Package of laundry treatment device and laundry treatment device assembly

By using a packaging structure formed by stacking plastic hollow boards, the problems of traditional packaging materials' lack of environmental friendliness and support are solved, and an environmentally friendly and recyclable buffer support solution is provided to ensure the stability and safety of the clothing processing device during transportation.

CN223328070UActive Publication Date: 2025-09-12HISENSE(SHANDONG)REFRIGERATOR CO LTD
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Patent Information

Application Number
CN202422142015.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-09-12
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The packaging materials of existing clothing treatment devices, such as expanded polystyrene, are difficult to recycle and degrade, and are environmentally unfriendly. In addition, the support of all-paper packaging decreases after absorbing moisture, resulting in poor protection.

Method used

Plastic hollow boards are used as the base lining, and the packaging structure formed by stacking, combined with corner guard components and a top cover, forms a storage area for the clothing processing device. The hollow cavity in the plastic hollow board provides cushioning and support to ensure stability during transportation.

Benefits of technology

An environmentally friendly and recyclable packaging structure is achieved, which can effectively support and cushion the clothing treatment device, avoid damage during transportation, and maintain stability and protection effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model belongs to the packaging technology, and provides a package of a clothes treatment device and a clothes treatment device assembly, and the package comprises a bottom lining, a corner protection assembly and a top cover. The bottom lining and the top cover are oppositely arranged, and the corner protection assembly is located between the bottom lining and the top cover, so that the bottom lining, the top cover and the corner protection assembly can define a space used for containing the clothes processing device. The clothes processing device is arranged on the bottom lining, and the corner protection assemblies can protect corners of the clothes processing device and limit the clothes processing device. The bottom lining is formed by stacking a plurality of plastic plates, the plurality of plastic plates comprise hollow plastic plates, and the hollow plastic plates have certain elasticity.
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Description

Technical Field

[0001] The present disclosure relates to packaging technology, and more particularly to packaging of a clothing processing device and a clothing processing device assembly. Background Art

[0002] The laundry processing device is a cleaning appliance for washing clothes, which may include washing machines such as washing machines, dryers, and shoe washers. When transporting the washing device, an outer packaging structure needs to be wrapped around the washing device to protect the washing device.

[0003] Currently, the packaging of clothing processing devices is made of traditional packaging material expanded polystyrene (EPS), but expanded polystyrene (EPS) is difficult to recycle, difficult to degrade, and has low environmental protection. To address the low environmental protection of traditional packaging materials, related technologies use all-paper packaging as the packaging material for clothing processing devices.

[0004] However, although all-paper packaging has good protective effects, its support will drop rapidly after absorbing moisture, and it will lose its protective effect on the packaged items. Utility Model Content

[0005] Currently, the packaging structure of a washing machine adopts a cardboard structure or foamed plastic. The cardboard structure has poor moisture resistance. After absorbing moisture, the supporting properties of the cardboard will be greatly reduced, resulting in reduced stability and reliability of the packaging structure. The foamed plastic is not environmentally friendly. To solve this problem, some embodiments of the present disclosure provide a packaging for a clothing processing device and a clothing processing device assembly.

[0006] In a first aspect, some embodiments provide packaging for a clothing processing device, comprising: a base lining, a corner guard assembly, and a top cover. The corner guard assembly is disposed on the base lining. The top cover is disposed on the corner guard assembly, the top cover being opposite and spaced apart from the base lining. The base lining, the corner guard assembly, and the top cover enclose a housing area for accommodating the clothing processing device. The base lining includes a bottom plate, which includes a plurality of stacked plastic sheets, wherein the plurality of plastic sheets include hollow plastic sheets.

[0007] In the packaging of the clothing treatment device provided by the present disclosure, a base lining and a top cover are arranged opposite each other, and a corner guard assembly is located between the base lining and the top cover, so that the base lining, the top cover, and the corner guard assembly can be arranged to form a storage area for accommodating the clothing treatment device. The clothing treatment device is arranged on the base lining, and the corner guard assembly can protect the edges and corners of the clothing treatment device and limit the position of the clothing treatment device. The base lining can bear the weight of the clothing treatment device and is formed by stacking multiple plastic plates. At least some of the plastic plates are hollow structures, that is, a hollow cavity is provided in the plastic plates, and the hollow cavity contains air, so that the plastic plates have a certain degree of elasticity. In this way, the base lining can provide cushioning for the clothing treatment device when supporting it. When the clothing treatment device is placed on the base lining, and when the clothing treatment device is shaken during transportation, the base lining can also serve to cushion the clothing treatment device and prevent damage to the clothing treatment device. The stacking of multiple plastic plates gives the base lining better structural strength, which can fully support the clothing treatment device and maintain stability during transportation.

[0008] In a second aspect, the present disclosure further provides a clothing treatment device assembly, comprising a clothing treatment device and a package of the above-mentioned clothing treatment device, wherein the clothing treatment device is arranged on the base liner.

[0009] The clothing treatment device assembly includes the above-mentioned clothing treatment device packaging, so that the clothing treatment device can remain stable when placed in the clothing treatment packaging, and during the transportation and handling of the clothing treatment device assembly, the clothing treatment device packaging can support the clothing treatment device and buffer the clothing treatment device, making the clothing treatment device safer and more reliable during transportation. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] Figure 1 is a schematic diagram of a clothes treating apparatus assembly according to some embodiments;

[0011] Figure 2 for Figure 1 Exploded view of the clothes handling device assembly;

[0012] Figure 3 is a schematic diagram of a bottom side of a clothes treating apparatus according to some embodiments;

[0013] Figure 4 is a schematic diagram of a motor of a clothes treating apparatus according to some embodiments;

[0014] Figure 5 for Figure 4 Enlarged view of the center circle A;

[0015] Figure 6A is a schematic diagram of a bottom corner of a clothes treating apparatus according to some embodiments;

[0016] Figure 6Bis a schematic diagram of a side wall of a clothes treating apparatus according to some embodiments;

[0017] Figure 6C is a schematic diagram of another side wall of a clothes treating apparatus according to some embodiments;

[0018] Figure 7 is a schematic diagram of the internal structure of a bottom liner in the packaging of a clothes treating device according to some embodiments;

[0019] Figure 8 is a schematic diagram of a support assembly of a package of a laundry treating apparatus according to some embodiments;

[0020] Figure 9 is a schematic top view of a bottom liner of a package of a clothes treating device according to some embodiments;

[0021] Figure 10 is a schematic diagram of a bottom plate and a bottom enclosure of a package of a clothes treating apparatus according to some embodiments;

[0022] Figure 11 is a schematic diagram of a support plate and a carrying plate of a package of a clothes treating apparatus according to some embodiments;

[0023] Figure 12 is a schematic diagram of an insertion interface of a bottom liner of a package of a laundry treatment device according to some embodiments;

[0024] Figure 13 is a schematic diagram of a support plate of a package of a laundry treating apparatus according to some embodiments;

[0025] Figure 14 is a schematic diagram of a carrying plate of a package of a laundry treatment device according to some embodiments;

[0026] Figure 15 is a schematic diagram showing a first supporting body as an integrated structure in the packaging of a clothes treating apparatus according to some embodiments;

[0027] Figure 16 is a schematic diagram of a reinforcing rib structure in the packaging of a clothes treating device according to some embodiments;

[0028] Figure 17 is a schematic top view of a support body in a package of a clothes treating device according to some embodiments, wherein the support body is an integrated structure;

[0029] Figure 18 is a schematic diagram of a second support body of a clothes treating apparatus packaging according to some embodiments;

[0030] Figure 19 is a schematic diagram of a fourth support body of a clothes treating apparatus packaging according to some embodiments;

[0031] Figure 20A is a schematic diagram of a third support body of a clothes treating apparatus packaging according to some embodiments;

[0032] Figure 20B A schematic diagram of a pad packaged for a laundry treatment device according to some embodiments;

[0033] Figure 20C is a schematic diagram of a buffer support member provided according to some embodiments;

[0034] Figure 21 A schematic diagram of the main structure of a substrate provided according to some embodiments;

[0035] Figure 22 is another schematic diagram of the main structure of a backing provided according to some embodiments;

[0036] Figure 23 A schematic top view of a structure in which a connecting portion is located on a substrate according to some embodiments;

[0037] Figure 24 A bottom view schematic diagram of a structure in which a connecting portion is located on a bottom liner according to some embodiments;

[0038] Figure 25 This is another schematic top view of a structure in which the connecting portion is located on a substrate according to some embodiments;

[0039] Figure 26 Another bottom view schematic diagram of a structure in which the connecting portion is located on the bottom liner according to some embodiments;

[0040] Figure 27 is another schematic top view of a structure in which the connecting portion is located on a substrate according to some embodiments;

[0041] Figure 28 is another bottom view schematic diagram of a structure in which the connecting portion is located on the bottom liner according to some embodiments;

[0042] Figure 29 A schematic diagram of the main structure of a front corner guard provided according to some embodiments;

[0043] Figure 30 is another schematic diagram of the main structure of the front corner guard provided according to some embodiments;

[0044] Figure 31 A schematic diagram of a main structure of a rear corner guard provided according to some embodiments;

[0045] Figure 32 is another schematic diagram of the main structure of the rear corner guard provided according to some embodiments;

[0046] Figure 33 is another schematic diagram of the main structure of a package provided according to some embodiments;

[0047] Figure 34 A schematic diagram of a connection structure of a package and a support bar according to some embodiments;

[0048] Figure 35 A schematic diagram of another connection structure of a package and a support bar according to some embodiments;

[0049] Figure 36 is a schematic structural diagram of packaging of a clothes treating device according to some embodiments;

[0050] Figure 37 is a schematic structural diagram of a top cover of a package of a clothes treating device according to some embodiments;

[0051] Figure 38 is another structural schematic diagram of a top cover of a package of a clothes treating device according to some embodiments;

[0052] Figure 39 is a partial schematic diagram of the outer surface of a top cover of a package of a clothes treating device according to some embodiments;

[0053] Figure 40 is a partial schematic diagram of the inner surface of a top cover of a package of a clothes treating device according to some embodiments;

[0054] Figure 41 is a schematic diagram of the connection between the top cover and the corner guard assembly of the packaging of the clothing treatment device provided according to some embodiments;

[0055] Figure 42 is another structural schematic diagram of a top cover of a package of a clothes treating device according to some embodiments;

[0056] Figure 43 is another structural schematic diagram of a top cover of a package of a clothes treating device according to some embodiments;

[0057] Figure 44 is another partial schematic diagram of the inner surface of the top cover of the package of the laundry treatment device provided according to some embodiments.

[0058] Figure numerals: 10-packaging of the clothing treatment device, 20-top cover, 21-top plate, 22-top enclosure, 41-first corner guard, 42-second corner guard, 221-first enclosure portion, 212-blocking member, 222-second enclosure portion, 223-third enclosure portion, 2210-first hollow chamber, 2211-installation portion, 2212-bottom of the groove, 2213-third inner wall surface, 2214-arc-shaped bending portion, 2230-second hollow chamber, 2231-first side enclosure, 2232-second side enclosure, 101-protective notch, 102-positioning groove, 401-positioning portion, 1011-first edge, 1012-second edge, 1013-third Edge, 30-bottom lining, 31-bottom plate, 32-bottom enclosure, 311-accommodation recess, 321-fourth enclosure, 322-fifth enclosure, 323-sixth enclosure, 33-plug interface, 34-first lining, 35-second lining, 36-connecting part, 40-corner guard assembly, 41-front corner guard, 411-first protection part, 4111-avoidance port, 412-second protection part, 42-rear corner guard, 421-third protection part, 422-fourth protection part, 44-butt surface, 45-protection surface, 46-support part, 50-plastic hollow board, 60-plastic reinforcement plate, 61-weight reduction cavity, 70-cardboard 80-buffer, 100-support strip, 200-support assembly, 201-reinforcement rib structure, 210-first support body, 211-first support surface, 2111-first support area, 2112-second support area, 2113-first avoidance area, 212-support plate, 2121-first side, 2122-second side, 213-carrying plate, 2131-first connecting sub-plate, 2132-second connecting sub-plate, 2133-carrying sub-plate, 214-connecting plate, 220-second support body, 220a-second support surface, 220b-third support area, 220c-fourth support area, 220d-second avoidance area, 230-third support body, 231-third support surface, 2 32-third avoidance area, 240-fourth support body, 241-fourth supporting surface, 2411-fifth supporting area, 2412-fourth avoidance area, 250-first layer of plastic hollow plate, 260-barrier, 300-buffer support, 400-pad, 600-clothing processing device, 610-shell, 611-bottom corner, 6101-first outer wall, 6102-second outer wall, 6103-third outer wall, 6104-fourth outer wall, 620-outer cylinder, 630-motor, 640-counterweight, 650-door body, 660-reinforcement rib, 660a-support area, 661-protrusion, 662-through hole, 700-clothing processing device assembly. DETAILED DESCRIPTION

[0059] In order to make the function, implementation mode and advantages of the present application clearer, the exemplary implementation mode of the present application will be clearly and completely described below in combination with the drawings in the exemplary embodiments of the present application. Obviously, the described exemplary embodiments are only part of the embodiments of the present application, not all of the embodiments.

[0060] 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.

[0061] 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.

[0062] 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.

[0063] The terms "first" and "second" are used solely for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features being referred to. Therefore, 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.

[0064] 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.

[0065] The following will be combined with some drawings to clearly and completely describe the technical solutions in some embodiments of the present application. Obviously, the embodiments described are only some of the embodiments of the present application, not all of them. Based on the embodiments of the present application, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of this application.

[0066] Washing machines need to be placed in packaging during transportation. Current packaging structures use cardboard, such as a honeycomb panel stacked within the cardboard. It's important to note that cardboard has a relatively low hardness and a certain degree of elasticity, providing cushioning, while the honeycomb panel has a certain structural strength and support. However, cardboard is susceptible to moisture absorption, causing deformation and even breakage, which can render the packaging structure's cushioning function ineffective.

[0067] To this end, some embodiments of the present disclosure provide a clothing treatment device assembly, which includes a clothing treatment device package and a clothing treatment device. The clothing treatment device package can be used to carry the clothing treatment device to protect the clothing treatment device.

[0068] In the packaging of the clothing treatment device disclosed herein, a base lining and a top cover are arranged opposite each other, and a corner guard assembly is located between the base lining and the top cover, so that the base lining, the top cover, and the corner guard assembly can enclose and form a storage area for accommodating the clothing treatment device. The clothing treatment device is placed on the base lining, and the corner guard assembly can protect the edges and corners of the clothing treatment device and limit the position of the clothing treatment device. The base lining can bear the weight of the clothing treatment device and is formed by stacking multiple plastic plates. At least some of the plastic plates are hollow structures, that is, they are provided with a hollow cavity with air inside, so that the plastic plates have a certain degree of elasticity. In this way, the base lining can provide cushioning for the clothing treatment device when supporting it. When the clothing treatment device is placed on the base lining and when the clothing treatment device shakes during transportation, the base lining can also provide cushioning for the clothing treatment device, preventing damage to the clothing treatment device. The stacking of multiple plastic plates gives the base lining excellent structural strength, which can fully support the clothing treatment device and maintain stability during transportation.

[0069] In some embodiments, the clothes treating device may be a drum washing machine, a pulsator washing machine, a semi-automatic washing machine, a clothes dryer, a shoe washing machine, or the like.

[0070] It should be noted that, in addition to the laundry processing device, the packaging of the laundry processing device provided in some embodiments of the present disclosure can also be applied to other electrical appliances. For example, the packaging of the laundry processing device can also be applied to refrigerators, freezers, and other appliances with similar or identical appearance and structure to the laundry processing device.

[0071] Figures 1 to 6C Schematic diagram of a structure of a laundry processing apparatus 600 is shown in FIG. Figures 1 to 6C The laundry processing device 600 is a drum washing machine. The following describes the structure of the laundry processing device and the laundry processing device assembly by taking the laundry processing device 600 as a drum washing machine as an example.

[0072] refer to Figure 1 and Figure 2 As shown, the laundry processing apparatus 600 may include a housing 610. The housing 610 is configured as the outer shell of the laundry processing apparatus 600. The housing 610 may provide an exterior decoration for the laundry processing apparatus 600, thereby shielding the various components forming the laundry processing apparatus 600 and improving the aesthetics of the laundry processing apparatus 600. The housing 610 may have a clothing access opening (not shown). A user may place clothing into the laundry processing apparatus 600 through the clothing access opening so that the laundry processing apparatus can clean the clothing.

[0073] refer to Figure 6B and Figure 6C As shown, the shell 610 includes a first outer wall 6101, a second outer wall 6102, a third outer wall 6103 and a fourth outer wall 6104 connected in sequence, and the clothing access port is arranged on the first outer wall 6101. Here, the first outer wall 6101 and the third outer wall 6103 are arranged in parallel, and the second outer wall 6102 and the fourth outer wall 6104 are arranged in parallel; the first outer wall 6101 is respectively perpendicular to the second outer wall 6102 and the fourth outer wall 6104, and the third outer wall 6103 is respectively perpendicular to the second outer wall 6102 and the fourth outer wall 6104.

[0074] For example, reference Figure 3 As shown, the clothing treatment device 600 may further include a drum assembly, which may include an outer drum 620. The outer drum 620 may be disposed in the housing 610, and the drum opening of the outer drum 620 may face the clothing taking-in and putting-out opening.

