Package of laundry treatment device and laundry treatment device assembly
By designing easily degradable plastic support components in the packaging of the clothing treatment device, distributed support motors, outer cylinders and counterweights, the problems of unevenness and poor environmental protection of existing support components are solved, and better protection effects and environmental performance are achieved.
Patent Information
- Application Number
- CN202422140141.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-08-30
AI Technical Summary
In the packaging of the existing clothing treatment device, the support components are concentrated and uneven, resulting in poor support performance for the motor, barrel components and counterweight blocks, reducing the protection effect, and traditional packaging materials are not environmentally friendly and lacking waterproof performance.
It adopts easy-to-degrade plastic parts as support components, and is designed to be distributed in different positions of the clothing processing device, including the first support body supporting the motor, the barrel support body supporting the outer cylinder, and the second support body supporting the counterweight block, and is manufactured by blister molding or injection molding, to improve support uniformity and stability.
The support reliability and stability of the support components for each component of the clothing treatment device are improved, environmental protection performance is enhanced, waterproof and moisture-proof, and damage during transportation is reduced, and production costs are reduced.
Smart Images

Figure CN223224827U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of washing machine packaging, and in particular to packaging of a clothing processing device and a clothing processing device assembly. Background Art
[0002] A washing machine is a cleaning appliance that uses electrical energy to generate mechanical action to wash clothes. It can replace manual washing of clothes. With the continuous development of social economy and the increasing demand for people's quality of life, washing machines are becoming more and more one of the indispensable household appliances in people's lives.
[0003] During transportation, clothing treatment devices typically require packaging to protect them. Clothes treatment devices include components such as a motor, a drum assembly, and a counterweight. The packaging typically includes a support assembly to support these components. However, in current packaging, the support assembly is relatively concentrated, resulting in poor support for these components and reduced protection. Utility Model Content
[0004] The purpose of this application is to at least solve the above-mentioned problems.
[0005] The present application provides a packaging for a clothes processing device, which can effectively improve the supporting performance of the supporting assembly for various components in the washing machine and enhance the protection effect of the clothes processing device.
[0006] A first aspect of the present application provides a package for a clothes treating device, which is applied to the clothes treating device, and the clothes treating device comprises:
[0007] a housing configured as an outer shell of the laundry treating apparatus;
[0008] an outer cylinder, the outer cylinder being arranged inside the shell;
[0009] an inner cylinder, the inner cylinder being arranged inside the outer cylinder;
[0010] a door body, the door body being a part of the shell and formed on the front side of the shell;
[0011] a motor, the motor being located at the bottom of the outer cylinder and disposed close to the rear side of the shell, and being used to drive the inner cylinder to rotate along the axis of the inner cylinder;
[0012] A counterweight block is provided on a side of the outer cylinder close to the door body;
[0013] The packaging of the laundry treatment device includes:
[0014] Backing;
[0015] Top cover;
[0016] a corner guard assembly, wherein the top end of the corner guard assembly is connected to the top cover, and the bottom end of the corner guard assembly is connected to the bottom lining, and the top cover, the bottom lining and the corner guard assembly are arranged to form a receiving area, and the receiving area is used to receive the clothes processing device;
[0017] Support components;
[0018] The support assembly comprises:
[0019] a first support body, the first support body being disposed above the base and connected to the base, the first support body being located at a position of the base close to the rear side of the housing, and the first support body being configured to support the bottom of the motor;
[0020] a cylinder support body, the cylinder support body being disposed above the base liner and connected to the base liner and being configured to support the bottom of the outer cylinder;
[0021] A first reference plane is defined, the first reference plane being a vertical plane and passing through the axis of the inner cylinder, the first reference plane dividing the base lining into a first base lining portion and a second base lining portion, the cylinder support body being at least partially located in the first base lining portion and the cylinder support body being at least partially located in the second base lining portion;
[0022] The second support body is provided above the base lining and connected to the base lining. The second support body is located at a position of the base lining close to the door body. The second support body is constructed as a counterweight block supported by the clothing processing device.
[0023] By arranging the first support body at a position close to the rear side of the shell on the bottom lining, the present application can align the first support body with the motor, so that the first support body can effectively support the motor, and can effectively improve the reliability and stability of the first support body supporting the motor. By arranging the tube support body on the first bottom lining portion and the second bottom lining portion, the tube support body can be distributed on both sides of the inner tube axis, so that the tube support body can support the outer tube on both sides of the inner tube axis, which can effectively increase the contact area between the tube support body and the outer tube, and increase the support area of the tube support body on the outer tube. It can effectively improve the uniformity of the tube support body's support for the outer tube, and enhance the reliability and stability of the tube support body's support for the outer tube. By arranging the second support body at a position close to the door body on the bottom lining, the second support body can be effectively aligned with the counterweight block, so that the second support body can effectively support the counterweight block, thereby effectively improving the reliability and stability of the second support body's support for the counterweight block. By arranging the support assembly in the above manner, the uniformity and rationality of the distribution of each support body can be effectively improved, so that each support body in the support assembly can effectively support the corresponding component, thereby effectively improving the support effect of the support assembly on each component in the clothing processing device.
[0024] Furthermore, by making the support assembly from easily degradable and recyclable plastic, the support assembly can be recycled and reused, achieving excellent environmental performance and effectively improving the environmental performance of the support assembly. Furthermore, the support assembly is highly waterproof and moisture-resistant, and will not soften when exposed to water, without affecting the strength and rigidity of the support assembly. This effectively improves the overall structural stability of the support assembly and enhances its support and protection performance for the washing machine.
[0025] In one possible implementation, the tube support body includes a third support body and a fourth support body; the third support body and the fourth support body are respectively located on the first base lining part and the second base lining part, and at least the third support body is located on the first support body close to the front side of the shell.
[0026] In this way, the third and fourth supports can support the outer cylinder on both sides of the inner cylinder axis, effectively improving the uniformity of the support provided by the cylinder supports on both sides of the outer cylinder, thereby effectively improving the reliability and stability of the support provided by the cylinder supports on the outer cylinder. Furthermore, the cylinder supports can absorb impact forces on the cylinder assembly on both sides of the inner cylinder axis, thereby effectively improving the protection of the cylinder assembly.
