length direction of the equipment body 100. During the clamping process, the loading and unloading equipment abuts against the two clamping ends 223 respectively, thereby achieving the clamping of the clothing processing equipment 1000 and realizing the loading and unloading of the clothing processing equipment 1000.
[0083] In the prior art, when loading and unloading equipment is loading and unloading clothing processing equipment 1000, multiple clothing processing equipment 1000 (two or more clothing processing equipment 1000) are clamped in the first direction a. When adjacent clothing processing equipment 1000 are misaligned in the width direction of the equipment body 100, the packaging component 200 or the equipment body 100 may be damaged due to shearing force when the loading and unloading equipment is clamping multiple clothing processing equipment 1000. In this application, since a wooden component 22 is provided in the first direction a, and two oppositely arranged clamping ends 223 are provided on the wooden component 22, when the loading and unloading equipment loads or unloads two or more garment processing equipment 1000 (arranged along the first direction a), the wooden component 22 can form a support in the first direction a, thereby reducing the impact of shearing force caused by the misalignment of two adjacent garment processing equipment 1000, and further reducing the damage to the packaging component 200 caused by the misalignment of two adjacent garment processing equipment 1000 in the width direction of the equipment body 100.
[0084] It should be noted that in this application, along the first direction a, the clamping end 223 of the wooden part 22 is at least flush with the edge of the top cover 20. By setting the clamping end 223 of the wooden frame, the loading and unloading equipment can directly contact the clamping end 223 of the wooden part 22 during the clamping process of the clothing handling equipment 1000, reducing the possibility of contact with other parts of the packaging assembly 200, thereby reducing the impact on other parts of the packaging assembly 200, and thus reducing damage to the packaging assembly 200 and the equipment body 100.
[0085] In some embodiments of this application, such as Figure 2 and Figure 3 As shown, the packaging assembly 200 includes two side panels 30, and the two side panels 30 are spaced apart in a first direction a.
[0086] Specifically, the top cover 20 is spaced above the base 40, and the two side plates 30 are respectively connected between the top cover 20 and the base 40. At this time, the top cover 20, the base 40, and the two side plates 30 form a U-shaped accommodating space. When the packaging assembly 200 is used in the garment processing equipment 1000, the equipment body 100 of the garment processing equipment 1000 is placed in the accommodating space, wherein the base 40 supports the equipment body 100, the top cover 20 covers the top of the equipment body 100, and along the first direction a, the opposite sides of the equipment body 100 abut against one of the side plates 30 respectively.
[0087] Two side panels 30 are provided to protect the outer side wall of the equipment body 100, thereby reducing the impact of external forces on the equipment body 100 and thus reducing the possibility of damage to the packaging component 200 and the equipment body 100.
[0088] It should be understood that in this application, the two side plates 30 are arranged in parallel and spaced apart, which can improve the uniformity of stress on the side plates 30, thereby making the overall structural strength of the packaging assembly 200 stable and reducing the possibility of deformation caused by stress concentration.
[0089] It should be noted that in other embodiments of this application, one or two side plates 30 may be provided on the second direction b of the device body 100. By further providing side plates 30 on the second direction b, the coverage area of the device body 100 can be increased by increasing the number of side plates 30, thereby further enhancing the protective capability of the side plates 30 for the device body 100, further reducing the impact of external impacts on the device body 100, and reducing the possibility of damage to the device body 100.
[0090] In some embodiments of this application, the side plate 30 is a frame structure and a second degradable composite structure, and the frame structure has deformable space at least in the first direction a.
[0091] Specifically, by setting the side panel 30 as a second biodegradable composite structure, the number of biodegradable components in each component of the packaging assembly 200 is increased, further improving the biodegradability of the packaging assembly 200, thereby enabling the packaging assembly 200 to further meet the requirements of environmental regulations.
[0092] In addition, setting the side panel 30 as a frame structure can reduce the weight of the side panel 30, thereby reducing the overall weight of the packaging component 200, which can reduce energy consumption during transportation and reduce transportation costs. On the other hand, it can improve the overall mechanical properties of the side panel 30, thereby improving the protective ability of the side panel 30, and further reducing the damage to the main body 100 of the garment processing equipment 1000 caused by external impact.