[0075] The drum assembly may further include an inner drum (not shown in the figure), which may be rotatably disposed in the outer drum 620 , with the drum opening of the inner drum also facing the clothing loading and unloading opening.

[0076] refer to Figure 3 As shown, a water outlet 621 is formed at the bottom of the outer cylinder 620. One end of the water outlet pipe is connected to the water outlet 621, so that the water in the inner cylinder enters the water outlet pipe through the water outlet 621, and the water entering the water outlet pipe is discharged outside the shell through the other end of the water outlet pipe.

[0077] Continue to refer Figure 2As shown, the laundry treatment apparatus 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 610. In some embodiments, the front side of the housing 610 refers to the side of the laundry treatment apparatus 600 that a user is positioned relative to when operating the laundry treatment apparatus 600. The front side of the housing 610 may also be understood as the front face of the laundry treatment apparatus 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 treatment apparatus 600.

[0078] For example, the door body 650 can be provided 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, and 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.

[0079] refer to Figure 3 and Figure 4 As shown, the clothing processing device 600 may further include a motor 630, which may be located at the bottom of the outer drum 620 and arranged near the rear side of the shell 610. In some embodiments, 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.

[0080] 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.

[0081] The laundry processing device 600 may further include a counterweight 640, which may be disposed on a side of the outer drum 620 near the door 650. The counterweight 640 may increase the weight of the drum assembly to reduce the vibration amplitude of the drum assembly during rotation, thereby reducing or preventing vibration of the laundry processing device 600. This may improve the stability of the drum assembly's rotation and enhance the smooth operation of the laundry processing device 600. The counterweight 640 is connected to the side of the outer drum 620 facing away from the motor. In this way, the counterweight 640 and the motor 630 respectively utilize the space on the axially opposite sides of the outer drum 620, thereby making the internal structure of the housing 610 more reasonable and compact.

[0082] refer to Figures 6A to 6C As shown, the laundry treatment device 600 may further include four bottom corners 611 , which are connected to the housing 610 and disposed at the bottom of the housing 610 .

[0083] It is understandable that the bottom corners 611 are used to support the laundry processing device 600. The four bottom corners 611 are respectively located at the corners of the housing 610, and the bottom corners 611 are used to support the housing 610.

[0084] In the height direction of the housing 610 (eg Figure 4 In the middle Z direction), the sides of the four bottom corners 611 away from the top cover 20 are located on the same surface; so that the clothing processing device 600 can be stably placed on the surface to be placed.

[0085] refer to Figure 3 As shown, two reinforcing ribs 660 are provided at the bottom of the housing 610. The two reinforcing ribs 660 are used to improve the strength of the housing 610.

[0086] refer to Figure 1 and Figure 2 As shown, the packaging 10 of the laundry treatment device of the present disclosure includes a base liner 30. Here, the base liner 30 is the base component of the packaging of the laundry treatment device of the present disclosure. The base liner 30 can provide a mounting base for at least some other components of the packaging of the laundry treatment device. When the laundry treatment device 600 is placed on the packaging of the laundry treatment device of the present disclosure, the laundry treatment device 600 is located on the base liner 30, and the base liner 30 can support the bottom of the laundry treatment device 600.

[0087] The packaging of the laundry treatment device of the present disclosure also includes a protective assembly that can be used to protect the corners of the laundry treatment device 600 from damage. In some embodiments, the protective assembly can be a corner protector assembly 40. Below, the structure of the protective assembly and the packaging 10 of the laundry treatment device will be further described using the corner protector assembly 40 as an example.

[0088] The corner protector assembly 40 is mounted on the base 30. For example, the corner protector assembly 40 is a long structural member, which is vertically mounted on the base 30. When the laundry processing device 600 is mounted on the base 30, the corner protector assembly 40 can cover the corners of the laundry processing device 600, thereby protecting the corners of the laundry processing device 600. In addition, the corner protector assembly 40 can also limit the position of the laundry processing device 600 in a direction perpendicular to its height.

[0089] refer to Figure 2As shown, the corner guard assembly 40 may include four corner guards as shown in the figure. The four corner guards may be located at the four corners of the laundry processing device 600 to provide protection for the corners of the laundry processing device 600. The four corner guards may include two front corner guards 41 and two rear corner guards 42. Here, the two front corner guards 41 are close to the door body 650 of the laundry processing device 600, and the two front corner guards 41 can protect the two corners on the front side of the laundry processing device 600. The two rear corner guards 42 are close to the side of the laundry processing device 600 facing away from the door body 650, and the two rear corner guards 42 can protect the two corners on the side of the laundry processing device 600 facing away from the door body 650.

[0090] refer to Figure 1 and Figure 2 As shown, the packaging of the laundry processing device of the present disclosure further includes a top cover 20, which is disposed on the base liner 30 and is arranged opposite the base liner 30. The base liner 30, the corner protector assembly 40, and the top cover 20 can enclose a space for accommodating the laundry processing device 600. The top cover 20 is disposed on the top side of the laundry processing device 600, thereby protecting the top side of the laundry processing device 600. When multiple laundry processing device assemblies 700 are transported, they can be stacked to fully utilize the space in the transportation equipment. Therefore, the top cover 20 can also support the laundry processing device assemblies above it, preventing the top side of the laundry processing device 600 from being damaged by excessive pressure.

[0091] In some embodiments of the present disclosure, the base 30 may further include a buffer portion, which may be used to support the clothing treatment device 600 placed on the base 30, and may also buffer the clothing treatment device 600 to prevent the clothing treatment device 600 from being damaged by shaking during transportation.

[0092] In some embodiments, reference Figure 7 、 Figure 9 and Figure 10 As shown, the buffer portion can be configured as a bottom plate 31, which includes multiple plastic plates that can be stacked. The multiple plastic plates include a plastic hollow plate 50, which is a plate structure made of plastic material and has a hollow cavity inside. The hollow cavity can be filled with gas. The plastic material of the plastic hollow plate 50 makes it inherently elastic. In addition, the hollow cavity inside the plastic hollow plate 50 forms an air shock-absorbing cavity, which makes the plastic hollow plate have better elasticity and better buffering performance. In this way, the base liner 30 can provide buffering for the clothing treatment device when supporting it. When the clothing treatment device is placed on the bottom plate 31 of the base liner 30, and when the clothing treatment device is shaken during transportation, the base liner 30 can also play a role in buffering the clothing treatment device to prevent damage to the clothing treatment device.

[0093] The stacking of multiple plastic sheets allows for their combined strength, resulting in superior structural strength for the base liner 30. This improves the durability and reliability of the base liner 30, allowing the base liner 30 to fully support the laundry processing device 600, ensuring stability during transportation. Even if the plastic sheets become damp, their structure remains stable and unaffected, resulting in superior structural reliability and stability for the base liner 30.

[0094] In some embodiments, the plastic hollow plate 50 may be a hollow plate made of plastic as a base material and having different internal structures.

[0095] Here, the plastic hollow plate 50 may include a honeycomb plate, and the honeycomb core of the honeycomb plate may include a "R"-shaped core or a "J"-shaped core.

[0096] The plastic hollow board 50 may also include a "M"-shaped board. That is, the internal structure of the plastic hollow board is in the "M" shape, and the "M"-shaped internal structure serves as a reinforcing rib of the plastic hollow board 50 to enhance the strength of the plastic hollow board 50.

[0097] The plastic hollow board 50 may also include a "well"-shaped board. That is, the internal structure of the plastic hollow board 50 is a "well"-shaped board, and the "well"-shaped internal structure serves as a reinforcing rib of the plastic hollow board 50 to enhance the strength of the plastic hollow board 50.

[0098] In some embodiments, the above-mentioned plastic hollow board is formed by mixing the base material, filler and additives in an extruder and then extruding through a specific die.

[0099] In some embodiments, the plastic sheets can be made of non-foamed plastic, thus avoiding the environmental issues associated with using foamed materials. This allows the multiple plastic sheets in the base liner 30 to be recyclable and degradable, making the base liner 30 as a whole recyclable and degradable. Furthermore, the base liner 30 made of non-foamed plastic also has a certain structural strength, thus improving the structural stability of the base liner 30 and providing better support for the clothing treatment device 600.

[0100] For example, the base 30 may be a plastic member made of at least one resin material selected from polypropylene, polyethylene, polyvinyl chloride, polylactic acid, polybutylene adipate / terephthalate, and polybutylene succinate.

[0101] Polypropylene, polyethylene, polyvinyl chloride, polylactic acid, polybutylene adipate / terephthalate, and polybutylene succinate are all plastics. That is, the backing 30 is not EPS (expanded polystyrene foam) or EPP (expanded polypropylene), and is not a foam. These plastic materials are easily degradable and recyclable, thus offering excellent environmental performance.

[0102] In addition, the base 30 is made of the above-mentioned plastic material so that the base 30 also has a certain elasticity. In this way, when the clothing processing device 600 shakes during transportation, the base 30 can also play a role in buffering the clothing processing device 600 to prevent the clothing processing device 600 from being damaged.

[0103] The plastic plate molding material 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 the backing 30 and improving the overall structural stability of the backing 30.

[0104] The plastic plate molding material 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-butadiene block copolymer (SBS), hydrogenated styrene-butadiene block copolymer (SEBS), or ethylene-vinyl acetate copolymer (EVA). This can increase the toughness of the backing 30 and reduce or prevent the backing 30 from breaking.

[0105] The plastic sheet molding material 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.

[0106] The plastic sheet molding material 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-butadiene block copolymer (SBS), hydrogenated styrene-butadiene block copolymer (SEBS), or ethylene-vinyl acetate copolymer (EVA). This can increase the toughness of the backing 30 and reduce or prevent the backing 30 from breaking.

[0107] In some embodiments, reference Figure 10 As shown, in order to provide greater stability for the laundry treatment device 600 when placed on the base 30, the base 30 may further include a bottom enclosure 32. Here, the bottom enclosure 32 is provided along the circumference of the bottom plate 31 at the edge of the bottom plate 31, and the bottom enclosure 32 protrudes from the bottom plate 31. Thus, the bottom enclosure 32 can enclose one side of the bottom of the laundry treatment device 600. The bottom enclosure 32 can limit the position of the laundry treatment device 600 on a horizontal plane, thereby preventing the laundry treatment device 600 from sliding relative to the bottom plate 31 and separating from the bottom plate 31 to a certain extent.

[0108] For example, the bottom enclosure 32 can be connected to the edge of any one or more plastic plates in the bottom plate 31, so that the bottom enclosure 32 can be fixed to the bottom plate 31. The space enclosed by the bottom enclosure 32 can match the shape of the bottom side of the laundry processing device 600, so that the outer wall of the bottom side of the laundry processing device 600 contacts the bottom enclosure 32 or has a small gap. In this way, the bottom enclosure 32 can fully limit and fix the laundry processing device 600.

[0109] In some embodiments, reference Figure 11 As shown, the bottom enclosure 32 may include a fourth enclosure portion 321, which is arranged on one side edge of the bottom plate 31. The fourth enclosure portion 321 may be opposite to the bottom of the side where the door body of the clothing processing device 600 is set, thereby enclosing the front side of the clothing processing device 600.

[0110] The bottom enclosure 32 may include a fifth enclosure portion 322, which is arranged on one side edge of the bottom plate 31. The fifth enclosure portion 322 may be opposite to the bottom of the side of the clothing processing device 600 facing away from the door body, thereby enclosing the rear side of the clothing processing device 600.

[0111] The bottom enclosure 32 may include a second sixth enclosure portion 323. The two sixth enclosure portions 323 are both arranged on one side edge of the bottom plate 31. The two sixth enclosure portions 323 may be respectively opposite to the left and right sides of the clothing processing device 600, thereby enclosing the left and right sides of the clothing processing device 600.

[0112] In some embodiments, reference Figure 10 As shown, the bottom enclosure 32 can be configured to be connected to the plastic hollow plate 50. For example, the bottom enclosure 32 and the plastic hollow plate 50 can be connected as one. When preparing the plastic hollow plate 50 and the bottom enclosure 32, the edge of the plastic hollow plate 50 can be bent to form the bottom enclosure 32. In this way, the connection reliability of the bottom enclosure 32 and the plastic hollow plate 50 is better, and the process of separately connecting and assembling the bottom enclosure 32 and the plastic hollow plate 50 is eliminated, thereby improving the preparation efficiency of the packaging of the clothing processing device disclosed in the present invention.

[0113] In some embodiments, reference Figure 7 As shown, the multiple plastic plates included in the bottom plate 31 may further include a plastic reinforcing plate 60, which is stacked with the plastic hollow plate 50. The plastic reinforcing plate 60 has a higher structural strength than the plastic hollow plate 50. The plastic reinforcing plate 60 has better support performance, which can provide better support for the base liner 30. In this way, when the clothing treatment device 600 is placed on the bottom plate 31, the base liner 30 is prevented from being damaged by excessive deformation, so that the base liner 30 can better support the clothing treatment device 600.

[0114] The plastic reinforcing plate 60 can be disposed on one side of the bottom of the base plate 31, that is, the plastic reinforcing plate 60 is located at the lowest level of the base plate 31, so that the plastic reinforcing plate 60 can contact the ground. Alternatively, when multiple laundry processing device assemblies 700 are stacked, the plastic reinforcing plate 60 of the package 10 of one laundry processing device can contact the base 30 of the package 10 of another laundry processing device, so that the plastic reinforcing plate 60 can better support the laundry processing devices 600. Accordingly, the plastic hollow plate 50 can be located on top of the plastic reinforcing plate 60, and the plastic hollow plate 50 can directly contact the laundry processing devices 600, so that the plastic hollow plate 50 can fully cushion the laundry processing devices 600.

[0115] In some embodiments, reference Figure 7 As shown, in order to reduce the preparation cost of the packaging of the clothing processing device disclosed in the present invention, the plastic reinforcement plate 60 can be provided with a plurality of weight-reducing cavities 61, and the plurality of weight-reducing cavities 61 are spaced apart in the plastic reinforcement plate 60. The weight-reducing cavity 61 is a cavity structure inside the plastic reinforcement plate 60. In this way, the plastic reinforcement plate 60 has a plurality of cavities, thereby reducing the weight of the plastic reinforcement plate 60 and reducing the materials used in the preparation of the plastic reinforcement plate 60, so as to reduce the preparation cost of the plastic reinforcement plate 60.

[0116] The distribution of the weight-reducing cavities 61 in the plastic reinforcement plate 60 is not limited.

[0117] In some embodiments, the weight-reducing cavities 61 may be distributed in a rectangular array within the plastic reinforcing plate 60. Alternatively, in some embodiments, the weight-reducing cavities 61 may be distributed in a circular array within the plastic reinforcing plate 60 with the center of the plastic reinforcing plate 60 as the center of the circle.

[0118] In addition, it should be understood that the strength structure located in the adjacent weight reduction cavity 61 in the plastic reinforcement plate 60 can constitute a reinforcing rib structure in the plastic reinforcement plate 60, and the two ends of the reinforcing rib can support the inner wall of the plastic reinforcement plate 60, so that the plastic reinforcement plate 60 has better structural strength, thereby making the support effect of the plastic reinforcement plate 60 better.

[0119] In the present disclosure, the weight-reducing cavity 61 can be configured as a through-groove structure that runs through the plastic reinforcing plate 60 along its thickness direction. This can further reduce the weight of the plastic reinforcing plate 60 and the materials used in its manufacture, thereby reducing the manufacturing cost of the plastic reinforcing plate 60. The weight-reducing cavity 61 can be configured as a honeycomb shape, so that the plastic reinforcing plate 60 can be a honeycomb core panel. Of course, the weight-reducing cavity 61 can also adopt other cavity shapes, such as a triangular cavity shape, a rectangular cavity shape, etc.

[0120] In some embodiments, reference Figure 7As shown, in order to further improve the supporting performance of the base liner 30 of the present disclosure, the number of plastic reinforcing plates 60 can be set to multiple, multiple plastic reinforcing plates 60 can be stacked, and plastic hollow plates 50 can be set between adjacent plastic reinforcing plates 60.

[0121] In some embodiments, the number of the plastic hollow plates 50 may be multiple, and the multiple plastic hollow plates 50 may be stacked, and plastic reinforcing plates 60 may be disposed between adjacent plastic hollow plates 50 .

[0122] In some embodiments, when there are multiple plastic reinforcing plates 60 and multiple plastic hollow plates 50, multiple plastic reinforcing plates 60 and multiple plastic hollow plates 50 can be stacked alternately, and one of the plastic reinforcing plates 60 is located on the bottom side of the bottom plate 31, and one of the plastic hollow plates 50 is located on the top side of the bottom plate 31, so that the base lining 30 has better support and shock absorption properties.

[0123] In some embodiments, multiple plastic hollow plates 50 may be stacked adjacent to each other, and multiple plastic reinforcing plates 60 may be stacked adjacent to each other. The present disclosure does not limit the stacking manner of the multiple plastic hollow plates 50 and the multiple plastic reinforcing plates 60.

[0124] In some embodiments, reference Figure 7 As shown, the clothing treatment device 600 may also include a cardboard 70, which may be disposed within the base 30. For example, the cardboard 70 may be located between adjacent plastic reinforcing plates 60 and plastic hollow plates 50, or between adjacent plastic hollow plates 50, or between adjacent plastic reinforcing plates 60. By arranging the cardboard 70 within the base 31, the cardboard 70 can be protected from exposure to moisture. The cardboard 70 has certain support and shock-absorbing properties, and the production cost of the cardboard 70 is relatively low. By providing the cardboard 70, the support and shock-absorbing properties of the base 30 can be improved at a relatively low cost, thereby reducing the production cost of the packaging 10 of the clothing treatment device of the present disclosure.