[0027] In a possible implementation, the third support body and the fourth support body are distributed along the axis of the inner cylinder.
[0028] In this way, the third support body and the fourth support body can support the outer cylinder at both ends of the inner cylinder axis respectively, which can effectively improve the uniformity of the distribution of the cylinder support body on the inner cylinder axis, and can effectively improve the uniformity of the support of the cylinder support body to the outer cylinder on the inner cylinder axis, so that the cylinder support body can provide uniform support on both sides of the axis of the inner cylinder and in the axial direction, thereby effectively improving the reliability and stability of the support of the cylinder support body to the outer cylinder.
[0029] In a possible implementation manner, the third support body and the fourth support body at least partially overlap on the axis of the inner cylinder.
[0030] In this way, the tube support body can be distributed on both sides of the inner tube axis and along the axis direction, and has support on the axis of the inner tube, which can effectively improve the stability of the tube support body's support of the outer tube in the direction of the inner tube axis, thereby effectively improving the uniformity and reliability of the tube support body's support of the outer tube.
[0031] In a possible implementation, the third support body and the fourth support body are connected along an overlapping portion on the axis of the inner cylinder.
[0032] This can make the third support body and the fourth support body constrain each other, improve the firmness and reliability of the third support body and the fourth support body on the base liner, help to improve the overall structural stability of the tube support body, thereby effectively improving the reliability and stability of the tube support body's support of the tube assembly.
[0033] In a possible implementation, the third support body and the fourth support body are staggered on the axis of the inner cylinder.
[0034] In this way, the third support body and the fourth support body can evenly support the outer cylinder on the axis of the inner cylinder. On the premise of meeting the support requirements in the axial direction of the cylinder assembly, the size of the third support body and the fourth support body on the axis of the cylinder assembly can be reduced, which can reduce the production cost of the third support body and the fourth support body.
[0035] In one possible implementation, the third support body and the second support body are connected. This allows the third support body and the second support body to provide a restraining force to each other, effectively improving the reliability and stability of the third support body and the second support body on the substrate, and enhancing the overall structural stability of the support assembly.
[0036] In a possible implementation, the third support body and the first support body are spaced apart from each other along the axis of the inner cylinder.
[0037] The first support body can support the motor at the end of the outer drum facing away from the door, while the third support body can support the end of the outer drum closer to the door. By enabling the first and third support bodies to support the laundry processing device at its front and rear ends, respectively, the uniformity of the support assembly's support of the laundry processing device can be improved. Furthermore, while still providing sufficient support for the laundry processing device, the support assembly can be reduced in size, lowering its production cost.
[0038] In a possible implementation manner, the third support body extends along the axis of the barrel assembly to the first support body and is connected to the first support body.
[0039] This can reduce or avoid shaking of the third support body and the first support body, help improve the firmness and reliability of the third support body and the first support body on the substrate, and enhance the overall structural stability of the support assembly.
[0040] In one possible implementation, the support assembly, the base, the top cover, and the corner protector assembly are plastic components made from one or more of polypropylene, polyethylene, polyvinyl chloride, polylactide, polybutylene adipate / terephthalate, and polybutylene succinate. These plastic materials are easily degradable and recyclable, exhibiting excellent environmental performance, and can effectively improve the environmental performance of the support assembly, base, top cover, and corner protector assembly.
[0041] In a possible implementation, the first support body, the second support body, the third support body, and the fourth support body are independent integral structures.
[0042] In one possible implementation, the support assembly is hollow, with a wall thickness of 1 mm to 4 mm. This increases the wall thickness of the support assembly, helping to improve its structural strength and rigidity, thereby effectively enhancing the reliability and stability of the support assembly's support for the clothing processing device. Furthermore, the cavity within the support assembly can absorb impact forces, providing a good cushioning effect, effectively enhancing the protective effect of the support assembly on the various components of the clothing processing device.
[0043] In one possible implementation, the support assembly has a reinforcing rib structure inside, and the reinforcing rib structure is connected to the inner wall of the support assembly.
[0044] The reinforcing rib structure can provide support for the hollow structure support component, improve the strength and rigidity of the support component, and effectively reduce or avoid collapse or deformation of the support component, thereby effectively improving the reliability and stability of the support component in supporting the clothing processing device.
[0045] In a possible implementation, each of the support bodies in the support assembly includes a support plate and a bearing plate;
[0046] The support plate includes a first side and a second side, the first side is mounted on the base, and the second side supports the carrier plate;
[0047] The carrier plate includes a carrier sub-plate, a first connecting sub-plate, and a second connecting sub-plate, wherein two ends of the carrier sub-plate are connected to the first connecting sub-plate and the second connecting sub-plate respectively, the first connecting sub-plate and the second connecting sub-plate are bent relative to the carrier sub-plate, and the first connecting sub-plate and the second connecting sub-plate are plugged into the second side of the support plate;
[0048] The carrying sub-plate is used for contacting with the washing machine.
[0049] The sub-carrying plate can be used to contact the washing machine, and the support plate can support the carrying plate to prop up the carrying plate so that the carrying plate can support various components in the washing machine. This can effectively improve the strength of the support assembly, enabling the support assembly to provide more stable support for various components in the washing machine, thereby effectively improving the reliability and stability of the support assembly's support for the clothes processing device.
[0050] In one possible implementation, the support assembly is installed on the base liner by plugging, snapping, welding or bonding.
[0051] A second aspect of the present application provides a clothing processing device assembly, comprising a clothing processing device and any one of the above-mentioned packages, wherein the clothing processing device is placed in a receiving area of the package. BRIEF DESCRIPTION OF THE DRAWINGS
[0052] To more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present application. Those skilled in the art can also derive other drawings based on these drawings without inventive effort.