[0093] Furthermore, by providing deformable space in at least the first direction a for the side panel 30 of the frame structure, the deformable space can be used to absorb external impact forces, thereby improving the impact resistance of the side panel 30 and further enhancing the protective capability of the packaging assembly 200 for the equipment body 100.
[0094] In some embodiments of this application, such as Figures 9 to 11 As shown, the side panel 30, which is the second biodegradable composite structure, includes a second cardboard piece 31 with multiple creases 3123. The second cardboard piece 31 is folded at the creases 3123 to form a frame structure with a hollow cavity.
[0095] Specifically, the side panel 30 is formed using the second cardboard component 31. Compared with existing EPS material components, the cardboard component has a lower cost, which can effectively reduce the manufacturing cost of the packaging component 200. At the same time, the cardboard component has better biodegradability, which can effectively shorten the degradation time of the packaging component 200, enabling the packaging component 200 to further meet the requirements of environmental regulations.
[0096] Furthermore, crease 3123 is provided on the second cardboard piece 31. The second cardboard piece 31 has a body on both sides of crease 3123. By folding the second cardboard piece 31 at the position of crease 3123, the bodies on both sides of crease 3123 are set at an angle (i.e., the bodies on both sides of crease 3123 form an included angle, thereby making the second cardboard piece 31 form a three-dimensional structure at crease 3123), thus forming a frame structure with a hollow cavity. The folding method forms a side panel 30 with a frame structure, which is convenient for processing and manufacturing, can improve processing efficiency, and can further reduce manufacturing costs.
[0097] In addition, the frame structure has a hollow cavity. When the side panel 30 is impacted, the hollow cavity can absorb the impact force through deformation, reducing the transmission of the impact force to the equipment body 100 of the garment processing equipment 1000, further reducing the possibility of the equipment body 100 being impacted, and further improving the protection capability of the packaging component 200 for the equipment body 100.
[0098] It should be noted that the second cardboard piece 31 forms a frame structure by bending at the crease 3123. In order to maintain the bent structure, the bent structure can be connected and fixed by means of adhesive or connectors, so that the bent structure can be maintained and the side panel 30 can fully perform its protective performance.
[0099] In addition, the second cardboard component 31 can be a flat paperboard, corrugated board, or honeycomb board, etc.
[0100] In some embodiments of this application, such as Figures 9 to 11 As shown, a slit 3124 is provided on the second cardboard piece 31. There are multiple slits 3124, and the slits 3124 are bent structures.
[0101] Specifically, the second cardboard piece 31 has a bent body 3128 on one side of the cut 3124. The bent body 3128 is folded away from the cut, so that the bent body 3128 is set at an angle to the second cardboard piece 31. At this time, the bent body 3128 can extend into the hollow cavity of the frame structure, or it can be rolled up and set on the outside of the frame structure to improve the overall strength of the frame structure. Since the body of the second cardboard piece 31 at the cut 3124 is bent and forms the bent body 3128, a perforation 3125 is formed at the cut 3124.
[0102] In this application, the partially bent body 3128 of the second cardboard piece 31 is inserted into the hollow cavity of the frame structure, and the partially bent body 3128 is disposed outside the hollow cavity and is wound up.
[0103] The number of bent bodies 3128 inserted into the hollow cavity can be one or more. When there is only one bent body 3128 inserted into the hollow cavity, the bent body 3128 abuts against the inner wall of the hollow cavity in the plane formed by the first direction a and the second direction b, so that the bent body 3128 supports the inner wall of the hollow cavity, thereby improving the structural strength of the hollow cavity and further improving the impact resistance of the side plate 30 located in the hollow cavity, thereby improving the protection performance of the equipment body 100 of the clothing processing equipment 1000. When there are multiple bent bodies 3128 inserted into the hollow cavity (e.g. Figure 13 As shown, in Figure 13 In the second hollow cavity 3127, at least two bent bodies 3128 are provided. Part of the bent bodies 3128 (at least one) abut against the inner wall of the hollow cavity in the plane formed by the first direction a and the second direction b, so that the bent bodies 3128 support the inner wall of the hollow cavity. Part of the bent bodies 3128 are staggered along the third direction c in the hollow cavity to improve the structural strength of the hollow cavity, thereby further improving the impact resistance of the side plate 30 located in the hollow cavity, and thus improving the protection performance of the equipment body 100 of the clothing processing equipment 1000.