[0125] In addition, the number of cardboards 70 can be multiple, and the multiple cardboards 70 can be stacked or stacked at intervals in the bottom plate 31 .

[0126] In some embodiments, the paperboard 70 of the present disclosure includes at least one of honeycomb paperboard and corrugated paperboard. The costs of the two paperboards 70 are relatively low, thereby reducing the preparation cost of the packaging 10 of the laundry treatment device of the present disclosure.

[0127] In some embodiments, reference Figure 7As shown, the clothing treatment device 600 may further include a buffer member 80, which may be disposed within the base liner 30. The buffer member 80 is an elastic structural member. For example, the buffer member 80 may be disposed within the hollow cavity of the plastic hollow plate 50. When the plastic hollow plate 50 is deformed by the clothing treatment device 600, the plastic hollow plate 50 may compress the buffer member 80, causing the buffer member 80 to deform. The buffer member 80 may absorb some of the kinetic energy generated by the shaking of the clothing treatment device 600, thereby improving the shock absorption performance of the base liner 30 of the present disclosure for the clothing treatment device 600.

[0128] In some embodiments, the thickness of the plastic hollow plate 50 in the present disclosure can be set to 2mm-8mm. It should be understood that if the thickness of the plastic hollow plate 50 is set to less than 2mm, the structural strength of the plastic hollow plate 50 will be low and the structural stability will be poor, so that the plastic hollow plate 50 cannot stably support the clothing processing device. If the thickness of the plastic hollow plate 50 is set to more than 8mm, the weight of the plastic hollow plate 50 will be too large, which will cause the overall weight of the packaging 10 of the clothing processing device to be too heavy and not conducive to transportation and handling. In addition, the cost of the plastic hollow plate 50 will be too high. Therefore, by setting the thickness of the plastic hollow plate 50 to 2mm-8mm, the plastic hollow plate 50 is easy to prepare, the cost is relatively low, and it has better cushioning performance. For example, the thickness of the plastic hollow plate 50 can be set to 3mm-5mm, so that the shock absorbing support performance of the plastic hollow plate 50 can be more balanced with its own weight and cost.

[0129] The thickness of the plastic reinforcing plate 60 in the present disclosure can be set to 2mm-8mm. It should be understood that if the thickness of the plastic reinforcing plate 60 is set to less than 2mm, the structural strength and structural stability of the plastic reinforcing plate 60 will be low, and the plastic reinforcing plate 60 will be poor, so that the plastic reinforcing plate 60 cannot stably support the clothing processing device. If the thickness of the plastic reinforcing plate 60 is set to more than 8mm, the weight of the plastic reinforcing plate 60 will be too large, which will cause the overall weight of the packaging 10 of the clothing processing device to be too heavy and not conducive to transportation and handling. In addition, the cost of the plastic reinforcing plate 60 will be too high. Therefore, by setting the thickness of the plastic reinforcing plate 60 to 2mm-8mm, the plastic reinforcing plate 60 is easy to prepare, the cost is relatively low, and it has better cushioning performance. For example, the thickness of the plastic reinforcing plate 60 can be set to 3mm-5mm, so that the shock absorbing support performance of the plastic reinforcing plate 60 can be more balanced with its own weight and cost.

[0130] In some embodiments, the weight of the plastic hollow plate 50 in the present disclosure can be set to 700 g / m 2 -1200g / m 2 It should be understood that if the weight of the plastic hollow board 50 is set to 700g / m 2If the weight of the plastic hollow plate 50 is set to 700g / m 2 The above will result in the plastic hollow plate 50 being too heavy, and thus the overall weight of the clothing treatment device package 10 being too heavy and not conducive to transportation and handling, and will also result in the cost of the plastic hollow plate 50 being too high. 2 -1200g / m 2 , so that the plastic hollow plate 50 can stably support the shock-absorbing clothing processing device while having relatively low cost and light weight. The shock-absorbing support performance of the plastic hollow plate 50 can be balanced with its own weight and cost, and can better support the clothing processing device 600.

[0131] In some embodiments, the weight of the plastic hollow board 50 can be set to 900g / m 2 -1000g / m 2 , so that the shock-absorbing support performance of the plastic hollow board 50 can be more balanced with its own weight and cost.

[0132] The weight of the plastic reinforcing plate 60 in the present disclosure can be set to 700 g / m 2 -1200g / m 2 It should be understood that if the weight of the plastic reinforcing plate 60 is set to 700 g / m 2 If the weight of the plastic reinforcing plate 60 is set to 700g / m 2 The above will result in the plastic reinforcing plate 60 being too heavy, which in turn will result in the overall weight of the clothing treatment device package 10 being too heavy and not conducive to transportation and handling, and will also result in the cost of the plastic reinforcing plate 60 being too high. 2 -1200g / m 2 , so that the plastic reinforcing plate 60 can stably support the clothing processing device while having relatively low cost and light weight. The supporting performance of the plastic reinforcing plate 60 can be balanced with its own weight and cost, and can better support the clothing processing device 600.

[0133] In some embodiments, the weight of the plastic reinforcing plate 60 can be set to 900 g / m 2 -1000g / m 2 , so that the supporting performance of the plastic reinforcement plate 60 can be more balanced with its own weight and cost.

[0134] In some embodiments, the number of plastic sheets can be set to 3-8, that is, 3-8 plastic sheets are stacked to form the bottom plate 31. This ensures that the bottom plate 31 as a whole has better structural strength and cushioning performance. In some embodiments, if the number of plastic sheets is less than 3, the overall structural strength of the bottom plate 31 will be poor. If the number of plastic sheets is greater than 8, the thickness of the bottom plate 31 will be too large, the structure will be uncompact, and the cost will be too high.

[0135] In some embodiments, reference Figure 2 As shown, the package 10 of the laundry treatment device of the present disclosure further includes a support assembly 200. The support assembly 200 includes a first support 210. The first support 210 is disposed on the base 30, for example, on the side of the first support 210 facing the top cover 20. The first support 210 can be used to support the motor 630 of the laundry treatment device 600. Therefore, the first support 210 can be adjacent to the edge of the base 30. When the bottom side of the laundry treatment device 600 is placed on the base 30, the first support 210 can extend into the housing 610 through an opening on the bottom side of the housing 610 of the laundry treatment device 600 and support the motor 630 of the laundry treatment device 600. When the laundry treatment device assembly 700 of the present disclosure is transported, the first support 210 can support the motor 630 at the bottom side of the motor 630, so that the motor 630 can be restrained by the first support 210 in the direction of gravity, thereby maintaining stability.

[0136] In the present disclosure, the first support body 210 can be made of a non-foamed plastic member, thereby avoiding the environmental issues associated with using foamed materials. The first support body 210 is thus recyclable and degradable. Furthermore, the non-foamed plastic member provides a certain degree of structural strength, thereby improving the structural stability of the first support body 210 and providing better support for the motor 630.

[0137] In some embodiments, reference Figure 10As shown, in order to enable the first support body 210 of the present disclosure to better support the motor 630, the first support body 210 includes a first support surface 211. The first support surface 211 is the surface on the top side of the first support body 210. The top of the first support body 210 is the side of the first support body 210 facing the top cover 20. At least a portion of the outer wall on the bottom side of the motor 630 can contact the first support surface 211. Here, the first support surface 211 includes a first support area 2111 and a second support area 2112. The first support area 2111 and the second support area 2112 are respectively partial areas of the first support surface 211. The first support area 2111 can support a first portion of the motor 630, and the second support area 2112 can support a second portion of the motor 630. The first part and the second part of the motor 630 are arranged at intervals on the circumferential surface of the motor 630, so that the first support area 2111 and the second support area 2112 can respectively contact different parts of the circumferential surface of the motor 630, so that different parts of the surface of the motor 630 can be supported, thereby making the force surface distribution of the motor 630 more extensive, and the first support body 210 can better support the motor 630, so that the motor 630 remains stable.

[0138] In addition, it should be understood that when the circumferential outer wall of the motor 630 in the present disclosure is an arc surface, the first support area 2111 and the second support area 2112 can also be set as an arc surface, so that the first support area 2111 and the second support area 2112 can better contact the circumferential outer wall of the motor 630 to better support the motor 630.

[0139] In some embodiments, reference Figure 10 As shown, the first support surface 211 of the first support body 210 of the present disclosure may further include a first avoidance area 2113, which is located between the first support area 2111 and the second support area 2112. Here, the first avoidance area 2113 is a groove structure on one side of the top of the first support body 210. The circumferential surface of the motor 630 has a protruding structure. The first avoidance area 2113 is opposite to the protruding structure on the surface of the motor 630, so that the protruding structure on the surface of the motor 630 can be embedded in the first avoidance area 2113, thereby allowing the first portion and the second portion of the circumferential surface of the motor 630 to fully contact the first support area 2111 and the second support area 2112, respectively.

[0140] In addition, it should be understood that when the surface of the motor 630 has multiple protruding structures, the number of the first avoidance areas 2113 can also be set to multiple, and the multiple first avoidance areas 2113 correspond to the multiple protruding structures on the surface of the motor 630.

[0141] In some embodiments, reference Figure 11 and Figure 13As shown, the first support body 210 in the present disclosure may include a support plate 212, which may be disposed on the base 30. The support plate 212 includes a first side 2121 and a second side 2122. The first side 2121 of the support plate 212 is connected to the base 30, and correspondingly, the second side 2122 of the support plate 212 faces away from the base 30. For example, the support plate 212 is vertically disposed on the base 30, and the thickness direction of the support plate 212 is parallel to the surface of the base 30 used to support the clothing treatment device 600.

[0142] The first support body 210 may also include a support plate 213, which is disposed on the support plate 212, for example, on the second side 2122 of the support plate 212, so that the support plate 212 can support the support plate 213. Both the support plate 212 and the support plate 213 may be made of non-foamed plastic parts, so that the support plate 212 and the support plate 213 meet environmental protection requirements and have better structural strength. It should be understood that the support plate 212 and the support plate 213 are both plate structural members, and accordingly, the preparation process of the support plate 212 and the support plate 213 is relatively simple. In this way, when preparing the first support body 210, the support plate 213 and the support plate 212 can be prepared separately, and then the support plate 212 and the base 30 can be assembled, and the support plate 213 and the support plate 212 can be assembled, thereby reducing the difficulty of the preparation process of the first support body 210.

[0143] In addition, the support plate 212 and the base 30 can be fixed to each other in a detachable manner, so that the support plate 212 can be recycled. The carrier plate 213 and the support plate 212 can also be fixed to each other in a detachable manner, so that the carrier plate 213 can also be recycled.

[0144] In some embodiments, reference Figures 11 to 13As shown, to ensure a more reliable connection between the support plate 212 and the base 30, a first side 2121 of the support plate 212 can be inserted into the base 30. In some embodiments, the base 30 can have an insertion port 33 for the first side 2121 of the support plate 212 to be inserted into. The first side 2121 of the support plate 212 is inserted through the insertion port 33 of the base 30 into the base 30. The inner wall of the insertion port 33 can limit the support plate 212, ensuring horizontal stability. The first side 2121 of the support plate 212 can be connected to the bottom wall of the base 30. For example, the first side 2121 of the support plate 212 can be bent relative to other parts of the support plate 212, and the side wall of the first side 2121 can be connected to the bottom wall of the base 30. The side wall of the first side 2121 and the bottom wall of the base 30 can be fixedly connected. In this way, the first side 2121 and the base 30 can be mutually limited in the thickness direction of the base 30, so that the support plate 212 can be fixed relative to the base 30 in multiple directions. The first side 2121 of the support plate 212 and the base 30 can be fixed by welding or adhesive connection to ensure that the support plate 212 and the base 30 are reliably connected.

[0145] The first volumes 2121 of adjacent support plates 212 among the plurality of support plates 212 can be connected to form a connecting plate 214, and the connecting plate 214 can be connected to the bottom side of the base 30, so that the support plates 212 can be fixed to the base 30 more stably and reliably.

[0146] In some embodiments, reference Figure 14 As shown, the carrier board 213 in the present disclosure may include a carrier sub-board 2133 .

[0147] In some embodiments, reference Figure 14 As shown, the carrier board 213 in the present disclosure may further include a first connecting sub-board 2131 .

[0148] In some embodiments, reference Figure 14As shown, the supporting plate 213 in the present disclosure may further include a second connecting sub-plate 2132. The first connecting sub-plate 2131 and the second connecting sub-plate 2132 are connected to both sides of the supporting sub-plate 2133, and both the first connecting sub-plate 2131 and the second connecting sub-plate 2132 are bent relative to the supporting sub-plate 2133. The supporting sub-plate 2133 can be used to support the motor 630. The first connecting sub-plate 2131 and the second connecting sub-plate 2132 are plugged into the supporting plate 212, and the first connecting sub-plate 2131 and the second connecting sub-plate 2132 are plugged into different parts of the supporting plate 212. For example, the first connecting sub-plate 2131 and the support plate 212 have corresponding sockets, and the second connecting sub-plate 2132 and the support plate 212 also have corresponding sockets. The socket of the first connecting sub-plate 2131 is opposite to the socket of the support plate 212, so that the first connecting sub-plate 2131 and the support plate 212 can be plugged in. The socket of the second connecting sub-plate 2132 is opposite to the socket of the support plate 212, so that the second connecting sub-plate 2132 and the support plate 212 can be plugged in. In this way, both the first connecting sub-plate 2131 and the second connecting sub-plate 2132 can be reliably connected to the support plate 212, and both sides of the supporting sub-plate 2133 can be supported by the support plate 212, so that the force balance of the supporting sub-plate 2133 remains stable, and the motor 630 disposed on the supporting sub-plate 2133 can remain stable.

[0149] In some embodiments, the entire supporting plate 213 can adopt an integrated structure. When preparing the supporting plate 213, the two sides of the supporting plate 213 can be bent to form a first connecting sub-plate 2131 and a second connecting sub-plate 2132 respectively, thereby making the structural stability and reliability of the supporting plate 213 better.

[0150] In some embodiments, the number of supporting plates 213 can also be set to multiple, where the board surface of the supporting sub-plate 2133 of one supporting plate 213 can constitute the first supporting area 2111 of the first supporting body 210, and the board surface of the supporting sub-plate 2133 of another supporting plate 213 can constitute the second supporting area 2112 of the first supporting body 210, so that multiple supporting plates 213 can respectively support the first part and the second part of the motor 630.

[0151] In some embodiments, multiple supporting plates 213 can also be arranged at intervals, so that the supporting sub-plates 2133 of multiple supporting plates 213 can also be arranged at intervals, and the gaps between adjacent supporting plates 213 can constitute a first avoidance area 2113, so that the protruding structure on the surface of the motor 630 can be embedded in the gaps between adjacent supporting plates 213.

[0152] In some embodiments, reference Figure 9 and Figure 11As shown, in order to make the support plate 212 better support the carrier plate 213, so that the first support body 210 can better support the motor 630. The number of support plates 212 can be set to multiple, and the multiple support plates 212 can be spaced along the first direction. The first direction is the thickness direction of the support plate 212, that is, Figure 9 In the X direction, the carrier plate 213 is arranged on multiple support plates 212, so that multiple support plates 212 can support the carrier plate 213. For example, the carrier plate 213 is arranged horizontally with the upper surface of the base 30, and multiple support plates 212 can support the parts of the bottom side of the carrier plate 213 along the first direction. In this way, the carrier plate 213 and the support plate 212 have more contact parts, which can make the carrier plate 213 bear a balanced force, maintain stability, and prevent the carrier plate 213 from deflecting during the force application process. When the motor 630 is placed on the carrier plate 213, the multiple support plates 212 can support the motor 630 through the carrier plate 213. The more carrier plates 213 there are, the greater the weight that the first support body 210 can bear. In this way, a motor 630 with larger size and weight can also remain stable when placed on the first support body 210.

[0153] It should be understood that the support plate 212 can be a thin plate structure. Accordingly, when the support plate 212 is erected on the base 30, the support plate 212 is more likely to deflect relative to the base 30 after being subjected to a force in its thickness direction, and is more likely to remain stable when the support plate 212 is subjected to a force along its width direction.

[0154] Therefore, in some embodiments, some of the plurality of support plates 212 may be arranged along a first direction, and another portion of the support plates 212 may be arranged along a second direction perpendicular to the first direction. Figure 9 In this way, part of the support plate 212 can remain stable in the first direction, and another part of the support plate 212 can remain stable in the second direction, so as to improve the stability and reliability of the first support body 210.

[0155] refer to Figure 11 、 Figure 13 and Figure 14As shown, the first connecting sub-plate 2131 of the carrier plate 213 can be plugged into the multiple support plates 212. For example, the first connecting sub-plate 2131 and the multiple support plates 212 can each have corresponding sockets, allowing the first connecting sub-plate 2131 to be plugged into the multiple support plates 212. In this way, the multiple carrier plates 213 can support the first connecting sub-plate 2131, ensuring that the first connecting sub-plate 2131 remains stable. The second connecting sub-plate 2132 of the carrier plate 213 can be plugged into the multiple support plates 212. For example, the second connecting sub-plate 2132 and the multiple support plates 212 can each have corresponding sockets, allowing the second connecting sub-plate 2132 to be plugged into the multiple support plates 212. In this way, the multiple carrier plates 212 can support the second connecting sub-plate 2132, ensuring that the second connecting sub-plate 2132 remains stable. This makes the overall structure of the first support body 210 more stable.