[0053] Figure 1 A schematic structural diagram of a clothes processing device assembly provided in an embodiment of the present application;
[0054] Figure 2 An exploded view of a clothes processing device assembly provided in an embodiment of the present application from one viewing angle;
[0055] Figure 3 A schematic structural diagram of the bottom of a clothes processing device provided in an embodiment of the present application;
[0056] Figure 4 A schematic structural diagram of a packaging of a clothing treatment device provided in an embodiment of the present application;
[0057] Figure 5 A schematic structural diagram of a support assembly provided in an embodiment of the present application, arranged on a backing;
[0058] Figure 6 A top view of a support assembly provided in an embodiment of the present application, arranged on a substrate;
[0059] Figure 7 A schematic structural diagram of a reinforcing rib structure within a support assembly provided in an embodiment of the present application;
[0060] Figure 8 A schematic structural diagram of another support assembly provided in an embodiment of the present application;
[0061] Figure 9 A schematic structural diagram of a support plate provided in an embodiment of the present application;
[0062] Figure 10 A schematic structural diagram of the carrier plate provided in an embodiment of the present application.
[0063] Reference numerals:
[0064] 10- Packaging of clothing treatment device;
[0065] 20-top cover;
[0066] 30-base lining; 31-first base lining portion; 32-second base lining portion;
[0067] 40-corner guard assembly; 41-first corner guard; 42-second corner guard; 43-third corner guard; 44-fourth corner guard;
[0068] 200-support assembly; 201-reinforcement rib structure; 212-support plate; 2121-first side; 2122-second side;
[0069] 213-carrying board; 2131-first connecting sub-board; 2132-second connecting sub-board; 2133-carrying sub-board;
[0070] 210-first support body;
[0071] 220- second support body;
[0072] 230- third support body;
[0073] 240- fourth support body;
[0074] 600-Clothes processing device;
[0075] 610-housing;
[0076] 620-cylinder assembly; 621-outer cylinder;
[0077] 630-motor;
[0078] 640-Counterweight;
[0079] 650-door body;
[0080] 700-Clothing handling device assembly. DETAILED DESCRIPTION
[0081] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0082] It should be noted that the brief descriptions of terms in this application are only for the purpose of facilitating the understanding of the embodiments described below, and are not intended to limit the embodiments of this application. Unless otherwise specified, these terms should be understood according to their ordinary and usual meanings.
[0083] In addition, the terms "comprises" and "comprising" and any variations thereof are intended to cover but not exclude inclusion, for example, a product or device comprising a list of components is not necessarily limited to those components expressly listed but may include other components not expressly listed or inherent to such product or device.
[0084] In the description of this application, it should be understood that the terms "center", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.
[0085] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature specified as "first" or "second" may explicitly or implicitly include one or more of such features. Throughout this application, unless otherwise specified, "plurality" means two or more.
[0086] In the description of this application, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.
[0087] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0088] Figure 1 This is a structural diagram of a clothes processing device assembly provided in an embodiment of the present application. Figure 2 This is an exploded view of a clothes processing device assembly provided in an embodiment of the present application from a certain perspective. Figure 3 This is a schematic structural diagram of the bottom of a clothing processing device provided in an embodiment of the present application.
[0089] The present application provides a clothing treatment device package 10 and a clothing treatment device assembly 700. The clothing treatment device assembly 700 may include the clothing treatment device package 10 and a clothing treatment device 600. The clothing treatment device 600 may be placed in the package so that the package can protect the clothing treatment device 600, thereby reducing or preventing damage to the clothing treatment device 600 during handling or transportation.
[0090] The clothes processing device 600 may be a drum washing machine, a pulsator washing machine, a semi-automatic washing machine, or other clothes washing devices. In the embodiment of the present application, the clothes processing device 600 is described as a drum washing machine.
[0091] See also Figure 1 and Figure 2 As shown, the clothing processing device 600 may include a shell 610, which is constructed as an external shell of the clothing processing device 600. The shell 610 can provide external decoration for the clothing processing device 600 to cover the various components that form the clothing processing device 600, thereby improving the aesthetics of the clothing processing device 600. The shell 610 can have a clothing loading and unloading port (not shown in the figure), and the user can place the clothes in the clothing processing device 600 through the clothing loading and unloading port so that the clothing processing device can clean the clothes.
[0092] For details, see Figure 3 As shown, the clothing treatment device 600 may further include a drum assembly 620. The drum assembly 620 may include an outer drum 621. The outer drum 621 may be disposed in the housing 610, and the drum opening of the outer drum 621 may face the clothing taking-in and putting-out opening.
[0093] The drum assembly 620 may further include an inner drum (not shown in the figure), which may be rotatably disposed in the outer drum 621 , with the drum opening of the inner drum also facing the clothing loading and unloading opening.
[0094] Continue to see Figure 2 As shown, the laundry processing device 600 may further include a door 650, which may be a portion of the housing 610 and formed on the front side of the housing. The front side of the housing refers to the side of the laundry processing device 600 that a user is positioned relative to when operating the laundry processing device 600. In other words, the front side of the housing 610 may also be understood as the front face of the laundry processing device 600. Operation buttons or touch keys (e.g., an on / off button, function option keys, temperature setting keys, etc.) may be provided on the front side of the housing 610 to facilitate user operation of the laundry processing device 600.
[0095] For example, the door body 650 can be arranged at the clothing access port and be rotatably connected to the rest of the shell 610 so that the door body 650 can cover the clothing access port. At the same time, the door body 650 can be easily opened to facilitate the placement of clothing into the inner drum through the clothing access port and the washing of the clothing by the clothing processing device 600.
[0096] See also Figure 3 As shown, the clothing processing device 600 may further include a motor 630, which may be located at the bottom of the outer drum 621 and arranged close to the rear side of the shell 610, wherein the rear side of the shell 610 refers to the side opposite to the front side of the shell 610, that is, the rear side of the shell 610 may be understood as the back side of the clothing processing device 600.
[0097] The motor 630 can be used to drive the inner drum to rotate along its axis. For example, the motor 630 and the inner drum can be connected via a belt. The motor 630 can drive the belt to rotate during rotation, and the belt can drive the inner drum to rotate during rotation. Thus, the motor 630 can drive the inner drum to rotate via the belt, so that the inner drum can clean the clothes inside.
[0098] The laundry processing device 600 may further include a counterweight 640, which may be disposed on a side of the outer drum 621 near the door 650. The counterweight 640 may increase the weight of the drum assembly 620 to reduce the vibration amplitude of the drum assembly 620 during rotation, thereby reducing or preventing vibration of the laundry processing device 600. This can improve the rotational stability of the drum assembly 620 and enhance the smooth operation of the laundry processing device 600.