[0104] Meanwhile, the second cardboard piece 31 is bent at the crease 3123 to form a frame structure with a hollow cavity. The bending body 3128 can be inserted into the hollow cavity of the frame structure to fix the folded second cardboard piece 31, keeping it in the folded state. The method of fixing by inserting the bending body 3128 is simple in structure and easy to operate, eliminating the need for auxiliary connecting parts and effectively reducing manufacturing costs.
[0105] In addition, the bent body 3128 with the winding arrangement can be attached to the outer surface of the frame structure to form a support structure. This support structure has better cushioning performance. The support structure is used to abut against the equipment body 100 of the clothing processing equipment 1000 to enhance the cushioning ability of the side panel 30 on the equipment body and further improve the protection effect on the equipment body 100.
[0106] In addition, by setting a slit 3124 and utilizing the body of the second cardboard piece 31 on the side where the slit 3124 is located, material waste is reduced.
[0107] In some embodiments of this application, such as Figures 9 to 13 As shown, the frame structure includes a first buffer section 311 and a second buffer section 312, and the hollow cavity includes a first hollow cavity 3111 and a second hollow cavity 3127, wherein the first hollow cavity 3111 is disposed in the first buffer section 311, and the second hollow cavity 3127 is disposed in the second buffer section 312.
[0108] Specifically, a first buffer portion 311 extends along the second direction b, wherein the second direction b is consistent with the width direction of the equipment body 100 of the garment processing equipment 1000. The first buffer portion 311 is a first winding structure formed by the body of the second cardboard piece 31 on one side of the cut 3124 in the third direction c (the height direction of the equipment body 100). A second buffer portion 312 is provided on each of the opposite sides of the first buffer portion 311 in the second direction b. The second cardboard piece 31 has a first edge 3129 in the second direction b. Each second buffer portion 312 is a second winding structure formed by winding the first edge in the second direction b. The second buffer portion 312 with the second winding structure extends along the third direction c and is used to wrap around the side wall of the equipment body 100 and the corner position between adjacent side walls.
[0109] The side plate 30, which is a frame structure, is designed to have deformable space in the first direction a. When the side plate 30 is impacted in the first direction a, its structural deformation can absorb the impact force, thereby reducing the transmission of the impact force to the equipment body 100. Simultaneously, the side plate 30 also has deformable space in the second direction b. When the side plate 30 is impacted in the second direction b, its structural deformation can also absorb the impact force, further reducing the transmission of the impact force to the equipment body 100. The side plate 30 has strong impact resistance, further enhancing the protection capability of the equipment body 100.
[0110] It should be understood that the side plate 30 covers the side wall of the equipment body 100 and the corner position between adjacent side walls. That is, the side plate 30 forms a corner protection structure for the side wall of the equipment body 100 and the corner position between adjacent side walls, so as to reduce the possibility of the side wall of the equipment body 100 and the corner position between adjacent side walls being damaged by impact.
[0111] It should be noted that the number of first buffer sections 311 can be one or more. When the number of first buffer sections 311 is multiple, multiple first buffer sections 311 are arranged in parallel and spaced apart along the third direction c.
[0112] In some embodiments of this application, such as Figure 11 and Figure 12 As shown, in a cross-section perpendicular to the second direction b, the first hollow cavity 3111 has a triangular cross-section.
[0113] Specifically, the first buffer portion 311 extends along the second direction b. The first buffer portion 311 is a first wound structure with a first hollow cavity 3111 formed by winding a portion of the second cardboard piece 31 located on one side of the slit 3124. The first buffer portion 311 is used to abut against the outer surface of the equipment body 100. The first hollow cavity 3111 of the first wound structure is shaped into a triangular structure in a cross section perpendicular to the second direction b. The triangular structure has high structural stability and can have high impact resistance, thereby further improving the protection capability of the equipment body 100.
[0114] It should be noted that in other embodiments of this application, in a cross section perpendicular to the second direction b, the shape of the cross section of the first hollow cavity 3111 includes, but is not limited to, a rectangle, a pentagon, or a circle.
[0115] In some embodiments of this application, such as Figure 11 and Figure 13 As shown, in a cross section perpendicular to the third direction c, the cross section of the second hollow cavity 3127 has a rectangular structure.