[0156] In some embodiments, the carrier plate 213 and support plate 212 of the present disclosure may have a hollow structure, that is, the carrier plate 213 and support plate 212 are both hollow, non-foamed plastic structures. The carrier plate 213 and support plate 212 with a hollow structure are lighter in weight, which can reduce the packaging cost of the clothing treatment device of the present disclosure and the production cost of the clothing treatment device 600. In addition, the carrier plate 213 and support plate 212 with a hollow structure use less material during production, which can reduce the production cost of the carrier plate 213 and support plate 212, thereby reducing the production cost of the packaging of the clothing treatment device of the present disclosure and the production cost of the clothing treatment device 600. The carrier plate 213 with a hollow structure is provided with a hollow cavity, which contains air, thereby giving the carrier plate 213 a certain degree of elasticity. In this way, when the carrier plate 213 supports the motor 630, it can provide a buffer for 639, further preventing damage to the motor 630.

[0157] In some embodiments, reference Figure 15 As shown, the first support body 210 in the present disclosure is manufactured using an integrated molding process. In this way, the first support body 210 can be molded in one step. After the first support body 210 is molded in one step, the first support body 210 is fixed to the base 30, which makes the assembly efficiency of the first support body 210 higher. For example, the first support body 210 can be manufactured using injection molding, vacuum molding, or blow molding. The present disclosure does not limit the manufacturing process of the first support body 210.

[0158] In some embodiments, reference Figures 15 to 18 As shown, the first support body 210 can also adopt a hollow structure. The hollow structure of the first support body 210 can reduce the weight of the first support body 210 and the materials used in preparation, thereby reducing the packaging of the clothing processing device of the present disclosure and the preparation cost and weight of the assembly of the clothing processing device 600.

[0159] It should be understood that when the first support body 210 is a hollow structure, a reinforcing rib structure 201 can be set in the first support body 210, and the reinforcing rib structure 201 can be connected to the inner wall of the first support body 210 to support the inner wall of the first support body 210, thereby improving the structural strength of the first support body 210, so that the first support body 210 can better support the motor 630.

[0160] In some embodiments, both ends of the reinforcing rib structure 201 can be configured to be connected to the inner wall of the first support body 210 to support the first support body 210. One end of the reinforcing rib structure 201 can also be connected to the base 30 and the other end of the reinforcing rib structure 201 can be connected to the inner wall of the first support body 210 to support the first support body 210, so that the first support body 210 has better structural strength.

[0161] In some embodiments, reference Figures 15 to 18 As shown, the first support body 210 can be located at a position on the bottom lining 30 near the rear side of the housing 610, that is, the first support body 210 can be arranged near the back of the laundry processing device 600. The first support body 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 620 and is arranged near the rear side of the housing 610, the first support body 210 is arranged at a position on the bottom lining 30 near the rear side of the housing 610. The first support body 210 can be aligned with the motor 630, so that the first support body 210 can accurately support the motor 630.

[0162] refer to Figures 15 to 18 As shown, the support assembly 200 may further include a tub support (e.g., a third support 230 and a fourth support 240). The tub support may be disposed above and connected to the base liner 30 and configured to support the bottom of the outer tub 620. In some embodiments, a first reference plane A is defined as a vertical plane passing through the axis of the inner tub. This means that the first reference plane A divides the inner tub into left and right sections. Here, left and right refer to the sides corresponding to the left and right hands of a user facing the front of the laundry treatment device.

[0163] In some embodiments, the first reference plane A can divide the base into a first base portion 31 and a second base portion 32, and at least a portion of the tube support body can be located in the first base portion 31 and at least a portion of the second base portion 32. That is, the first reference plane A can divide the base 30 into two left and right base portions, which can be understood as the first base portion 31 and the second base portion 32 being located on both sides of the inner cylinder axis. The tube support body is located respectively in the first base portion 31 and the second base portion 32, so that the tube support body can be located respectively on both sides of the inner cylinder axis. At the same time, the tube support body can be effectively contacted with the tube assembly, so that the tube support body can support both sides of the outer cylinder 620 axis. In addition, when the tube support body is located respectively on both sides of the inner cylinder axis, the uniformity of the tube support body's support of the outer cylinder 620 can be effectively improved, and the reliability and stability of the tube support body's support of the outer cylinder 620 can be effectively improved.

[0164] 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 620 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 may 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.

[0165] Here, 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.

[0166] 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.

[0167] For example, the support assembly 200 can be formed by vacuum forming, or the support assembly 200 can also be formed by extrusion, injection molding, etc. Here, the resin material can be virgin or recycled. Here, virgin refers to unused resin raw materials, and recycled refers to sprue materials or post-consumer recycled materials.

[0168] In some embodiments, by positioning the first support body 210 on the bottom liner 30 near the rear side of the housing, the first support body 210 can be aligned with the motor 630, effectively supporting the motor 630 with the first support body 210, and effectively improving the reliability and stability of the first support body 210 supporting the motor 630. Furthermore, by positioning the tube support body on the first bottom liner portion 31 and the second bottom liner portion 32, the tube support body can be distributed on both sides of the inner cylinder axis, supporting the outer cylinder 620 on both sides of the inner cylinder axis, effectively increasing the contact area between the tube support body and the outer cylinder 620, and increasing the support area of ​​the tube support body on the outer cylinder 620. This can effectively improve the uniformity of the tube support body's support of the outer cylinder 620, and enhance the reliability and stability of the tube support body's support of the outer cylinder 620. 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.

[0169] 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.

[0170] refer to Figures 15 to 18 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 17Here, the third support body 230 can be located at a position where the first support body 210 is 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 close to the door body 650. The fourth support body 240 can support the end of the barrel assembly 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, and the fourth support body 240 can support the rear end of the barrel assembly. In this way, the barrel support body can support both the front end and the rear end of the outer barrel 620, which can effectively improve the uniformity of the distribution of the support points of the barrel support body on the barrel assembly, thereby effectively improving the reliability and stability of the barrel support body supporting the barrel assembly.

[0171] Furthermore, the third support body 230 can support the outer cylinder 620 on one side of the inner cylinder axis, while the fourth support body 240 can support the outer cylinder 620 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 620 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 620. Furthermore, the support bodies on both sides of the outer cylinder 620 axis can absorb impact forces on the cylinder assembly, thereby effectively improving the protection of the cylinder assembly.

[0172] refer to Figures 15 to 18 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 620.

[0173] In this way, the third support body 230 and the fourth support body 240 can support the two ends of the outer cylinder 620 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 620 on the axis, so that the cylinder support body can provide uniform support to the outer cylinder 620 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 620.

[0174] 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.

[0175] 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 all of it has support on the axis of the inner tube 620, which can effectively improve the stability of the tube support body's support of the outer tube 620 in the axial direction of the inner tube, thereby effectively improving the uniformity and reliability of the tube support body's support of the outer tube 620.

[0176] For example, the third support 230 and the fourth support 240 may be connected at overlapping locations along the axis of the barrel assembly. For example, the third support 230 and the fourth support 240 may be connected by bonding, clamping, or the like. Alternatively, in some embodiments, the third support 230 and the fourth support 240 may be an integral structure.

[0177] 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 620.

[0178] Alternatively, in some embodiments, 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.

[0179] In another possible implementation, refer to Figures 15 to 18 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 cylinder assembly axis. 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.

[0180] In this way, the third support body 230 and the fourth support body 240 can evenly support the outer cylinder 620 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.

[0181] Here, the third support 230 and the second support 220 can be connected, for example, the third support 230 and the second support 220 can be connected by bonding, snapping, or buckling. Alternatively, the third support 230 and the second support 220 can also be an integrated structure, so that the third support 230 and the second support 220 form a whole structure.

[0182] 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.

[0183] In some embodiments, reference Figures 15 to 18 As shown, the third support body 230 and the first support body 210 can be spaced apart along the axis of the drum assembly. 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 facing away from the door body 650, while the third support body 230 can support the end of the drum assembly close to the door body 650. By having the first support body 210 and the third support body 230 support the laundry processing device 600 at the front and rear ends respectively, the uniformity of the support assembly 200 for the laundry processing device can be improved. Moreover, while meeting the requirements for supporting 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.

[0184] Alternatively, in some embodiments, the third support body 230 may further extend along the axis of the barrel assembly 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.

[0185] In some embodiments, the top cover 20 and corner protector assembly 40 may also be plastic. For example, the top cover 20 and corner protector assembly 40 may be made of one or more resin materials selected from polypropylene (PP), polyethylene (PE), polyvinyl chloride (PVC), polylactide (PLA), polybutylene adipate / terephthalate (PBAT), and polybutylene succinate (PBS). In other words, the top cover 20 and corner protector assembly 40 are not EPS (polystyrene foam) or EPP (expanded polypropylene), and are not foam. These plastic materials are easily degradable and recyclable, exhibiting excellent environmental performance, effectively improving the environmental performance of the top cover 20 and corner protector assembly 40.

[0186] For example, 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. Here, the resin material can be virgin material, or it can also be recycled material.

[0187] 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.

[0188] The molding material of 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-butadiene block copolymer (SBS), hydrogenated styrene-butadiene block copolymer (SEBS), or ethylene-vinyl acetate copolymer (EVA). This can increase the toughness of support assembly 200 and reduce or prevent breakage of support assembly 200.

[0189] The molding materials of the 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, etc., 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.

[0190] The molding materials of the 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-butadiene block copolymer (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.

[0191] In some embodiments, reference Figure 17 and Figure 18 As shown, the second support body 220 can be located above the base 30 and connected to the base 30, the second support body 220 can be located on the side of the base close to the door 650 of the clothing processing device 600, the top surface of the second support body 220 can have a second avoidance area 220d, and the second avoidance area 220d can be a recessed structure. For example, the material corresponding to the second avoidance area 220d on the second support body 220 can be removed to form a recessed second avoidance area 220d at this position, and the raised structure on the counterweight block 640 can extend into the second avoidance area 220d, and the second support body can be used to support the counterweight block 640.

[0192] Because the counterweight 640 in the laundry processing device 600 is positioned on the side of the outer drum 620 near the door 650, and by positioning the second support body 220 on the side of the bottom liner 30 near the door 650, the second support body 220 and the counterweight 640 are 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's support of the counterweight 640. The second avoidance area 220d can avoid the raised structure on the counterweight 640, effectively reducing or avoiding interference between the raised structure and the second support body 220, preventing the raised structure from interfering with the second support body 220 and causing the counterweight 640 to tilt or misalign on the second support body 220. This helps improve the fit between the second support body 220 and the counterweight 640, and enhances the reliability and stability of the second support body 220's support of the counterweight 640.

[0193] Moreover, the second avoidance area 220d can limit and fix the raised structure on the counterweight block 640, which can reduce or avoid the movement or displacement of the counterweight block 640 relative to the second support body 220, and can effectively improve the firmness and reliability of the counterweight block 640 on the second support body 220, and enhance the reliability and stability of the second support body 220 in supporting the counterweight block 640.

[0194] The third support body 230 may be located above the base 30 and below the outer cylinder 620. At least a portion of the upper surface of the third support body 230 may abut against the outer cylinder 620, and the third support body 230 may be used to support the outer cylinder 620. For example, the third support body 230 may have a third support surface 231, and the third support surface 231 may contact the bottom of the outer cylinder 620, so that the third support body 230 can support the outer cylinder 620 through the third support surface 231.

[0195] In some embodiments, by providing a second avoidance area 220d on the top surface of the second support body 220 and allowing the protruding structure at the bottom of the counterweight 640 to extend into the second avoidance area 220d, interference between the protruding structure and the second support body 220 can be effectively reduced or avoided, thereby preventing the protruding structure from interfering with the second support body 220 and causing the counterweight 640 to tilt or misalign on the second support body 220. This helps to improve the fit between the second support body 220 and the counterweight 640, and enhances the reliability and stability of the second support body 220 in supporting the counterweight 640.

[0196] Moreover, the second avoidance area 220d can limit and fix the raised structure on the counterweight block 640, which can reduce or avoid the movement or displacement of the counterweight block 640 relative to the second support body 220, and can effectively improve the firmness and reliability of the counterweight block 640 on the second support body 220, and enhance the reliability and stability of the second support body 220 in supporting the counterweight block 640.

[0197] refer to Figures 15 to 18 As shown, the second support body 220 may have a second support surface 220a. The second support surface 220a may include a third support area 220b and a fourth support area 220c spaced apart from each other. A second relief area 220d may be located between the third support area 220b and the fourth support area 220c. The third support area 220b and the fourth support area 220c may contact and support the surface of the counterweight 640 on both sides of the protruding structure. The second relief area 220d is recessed relative to the third support area 220b and the fourth support area 220c. The protruding structure is located within the second relief area 220d. The structures of the second support body 220 corresponding to the third support area 220b and the fourth support area 220c may restrain the protruding structure to reduce or prevent the protruding structure from falling out of the second relief area 220d. This helps to improve the reliability and stability of the fit between the second support body 220 and the counterweight 640, and enhances the reliability and stability of the second support body 220's support of the counterweight 640.

[0198] refer to Figures 15 to 18As shown, the third support body 230 may have a third avoidance area 232, which may also be a recessed structure. The shock absorber connector connected to the outer cylinder 620 may be located within the third avoidance area 232, and the third avoidance area 232 may be used to avoid the shock absorber connector on the cylinder assembly. This can reduce or avoid interference between the shock absorber connector on the cylinder assembly and the third support body 230, and can reduce or avoid interference between the shock absorber connector and the third support body 230, which may cause the outer cylinder 620 to tilt or misalign on the third support body 230, thereby affecting the support effect of the third support body 230 on the outer cylinder 620. This is conducive to improving the fit between the cylinder assembly and the third support body 230, and enhancing the reliability and stability of the third support body 230's support of the cylinder assembly.

[0199] Moreover, the shock absorber connector on the cylinder assembly is located in the third avoidance area 232. The third avoidance area 232 can limit the shock absorber connector to reduce or avoid the movement or deviation of the shock absorber connector on the cylinder assembly, which helps to improve the reliability and firmness of the fit between the third support body 230 and the cylinder assembly, thereby effectively improving the stability of the third support body 230 in supporting the cylinder assembly.

[0200] refer to Figures 15 to 18 As shown, the third relief area 232 can be located at the end of the third support surface 231 that is close to the axis of the barrel assembly. The shock absorber connector is located at the end of the barrel assembly that is close to the axis. By locating the third relief area 232 at the end of the third support surface 231 that is close to the axis of the barrel assembly, the shock absorber connector can be aligned with the third relief area 232. This helps to improve the fit between the shock absorber connector and the third relief area 232, and enhances the reliability and stability of the third support body 230 in supporting the barrel assembly.

[0201] refer to Figures 15 to 18 As shown, the third support body 230 and the second support body 220 can be located on the same side of the axis of the barrel assembly, and the third support body 230 can support the part of the barrel assembly located on the side of the second support body 220, which can improve the reliability and stability of the support assembly 200 supporting the part of the barrel assembly located on the side of the second support body 220.

[0202] The fourth support body 240 can be located on a side of the third support body 230 away from the door body 650, and the fourth support body 240 can support the end of the barrel assembly 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, and the fourth support body 240 can support the rear end of the barrel assembly. In this way, the barrel support body can support both the front and rear ends of the barrel assembly, which can effectively improve the uniformity of the distribution of the support points of the barrel support body on the barrel assembly, thereby effectively improving the reliability and stability of the support provided by the barrel support body to the barrel assembly.

[0203] The third support 230 and the fourth support 240 can be respectively located on the axis of the barrel assembly (the axis direction is Figure 17 The third support body 230 and the fourth support body 240 can support the barrel assembly on both sides of the barrel assembly axis, and the fourth support body 240 can support the barrel assembly on the other side of the barrel assembly axis. In this way, the third support body 230 and the fourth support body 240 can support the barrel assembly on both sides of the barrel assembly axis, respectively, which can effectively improve the uniformity of the barrel support body's support on both sides of the barrel assembly, thereby effectively improving the reliability and stability of the barrel support body's support of the barrel assembly. In addition, the barrel support body can also absorb the impact force on the barrel assembly on both sides of the barrel assembly axis, thereby effectively improving the protective effect of the barrel assembly.

[0204] refer to Figures 19 to 20A As shown, the fourth support body 240 may have a fifth support region 2411 and a fourth avoidance region 2412. The fourth support surface 241 is located on the fifth support region 2411. The fourth avoidance region 2412 is a recessed structure. The side of the fourth support body 240 in the +Z axis direction is the top of the fourth support body 240. The recessed structure is provided on the top surface of the fourth support body 240.

[0205] The fourth avoidance area 2412 is used to avoid the water outlet pipe on the outer cylinder 620. That is, the water outlet pipe extends into the recessed structure. This arrangement can avoid the water outlet pipe so that the fourth support body 240 and the water outlet pipe do not interfere with each other, thereby preventing the water outlet pipe from being damaged.

[0206] The portion of the fourth support body 240 in the fourth avoidance area 2412 may be a notch, that is, the concave structure on the fourth support body 240 is a notch.

[0207] refer to Figures 15 to 18 As shown, the second support body 220 and the third support body 230 are connected. For example, the second support body 220 and the third support body 230 can be connected by bonding, snapping, or buckling. Alternatively, the second support body 220 and the third support body 230 can also be an integrated structure, so that the third support body 230 and the second support body 220 form a single unit.