[0099] See also Figure 1 and Figure 2 As shown, the packaging of the laundry treatment device may include a bottom liner 30, which may be understood as a supporting structure for the entire packaging, and each component forming the packaging may be located on the bottom liner 30. Furthermore, the bottom liner 30 may provide protection for the bottom of the laundry treatment device 600.
[0100] The package may further include a top cover 20 , which may be disposed on the top of the laundry processing apparatus 600 . The top cover 20 may provide protection for the top of the laundry processing apparatus 600 to reduce or prevent the top of the laundry processing apparatus 600 from being damaged by external impact.
[0101] The package may also include a corner guard assembly 40, the top end of which may be connected to the top cover 20, and the bottom end may be connected to the base 30. The top cover 20, the base 30 and the corner guard assembly 40 may be jointly enclosed to form a receiving area, which may be used to receive the clothing processing device 600.
[0102] For example, see Figure 2 As shown, the corner guard assembly 40 may include four corner guards as shown in the figure, and the four corner guards may be respectively a first corner guard 41, a second corner guard 42, a third corner guard 43 and a fourth corner guard 44. The four corner guards may be respectively located at the four corners of the laundry processing device 600 to provide protection for the corners of the laundry processing device 600.
[0103] However, during transportation, clothing processing devices are inevitably subject to bumps and collisions, which can damage the clothing processing devices. In particular, components such as the motor, drum assembly, and counterweight of the clothing processing device are heavy, and if the clothing processing device falls, it will generate a large impact force, causing damage to the clothing processing device.
[0104] To address the aforementioned issues, related art techniques employ a support assembly mounted on the base of a laundry processing device to support the motor, drum assembly, and counterweight. This support assembly is typically a single, compact, and centralized unit, resulting in a relatively concentrated support force for the motor, drum assembly, and counterweight. This results in poor support for these components and reduces the protective effect of the laundry processing device.
[0105] Furthermore, the packaging materials currently used for clothing processing devices are mostly made of expanded polystyrene (EPS) foam or expanded polypropylene (EPP) foam. The packaging's base lining and supporting components are all integrated structures. EPS foam is formed by foaming EPS particles, while EPP foam is formed by foaming EPP particles. The production process produces large amounts of flammable gases, posing a high safety hazard and being environmentally unfriendly. Furthermore, EPS and EPP foams are difficult to recycle after use, and most used EPS foam is incinerated or discarded, causing significant environmental damage.
[0106] To address the above issues, related art uses cardboard packaging to package clothing treatment devices. However, cardboard has poor waterproof properties and its structural strength rapidly decreases when exposed to moisture, making it difficult to effectively protect the clothing treatment device, thereby reducing the protective performance of the packaging.
[0107] In view of this, in the packaging of the clothing processing device of the embodiment of the present application, by arranging the first support body at a position close to the rear side of the base lining, the first support body can be aligned with the motor, so that the first support body effectively supports the motor, which can effectively improve the reliability and stability of the first support body's support of the motor. By arranging the tube support body on the first base lining portion and the second base lining portion, the tube support body can be distributed on both sides of the inner tube axis, so that the tube support body can support the outer tube 621 on both sides of the inner tube axis, which can effectively increase the contact area between the tube support body and the outer tube 621 and increase the support area of the tube support body on the outer tube 621. It can effectively improve the uniformity of the tube support body's support of the outer tube 621 and enhance the reliability and stability of the tube support body's support of the outer tube 621. By arranging the second support body at a position close to the base lining 650, the second support body can be effectively aligned with the counterweight block, so that the second support body can effectively support the counterweight block, thereby effectively improving the reliability and stability of the second support body's support of the counterweight block. By arranging the support assembly in the above manner, the uniformity and rationality of the distribution of each support body can be effectively improved, so that each support body in the support assembly can effectively support the corresponding component, thereby effectively improving the support effect of the support assembly on each component in the clothing processing device.
[0108] Furthermore, by making the support assembly from easily degradable and recyclable plastic, the support assembly can be recycled and reused, achieving excellent environmental performance and effectively improving the environmental performance of the support assembly. Furthermore, the support assembly is highly waterproof and moisture-resistant, and will not soften when exposed to water, without affecting the strength and rigidity of the support assembly. This effectively improves the overall structural stability of the support assembly and enhances its support and protection performance for the washing machine.
[0109] The packaging of the clothes processing device provided in the embodiment of the present application is described in detail below with reference to the accompanying drawings.
[0110] Figure 4 This is a schematic structural diagram of a packaging of a clothing processing device provided in an embodiment of the present application. Figure 5 A schematic structural diagram of a support assembly provided in an embodiment of the present application, arranged on a substrate.
[0111] See also Figure 2 and Figure 3 As shown, an embodiment of the present application provides a package 10 for a clothing treatment device. The package 10 for the clothing treatment device may further include a support assembly 200, which may be mounted on a base 30. For example, the base 30 and the support assembly 200 may be molded separately, and then the support assembly 200 and the base 30 may be assembled. This facilitates the demolding of the support assembly 200 and the base 30, simplifies the molds for producing the support assembly 200 and the base 30, and reduces the difficulty and cost of producing the support assembly 200 and the base 30.
[0112] For example, the base 30 may include a bottom plate and a bottom enclosure disposed on the bottom plate. The support assembly 200 may be located on the bottom plate, and the laundry treatment device 600 may be placed on the bottom plate and on the support assembly 200. The bottom enclosure may protect the periphery of the laundry treatment device 600 and may also limit the position of the laundry treatment device 600. This reduces or prevents movement of the laundry treatment device 600 on the base 30, thereby improving the reliability and stability of the placement of the laundry treatment device 600 on the base 30.
[0113] Among them, see Figure 4 As shown, the support assembly may include a plurality of support bodies, which may include a first support body 210. The first support body 210 may be disposed above and connected to the base 30. For example, the first support body 210 and the base 30 may be manufactured separately and then assembled together. For example, the first support body 210 and the base 30 may be connected by bonding, snapping, or buckling.