[0116] Specifically, the second buffer portion 312 extends along the third direction c. The second buffer portion 312 is a second wound structure with a second hollow cavity 3127 formed by winding a portion of the edge of the second cardboard piece 31. The second buffer portion 312 is used to wrap around the side wall of the equipment body 100 and the corner position between adjacent side walls. The shape of the second hollow cavity 3127 of the second wound structure in the cross section perpendicular to the third direction c is set as a quadrilateral structure (e.g., a rectangular structure). The quadrilateral structure has high structural stability and can have high impact resistance, thereby further improving the protection capability of the equipment body 100.
[0117] It should be noted that in other embodiments of this application, in a cross section perpendicular to the second direction b, the shape of the cross section of the second hollow cavity 3127 includes, but is not limited to, a triangle, a pentagon, or a circle.
[0118] In some embodiments of this application, such as Figure 13 As shown, the edge of the second cardboard piece 31 located within the second hollow cavity 3127 is inclined within the second hollow cavity 3127 to divide the second hollow cavity 3127 into at least two chambers. Specifically, the second buffer portion 312 is a second wound structure with a second hollow cavity 3127 formed by winding a portion of the edge of the second cardboard piece 31. The first edge 3129 of the second cardboard piece 31 is located inside the second hollow cavity 3127 and is inclined within the second hollow cavity 3127 (not in contact with the inner wall of the second hollow cavity 3127) to form a support body within the second hollow cavity 3127. This support body can support the inner wall of the second hollow cavity 3127, thereby improving the structural strength of the second hollow cavity 3127 and enhancing the impact resistance of the side plate 30 located in the second hollow cavity 3127. When the side plate 30 is impacted at the location of the second hollow cavity 3127, it can effectively resist the impact, thus improving the protective performance.
[0119] It should be noted that in this application, in the cross section perpendicular to the second direction b, the cross section of the second hollow cavity 3127 is square in shape, and the edge of the second cardboard piece 31 located inside the second hollow cavity 3127 is arranged along the diagonal of the square, so as to increase the internal structural strength of the second hollow cavity 3127, thereby further improving the impact resistance of the side plate 30.
[0120] In some embodiments of this application, such as Figures 9 to 11 As shown, the second biodegradable composite structure also includes a third cardboard component 32. The first buffer portion 311 and the second buffer portion 312 are spaced apart and form a receiving space, and the third cardboard component 32 is disposed in the receiving space.
[0121] Specifically, the second cardboard piece 31 forms a frame structure by bending at the crease 3123 and the cut 3124, creating a space between the first buffer part 311 and the second buffer part 312. This space constitutes a receiving space. The side panel 30 also includes a third cardboard piece 32, which is disposed within the receiving space. When the side panel 30 is impacted in the second direction b, the impact force is transmitted from the second buffer part 312 and the third cardboard piece 32 towards the first buffer part 311. By providing the third buffer, the third cardboard piece 32 absorbs the impact force through deformation during the transmission of the impact from the second buffer part 312 to the first buffer part 311, thereby reducing the transmission of the impact force and improving the impact resistance of the side panel 30. This further enhances the protective capability of the side panel 30 for the equipment body 100.
[0122] It should be noted that the third cardboard component 32 is connected and fixed to the second cardboard component 31 by adhesive or connectors. In addition, there can be one or more third cardboard components 32. When there are multiple third cardboard components 32, the multiple third cardboard components 32 are stacked along the first direction a.
[0123] In addition, the third cardboard component 32 can be a flat paperboard, corrugated board, or honeycomb board, etc.
[0124] In some embodiments of this application, such as Figure 5 , Figures 9 to 11 As shown, the side panel 30 includes a second cardboard piece 31, which has two second buffer portions 312. One of the second buffer portions 312 is used to cover the front side wall of the device body 100 and the corner position between adjacent side walls. The second buffer portion 312 is provided with a first clearance space 3121, which is used to accommodate the protruding structure of the front side wall of the device body 100, such as the protruding structure of the control panel 101.
[0125] When the packaging component 200 is used in the garment processing equipment 1000, the equipment body 100 of the garment processing equipment 1000 is disposed within the accommodating space of the packaging component 200. In the first direction a, the control panel 101 of the equipment body 100 protrudes from the surface of the equipment body 100. At this time, a first clearance space 3121 is provided, and the protruding part of the control panel 101 is accommodated by the first clearance space 3121, thereby reducing the interference between the packaging component 200 and the control panel 101 and achieving better protection for the equipment body 100.