[0208] In this way, the third support body 230 and the second support body 220 can provide restraint force to each other, which can effectively improve the reliability and stability of the third support body 230 and the second support body 220 arranged on the substrate 30, and enhance the overall structural stability of the support assembly 200.

[0209] In some embodiments, reference Figures 15 to 18As shown, the third support body 230 and the first support body 210 can be spaced apart along the axis of the drum assembly. 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 facing away from the door body 650, while the third support body 230 can support the end of the drum assembly 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 the front and rear ends of the laundry processing device 600, respectively, can improve the uniformity of the support assembly 200's support for the laundry processing device. Moreover, while meeting the requirements for supporting 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.

[0210] Alternatively, in some embodiments, the third support body 230 may further extend along the axis of the barrel assembly 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.

[0211] In some embodiments, reference Figure 21 As shown, the top surface of the base 30 is provided with four accommodating recesses 311, and the four bottom corners 611 respectively extend into the four accommodating recesses 311; at least four of the multiple connecting portions 36 are respectively provided at the four accommodating recesses 311, for connecting the upper side space of the accommodating recess 311 with the lower side space of the base 30.

[0212] like Figure 6A and Figure 21 As shown, it should be noted that, along the height direction of the clothing processing device 600 , the arrangement of the accommodating recess 311 can accommodate the bottom corner 611 of the clothing processing device 600 to protect the bottom corner 611 of the clothing processing device 600 .

[0213] It should be noted that there are many different configurations between the accommodating recess 311 and the bottom corner 611 of the clothing processing device 600 . The configurations between the accommodating recess 311 and the bottom corner 611 of the clothing processing device 600 are described below with examples.

[0214] like Figure 22 As shown, in some embodiments, at least a portion of the accommodating recess 311 is connected to the bottom corner 611 of the clothing processing device 600 , and the accommodating recess 311 is used to accommodate the bottom corner 611 of the clothing processing device 600 to protect the bottom corner 611 of the clothing processing device 600 .

[0215] In some embodiments, the accommodating recess 311 is spaced apart from the bottom corner 611 of the clothing processing device 600, the bottom corner 611 of the clothing processing device 600 is located inside the accommodating recess 311, and the accommodating recess 311 is arranged outside the bottom corner 611 of the clothing processing device 600 to protect the bottom corner 611 of the clothing processing device 600.

[0216] It is understandable that the arrangement between the accommodating recess 311 and the bottom corner 611 of the clothing processing device 600 can be selected according to actual usage requirements, and it is only necessary to ensure that the accommodating recess 311 can protect the bottom corner 611 of the clothing processing device 600.

[0217] like Figure 23 and Figure 24 As shown, in some embodiments, a plurality of communicating portions 36 are provided, and the plurality of communicating portions 36 are arranged at intervals.

[0218] It can be understood that providing multiple connecting portions 36 can increase the contact area between the bottom of the liner 30 and the outside of the package 10, thereby accelerating the efficiency of discharging condensed water in the accommodating area to the outside of the package 10 to reduce the volume of condensed water in the accommodating area.

[0219] It should be noted that there are many different arrangements of the multiple communication portions 36 . The arrangements of the multiple communication portions 36 are described below with examples.

[0220] In some embodiments, reference Figure 6B 、 Figure 6C as well as Figure 23 and Figure 24 As shown, along the first direction X, two adjacent communication portions 36 are spaced apart.

[0221] In some embodiments, reference Figure 6B 、 Figure 6C as well as Figure 23 and Figure 24 As shown, along the second direction Y, two adjacent communication portions 36 are spaced apart.

[0222] In some embodiments, two adjacent communication portions 36 are spaced apart in both the first direction X and the second direction Y.

[0223] It is understandable that the arrangement of the multiple communication portions 36 can be selected according to actual usage requirements.

[0224] It should be noted that the first direction X and the second direction Y are arranged at an angle, and the first direction X and the second direction Y are respectively arranged perpendicular to the height direction of the substrate 30 .

[0225] It can be understood that the angle between the first direction X and the second direction Y can make the arrangement of the multiple connecting parts 36 more uniform, thereby improving the efficiency of conducting condensed water in the accommodating area to the outside of the package 10, so as to reduce the volume of condensed water in the accommodating area.

[0226] It should be noted that the communication portion 36 has a variety of different setting positions. The setting positions of the communication portion 36 are described below with examples.

[0227] like Figure 25 and Figure 26 As shown, in some embodiments, the accommodating recess 311 is provided on the bottom plate 31 , and among the plurality of communicating portions 36 , at least some of the communicating portions 36 are provided on the bottom plate 31 .

[0228] It should be noted that when the communication portion 36 is provided on the bottom plate 31 , the lowest position of the bottom plate 31 communicates with the highest position of the communication portion 36 along the height direction of the base 30 .

[0229] It can be understood that the lowest position of the bottom plate 31 is connected to the highest position of the connecting portion 36, so that the water in the accommodating area can flow into the connecting portion 36 after passing through the lowest position of the bottom plate 31 in sequence under the action of gravity, and then be guided to the outside of the package 10 after passing through the connecting portion 36, thereby reducing the volume of condensed water in the accommodating area.

[0230] like Figure 27 and Figure 28 As shown, in some embodiments, the communication portion 36 is disposed in the accommodating recess 311 , and the communication portion 36 is used to guide the condensed water in the accommodating recess 311 to the outside of the package 10 .

[0231] It should be noted that, when the communicating portion 36 is provided in the accommodating recess 311 , along the height direction of the base 30 , the lowest position of the accommodating recess 311 is in communication with the highest position of the communicating portion 36 .

[0232] It can be understood that the water condensed on the clothing treatment device 600 will flow along the outer wall of the clothing treatment device 600, and move to the bottom corner 611 of the clothing treatment device 600 under the action of the water's own gravity, and drip into the accommodating recess 311, and then be guided to the outside of the package 10 through the connecting portion 36 provided on the accommodating recess 311, thereby reducing the volume of condensed water in the accommodating area.

[0233] In addition, in some embodiments, a connecting portion 36 is provided on the bottom plate 31 and the receiving recess 311. The connecting portion 36 is used to guide the condensed water on the bottom plate 31 to the outside of the package 10; the connecting portion 36 is used to guide the condensed water in the receiving recess 311 to the outside of the package 10.

[0234] It should be noted that when the communication portion 36 is provided on the bottom plate 31 , the lowest position of the bottom plate 31 communicates with the highest position of the communication portion 36 along the height direction of the base 30 .

[0235] It can be understood that the lowest position of the bottom plate 31 is connected to the highest position of the connecting portion 36, so that the water in the accommodating area can flow into the connecting portion 36 after passing through the lowest position of the bottom plate 31 in sequence under the action of gravity, and then be guided to the outside of the package 10 after passing through the connecting portion 36, thereby reducing the volume of condensed water in the accommodating area.

[0236] It should be noted that, when the communicating portion 36 is provided in the accommodating recess 311 , along the height direction of the base 30 , the lowest position of the accommodating recess 311 is in communication with the highest position of the communicating portion 36 .

[0237] It can be understood that the water condensed on the clothing treatment device 600 will flow along the outer wall of the clothing treatment device 600, and move to the bottom corner 611 of the clothing treatment device 600 under the action of the water's own gravity, and drip into the accommodating recess 311, and then be guided to the outside of the packaging 10 of the clothing treatment device through the connecting portion 36 provided on the accommodating recess 311, thereby reducing the volume of condensed water in the accommodating area.

[0238] It is understandable that the location of the connecting portion 36 can be selected according to actual usage requirements.

[0239] It should be noted that the communication portion 36 has a variety of different configurations, and the configurations of the communication portion 36 are described below with examples.

[0240] In some embodiments, reference Figure 25 and Figure 26 As shown, the communication portion 36 is a through hole, which is opened on the base 30 and is used to connect the upper space of the accommodating recess 311 with the lower space of the base 30 .

[0241] It can be understood that the provision of the through holes can reduce the difficulty of connecting the base 30 and the exterior of the package 10, thereby increasing the processing efficiency of the packaging of the clothing treatment device.

[0242] In some embodiments, reference Figure 27 and Figure 28 As shown, the connecting portion 36 is a connecting channel, which is provided on the base liner 30 and is used to connect the upper space of the accommodating recess 311 with the lower space of the base liner 30 .

[0243] It can be understood that the setting of the connecting channel can increase the efficiency of discharging condensed water in the base liner 30 to the outside of the package 10, thereby reducing the damage of the base liner 30 caused by the condensed water in the base liner 30, thereby extending the service life of the base liner 30.

[0244] It is understandable that there is no restriction on the configuration of the connecting portion 36 , and it can be selected according to actual use requirements, as long as the connecting portion 36 can connect the bottom plate and the outside of the package 10 .

[0245] In the packaging of the laundry processing device provided by the embodiment of the present disclosure, when the connecting portion 36 is provided in the accommodating recess 311 , the connecting portion 36 has a maximum diameter L1 , and the maximum diameter L1 satisfies: 1 mm ≤ L1 ≤ 2.5 mm.

[0246] It can be understood that the maximum diameter L1 satisfies: 1 mm ≤ L1 ≤ 2.5 mm, which will enable the condensed water in the accommodating area to be efficiently guided to the outside of the package 10 through the connecting portion 36, and can ensure the strength of the base 30, so as to improve the protective effect of the packaging of the clothing processing device on the clothing processing device 600.

[0247] It should be noted that if the maximum diameter L1 is less than 1 mm, the maximum diameter of the connecting portion 36 will be smaller, and the condensed water in the accommodating area cannot be guided to the outside of the package 10 through the connecting portion 36; if the maximum diameter L1 is greater than 2.5 mm, the strength of the base liner 30 will be reduced, thereby worsening the protection effect of the clothing processing device 600.

[0248] It should be noted that the maximum diameter L1 of the communication portion 36 has a variety of different value ranges. The value ranges of the maximum diameter L1 of the communication portion 36 are described below with examples.

[0249] In some embodiments, the maximum diameter L1 of the communication portion 36 satisfies the following relationship: 1 mm ≤ L1 ≤ 2 mm. It is understood that the maximum diameter L1 of the communication portion 36 satisfies the following relationship: 1 mm ≤ L1 ≤ 2 mm. This allows condensed water within the accommodating area to be efficiently guided to the exterior of the package 10 through the communication portion 36 , while also ensuring the strength of the bottom liner 30 , thereby enhancing the protective effect of the clothing treatment device package on the clothing treatment device 600 .

[0250] In some embodiments, the maximum diameter L1 of the communication portion 36 satisfies the following: 2 mm ≤ L1 ≤ 2.5 mm. It will be appreciated that the maximum diameter L1 of the communication portion 36 satisfies the following: 2 mm ≤ L1 ≤ 2.5 mm. This allows condensed water within the accommodating area to be efficiently guided to the exterior of the package 10 through the communication portion 36 , while also ensuring the strength of the bottom liner 30 , thereby enhancing the protective effect of the clothing treatment device package on the clothing treatment device 600 .

[0251] It is understandable that the value range of the maximum diameter L1 of the communication portion 36 can be selected according to actual use requirements.

[0252] It should be noted that the maximum diameter L1 of the communication portion 36 has various values. The values ​​of the maximum diameter L1 of the communication portion 36 are described below with examples.

[0253] In some embodiments, the maximum diameter L1 of the connecting portion 36 is 1.5 mm. It can be understood that the maximum diameter L1 is 1.5 mm, which can make the condensed water in the accommodating area efficiently guided to the outside of the package 10 through the connecting portion 36, and can ensure the strength of the liner 30, so as to improve the protective effect of the packaging of the clothing processing device on the clothing processing device 600.

[0254] In some embodiments, the maximum diameter L1 of the connecting portion 36 is 2 mm. It is understandable that the maximum diameter L1 is 1.5 mm, which can make the condensed water in the accommodating area efficiently guided to the outside of the package 10 through the connecting portion 36, and can ensure the strength of the lining 30, so as to improve the protective effect of the packaging of the clothing processing device on the clothing processing device 600.

[0255] In addition, in some embodiments, the maximum diameter L1 of the connecting portion 36 is 2.2 mm. It can be understood that the maximum diameter L1 is 1.5 mm, which can make the condensed water in the accommodating area efficiently guided to the outside of the package 10 through the connecting portion 36, and can ensure the strength of the liner 30, so as to improve the protective effect of the packaging of the clothing processing device on the clothing processing device 600.

[0256] It is understandable that the value of the maximum diameter L1 of the communication portion 36 can be selected according to actual use requirements.

[0257] It should be noted that the connecting portion 36 has a variety of different configuration shapes. The configuration shapes of the connecting portion 36 are described below with examples.

[0258] In some embodiments, the connecting portion 36 may be circular, which has the advantages of uniform force distribution and low processing costs. Alternatively, in some embodiments, the connecting portion 36 may be square, which has the advantages of easy opening and can improve the processing efficiency of the packaging of the clothing processing device.

[0259] It is understandable that the shape of the connecting portion 36 can be selected according to actual usage requirements.

[0260] It should be noted that, in the packaging of the clothes treating device provided by the embodiment of the present disclosure, along the height direction of the base 30 , the highest position of the accommodating recess 311 is connected to the lowest position of the bottom plate 31 .

[0261] It can be understood that the highest position of the accommodating recess 311 is connected to the lowest position of the bottom plate 31, so that water dripping on the bottom plate 31 can flow to the accommodating recess 311 under its own gravity, thereby reducing the volume of condensed water in the bottom plate 31, so as to improve the efficiency of guiding the condensed water in the packaging of the clothing treatment device to the outside of the packaging 10.

[0262] In some embodiments, reference Figure 6B and Figure 29 As shown, two escape openings 4111 are provided, one on each of the two front corner guards 41. The two escape openings 4111 are used to accommodate the door 650 of the laundry processing device 600 to protect the door 650 of the laundry processing device 600. The corner guard assembly 40 has an abutment surface 44 and a protective surface 45. The abutment surface 44 is located on the side of the accommodating area close to the laundry processing device 600, and the protective surface 45 is located on the side of the accommodating area away from the laundry processing device 600. The abutment surface 44 and the protective surface 45 are spaced apart in a direction perpendicular to the height of the laundry processing device 600. One end of the support portion 46 is connected to the abutment surface 44, and the other end of the support portion 46 is connected to the protective surface 45. The abutment surface 44, the protective surface 45, and the support portion 46 together enclose a deformation cavity. The gap between the abutment surface 44 and the protective surface 45 is used to prevent the protective surface 45 from directly contacting the abutment surface 44. The supporting portion 46 is used to support the gap between the abutting surface 44 and the protective surface 45 and form a deformation cavity.

[0263] It should be noted that the protective surface 45 is used to be connected to the outer peripheral wall of the clothing processing device 600 to protect the outer peripheral wall of the clothing processing device 600; the abutment surface 44 is used to protect the protective surface 45 to reduce direct damage to the protective surface 45 by external force, and the gap between the abutment surface 44 and the protective surface 45 can accommodate the deformation of the protective surface 45 to reduce the damage to the abutment surface 44 caused by the deformation of the protective surface 45, thereby improving the protection effect of the outer peripheral wall of the clothing processing device 600.

[0264] It should be noted that there are two avoidance openings 4111 , which are respectively arranged on the two front corner guards 41 . The two avoidance openings 4111 are used to accommodate the door body 650 of the clothing processing device 600 to protect the door body 650 of the clothing processing device 600 .

[0265] It should be noted that there are many different connection methods between the support portion 46 and the abutting surface 44 and the protective surface 45 . The connection methods between the support portion 46 and the abutting surface 44 and the protective surface 45 are described below with examples.

[0266] In some embodiments, reference Figure 29As shown, one end of the support portion 46 is connected to the outermost portion of the abutting surface 44 , and the other end of the support portion 46 is connected to the outermost portion of the protective surface 45 .

[0267] It can be understood that the support portion 46 can support the abutting surface 44 and the protective surface 45 to improve the connection strength between the abutting surface 44 and the protective surface 45, thereby extending the service life of the packaging of the clothing processing device.

[0268] In some embodiments, reference Figure 31 As shown, one end of the support portion 46 is rotatably disposed on the abutting surface 44 , and the other end of the support portion 46 is rotatably disposed on the protective surface 45 .

[0269] It can be understood that when the protective surface 45 is subjected to external force, the protective surface 45 will rotate with the connection between the protective surface 45 and the support part 46 as the rotation center, and drive the support part 46 to rotate with the connection between the support part 46 and the abutment surface 44 as the rotation center. The deformation of the protective surface 45 and the support part 46 can reduce the impact of the external force on the abutment surface 44, thereby protecting the abutment surface 44 and extending the service life of the packaging of the clothing processing device.

[0270] It is understandable that the connection method between the support portion 46 and the abutting surface 44 and the protective surface 45 can be selected according to actual use requirements, and it is only necessary to ensure that the support portion 46 is connected to the abutting surface 44 and the protective surface 45 respectively.

[0271] It should be noted that the corner guard assembly 40 is a plastic part made of one or more of 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.

[0272] It should be noted that, along the height direction of the vertical clothes processing device 600, the abutting surface 44 has a first thickness L1. The first thickness L1 can be set in many different ways. The thickness of the first thickness L1 is described below with examples.

[0273] In some embodiments, the first thickness L1 satisfies: 2mm≤L1≤8mm, so that the abutment surface 44 can safely protect the clothing processing device 600, and can reduce the occupied area of ​​the abutment surface 44 to reduce the weight and volume of the package 10, thereby reducing the processing and transportation costs of the package 10.