[0114] The first support 210 can be located on the bottom lining 30 near the rear side of the housing 610, that is, the first support 210 can be disposed near the back of the laundry processing device 600. The first support 210 can be configured to support the bottom of the motor 630 of the laundry processing device 600. Since the motor 630 is located at the bottom of the outer drum 621 and near the rear side of the housing 610, the first support 210 is disposed on the bottom lining 30 near the rear side of the housing 610. The first support 210 can be aligned with the motor 630, so that the first support 210 can accurately support the motor 630.
[0115] For example, the first support body 210 may have a first support surface that matches the bottom of the motor 630 , and the first support surface may fit the outer surface of the bottom of the motor 630 to improve the stability of the first support body 210 supporting the motor 630 .
[0116] See also Figure 4 and Figure 5 As shown, the support assembly 200 may further include a drum support body (e.g., a third support body 230 and a fourth support body 240). The drum support body may be disposed above and connected to the base liner 30, and may be configured to support the bottom of the outer drum 621. A first reference plane A is defined as a vertical plane passing through the axis of the inner drum. This means that the first reference plane A divides the inner drum into left and right parts. Left and right refer to the sides corresponding to the left and right hands of a user facing the front of the laundry processing device.
[0117] Wherein, the first reference plane A can divide the backing into the first backing portion 31 and the second backing portion 32, and at least part of the cylinder support body can be located at the first backing portion 31 and at least part of the second backing portion 32. That is, the first reference plane A can divide the backing 30 into two left and right backing portions, which can be understood as the first backing portion 31 and the second backing portion 32 being located on both sides of the inner cylinder axis. The cylinder support body is located at the first backing portion 31 and the second backing portion 32 respectively, so that the cylinder support body can be located on both sides of the inner cylinder axis. The cylinder support body can be effectively contacted with the cylinder assembly 620, so that the cylinder support body can support both sides of the outer cylinder 621 axis. The uniformity of the cylinder support body supporting the outer cylinder 621 can be effectively improved, and the reliability and stability of the cylinder support body supporting the outer cylinder 621 can be effectively improved.
[0118] The support assembly 200 may further include a second support body 220. The second support body 220 may be disposed above and connected to the base liner 30. The second support body 220 may be located at a position of the base liner 30 near the door body 650. For example, the second support body 220 may be located on a side of the tub support body near the door body 650 of the laundry processing device 600. The second support body 220 may be configured to support the counterweight 640 of the laundry processing device 600. Since the counterweight 640 is disposed at one end of the outer tub 621 near the door body 650, by disposing the second support body 220 on the side of the base liner near the door body 650, the second support body 220 and the counterweight 640 can be aligned, so that the second support body 220 can effectively support the counterweight 640, thereby effectively improving the reliability and stability of the support between the second support body 220 and the counterweight 640.
[0119] Support assembly 200 can be a plastic component made from one or more of polypropylene (PP), polyethylene (PE), polyvinyl chloride (PVC), polylactide (PLA), polybutylene adipate / terephthalate (PBAT), and polybutylene succinate (PBS). In other words, support assembly 200 is not EPS or EPP, nor is it a foam component. These plastic materials are easily degradable and recyclable, exhibiting excellent environmental performance, and can effectively improve the environmental performance of support assembly 200.
[0120] Moreover, compared with cardboard materials, the above-mentioned plastic parts also have better waterproof and moisture-proof properties. They will not soften when exposed to water and will not affect the strength and rigidity of the support component 200. They can effectively improve the overall structural stability of the support component 200 and enhance the support and protection performance of the clothing processing device 600.
[0121] For example, the support assembly 200 can be formed by vacuum forming, or by extrusion, injection molding, or the like. The resin material can be virgin or recycled. Virgin refers to unused resin raw materials, while recycled refers to sprue or post-consumer recycled materials.
[0122] In the embodiment of the present application, by arranging the first support body 210 at a position close to the rear side of the shell on the bottom lining 30, the first support body 210 can be aligned with the motor 630, so that the first support body 210 can effectively support the motor 630, which can effectively improve the reliability and stability of the first support body 210 supporting the motor 630. By arranging the tube support body on the first bottom lining portion 31 and the second bottom lining portion 32, the tube support body can be distributed on both sides of the inner cylinder axis, and the tube support body can support the outer cylinder 621 on both sides of the inner cylinder axis, which can effectively increase the contact area between the tube support body and the outer cylinder 621, and increase the support area of the tube support body on the outer cylinder 621. It can effectively improve the uniformity of the tube support body's support of the outer cylinder 621, and enhance the reliability and stability of the tube support body's support of the outer cylinder 621. By positioning the second support body 220 on the bottom lining near the door body 650, the second support body 220 and the counterweight 640 are effectively aligned, enabling the second support body 220 to effectively support the counterweight 640, thereby effectively improving the reliability and stability of the second support body 220 supporting the counterweight 640. Arranging the support assembly 200 in this manner effectively improves the uniformity and rationality of the distribution of the various support bodies, allowing each support body in the support assembly 200 to effectively support the corresponding component, thereby effectively improving the support effect of the support assembly 200 on the various components in the laundry processing device 600.
[0123] Moreover, when the clothing processing device 600 falls during transportation, the support assembly 200 can absorb the impact force, effectively reduce the impact force on the clothing processing device 600, reduce or avoid damage to the clothing processing device 600 during the fall, thereby effectively improving the protection of the packaging to the clothing processing device 600.
[0124] Figure 6 A top view of a support assembly provided in an embodiment of the present application, arranged on a substrate.
[0125] See also Figure 5 and Figure 6 As shown, the cylinder support body may include a third support body 230 and a fourth support body 240, and the third support body 230 and the fourth support body 240 may be located on the first bottom lining portion 31 and the second bottom lining portion 32, respectively, that is, the third support body 230 and the fourth support body 240 are located on both sides of the first reference plane A, respectively. In other words, it can be understood that the third support body 230 and the fourth support body 240 are located on the inner cylinder axis (axis direction is Figure 6 The third support body 230 can be located at a position of the first support body 210 close to the front side of the shell, that is, the third support body 230 can be located on the side of the first support body 210 close to the door body 650 of the clothing processing device. For example, the fourth support body 240 can be located on the side of the third support body 230 away from the door body 650, and the third support body 230 can support the end of the barrel assembly 620 close to the door body 650. The fourth support body 240 can support the end of the barrel assembly 620 away from the door body 650. In other words, it can be understood that the third support body 230 can support the front end of the barrel assembly 620, and the fourth support body 240 can support the rear end of the barrel assembly 620. In this way, the barrel support body can support both the front end and the rear end of the outer barrel 621, which can effectively improve the uniformity of the distribution of the support points of the barrel support body on the barrel assembly 620, thereby effectively improving the reliability and stability of the barrel support body supporting the barrel assembly 620.