[0126] In addition, the first clearance space 3121 can meet the packaging requirements of various structures of the device body 100 (such as a structure in which the control panel 101 protrudes from the outer surface of the device body 100, or a structure in which the control panel 101 is flush with the outer surface of the device body 100).
[0127] It should be noted that in this application, the first clearance space 3121 is formed by removing material from the second buffer portion 312 to improve manufacturing convenience and reduce manufacturing costs.
[0128] Furthermore, the mating methods between the second end of the side panel 30 and the top cover 20 include, but are not limited to, insertion, connector connection, or adhesive bonding. In this application, the second end of the side panel 30 and the top cover 20 are inserted into each other, that is, the second end is inserted into the box-shaped structure through the opening of the box-shaped structure.
[0129] In some embodiments of this application, such as Figure 6 and Figure 7 ,or Figure 8 As shown, the top cover 20 includes two wooden components 22, which are arranged parallel to each other along the second direction b. By providing two wooden components 22, the structural strength of the top cover 20 can be further improved, thereby enhancing its protective capability against the equipment body 100.
[0130] In some embodiments of this application, such as Figure 6 and Figure 7 As shown, the two wooden components 22 include a first wooden board component 221 and a second wooden board component 222. The first wooden board component 221, the second wooden board component 222 and the first cardboard component 21 form a box-shaped structure. The first wooden board component 221 and the second wooden board component 222 constitute two oppositely arranged side walls of the box-shaped structure. The first wooden board component 221 is arranged to correspond to the front side of the equipment body 100, and the second wooden board component 222 is arranged to correspond to the rear side of the equipment body 100.
[0131] Two wooden components 22 are respectively set as a first wooden board component 221 and a second wooden board component 222, and the first wooden board component 221, the second wooden board component 222 and the first cardboard component 21 are used to form a box-shaped top cover 20. In this way, while ensuring that the top cover 20 has sufficient strength, the size of the top cover 20 can be effectively reduced. When transporting the clothing processing equipment 1000, the space occupied can be reduced, the loading capacity during transportation can be increased, and thus the transportation cost can be reduced.
[0132] In addition, the two wooden boards provide protection for the front and rear sides of the equipment body 100, respectively, thereby further reducing the possibility of external forces impacting the front and rear sides of the equipment body 100, thus providing better protection for the equipment body 100 and further reducing the possibility of damage to the equipment body 100 due to impact.
[0133] It should be noted that both the first wooden board component 221 and the second wooden board component 222 are made of plywood, which has high structural strength and low manufacturing cost.
[0134] In some embodiments of this application, such as Figure 5 , Figures 9 to 11 As shown, the second buffer section 312 is provided with a second clearance space 3122, which is used to accommodate the clamping end 223.
[0135] Specifically, when the packaging component 200 is used in the garment processing equipment 1000, the equipment body 100 of the garment processing equipment 1000 is placed on the base 40, the first end of the side panel 30 is connected to the base 40, and the top cover 20 is fastened to the top of the equipment body 100, so that the second end of the side panel 30 is inserted into the interior of the box-shaped top cover 20 through the opening of the box-shaped structure. By providing a second clearance space 3122, the clamping end 223 of the wooden part 22 on the top cover 20 is accommodated, thereby reducing structural interference between the top cover 20 and the side panel 30, and achieving effective assembly of the top cover 20 and the side panel 30.
[0136] It should be noted that in this application, the second clearance space 3122 is formed by removing material from the second buffer portion 312 to improve the ease of manufacturing and reduce the manufacturing cost.
[0137] In some embodiments of this application, such as Figure 5 and Figure 7 As shown, the top cover 20 also includes a paper liner 23, which is connected to the inner wall of the box-shaped structure. The paper liner 23 covers the second wooden board 222 and part of the inner bottom surface of the box-shaped structure. The paper liner 23 is spaced apart from the first wooden board 221.
[0138] Specifically, the top cover 20 is a box-shaped structure with an opening. A paper liner 23 is set in the box-shaped structure, and the position of the paper liner 23 is set. When the top cover 20 is fastened to the top of the equipment body 100, the paper liner 23 contacts the top of the equipment body 100. By setting the paper liner 23, vibration (such as vibration during transportation) can be effectively absorbed, thereby reducing the impact of vibration on the equipment body 100 and reducing the damage to the equipment body 100 caused by vibration.