[0274] It should be noted that if the first thickness L1 is less than 2 mm, the connection strength of the abutment surface 44 will be insufficient, thereby causing the abutment surface 44 to provide poor protection for the clothing processing device 600. If the first thickness L1 is greater than 8 mm, the space occupied by the abutment surface 44 will increase, thereby increasing the volume of the package 10, increasing the weight of the package 10, increasing the cost of the package 10, and making transportation more difficult.

[0275] In some embodiments, reference Figures 29 to 32 The first thickness L1 satisfies: 3mm≤L1≤5mm. Increasing the thickness of the abutting surface 44 can increase the strength of the abutting surface 44 to improve the packaging strength of the clothing processing device, and can reduce the space occupied by the package 10, thereby achieving a reduction in the volume of the package 10 to reduce the processing and transportation costs of the package 10.

[0276] It should be noted that if the first thickness L1 is less than 3 mm, the connection strength of the abutment surface 44 will be insufficient, thereby causing the abutment surface 44 to provide poor protection to the clothing processing device 600. If the first thickness L1 is greater than 5 mm, the space occupied by the abutment surface 44 will increase, thereby increasing the volume of the package 10, increasing the weight of the package 10, increasing the cost of the package 10, and making transportation more difficult.

[0277] It is understandable that the setting size of the first thickness L1 can be selected according to actual usage requirements.

[0278] It should be noted that, along the height direction of the vertical clothes processing device 600, the protective surface 45 has a second thickness L2. The second thickness L2 can be set in many different ways. The thickness of the second thickness L2 is described below with examples.

[0279] In some embodiments, reference Figures 29 to 32 The second thickness L2 satisfies: 2mm≤L2≤8mm. Increasing the thickness of the protective surface 45 can improve the strength of the protective surface 45, thereby improving the packaging strength of the clothing processing device.

[0280] In some embodiments, reference Figures 29 to 32 The second thickness L2 satisfies: 3 mm ≤ L2 ≤ 5 mm. Increasing the thickness of the protective surface 45 can improve the strength of the protective surface 45, thereby improving the packaging strength of the clothing processing device.

[0281] It is understandable that the setting size of the second thickness can be selected according to actual usage requirements.

[0282] The packaging of the clothing processing device provided in an embodiment of the present disclosure also includes: an elastic member, which is arranged in the deformation cavity, and at least a portion of the elastic member is connected to the inner wall of the deformation cavity, and the elastic member is configured to elastically support the deformation generated by the deformation cavity.

[0283] It can be understood that when the protective surface 45 is deformed toward the side close to the elastic member, the elastic member can elastically support the deformation of the protective surface 45 to reduce the occurrence of damage to the abutment surface 44 caused by the protective surface 45 moving toward the abutment surface 44, thereby extending the service life of the packaging of the clothing processing device.

[0284] It should be noted that the elastic member has a variety of different installation positions. The installation positions of the elastic member are described below with examples.

[0285] In some embodiments, reference Figures 29 to 32 At least a portion of the elastic member is connected to the abutting surface 44 , and another portion of the elastic member is spaced apart from the protective surface 45 .

[0286] It can be understood that when the protective surface 45 is subjected to external force, it will move toward the side close to the abutment surface 44, and drive the elastic member to move toward the side close to the protective surface 45 and abut against the abutment surface 44. The elastic member can slow down the direct contact between the protective surface 45 and the abutment surface 44, causing the protective surface 45 to impact the abutment surface 44, resulting in damage to the abutment surface 44 or the outer peripheral wall of the clothing processing device 600, thereby extending the service life of the packaging of the clothing processing device and safely protecting the outer peripheral wall of the clothing processing device 600.

[0287] In some embodiments, reference Figures 29 to 32 At least a portion of the elastic member is connected to the protective surface 45 , and another portion of the elastic member is spaced apart from the abutting surface 44 .

[0288] It can be understood that when the protective surface 45 is subjected to external force, it will move toward the side close to the abutment surface 44 and abut the elastic member. The elastic member can slow down the direct contact between the protective surface 45 and the abutment surface 44, causing the protective surface 45 to impact the abutment surface 44, resulting in damage to the abutment surface 44 or the outer peripheral wall of the clothing processing device 600, thereby extending the service life of the packaging of the clothing processing device and safely protecting the outer peripheral wall of the clothing processing device 600.

[0289] In addition, in some embodiments, reference Figures 29 to 32 One end of the elastic member is connected to the abutting surface 44 , and the other end of the elastic member is connected to the protective surface 45 .

[0290] It can be understood that when the protective surface 45 is subjected to external force, it will move toward the side close to the abutment surface 44, and the elastic member can elastically support the protective surface 45 toward the side away from the abutment surface 44, thereby extending the service life of the packaging of the clothing processing device and safely protecting the outer peripheral wall of the clothing processing device 600.

[0291] It is understandable that the installation position of the elastic member can be selected according to actual use requirements, and it is only necessary to ensure that the elastic member can elastically support the deformation generated by the deformation cavity.

[0292] It should be noted that the elastic member has a variety of different configurations, and the configurations of the elastic member are described below with examples.

[0293] In some embodiments, reference Figures 29 to 32 The elastic member is an air exhaust, which is arranged in the deformation cavity. The air exhaust is used to elastically support the deformation generated by the deformation cavity to extend the service life of the packaging of the clothing processing device and safely protect the outer peripheral wall of the clothing processing device 600.

[0294] In some embodiments, the elastic member is rubber, which is disposed in the deformation cavity. The rubber is used to elastically support the deformation generated by the deformation cavity to extend the service life of the packaging of the clothing processing device and to safely protect the outer peripheral wall of the clothing processing device 600.

[0295] It can be understood that the elastic part can be one or a combination of elastic materials such as air exhaust, bubble bag, resin fiber elastic pad, rubber, TPE, etc., and can be selected according to actual usage requirements. It is only necessary to ensure that the elastic part can elastically support the deformation generated by the deformation cavity.

[0296] The embodiment of the present disclosure provides a plurality of support portions 46 , and the plurality of support portions 46 are arranged at intervals. It should be noted that the plurality of support portions 46 can be arranged in a variety of different ways. The following describes the arrangement of the plurality of support portions 46 in turn with examples.

[0297] In some embodiments, reference Figures 29 to 32 , along the first direction X, among the multiple support portions 46 , two adjacent support portions 46 are arranged at intervals.

[0298] It is understandable that increasing the number of support portions 46 can improve the connection strength between the abutment surface 44 and the protective surface 45 to extend the service life of the packaging of the clothing processing device and provide safety protection for the outer peripheral wall of the clothing processing device 600.

[0299] In some embodiments, reference Figures 29 to 32 , along the second direction Y, among the multiple support portions 46 , two adjacent support portions 46 are arranged at intervals.

[0300] It is understandable that increasing the number of support portions 46 can improve the connection strength between the abutment surface 44 and the protective surface 45 to extend the service life of the packaging of the clothing processing device and provide safety protection for the outer peripheral wall of the clothing processing device 600.

[0301] In addition, in some embodiments, reference Figures 29 to 32 Among the plurality of support portions 46 , two adjacent support portions 46 are spaced apart along the first direction X and the second direction Y, respectively.

[0302] It is understandable that increasing the number of support portions 46 can improve the connection strength between the abutment surface 44 and the protective surface 45 to extend the service life of the packaging of the clothing processing device and provide safety protection for the outer peripheral wall of the clothing processing device 600.

[0303] It is understandable that the arrangement of the multiple support portions 46 can be selected according to actual usage requirements.

[0304] It should be noted that the first direction X and the second direction Y are arranged at an angle, and the first direction X and the second direction Y are respectively arranged perpendicular to the height direction of the laundry processing device 600 .

[0305] It should be noted that there are many different ways to set the angle between the first direction X and the second direction Y. The following describes the ways to set the angle between the first direction X and the second direction Y with examples.

[0306] In some embodiments, the first direction X and the second direction Y are arranged at an angle of 45 degrees.

[0307] In some embodiments, reference Figures 29 to 32 , the first direction X and the second direction Y are arranged at an angle of 90 degrees.

[0308] It is understandable that the angle between the first direction X and the second direction Y can be selected according to actual use requirements.

[0309] The packaging of the clothing processing device provided in the embodiment of the present disclosure further includes: a connector, which is arranged in the deformation cavity, one end of the connector is connected to the abutment surface 44, and the other end of the connector is connected to the protective surface 45.

[0310] It is understandable that the provision of the connector can improve the connection strength between the abutting surface 44 and the protective surface 45 , thereby extending the service life of the packaging of the clothing processing device and providing safety protection for the outer peripheral wall of the clothing processing device 600 .

[0311] It should be noted that there are many ways to set up the connector, and the following examples will illustrate the ways to set up the connector in turn.

[0312] In some embodiments, reference Figures 29 to 32 The connecting piece is a reinforcing rib, one end of the reinforcing rib is connected to the abutting surface 44, and the other end of the reinforcing rib is connected to the protective surface 45. The setting of the reinforcing rib can improve the connection strength between the abutting surface 44 and the protective surface 45.

[0313] In some embodiments, the connecting member is a Z-shaped rib, one end of which is connected to the abutment surface 44 and the other end of which is connected to the protective surface 45 . The provision of the Z-shaped rib can improve the connection strength between the abutment surface 44 and the protective surface 45 .

[0314] It is understandable that the configuration of the connector can be selected according to actual usage requirements.

[0315] like Figures 29 to 32 As shown, it should be noted that, along the first direction X, the front corner protectors 41 and the rear corner protectors 42 are arranged at intervals; along the second direction Y, the two front corner protectors 41 are arranged at intervals, and the two rear corner protectors 42 are arranged at intervals.

[0316] It can be understood that the top end of the front corner guard 41 is connected to one end of the top cover 20, and the top end of the rear corner guard 42 is connected to the other end of the top cover 20; the bottom end of the front corner guard 41 is connected to one end of the base 30, and the bottom end of the rear corner guard 42 is connected to the other end of the base 30; the front corner guard 41, the rear corner guard 42, the top cover 20 and the base 30 together enclose a accommodating area to protect the clothing processing device 600.

[0317] The embodiment of the present disclosure provides that a plurality of front corner guards 41 are provided, and a plurality of rear corner guards 42 are provided.

[0318] It should be noted that increasing the number of the front corner guards 41 and the rear corner guards 42 can improve the protection effect of the outer peripheral wall of the clothing processing device 600 and extend the service life of the packaging of the clothing processing device.

[0319] It should be noted that there are many different arrangements between the multiple front corner protectors 41 and the multiple rear corner protectors 42 . The arrangements between the multiple front corner protectors 41 and the multiple rear corner protectors 42 are described below with examples.

[0320] In some embodiments, reference Figures 29 to 32 Along the second direction Y, a plurality of front corner guards 41 are arranged at intervals, and a plurality of rear corner guards 42 are arranged at intervals.

[0321] It can be understood that by increasing the number of front corner guards 41 and rear corner guards 42 along the second direction Y, the supporting strength of the corner guard assembly 40 on the top cover 20 and the base lining 30 can be improved, thereby improving the connection strength of the accommodating area, so as to extend the service life of the packaging of the clothing processing device and improve the protection effect of the clothing processing device 600.

[0322] In some embodiments, reference Figures 29 to 32 Along the height direction of the clothing processing device 600, a plurality of front corner guards 41 are arranged at intervals, and a plurality of rear corner guards 42 are arranged at intervals.

[0323] It is understandable that increasing the number of front corner guards 41 and rear corner guards 42 along the height direction of the clothing processing device 600 can reduce the processing difficulty of the front corner guards 41 and rear corner guards 42, thereby improving the processing efficiency of the packaging of the clothing processing device.

[0324] In some embodiments, reference Figures 29 to 32 Along the second direction Y, multiple front corner guards 41 are arranged at intervals, and multiple rear corner guards 42 are arranged at intervals; along the height direction of the clothing processing device 600, multiple front corner guards 41 are arranged at intervals, and multiple rear corner guards 42 are arranged at intervals.

[0325] It can be understood that, by increasing the number of front corner guards 41 and rear corner guards 42 along the second direction Y, the supporting strength of the corner guard assembly 40 on the top cover 20 and the bottom lining 30 can be improved, thereby improving the connection strength of the accommodating area, so as to extend the service life of the packaging of the clothing processing device and improve the protection effect of the clothing processing device 600; by increasing the number of front corner guards 41 and rear corner guards 42 along the height direction of the clothing processing device 600, the processing difficulty of the front corner guards 41 and the rear corner guards 42 can be reduced, thereby improving the processing efficiency of the packaging of the clothing processing device.

[0326] It is understandable that the arrangement of the plurality of front corner protectors 41 and the plurality of rear corner protectors 42 can be selected according to actual use requirements.

[0327] like Figure 33 As shown, the packaging of the laundry treating apparatus provided by the embodiment of the present disclosure further includes at least one supporting bar 100 .

[0328] It should be noted that the support bar 100 has a variety of different configurations. The configurations of the support bar 100 are described below with examples.

[0329] like Figure 34 As shown, in some embodiments, among two adjacent front corner guards 41 , one end of the support bar 100 is connected to one of the front corner guards 41 , and the other end of the support bar 100 is connected to the other of the front corner guards 41 .

[0330] It can be understood that the support bar 100 is used to improve the connection strength between two adjacent front corner guards 41 to improve the connection strength of the packaging of the clothing processing device, thereby safely protecting the clothing processing device 600.

[0331] like Figure 35 As shown, in some embodiments, among two adjacent rear corner guards 42 , one end of the support bar 100 is connected to one of the rear corner guards 42 , and the other end of the support bar 100 is connected to the other of the rear corner guards 42 .

[0332] It can be understood that the support bar 100 is used to improve the connection strength between two adjacent rear corner guards 42 to improve the connection strength of the packaging of the clothing processing device, thereby safely protecting the clothing processing device 600.

[0333] In addition, in some embodiments, two support bars 100 are provided; in two adjacent front corner guards 41, one end of one support bar 100 is connected to one of the front corner guards 41, and the other end of the support bar 100 is connected to the other front corner guard 41; in two adjacent rear corner guards 42, one end of the other support bar 100 is connected to one of the rear corner guards 42, and the other end of the support bar 100 is connected to the other rear corner guard 42.

[0334] It can be understood that the support bar 100 connected to the two adjacent front corner guards 41 is used to improve the connection strength between the two adjacent front corner guards 41; the support bar 100 connected to the two adjacent rear corner guards 42 is used to improve the connection strength between the two adjacent rear corner guards 42; so as to improve the connection strength of the packaging of the clothing processing device, thereby providing safe protection for the clothing processing device 600.

[0335] It is understandable that the configuration of the support bar 100 can be selected according to actual usage requirements.

[0336] It should be noted that, in two adjacent front corner guards 41, when one end of the support bar 100 is connected to one of the front corner guards 41 and the other end of the support bar 100 is connected to the other front corner guard 41, the support bar 100 has a variety of different position orientations. The position orientations of the support bar 100 are illustrated below in turn.

[0337] In some embodiments, the support bar 100 is arranged parallel to the second direction Y, and the support bar 100 is used to support two adjacent front corner guards 41 along the second direction Y.

[0338] It can be understood that the provision of the support bar 100 can improve the connection strength of the two adjacent front corner guards 41 along the second direction Y, so as to improve the strength of the packaging of the clothing processing device.

[0339] In some embodiments, the support bar 100 is arranged parallel to the height direction of the laundry processing device 600 , and the support bar 100 is used to support two adjacent front corner guards 41 along the height direction of the laundry processing device 600 .

[0340] It can be understood that the provision of the support bar 100 can improve the connection strength of the two adjacent front corner guards 41 along the height direction of the clothing processing device 600, so as to improve the strength of the packaging of the clothing processing device.

[0341] It can be understood that, in two adjacent front corner guards 41, one end of the support bar 100 is connected to one of the front corner guards 41, and the other end of the support bar 100 is connected to the other front corner guard 41, and the position and orientation of the support bar 100 can be selected according to actual usage requirements.

[0342] It should be noted that, in two adjacent rear corner guards 42, when one end of the support bar 100 is connected to one of the rear corner guards 42 and the other end of the support bar 100 is connected to the other rear corner guard 42, the support bar 100 has a variety of different position orientations. The position orientations of the support bar 100 are illustrated below in turn.

[0343] In some embodiments, the support bar 100 is arranged parallel to the second direction Y, and the support bar 100 is used to support two adjacent rear corner guards 42 along the second direction Y.

[0344] It can be understood that the provision of the support bar 100 can improve the connection strength of the two adjacent rear corner guards 42 along the second direction Y, thereby improving the strength of the packaging of the clothing processing device.

[0345] In some embodiments, the support bar 100 is arranged parallel to the height direction of the laundry processing device 600 , and the support bar 100 is used to support two adjacent rear corner guards 42 along the height direction of the laundry processing device 600 .

[0346] It can be understood that the provision of the support bar 100 can improve the connection strength of the two adjacent rear corner guards 42 along the height direction of the clothing processing device 600, so as to improve the strength of the packaging of the clothing processing device.

[0347] It can be understood that, in two adjacent rear corner guards 42, when one end of the support bar 100 is connected to one of the rear corner guards 42 and the other end of the support bar 100 is connected to the other rear corner guard 42, the position and orientation of the support bar 100 can be selected according to actual usage requirements.