[0126] Furthermore, the third support body 230 can support the outer cylinder 621 on one side of the inner cylinder axis, while the fourth support body 240 can support the outer cylinder 621 on the other side of the inner cylinder axis. This allows the third support body 230 and the fourth support body 240 to support the outer cylinder 621 on both sides of the inner cylinder axis, respectively. This effectively improves the uniformity of the support provided by the support bodies on both sides of the inner cylinder axis, thereby effectively improving the reliability and stability of the support provided by the support bodies on the outer cylinder 621. Furthermore, the support bodies on both sides of the outer cylinder 621 axis can absorb impact forces on the cylinder assembly 620, thereby effectively improving the protective effect of the cylinder assembly 620.
[0127] Continue to see Figure 5 and Figure 6 As shown, the third support body 230 and the fourth support body 240 can be distributed along the axis of the inner drum. In other words, it can be understood that one of the third support body 230 and the fourth support body 240 can be located near the front side of the laundry processing device 600, and the other can be located near the rear side of the laundry processing device 600. For example, the third support body 230 can be located near one end of the door body 650, and the fourth support body 240 can be located away from the end near the door body 650. In other words, the third support body 230 and the fourth support body 240 are respectively located at the front and rear ends of the outer drum 621.
[0128] In this way, the third support body 230 and the fourth support body 240 can support the two ends of the outer cylinder 621 respectively, which can effectively improve the uniformity of the distribution of the cylinder support body on the axis of the inner cylinder, and can effectively improve the uniformity of the support of the cylinder support body to the outer cylinder 621 on the axis, so that the cylinder support body can provide uniform support to the outer cylinder 621 on both sides of the axis of the inner cylinder and in the axial direction, thereby effectively improving the reliability and stability of the support of the cylinder support body to the outer cylinder 621.
[0129] In one possible implementation, the third support 230 and the fourth support 240 may be distributed along the axis of the inner cylinder, and the third support 230 and the fourth support 240 may at least partially overlap along the axis of the inner cylinder. That is, the third support 230 and the fourth support 240 are respectively located on either side of the axis of the inner cylinder, with the third support 230 located at the end of the housing away from the door 650 and the fourth support 240 located at the end of the housing closer to the door 650, and the third support 230 and the fourth support 240 partially overlap along the axis of the cylinder assembly 620.
[0130] In this way, the tube support body can be distributed on both sides of the axis of the inner tube and along the direction of the axis, and has support on the axis of the inner tube, which can effectively improve the stability of the tube support body's support of the outer tube 621 in the direction of the axis of the inner tube, thereby effectively improving the uniformity and reliability of the tube support body's support of the outer tube 621.
[0131] For example, the third support 230 and the fourth support 240 may be connected at overlapping locations along the axis of the barrel assembly 620. For example, the third support 230 and the fourth support 240 may be connected by bonding, clamping, or the like, or, in some examples, the third support 230 and the fourth support 240 may be an integral structure.
[0132] In this way, the third support body 230 and the fourth support body 240 can be constrained to each other, which can effectively reduce or avoid the movement or displacement of the third support body 230 and the fourth support body 240, and can effectively improve the firmness and reliability of the third support body 230 and the fourth support body 240 on the base liner 30, which helps to improve the overall structural stability of the tube support body, thereby effectively improving the reliability and stability of the tube support body's support of the outer tube 621.
[0133] Alternatively, in some examples, the third support body 230 and the fourth support body 240 may not be connected, and the third support body 230 and the fourth support body 240 may be independently disposed on both sides of the axis of the inner cylinder.
[0134] In another possible implementation, see Figure 6 As shown, the third support 230 and the fourth support 240 can be distributed along the axis of the inner cylinder, and the third support 230 and the fourth support 240 can be staggered on the axis of the inner cylinder. For example, the third support 230 and the fourth support 240 can be located at opposite ends of the axis of the cylinder assembly 620. For example, the third support 230 can be located along the axis of the inner cylinder and near the front end of the housing 610, and the fourth support 240 can be located along the axis of the inner cylinder and near the rear end of the housing 610.
[0135] In this way, the third support body 230 and the fourth support body 240 can evenly support the outer cylinder 621 on the axis of the inner cylinder. On the premise of meeting the support requirements in the direction of the axis of the inner cylinder, the dimensions of the third support body 230 and the fourth support body 240 on the axis of the inner cylinder can be reduced, which can reduce the production cost of the third support body 230 and the fourth support body 240.
[0136] The third support 230 and the second support 220 may be connected, for example, by bonding, snapping, or buckling. Alternatively, the third support 230 and the second support 220 may be an integrated structure, so that the third support 230 and the second support 220 form a single unit.
[0137] In this way, the third support body 230 and the second support body 220 can provide restraint force to each other, which can effectively reduce or avoid the movement or displacement of the third support body 230 and the second support body 220, and can effectively improve the reliability and stability of the third support body 230 and the second support body 220 on the substrate 30, thereby improving the overall structural stability of the support assembly 200.
[0138] For some examples, see Figure 5 and Figure 6As shown, the third support body 230 and the first support body 210 can be spaced apart along the axis of the drum assembly 620. For example, the third support body 230 can be located on a side of the first support body 210 close to the door body 650 and spaced apart from the first support body 210. The first support body 210 can support the motor 630 at the end of the drum assembly 620 facing away from the door body 650, while the third support body 230 can support the end of the drum assembly 620 close to the door body 650. Enabling the first support body 210 and the third support body 230 to support the laundry processing device 600 at its front and rear ends, respectively, can improve the uniformity of the support assembly 200's support for the laundry processing device. Moreover, while ensuring support for the laundry processing device 600, the volume of the support assembly 200 can be reduced, thereby reducing the production cost of the support assembly 200.