[0139] It should be understood that by setting the paper liner 23 to cover the second wooden board 222 and part of the inner bottom surface of the box-shaped structure, it can effectively avoid the control panel 101 of the equipment body 100, reduce the interference of the paper liner 23 with the control panel 101, and also absorb the impact force when subjected to external impact by utilizing the space between them, so as to reduce the impact force from damaging the control panel 101.
[0140] In some embodiments of this application, the paper liner 23 is a corrugated board or a honeycomb board. By setting the paper liner 23 as a corrugated board or a honeycomb board, the ability to absorb impact forces in the third direction c is enhanced, and it has sufficient flat crush strength and a certain ability to compress and deform, thereby further improving the protection capability of the equipment body 100.
[0141] In some embodiments of this application, such as Figure 8 As shown, the first cardboard piece 21 forms a box-shaped structure, and two wooden pieces 22 are respectively arranged on the outside of the box-shaped structure and include the first wooden piece and the second wooden piece. The second wooden piece is connected to the outer surface of the box-shaped structure away from the opening, and the first wooden piece is connected to the outer surface of the box-shaped structure corresponding to its inner wall.
[0142] The first cardboard is bent into a box-shaped structure. The two wooden parts 22 are respectively set as the first wooden board and the second wooden board, and the first wooden board and the second wooden board are respectively connected and fixed to the outer surface of the box-shaped structure. The setting of the first wooden board and the second wooden board can improve the structural strength of the top cover 20 while effectively reducing the size of the top cover 20. When transporting the clothing processing equipment 1000, the space occupied can be reduced, so that the loading capacity during transportation can be increased, thereby reducing the transportation cost.
[0143] In addition, the two wooden boards provide protection for the front and top of the equipment body 100, respectively, thereby further reducing the possibility of external forces impacting the front and top of the equipment body 100, thus providing better protection for the equipment body 100 and further reducing the possibility of damage to the equipment body 100 due to impact.
[0144] It should be noted that both the first and second wooden components are made of plywood, which has high structural strength and low manufacturing cost.
[0145] In some embodiments of this application, such as Figure 8As shown, the top cover 20 also includes a fourth cardboard component 24, which is connected to the outer surface of the box-shaped structure and located between the first and second wooden components. The third cardboard component 32 is a honeycomb cardboard, and the thickness of both the first and second wooden components is less than the thickness of the honeycomb cardboard. The fourth cardboard component 24 is disposed on the outside of the top cover 20 of the box-shaped structure and located between the first and second wooden components. The fourth cardboard component 24 further enhances the protection of the top of the equipment body 100, thereby improving the protective performance of the top cover 20 assembly.
[0146] It should be understood that in this application, the fourth cardboard piece 24 is set as a honeycomb cardboard and the thickness of the second wooden board piece is set to be less than the thickness of the fourth cardboard piece 24, so that the fourth cardboard piece 24 has sufficient flat crush strength and a certain ability to compress and deform, thereby further achieving protection for the top of the equipment body 100.
[0147] In some embodiments of this application, the first cardboard piece 21 is corrugated cardboard. The first cardboard piece 21 is used to cover the top of the equipment body 100. By setting the first cardboard piece 21 as a corrugated board, the corrugated board has good cushioning performance in the third direction c, which can effectively absorb the impact force in the third direction c, thereby further protecting the equipment body 100 and further reducing the damage to the equipment body 100 caused by impact.
[0148] In some embodiments of this application, such as Figures 1 to 3 As shown, the packaging assembly 200 also includes a carton 10 with a bottom opening, which is fitted over the top cover 20 and the side panel 30, and the base 40 closes the bottom opening.
[0149] Specifically, when packaging the garment processing equipment 100 body 100 using the packaging component 200, the garment processing equipment 100 body 100 is placed on the base 40, the first end of the side panel 30 is connected to the base 40, and the top cover 20 is fastened to the top of the equipment body 100, so that the second end of the side panel 30 is inserted into the inside of the box-shaped top cover 20 through an opening. The opening of the carton 10 is then fitted over the top cover 20 and the side panel 30 from top to bottom until the opening of the carton 10 mates with the base 40. By using the carton 10, further protection of the equipment body 100 is achieved, thus further improving the protective performance of the packaging component 200.