[0348] The front corner guard 41 provided by the embodiment of the present disclosure includes: a first protecting portion 411 and a second protecting portion 412, and the first protecting portion 411 and the second protecting portion 412 are connected; along the first direction X, the first protecting portion 411 is used to connect to the first outer portion of the clothing processing device 600; along the second direction Y, the second protecting portion 412 is used to connect to at least one of the second outer wall 6102 and the third outer wall 6103; the first outer wall 6101 is respectively connected to the second outer wall 6102 and the third outer wall 6103; along the second direction Y, the second outer wall 6102 and the third outer wall 6103 are arranged opposite to each other.

[0349] It can be understood that the connection between the first protection portion 411 and the second protection portion 412 can enhance the protection effect on the outer peripheral wall of the clothing processing device 600.

[0350] It should be noted that the second protection portion 412 has a variety of different installation positions. The installation positions of the second protection portion 412 are described below with examples.

[0351] In some embodiments, the second protection portion 412 is connected to the second outer wall 6102 , and the front corner guard 41 is used to protect the connection between the first outer wall 6101 and the second outer wall 6102 .

[0352] In some embodiments, the second protection portion 412 is connected to the third outer wall 6103 , and the front corner guard 41 is used to protect the connection between the first outer wall 6101 and the third outer wall 6103 .

[0353] It is understandable that the installation position of the second protection portion 412 can be selected according to actual usage requirements.

[0354] It should be noted that the first protection portion 411 and the second protection portion 412 are arranged in an L-shape. The L-shaped structure can protect the two outer wall surfaces of the clothing processing device 600 and has the advantage of convenient processing.

[0355] The rear corner guard 42 provided in the embodiment of the present disclosure includes: a third protecting portion 421 and a fourth protecting portion 422, and the third protecting portion 421 and the fourth protecting portion 422 are connected; along the first direction X, the third protecting portion 421 is used to connect to the fourth outer wall 6104 of the clothing processing device 600; along the second direction Y, the fourth protecting portion 422 is connected to at least one of the second outer wall 6102 and the third outer wall 6103; the fourth outer wall 6104 is respectively connected to the second outer wall 6102 and the third outer wall 6103; along the first direction X, the first outer wall 6101 and the fourth outer wall 6104 are arranged opposite to each other.

[0356] It can be understood that the connection between the third protection portion 421 and the fourth protection portion 422 can enhance the protection effect on the outer peripheral wall of the clothing processing device 600.

[0357] It should be noted that the fourth protection portion 422 has a variety of different installation positions. The installation positions of the fourth protection portion 422 are described below with examples.

[0358] In some embodiments, reference Figure 6B 、 Figure 6C The fourth protection portion 422 is connected to the second outer wall 6102 , and the rear corner guard 42 is used to protect the connection between the first outer wall 6101 and the second outer wall 6102 .

[0359] In some embodiments, the fourth protection portion 422 is connected to the third outer wall 6103 , and the rear corner guard 42 is used to protect the connection between the first outer wall 6101 and the third outer wall 6103 .

[0360] It is understandable that the installation position of the fourth protection portion 422 can be selected according to actual usage requirements.

[0361] It should be noted that the third protection portion 421 and the fourth protection portion 422 are arranged in an L-shape. The L-shaped structure can protect the two outer wall surfaces of the clothing processing device 600 and has the advantage of convenient processing.

[0362] refer to Figure 36 and Figure 38 As shown, the top cover 20 includes a top plate 21 and a top enclosure 22. The top enclosure 22 surrounds the edge of the top plate 21 and is connected to the top plate 21. When the top cover 20 is wrapped around the top of the housing, the top plate 21 contacts the top surface of the housing, and the top enclosure 22 surrounds the side wall of the top of the laundry treatment device 600.

[0363] The top plate 21 may be a rectangular plate, and the top plate 21 includes a Figure 36 The first connecting edge and the second connecting edge opposite to the X direction shown in FIG, and the first connecting edge and the second connecting edge along the second direction ( Figure 36 The third connecting edge and the fourth connecting edge are opposite to each other in the Y direction shown in the figure, the first direction is perpendicular to the second direction).

[0364] In some embodiments, the top plate 21 may include 2 to 6 layers of stacked plastic hollow plates 50. The top plate 21 composed of 2 to 6 layers of plastic hollow plates 50 has optimal cushioning performance and can meet the protection requirements of the clothing processing device 600; at the same time, the top plate 21 composed of 2 to 6 layers of plastic hollow plates 50 is light in weight and low in cost, which facilitates the transportation of the clothing processing device 600.

[0365] Here, the top plate 21 may include three stacked layers of plastic hollow plates 50 , which can be fully suitable for packaging of the laundry treatment device.

[0366] In some embodiments, the outer surface of each layer of the plastic hollow board 50 is provided with a textured structure. The textured structure serves as a reinforcing rib on the outer surface of the plastic hollow board 50 , which can improve the supporting strength of the plastic hollow board 50 and further improve the cushioning performance of the top plate 21 .

[0367] Here, the pattern structure may include words, letters, or geometric shapes composed of lines. For example, the pattern structure may be a plurality of circles arranged in an array, a plurality of triangles arranged in an array, or a mesh structure. The pattern is simple and easy to produce.

[0368] Figure 39The schematic diagram of the partial structure inside the top cover 20 is shown schematically. Figure 39 As shown, in some embodiments, the top plate 21 includes a first layer of plastic hollow plate 250, which is configured to contact the top surface of the clothing processing device 600, that is, the first layer of plastic hollow plate 250 is the innermost plastic hollow plate 50 of the top plate 21, and the thickness of the first layer of plastic hollow plate 250 is 3 mm-5 mm.

[0369] The 3 mm -5 mm plastic hollow plate 50 can fully protect the clothes processing device 600 . Meanwhile, the 3 mm -5 mm plastic hollow plate 50 is light in weight, which facilitates the transportation of the clothes processing device 600 .

[0370] In some embodiments, the outer surface of the first plastic hollow board 250 is configured to contact the top surface of the housing. The outer surface of the first plastic hollow board 250 is provided with a barrier 260 , which includes non-woven fabric or velvet.

[0371] Non-woven fabric or flannel is a flexible barrier. By arranging non-woven fabric or flannel between the first layer of plastic hollow plate 250 and the top surface of the shell, the top surface of the shell can be protected to prevent the reinforcing ribs inside the first layer of plastic hollow plate 250 or the texture structure on the outer surface of the first layer of plastic hollow plate 250 from squeezing the top surface of the clothing processing device 600 and causing indentations.

[0372] In some embodiments, the top enclosure 22 has a hollow chamber, which is used to improve the cushioning performance of the top enclosure 22 .

[0373] In some embodiments, a buffer member 80 is further provided in the hollow chamber to further improve the buffering performance of the top enclosure 22 .

[0374] The buffer member 80 may include: an air vent, a bubble bag, a plant fiber foam pad, a resin fiber pad, a resin spinning elastic pad, rubber or a thermoplastic elastomer.

[0375] The above-mentioned buffer members 80 all have good buffering effects, and are light in weight and low in cost.

[0376] Continue to refer Figure 37 and Figure 38 As shown, in some embodiments, the top plate 21 can be a rectangular plate, and the top plate 21 includes a first direction ( Figure 36 The first connecting edge and the second connecting edge opposite to the X direction shown in FIG, and the first connecting edge and the second connecting edge along the second direction ( Figure 36 The third connecting edge and the fourth connecting edge are opposite to each other in the Y direction shown in the figure, the first direction is perpendicular to the second direction).

[0377] The top enclosure 22 may include: a first enclosure portion 221, a second enclosure portion 222 and a third enclosure portion 223, Figure 37 and Figure 38 In some embodiments, with the door of the clothing processing device 600 being located at the front, the first enclosure portion 221 may be a front enclosure, the second enclosure portion 222 may be a rear enclosure, and the third enclosure portion 223 may be left and right side enclosures. The third enclosure portion 223 includes a first side enclosure 2231 and a second side enclosure 2232.

[0378] The first enclosure portion 221 is connected to the first connecting edge, the second enclosure portion 222 is connected to the second connecting edge, the first side enclosure 2231 is connected to the third connecting edge, and the second side enclosure 2232 is connected to the fourth connecting edge.

[0379] In some embodiments, the first enclosure portion 221 may be vertically connected to the first connecting edge, the second enclosure portion 222 may be vertically connected to the second connecting edge, the first side enclosure 2231 may be vertically connected to the third connecting edge, and the second side enclosure 2232 may be vertically connected to the fourth connecting edge.

[0380] The vertical connection can ensure that the first enclosure portion 221 , the second enclosure portion 222 , the first side enclosure 2231 , and the second side enclosure 2232 can all be in contact with the side wall of the laundry processing device 600 .

[0381] In some embodiments, the first enclosure 221 , the second enclosure 222 , the first side enclosure 2231 and the second side enclosure 2232 all have hollow chambers, which are used to improve the buffering performance of the first enclosure 221 , the second enclosure 222 , the first side enclosure 2231 and the second side enclosure 2232 .

[0382] In some embodiments, the above-mentioned plastic hollow board 50 is folded to obtain a first enclosure portion 221 , a second enclosure portion 222 , a first side enclosure 2231 and a second side enclosure 2232 having a hollow cavity.

[0383] In some embodiments, the top enclosure 22 has a first thickness, which is 2 cm to 4 cm. That is, the first enclosure portion 221 and the second enclosure portion 222 are arranged in a first direction ( Figure 38 The thickness in the X direction shown in FIG) (including the thickness of the first hollow chamber 2210), the first side panel 2231 and the second side panel 2232 in the second direction ( Figure 38 The thickness in the Y direction (indicated in FIG) (including the thickness of the second hollow chamber 2230) is a first thickness, and the first thickness is 2 cm-4 cm.

[0384] The top enclosure 22 of the first thickness can fully protect the clothes processing device 600 . Meanwhile, the top enclosure 22 of the first thickness is light in weight, which facilitates the transportation of the clothes processing device 600 .

[0385] In some embodiments, the hollow chamber has a second thickness, which is 1 cm-2 cm. That is, the first hollow chamber 2210 is disposed in the first direction ( Figure 38 The thickness of the second hollow cavity 2230 in the second direction ( Figure 38 The thickness in the Y direction (shown in ) is the second thickness, and the second thickness is 1 cm-2 cm.

[0386] The hollow chamber of the second thickness can fully protect the clothing processing device 600 . At the same time, the hollow chamber of the second thickness can accommodate the buffer member 80 , which is light in weight and has support, as much as possible, thereby facilitating the transportation of the clothing processing device 600 .

[0387] In some embodiments, the top enclosure 22 has a first thickness, the hollow chamber has a second thickness, and a ratio of the second thickness to the first thickness is comprised between 0.5% and 2.0%.

[0388] When the ratio of the second thickness to the first thickness is less than 0.5%, the thickness of the hollow chamber is insufficient, and the buffering effect on the drum washing machine cannot be achieved, and the setting of the hollow chamber is meaningless; when the ratio of the second thickness to the first thickness is greater than 2.0%, the thickness of the hollow chamber is large and the thickness of the plastic hollow plate is thin, resulting in low strength and insufficient toughness of the top enclosure 22, which is easily damaged during the transportation of the drum washing machine and cannot protect the drum washing machine.

[0389] Continue to refer Figure 38 As shown, in some embodiments, the hollow chamber includes a first hollow chamber 2210 and a second hollow chamber 2230. In some embodiments, the first enclosure 221 and the second enclosure 222 have the first hollow chamber 2210, and the first side enclosure 2231 and the second side enclosure 2232 both have the second hollow chamber 2230.

[0390] In some embodiments, the dimensions of the top cover 20 include: Figure 38 The width of the X direction (shown in the figure) is 645 (±10) mm, and the width of the second direction ( Figure 38 The width in the Y direction (as shown in FIG) is 670 (±10) mm, and the height in the vertical direction is 70 (±5) mm. In some embodiments, the size of the top cover 20 may be 643 mm×668 mm×69 mm.

[0391] It should be noted that the size of the top cover 20 can be adjusted according to the weight of the clothes processing device 600 to meet the needs of clothes processing devices 600 of different types and weights.

[0392] In some embodiments, the top enclosure 22 includes: a first enclosure portion 221, a second enclosure portion 222 and a third enclosure portion 223. Figure 37 and Figure 38 The first enclosure portion 221 can be a front enclosure portion, and the second enclosure portion 222 can be a rear enclosure portion. The first enclosure portion 221 is located on the front side of the shell, and the second enclosure portion 222 is located on the rear side of the shell. The third enclosure portion 223 can be left and right side enclosures. The third enclosure portion 223 includes a first side enclosure portion 2231 and a second side enclosure portion 2232. The first side enclosure portion 2231 is located on the right side of the shell, and the second side enclosure portion 2232 is located on the left side of the shell.

[0393] The first enclosure portion 221 is connected to the first connecting edge, the second enclosure portion 222 is connected to the second connecting edge, the first side enclosure 2231 is connected to the third connecting edge, and the second side enclosure 2232 is connected to the fourth connecting edge.

[0394] In some embodiments, the first enclosure portion 221 may be vertically connected to the first connecting edge, the second enclosure portion 222 may be vertically connected to the second connecting edge, the first side enclosure 2231 may be vertically connected to the third connecting edge, and the second side enclosure 2232 may be vertically connected to the fourth connecting edge.

[0395] The vertical connection can ensure that the first enclosure portion 221 , the second enclosure portion 222 , the first side enclosure 2231 , and the second side enclosure 2232 can all be in contact with the side wall of the laundry processing device 600 .

[0396] In some embodiments, reference Figure 37 As shown, a support member 100 is further provided in the first enclosure portion 221. Figure 37 The Y direction shown in FIG extends from the left side of the housing toward the right side of the housing ( Figure 37 In the Y direction (as shown in FIG), the support member 100 has a first end and a second end opposite each other. The first end is configured to be perpendicular to the first clamping force, and the second end is configured to be perpendicular to the second clamping force. The first clamping force acts on the left side of the housing 610, and the second clamping force acts on the right side of the housing. This allows the support member 100 to provide support on both the left and right sides of the laundry treatment device, thereby improving the supporting strength of the packaging of the laundry treatment device and enhancing its cushioning properties.

[0397] At the same time, in the width direction of the shell ( Figure 37In the Y direction shown in the figure, the length of the support member is greater than the width of the shell, that is, the first end and the second end of the support member 100 extend beyond the left and right side walls of the clothing processing device 600, respectively, ensuring that the support member 100 can provide supporting force on the left and right sides of the clothing processing device 600.

[0398] In some embodiments, support members 100 may be provided in both the first enclosure portion 221 and the second enclosure portion 222 to further improve the support strength of the package 10 of the laundry treatment device and enhance the cushioning performance.

[0399] In some embodiments, the support member 100 may be provided in the second enclosure portion 222 , which may achieve the same effect as that achieved by providing the support member 100 in the first enclosure portion 221 .

[0400] In some embodiments, the plane on which the top surface lies is used as a reference plane, and the top surface is the surface of the top cover 20 facing away from the base 30. The projection of the support member 100 on the reference plane does not overlap with the projection of the top plate 21 on the reference plane; that is, the support member 100 is not provided on the top plate 21 of the top cover 20.

[0401] When transporting a drum washing machine 600, a clamping device is required. This inevitably results in multiple drum washing machines 600 being stacked one on top of the other. When stacked, the upper drum washing machine 600, due to its own gravity, exerts force on the top surface of the lower drum washing machine 600. To prevent the upper drum washing machine 600 from squeezing the top surface of the lower drum washing machine 600, support bars are provided in the top plate of the top cover in the related art. These support bars are much stronger than the plastic components, thereby increasing the overall support strength of the top cover. Furthermore, the support bars can offset the clamping force exerted by the clamping device on the drum washing machines 600.

[0402] However, since the strength of the support bar is much greater than that of the plastic part, when the upper drum washing machine 600 presses the top surface of the lower drum washing machine 600, the support bar will form an indentation on the top surface of the lower drum washing machine 600.

[0403] The door of the drum washing machine 600 is mostly a glass door. In the embodiment of the present application, in order to avoid damaging the glass door, when carrying the drum washing machine 600, a clamping device is used to clamp it from the left and right sides of the drum washing machine 600.

[0404] At the same time, in order to prevent the support member 100 from squeezing the top surface of the drum washing machine 600 located below and to prevent indentations on the top surface of the drum washing machine 600, the embodiment of the present application sets the support member 100 in the first enclosure 221 (front enclosure) and the second enclosure 222 (rear enclosure), and the support member 100 is no longer set in the top plate 21.

[0405] The support member 100 can offset the clamping force of the clamping device on the left and right sides of the drum washing machine 600, thereby preventing the clamping device from destroying the packaging structure and damaging the outer shell of the drum washing machine 600; at the same time, when multiple drum washing machines 600 are stacked up and down, the support member 100 will not form an indentation on the top surface of the drum washing machine 600 below.

[0406] In some embodiments, reference Figure 38 As shown, the first enclosure portion 221 and the second enclosure portion 222 are both folded from a plastic hollow plate, and the first enclosure portion 221 and the second enclosure portion 222 folded from the plastic hollow plate both have a first hollow chamber 2210, which is used to improve the buffering performance of the first enclosure portion 221.

[0407] In some embodiments, a support member 100 may be disposed in the first hollow chamber 2210 of the first enclosure 221, and a buffer member 80 may be disposed in the first hollow chamber 2210 of the second enclosure 222, to improve the buffering performance of the second enclosure 222. Alternatively, a buffer member 80 may be disposed in the first hollow chamber 2210 of the first enclosure 221, and a support member 100 may be disposed in the first hollow chamber 2210 of the second enclosure 222.