[0139] Alternatively, in some examples, the third support body 230 may further extend along the axis of the barrel assembly 620 to the first support body 210 and be connected to the first support body 210. This can reduce or prevent shaking of the third support body 230 and the first support body 210, help improve the firmness and reliability of the third support body 230 and the first support body 210 on the base 30, and enhance the overall structural stability of the support assembly 200.
[0140] In the embodiment of the present application, the base 30, the top cover 20 and the corner protector assembly 40 can also be plastic parts. For example, the base 30, the top cover 20 and the corner protector assembly 40 can be plastic parts made of one or more resin materials selected from polypropylene (PP for short), polyethylene (PE for short), polyvinyl chloride (PVC for short), polylactide (PLA for short), polybutylene adipate / terephthalate (PBAT for short), and polybutylene succinate (PBS for short). That is, the base 30, the top cover 20 and the corner protector assembly 40 are not EPS and EPP, and are not foamed foam parts. The above-mentioned plastic materials are easy to degrade, can be recycled and reused, have good environmental performance, and can effectively improve the environmental performance of the base 30, the top cover 20 and the corner protector assembly 40.
[0141] For example, the base 30, the top cover 20 and the corner protection assembly 40 can be formed by vacuum molding, or the support assembly 200 can be formed by extrusion, injection molding, etc. The resin material can be virgin material or recycled material.
[0142] The molding material of support assembly 200 may also contain a reinforcing agent. For example, the reinforcing agent may be calcium carbonate, talc, mica, glass fiber, barium sulfate, magnesium sulfate whiskers, plant fiber, or any other material capable of enhancing the rigidity of the resin. The reinforcing agent can increase the rigidity of the resin material, thereby increasing the overall structural strength and stiffness of support assembly 200 and improving the overall structural stability of support assembly 200.
[0143] The molding material of the support assembly 200 may also contain a toughening agent. For example, the toughening agent may be ethylene propylene diene monomer (EPDM), polyolefin elastomer (POE), thermoplastic elastomer (TPE), styrene (SBS), hydrogenated styrene-butadiene block copolymer (SEBS), or ethylene-vinyl acetate copolymer (EVA). This can increase the toughness of the support assembly 200 and reduce or prevent the support assembly 200 from breaking.
[0144] The molding materials of the base liner 30, top cover 20, and corner protector assembly 40 may also contain a reinforcing agent. For example, the reinforcing agent may be calcium carbonate, talc, mica, glass fiber, barium sulfate, magnesium sulfate whiskers, plant fiber, or any other material capable of enhancing the rigidity of the resin. The reinforcing agent can increase the rigidity of the resin material, thereby increasing the overall structural strength and rigidity of the base liner 30 and improving the overall structural stability of the package.
[0145] The molding materials of the base liner 30, top cover 20, and corner protector assembly 40 may also contain a toughening agent. For example, the toughening agent may be ethylene propylene diene monomer (EPDM), polyolefin elastomer (POE), thermoplastic elastomer (TPE), styrene (SBS), hydrogenated styrene-butadiene block copolymer (SEBS), or ethylene-vinyl acetate copolymer (EVA). This can increase the toughness of the base liner 30 and reduce or prevent the base liner 30 from breaking.
[0146] For example, the support assembly 200 is mounted on the plastic base 30 by snapping, buckling, welding, or gluing. This can effectively improve the reliability and stability of the connection between the support assembly 200 and the base 30, facilitate the assembly of the support assembly 200 and the base 30, and improve the overall assembly efficiency of the package.
[0147] For example, a card hole can be opened on the base 30, and each support body in the support assembly 200 can be carded in the card hole, so that the support assembly 200 can be installed on the base 30 by cooperating with the card hole, thereby effectively improving the reliability and stability of the support assembly 200 on the base 30.
[0148] In one possible implementation, the first support 210, the second support 220, the third support 230, and the fourth support 240 can be independent, one-piece structures. For example, the first support 210, the second support 220, the third support 230, and the fourth support 240 can be formed separately and then mounted on the base 30.
[0149] The support assembly 200 may be a hollow member, and the wall thickness of the support assembly 200 may be 1 mm to 4 mm. For example, the wall thickness of the support assembly 200 may be 1.5 mm, 2 mm, 2.5 mm, or 4 mm. This increases the wall thickness of the support assembly 200, helping to improve the structural strength and rigidity of the support assembly 200, thereby effectively improving the reliability and stability of the support assembly 200 in supporting the laundry processing device 600.
[0150] Moreover, the cavity in the support assembly 200 can also absorb impact force, has a good buffering effect, and can effectively improve the protection effect of the support assembly 200 on various components in the clothing processing device 600.
[0151] Figure 7 A schematic structural diagram of a reinforcing rib structure within a support assembly provided in an embodiment of the present application.
[0152] See also Figure 7 As shown, the interior of the support assembly 200 may include a reinforcing rib structure 201, which may be connected to the inner wall of the support assembly 200. The reinforcing rib structure 201 may provide support for the hollow structure of the support assembly 200, thereby increasing the strength and rigidity of the support assembly 200, effectively reducing or preventing collapse or deformation of the support assembly 200, and thereby effectively improving the reliability and stability of the support assembly 200 in supporting the laundry processing device 600.
[0153] Figure 8 A schematic diagram of the structure of another support assembly provided in an embodiment of the present application, Figure 9 A schematic diagram of the structure of the support plate provided in an embodiment of the present application, Figure 10 A schematic structural diagram of the carrier plate provided in an embodiment of the present application.
[0154] Alternatively, in another possible implementation, each support body in the support assembly 200 may also be formed by plugging together a plurality of structural members. Figure 8 and Figure 9 As shown, each support body in the support assembly 200 may include a support plate 212 and a bearing plate 213, Figure 9 As shown, the support plate 212 may include a first side 2121 and a second side 2122 . The first side 2121 may be mounted on the base 30 , and the second side 2122 may support the carrying plate 213 .