[0150] It should be noted that after the carton 10 is installed, straps or protective film can be placed on the outside of the carton 10 to fix the carton 10 to the base 40.
[0151] In some embodiments of this application, such as Figure 3 As shown, the base 40 includes multiple protruding structures 41, which are spaced apart circumferentially along the base 40. The second end of the side plate 30 is provided with a limiting plate 3126, the same number as the protruding structures 41. The side plate 30 abuts against the multiple protruding structures 41, and a limiting plate 3126 is correspondingly provided on the inner side of each protruding structure 41 (the side of the protruding structure 41 facing the equipment body 100 when the equipment body 100 is placed within the accommodating space of the packaging assembly 200). By providing the protruding structures 41 and the limiting plates 3126, and utilizing the cooperation between the protruding structures 41 and the limiting plates 3126, displacement between the side plate 30 and the base 40 is reduced, thereby improving the protective performance of the equipment body 100.
[0152] It should be noted that the protruding structure 41 can be integrally formed with the base 40, or it can be separately processed and installed on the base 40. The limiting plate 3126 can be integrally formed with the side plate 30, or it can be separately processed and installed on the side plate 30.
[0153] In addition, in this application, the base 40 can be made of biodegradable materials, such as paper structures, or the base 40 can be made of non-biodegradable materials such as EPS.
[0154] like Figures 1 to 13 As shown, a second aspect of this application provides a garment processing device 1000, which includes a device body 100 and a packaging assembly 200 as described above, the device body 100 being disposed within the receiving space of the packaging assembly 200.
[0155] According to the garment processing equipment 1000 of this application, the base 40, top cover 20, and side panels 30 of the packaging component 200 form a receiving space, which houses the equipment body 100, thereby protecting the equipment body 100 and reducing damage caused by impacts and other factors. The top cover 20 of the packaging component 200 is configured as a first biodegradable composite structure made of wooden parts 22 and cardboard parts. This ensures that the top cover 20 has sufficient strength and is biodegradable, reducing the use of non-biodegradable materials and enabling the packaging component 200 to meet environmental regulations to a certain extent.
[0156] In this application, the device body of the aforementioned device can be a washing machine, a washer-dryer combo, or the device body of other clothing processing equipment with washing function. For ease of description, this application only uses a drum washing machine as an example to illustrate the device body of the clothing processing equipment. The structure of other parts of the drum washing machine can be referred to the prior art, and will not be described in detail here.
[0157] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A packaging assembly for packaging a device body of a laundry treating apparatus, characterized in that, The packaging assembly comprises: a base; a side plate arranged around the circumference of at least part of the base, the side plate being a second degradable combined structure and a frame structure, the frame structure having a hollow cavity, the second degradable combined structure comprising a second paperboard piece, the second paperboard piece comprising a cut seam, the hollow cavity comprising a first hollow cavity and the hollow cavity further comprising a second hollow cavity, the frame structure comprising a first buffer portion arranged in a second direction, the first buffer portion being a first winding structure having the first hollow cavity formed by winding part of the body of the second paperboard piece on one side of the cut seam, the frame structure further comprising a second buffer portion arranged in a third direction, the second buffer portion being a second winding structure having the second hollow cavity formed by winding an edge of part of the second paperboard piece, wherein the second direction is the width direction of the device body, and the third direction is the height direction of the device body; a top cover arranged above the base, the base, the top cover and the side plate forming a containing space for accommodating the device body, the top cover being a first degradable combined structure, the first degradable combined structure comprising a wood piece and a paperboard piece, the wood piece being a wood board formed by splitting a log or a wood strip or being a multi-layer plywood formed by gluing wood veneers.
2. The packaging assembly of claim 1, wherein, The top cover is a box-like structure having an opening arranged facing the base and allowing the top of the device body to be inserted into the interior of the box-like structure, the paperboard piece comprising a first paperboard piece, the first paperboard piece forming at least part of the box-like structure, the wood piece being connected to the first paperboard piece, along a first direction, the wood piece having two clamping ends arranged oppositely, the first direction being the length direction of the device body.