[0408] In some embodiments, a support member 100 may be disposed in both the first hollow chamber 2210 of the first enclosure portion 221 and the first hollow chamber 2210 of the second enclosure portion 222 .

[0409] In some embodiments, reference Figure 38 As shown, the first side enclosure 2231 and the second side enclosure 2232 folded from the plastic hollow plate both have a second hollow chamber 2230 , and the second hollow chamber 2230 is used to improve the buffering performance of the first side enclosure 2231 and the second side enclosure 2232 .

[0410] In some embodiments, a buffer member 80 is provided in the second hollow chamber 2230 of the first side panel 2231 and the second side panel 2232 to improve the buffering performance of the first side panel 2231 and the second side panel 2232 .

[0411] In some embodiments, reference Figure 38As shown, the first enclosure 221 has a first hollow chamber 2210, a mounting portion 2211 is provided on the first enclosure 221, the mounting portion 2211 is in communication with the first hollow chamber, and the support member 100 is disposed in the first hollow chamber from the mounting portion 2211. Alternatively, the second enclosure 222 has a first hollow chamber 2210, a mounting portion 2211 is provided on the second enclosure 222, the mounting portion 2211 is in communication with the first hollow chamber, and the support member 100 is disposed in the first hollow chamber from the mounting portion 2211. Alternatively, both the first enclosure 221 and the second enclosure 222 have a first hollow chamber 2210, a mounting portion 2211 is provided on the first enclosure 221 and the second enclosure 222, the mounting portion 2211 is in communication with the first hollow chamber, and the support member 100 is disposed in the first hollow chamber from the mounting portion 2211.

[0412] The mounting portion 2211 can facilitate the installation of the support member 100 without damaging the plastic hollow plate, thereby ensuring the integrity of the first enclosure portion 221 and the second enclosure portion 222 .

[0413] The following will take the installation portion 2211 being provided on the first enclosure portion 221 as an example to describe the installation portion 2211 in detail.

[0414] refer to Figure 37 The mounting portion 2211 may be a groove provided on the first enclosure portion 221. The groove may be a rectangular groove including a groove bottom and an edge. Figure 37 As shown in the figure, the first inner wall surface and the second inner wall surface are opposite to each other in the Y direction, and the groove bottom, the first inner wall surface and the second inner wall surface are all connected to the first hollow chamber.

[0415] The groove further includes a third inner wall surface, which intersects with both the first inner wall surface and the second inner wall surface. The third inner wall surface can be provided on the top plate 21 .

[0416] In some embodiments, reference Figure 39 As shown, the mounting portion 2211 may be a rectangular groove including a first inner wall surface and a second inner wall surface, the first inner wall surface and the second inner wall surface are arranged along the second direction ( Figure 39 The first inner wall surface and the second inner wall surface are both connected to the first hollow chamber 2210; the rectangular groove further includes a groove bottom 2212 and a third inner wall surface 2213, the groove bottom 2212 and the third inner wall surface 2213 intersect, and the third inner wall surface 2213 is set on the top plate 21.

[0417] In some embodiments, an arc-shaped bending portion 2214 is provided at the intersection of the third inner wall surface 2213 and the top plate 21. The arc-shaped bending portion 2214 can reduce the stress concentration at the connection between the third inner wall surface 2213 and the top plate 21, thereby avoiding breakage at the connection between the third inner wall surface 2213 and the top plate 21.

[0418] The fourth inner wall surface of the rectangular groove ( Figure 39 not shown) and the third inner wall surface 2213 along the first direction ( Figure 39 The intersection of the groove bottom 2212 and the fourth inner wall surface is offset from each other in the X direction as shown in the figure. An arc-shaped bending portion 2214 is also provided at the intersection of the groove bottom 2212 and the fourth inner wall surface. The arc-shaped bending portion 2214 can reduce the stress concentration at the connection between the groove bottom 2212 and the fourth inner wall surface, thereby avoiding fracture at the connection between the groove bottom 2212 and the fourth inner wall surface.

[0419] In some embodiments, reference Figure 37 , two mounting portions 2211 may be provided on the first enclosure portion 221 and the second enclosure portion 222, and the two mounting portions 2211 are arranged along the second direction ( Figure 37 The two mounting portions 2211 are spaced apart from each other (in the Y direction shown in FIG), and both mounting portions 2211 are communicated with the first hollow chamber.

[0420] In some embodiments, reference Figure 39 As shown, the support member 100 is disposed in the first hollow chamber 2210 from one of the mounting portions 2211, and the support member 100 is moved along the second direction ( Figure 39 The two ends (in the Y direction shown in FIG) are respectively overlapped on the groove bottom 2212 and exposed in the two mounting portions 2211.

[0421] In some embodiments, the support member 100 is moved along the second direction ( Figure 39 The two ends of the support member 100 in the Y direction (shown in FIG) are respectively overlapped on the groove bottom 2212 and exposed in the two mounting portions 2211. At the same time, the two ends of the support member 100 along the second direction continue to extend into the first hollow chamber 2210. The installation stability of the support member 100 is improved.

[0422] It should be noted that when making the first enclosure part 221 and the second enclosure part 222, the first enclosure part 221 and the second enclosure part 222 are first folded from a plastic hollow plate, and then grooves are dug on the first enclosure part 221 and the second enclosure part 222 to obtain the installation part 2211.

[0423] In some embodiments, the support member 100 is a hollow square tube structure, which matches the first hollow chamber of the first enclosure portion 221 and the second enclosure portion 222, so that each wall surface of the first hollow chamber is in contact with the tube wall of the support member 100, thereby maximizing the support strength of the first enclosure portion 221 and the second enclosure portion 222.

[0424] In some embodiments, the tube wall thickness of the support member 100 is 1.5 mm to 2.0 mm. Under the premise of ensuring the supporting strength, the weight of the package 10 is within a certain range to meet the needs of clothing processing devices 600 of different types and weights.

[0425] In some embodiments, reference Figure 39 As shown, the corners of the top cover 10 are provided with protective notches 101. Protective notches 101 include a first edge 1011, a second edge 1012, and a third edge 1013. The first edge 1011, the second edge 1012, and the third edge 1013 are interconnected to form a triangular structure. Protective notches 101 reduce the sharpness of the corners, thus preventing damage to the thermoplastic film.

[0426] It should be noted that after the top cover 10 is manufactured, the four corners of the top cover 10 are cut to obtain the protective notches 101 .

[0427] In some embodiments, the corners of the triangular structure can be curved. This improves the smoothness of the protective notch and further protects the thermoplastic film. Furthermore, the curved corners can reduce stress concentration at the edges and junctions, preventing damage to the triangular structure.

[0428] In some embodiments, reference Figure 38 and Figure 40 As shown, the first side panel 2231 and the second side panel 2232 both have a second hollow chamber 2230 , and a buffer member 80 is provided in the second hollow chamber 2230 for improving the buffering performance of the first side panel 2231 and the second side panel 2232 .

[0429] In some embodiments, the buffer member 80 may include: an air vent, a bubble bag, a plant fiber foam pad, a resin fiber pad, a resin spinning elastic pad, rubber, or a thermoplastic elastomer.

[0430] The above-mentioned buffer components all have good buffering effects, and are light in weight and low in cost.

[0431] In some embodiments, reference Figure 38 and Figure 41 As shown, a positioning groove 102 is provided on the top enclosure 22 , and a positioning portion 401 extends outward from the top end where the corner guard assembly 40 is connected to the top cover 10 , and the positioning portion 401 is connected to the positioning groove 102 .

[0432] By providing the positioning portion 401 and the positioning groove 102 that are matched and connected, the connection between the corner protection assembly 40 and the top cover 20 is made more convenient; at the same time, the connection stability between the corner protection assembly 40 and the top cover 20 is increased.

[0433] In some embodiments, the positioning groove 102 can be set on the first side enclosure 2231 and the second side enclosure 2232 , and the positioning groove 102 is close to the first enclosure portion 221 .

[0434] refer to Figure 38As shown, the positioning groove 102 may be a groove provided on the first side enclosure 2231 and the second side enclosure 2232 , and the bottom of the groove may be in communication with the second hollow chamber 2230 .

[0435] It should be noted that when manufacturing the first side enclosure 2231 and the second side enclosure 2232 , the first side enclosure 2231 and the second side enclosure 2232 are first folded from a plastic hollow plate, and then grooves are dug on the first side enclosure 2231 and the second side enclosure 2232 to obtain the positioning grooves 102 .

[0436] In some embodiments, reference Figure 37 、 Figure 38 、 Figure 42 、 Figure 43 and Figure 44 As shown, the outer surface of the first plastic hollow plate 250 is configured to contact the top surface of the shell. The outer surface of the first plastic hollow plate 250 is provided with a barrier 260, which includes non-woven fabric or velvet.

[0437] Non-woven fabric or flannel is a flexible barrier. By arranging non-woven fabric or flannel between the first layer of plastic hollow plate 250 and the top surface of the shell, the top surface of the shell can be protected to prevent the reinforcing ribs inside the first layer of plastic hollow plate 250 or the texture structure on the outer surface of the first layer of plastic hollow plate 250 from squeezing the top surface of the clothing processing device 600 and causing indentations.

[0438] In some embodiments, reference Figures 19 to 20C As shown, the package 10 of the laundry treatment device may further include a buffer support 300, which is located on the bottom liner 30. In some embodiments, the buffer support 300 is located on one side of the bottom liner 30 in the third direction. The support assembly 200 is disposed in the accommodating space of the bottom liner 30.

[0439] The buffer support member 300 is configured to be supported on the bottom of the reinforcement rib 660 of the laundry treating apparatus 600 to provide buffering protection for the reinforcement rib 660 .

[0440] There is no limitation on the shape of the projection of the buffer support member 300 in the third direction of the base 30. In some embodiments, the shape of the projection of the buffer support member 300 in the third direction of the base 30 can be a square or an oblong.

[0441] The material of the buffer support member 300 includes but is not limited to rubber, thermoplastic elastomer or ethylene vinyl acetate copolymer (EVA for short).

[0442] The buffer support 300 is elastically deformable. When the laundry processing device 600 is hit or shaken, the buffer support 300 absorbs and disperses the external impact force. The buffer support 300 provides buffering protection for the reinforcement ribs 660 on the housing 610 of the laundry processing device 600, preventing the reinforcement ribs 660 on the housing of the laundry processing device 600 from deforming.

[0443] The buffer support member 300 can be mounted on the base 30 by snapping, buckling, welding or bonding. In some embodiments, the buffer support member 300 can be snapped on the base 30.

[0444] In some embodiments, multiple buffer support members 300 are disposed at intervals on both sides of the base 30 in the first direction. It is understood that multiple buffer support members 300 are disposed at intervals at the bottom of each of the two reinforcing ribs 660 on the housing 610 of the laundry processing device 600. With this arrangement, when the laundry processing device 600 is impacted or shaken, the multiple buffer support members 300 provide buffering protection for each reinforcing rib 660.

[0445] The plurality of buffer support members 300 on the base 30 are disposed around a portion of the circumference of the support assembly 200 .

[0446] For example, there are two buffer support members 300 on both sides of the base 30 in the first direction. The two buffer support members 300 are supported on the two support areas 660a of the reinforcing rib 660. This arrangement allows the two reinforcing ribs 660 to receive the same force.

[0447] refer to Figure 19 As shown, the package 10 of the laundry treatment device may further include a pad 400. The pad 400 is located on the bottom liner 30. The pad 400 is disposed in the accommodating space of the bottom liner 30.

[0448] In the third direction of the base 30, the height of the cushion block 400 is lower than that of the buffer support 300. In this way, after the buffer support 300 provides buffering protection for the reinforcement rib 660, the cushion block 400 can support the reinforcement rib 660, thereby reducing the pressure of the clothing processing device 600 on the base 30.

[0449] For example, in the third direction of the base 30, the height difference between the cushion block 400 and the buffer support member 300 is 2 to 6 mm. The height of the cushion block 400 can be the height of the top of the cushion block 400 relative to the base 30 in the third direction of the base 30. The height of the buffer support member 300 can be the height of the top of the buffer support member 300 relative to the base 30 in the third direction of the base 30.

[0450] The pad 400 can be mounted on the backing 30 by snapping, buckling, welding or bonding. In some embodiments, the pad 400 can be snapped on the backing 30.

[0451] The spacer 400 is a plastic part. For example, the spacer 400 can be made of one or more resin materials selected from polypropylene (PP), polyethylene (PE), polyvinyl chloride (PVC), polylactide (PLA), polybutylene adipate / terephthalate (PBAT), and polybutylene succinate (PBS).

[0452] For example, the spacer 400 can be formed by vacuum forming, or by extrusion, injection molding, etc. In some embodiments, the spacer 400 can be made of virgin material, or it can be made of recycled material.

[0453] The molding material of the pad 400 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, etc., 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 pad 400 and improving the overall structural stability of the pad 400.

[0454] The molding material of the cushion block 400 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 butadiene block copolymer (SBS), hydrogenated styrene-butadiene block copolymer (SEBS), or ethylene vinyl acetate copolymer (EVA). This can increase the toughness of the cushion block 400 and reduce or prevent breakage.

[0455] The two buffer support members 300 are respectively provided on both sides of the base 30 in the first direction. The two buffer support members 300 are spaced apart in the second direction of the base 30 , and a spacer 400 is provided between the two adjacent buffer support members 300 .

[0456] The reinforcing rib 660 and the reinforcing rib 660 each have two supporting areas 660a. Each supporting area 660a is provided with a protrusion 661. The protrusion 661 protrudes toward the bottom side of the laundry processing device 600.

[0457] The supporting area 660 a has two through holes 662 .

[0458] For ease of explanation, the above description has been made with reference to 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 are selected and described to better explain the principles and practical applications, so that those skilled in the art can better utilize the embodiments and various different variations of the embodiments suitable for specific use considerations.

Claims

1. A package for a clothes treating device, comprising: Bottom lining (30); A corner protection assembly (40) is provided on the base lining (30); a top cover (20) disposed on the corner guard assembly (40), the top cover (20) being opposite to the base lining (30) and spaced apart from each other, the base lining (30), the corner guard assembly (40) and the top cover (20) forming a receiving area for receiving the clothes processing device; The base lining (30) comprises a bottom plate (31), the bottom plate (31) comprises a plurality of plastic plates stacked in sequence, and the plurality of plastic plates respectively comprise a plastic hollow plate (50).

2. The packaging of the laundry treatment device according to claim 1, wherein: The plurality of plastic plates further comprise plastic reinforcing plates (60), respectively, and the plastic hollow plates (50) and the plastic reinforcing plates (60) are stacked; Wherein, the plastic reinforcement plate (60) is located on one side of the bottom of the bottom plate (31).

3. The packaging of the laundry treatment device according to claim 2, wherein: A plurality of weight-reducing cavities (61) are provided in the plastic reinforcement plate (60), and the plurality of weight-reducing cavities (61) are distributed at intervals.

4. The packaging of the laundry treating apparatus according to claim 3, wherein: There are multiple numbers of at least one of the plastic hollow plates (50) or the plastic reinforcement plates (60).

5. The packaging of the laundry treatment device according to any one of claims 2 to 4, wherein: The thickness of the plastic hollow plate (50) and the plastic reinforcement plate (60) are both 2 mm to 8 mm.

6. The packaging of the laundry treating apparatus according to claim 5, wherein: The thickness of the plastic hollow plate (50) and the plastic reinforcement plate (60) are both 3 mm to 5 mm.

7. The packaging of the laundry treatment device according to any one of claims 2 to 4, wherein: The plastic hollow plate (50) and the plastic reinforcement plate (60) both have a gram weight of 700 g / m 2 -1200g / m 2 .

8. The packaging of the laundry treating apparatus according to claim 7, wherein: The plastic hollow plate (50) and the plastic reinforcement plate (60) both have a gram weight of 900 g / m 2 -1000g / m 2 .

9. The packaging of the laundry treatment device according to any one of claims 1 to 4, wherein: The number of the plastic plates is 3-8.

10. The packaging of the laundry treatment device according to any one of claims 1 to 4, wherein: The bottom lining (30) further comprises a bottom enclosure (32), wherein the bottom enclosure (32) is arranged at the edge of the bottom plate (31) along the circumference of the bottom plate (31).

11. The packaging of the laundry treating apparatus according to claim 10, wherein: At least one of the plurality of plastic plates is bent toward one side of the top cover (20) to form the bottom enclosure (32).

12. The packaging of the laundry treatment device according to any one of claims 1 to 4, further comprising a cardboard (70), wherein the cardboard (70) is located between adjacent plastic plates.

13. The packaging of the laundry treating apparatus according to claim 12, wherein: The paperboard (70) includes at least one of a honeycomb paperboard (70) and a corrugated paperboard (70).

14. The packaging of the clothing treatment device according to any one of claims 1 to 4, further comprising a buffer component (80), wherein the buffer component (80) is located in the plastic hollow plate (50), and the buffer component (80) is an elastic structural component.

15. The packaging of the laundry treating apparatus according to claim 1, wherein: The plastic plate is a plastic part made of polypropylene, polyethylene, polyvinyl chloride, polylactic acid, polybutylene adipate / terephthalate or polybutylene succinate.

16. A clothes treating device assembly, comprising a clothes treating device and a package of the clothes treating device according to any one of claims 1 to 15, wherein the clothes treating device is arranged on the bottom liner (30).