[0155] For details, see Figure 9 and Figure 10 As shown, the supporting plate 213 may include a supporting sub-plate 2133, a first connecting sub-plate 2131 and a second connecting sub-plate 2132. The two ends of the supporting sub-plate 2133 can be connected to the first connecting sub-plate 2131 and the second connecting sub-plate 2132 respectively. The first connecting sub-plate 2131 and the second connecting sub-plate 2132 can be bent relative to the supporting sub-plate 2133, and the first connecting sub-plate 2131 and the second connecting sub-plate can be plugged into the second side 2122 of the support plate 212.
[0156] The supporting sub-plate 2133 can be used to contact the laundry processing device 600, and the support plate 212 can support the supporting plate 213 to prop up the supporting plate 213 so that the supporting plate 213 can support various components in the laundry processing device 600. This can effectively improve the strength of the support assembly 200, enabling the support assembly 200 to provide more stable support for various components in the laundry processing device 600, thereby effectively improving the reliability and stability of the support assembly 200 in supporting the laundry processing device 600.
[0157] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some or all of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present application.
[0158] For ease of explanation, the above description has been presented in conjunction with specific embodiments. However, the above exemplary discussion is not intended to be exhaustive or to limit the embodiments to the specific forms disclosed above. Based on the above teachings, various modifications and variations are possible. The above embodiments have been selected and described to better explain the principles and practical applications, thereby enabling those skilled in the art to better utilize the embodiments and various variations of the embodiments suitable for specific use considerations.
Claims
1. A package for a clothes treating device, applied to the clothes treating device, the clothes treating device comprising: a housing configured as an outer shell of the laundry treating apparatus; an outer cylinder, the outer cylinder being arranged inside the shell; an inner cylinder, the inner cylinder being arranged inside the outer cylinder; a door body, the door body being a part of the shell and formed on the front side of the shell; a motor, the motor being located at the bottom of the outer cylinder and disposed close to the rear side of the shell, and being used to drive the inner cylinder to rotate along the axis of the inner cylinder; A counterweight block is provided on a side of the outer cylinder close to the door body; It is characterized in that the packaging of the clothing processing device includes: Backing; Top cover; A corner guard assembly, wherein the top end of the corner guard assembly is connected to the top cover, and the bottom end of the corner guard assembly is connected to the bottom lining; The top cover, the bottom lining and the corner guard assembly are arranged to form a receiving area, and the receiving area is used to receive the clothes processing device; Support components; The support assembly includes a plurality of support bodies, and the plurality of support bodies include at least: a first support body, the first support body being disposed above the base and connected to the base, the first support body being located at a position of the base close to the rear side of the housing, and the first support body being configured to support the bottom of the motor; a cylinder support body, the cylinder support body being disposed above the base liner and connected to the base liner and being configured to support the bottom of the outer cylinder; A first reference plane is defined, the first reference plane being a vertical plane and passing through the axis of the inner cylinder, the first reference plane dividing the base lining into a first base lining portion and a second base lining portion, the cylinder support body being at least partially located in the first base lining portion and the cylinder support body being at least partially located in the second base lining portion; The second support body is provided above the base lining and connected to the base lining. The second support body is located at a position of the base lining close to the door body. The second support body is constructed as a counterweight block supported by the clothing processing device.
2. The packaging of the clothes treating device according to claim 1, characterized in that: The barrel support includes a third support and a fourth support; The third support body and the fourth support body are respectively located on the first base portion and the second base portion, and at least the third support body is located at a position of the first support body close to the front side of the shell.
3. The packaging of the clothes treating device according to claim 2, characterized in that: The third support body and the fourth support body are distributed along the axis of the inner cylinder.
4. The packaging of the clothes treating device according to claim 3, characterized in that: The third support body and the fourth support body at least partially overlap on the axis of the inner cylinder.
5. The packaging of the clothes treating device according to claim 4, characterized in that: The third support body and the fourth support body are connected along the overlapping portion on the axis of the inner cylinder.
6. The packaging of the clothes treating device according to claim 3, characterized in that: The third support body and the fourth support body are staggered on the axis of the inner cylinder.
7. The packaging of the clothes treating device according to any one of claims 2 to 6, characterized in that: The third support body is connected to the second support body.
8. The packaging of the clothes treating device according to claim 7, characterized in that: The third support body and the first support body are spaced apart from each other along the axis of the inner cylinder.
9. The packaging of the clothes treating device according to claim 7, characterized in that: The third support body extends along the axis of the outer cylinder to the first support body and is connected to the first support body.
10. The packaging of the clothes treating device according to any one of claims 1 to 6, characterized in that: The support assembly, the base lining, the top cover and the corner protection assembly are plastic parts made of one of polypropylene, polyethylene, polyvinyl chloride, polylactide, polybutylene adipate terephthalate and polybutylene succinate.
11. The packaging of the clothes treating device according to any one of claims 2 to 6, characterized in that: The first support body, the second support body, the third support body and the fourth support body are independent integral structures.
12. The packaging of the clothes treating device according to claim 11, characterized in that: The support component is a hollow component, and the wall thickness of the support component is 1mm to 4mm.
13. The packaging of the clothes treating device according to claim 12, characterized in that: The interior of the support assembly is provided with a reinforcing rib structure, and the reinforcing rib structure is connected to the inner wall of the support assembly.
14. The packaging of the clothes treating device according to any one of claims 1 to 6, characterized in that: Each of the support bodies in the support assembly includes a support plate and a bearing plate; The support plate includes a first side and a second side, the first side is mounted on the base, and the second side supports the carrier plate; The carrier plate includes a carrier sub-plate, a first connecting sub-plate, and a second connecting sub-plate, wherein two ends of the carrier sub-plate are connected to the first connecting sub-plate and the second connecting sub-plate respectively, the first connecting sub-plate and the second connecting sub-plate are bent relative to the carrier sub-plate, and the first connecting sub-plate and the second connecting sub-plate are plugged into the second side of the support plate; The carrying sub-plate is used for contacting the clothes treating device.
15. The packaging of the clothes treating device according to any one of claims 1 to 6, characterized in that: The support assembly is installed on the base liner by plugging, clamping, welding or bonding.
16. A clothes processing device assembly, characterized in that: The invention comprises a clothes treating device and the package according to any one of claims 1 to 15, wherein the clothes treating device is placed in the accommodating area of the package.