3. The package assembly of claim 2, wherein, The side plate comprises first and second ends arranged oppositely, the first end being connected to the base, and the top cover being connected to the second end, the frame structure having a deformable space at least along the first direction.
4. The package assembly of claim 3, wherein, The second paperboard piece is provided with a crease, the body of the second paperboard piece on both sides of the crease being arranged at an angle and forming the frame structure having the hollow cavity.
5. The package assembly of claim 4, wherein, The cut seam is a bending structure, the second paperboard piece on one side of the cut seam having a bending body, the bending body being arranged at an angle with the second paperboard piece to form a hollow hole at the position of the cut seam, and the free end of part of the bending body being inserted and matched with part of the hollow holes.
6. The package assembly of claim 1, wherein, Along the second direction, the opposite sides of the first buffer portion are each provided with a second buffer portion, and each of the second buffer portions is used for covering the corner position between the side wall of the device body and the adjacent side wall.
7. The package assembly of claim 1, wherein, In a cross section perpendicular to the second direction, the cross section of the first hollow cavity is in a triangular structure; and / or, in a cross section perpendicular to the third direction, the cross section of the second hollow cavity is in a quadrilateral structure. And / or, an edge of the second paperboard piece located in the second hollow cavity is obliquely arranged in the second hollow cavity to divide the second hollow cavity into at least two chambers.
8. The package assembly of claim 1, wherein, The second degradable combined structure further comprises a third paperboard piece, the first buffer part and the second buffer part are spaced apart and form a receiving space, and the third paperboard piece is arranged in the receiving space.
9. The package assembly of claim 6, wherein, A first avoiding space is arranged on the second buffer part at the corner position of the front side of the device body, and the first avoiding space is used for accommodating a protruding structure of a control panel of the device body.
10. The package assembly of claim 2, wherein, The number of the wooden pieces is two, and the two wooden pieces are arranged in parallel along the second direction, the two wooden pieces comprise a first wooden board piece and a second wooden board piece, the first wooden board piece, the second wooden board piece and the first paperboard piece enclose the box-shaped structure, and the first wooden board piece and the second wooden board piece constitute two oppositely arranged side walls of the box-shaped structure, the first wooden board piece is arranged corresponding to the front side of the device body, and the second wooden board piece is arranged corresponding to the rear side of the device body.
11. The packaging assembly of claim 10, wherein, A second avoiding space is arranged on the second buffer part, and the second avoiding space is used for accommodating the clamping end.
12. The package assembly of claim 10, wherein, The top cover further comprises a paper lining plate connected to the inner wall of the box-shaped structure, the paper lining plate covers the second wooden board piece and part of the inner bottom surface of the box-shaped structure, and the paper lining plate is arranged in parallel with the first wooden board piece.
13. The package assembly of claim 2, wherein, The number of the wooden pieces is two, and the two wooden pieces are arranged in parallel along the second direction, the first paperboard piece encloses the box-shaped structure, and the two wooden pieces are arranged outside the box-shaped structure and comprise a first wooden board piece and a second wooden board piece, the second wooden board piece is connected to the outer surface of the box-shaped structure away from the opening, and the first wooden board piece is connected to the outer surface of the box-shaped structure corresponding to the inner wall thereof.
14. The package assembly of claim 13, wherein, The top cover further comprises a fourth paperboard piece connected to the outer surface of the box-shaped structure and located between the first wooden board piece and the second wooden board piece, the fourth paperboard piece is a honeycomb paperboard, and the thickness of the second wooden board piece is less than the thickness of the fourth paperboard piece.
15. The package assembly of claim 5, wherein, At least two of the bent bodies are arranged in the second hollow cavity, and the at least two bent bodies are arranged in an interlaced manner along the third direction.
16. The package assembly of claim 3, wherein, The base comprises a plurality of protruding structures arranged in parallel along the circumference of the base, the second end is provided with a plurality of limiting plates corresponding to the number of the protruding structures, the side plate abuts against the plurality of protruding structures, and each of the protruding structures facing one side of the device body is provided with one of the limiting plates. 17.A laundry treating apparatus, characterized by, The laundry treatment device comprises: a device body; the packaging assembly according to any one of claims 1 to 16, and the device body is arranged in the containing space of the packaging assembly.
Citation Information
Patent Citations
Packaging side pad
CN118239114A
Packaging assembly and clothes processing equipment
CN221068849U