Laundry treating apparatus

By optimizing the ratio of the overall height of the garment processing equipment to the height of the inner drum and the thickness of the packaging components, the problem of transportation inconvenience caused by the increase in inner drum capacity has been solved, achieving efficient loading and cost reduction, and improving the economic benefits for both manufacturers and consumers.

CN223593065UActive Publication Date: 2025-11-25HEFEI MIDEA WASHING MACHINE
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Patent Information

Application Number
CN202423275113.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-25
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Increasing the inner drum capacity of existing garment processing equipment leads to an increase in the overall height of the machine, causing inconvenience in transportation, reducing loading capacity, and increasing transportation and purchase costs.

Method used

By optimizing the height ratio between the main unit and the inner cylinder, controlling the ratio of the main unit height to the inner cylinder height within the range of 0.48≤H2/H1≤0.6, and combining this with reasonable packaging component thickness, the overall unit size is reduced while ensuring the inner cylinder capacity, thereby increasing loading capacity and reducing transportation costs.

Benefits of technology

While ensuring the inner cylinder capacity, the whole machine is more compact and can be stacked in three layers in the cargo container, reducing transportation costs, improving the economic benefits of manufacturers and reducing the purchase cost for consumers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses clothes processing equipment which is contained in a freight box body, the height of the freight box body is H4, and H4 / H1 is larger than or equal to 3. The clothes processing equipment comprises a complete machine, the height of the complete machine is H1, the complete machine is provided with an inner barrel, the height of the inner barrel is H2, and H2 / H1 is larger than or equal to 0.48 and smaller than or equal to 0.6. According to the clothes processing equipment, the height ratio of the whole machine to the inner cylinder is optimized, the loading capacity of the clothes processing equipment is improved, and the transportation cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to clothes processing equipment field especially clothes processing equipment. BACKGROUND

[0002] In the clothes processing equipment of the related art, the increase of the inner drum capacity leads to the increase of the whole machine height, and the packaging thickness for buffering protection also increases accordingly, resulting in the inconvenience of the clothes processing equipment in transportation. Especially in the process of loading into the freight box, due to the height limitation of the clothes processing equipment, the number of clothes processing equipment loaded in each freight box is reduced, resulting in a significant increase in transportation cost, which not only affects the economic benefit of the production enterprise, but also increases the purchase cost of the consumer. SUMMARY

[0003] The utility model aims at at least one of the technical problems existing in the prior art. To this end, one purpose of the utility model is to provide a clothes processing equipment. According to the clothes processing equipment of the utility model, the height ratio of the whole machine and the inner drum is optimized, the loading capacity of the clothes processing equipment is improved, and the transportation cost is reduced.

[0004] According to the clothes processing equipment of the utility model, the clothes processing equipment is accommodated in the freight box, the height of the freight box is H4, the clothes processing equipment comprises a whole machine, the height of the whole machine is H1, and H4 / H1 is greater than or equal to 3, the whole machine is provided with an inner drum, the height of the inner drum is H2, and 0.48 is less than or equal to H2 / H1 and is greater than or equal to 0.6.

[0005] According to the clothes processing equipment of the utility model, the height H1 of the whole machine and the height H4 of the freight box satisfy H4 / H1 is greater than or equal to 3. Therefore, the height H4 of the freight box is at least three times the height H1 of the whole machine, which is beneficial to stacking and transporting in the freight box, improves the loading capacity, and reduces the transportation cost. By optimizing the height ratio of the whole machine and the inner drum, the equipment is more compact and efficient. Under the premise of ensuring the capacity of the inner drum, the space utilization rate of the whole machine is improved, and the size of the whole machine is successfully compressed. Specifically, the ratio of the height H1 of the whole machine to the height H2 of the inner drum is controlled in the range of 0.48 is less than or equal to H2 / H1 and is greater than or equal to 0.6, which ensures the capacity of the inner drum and reduces the height of the whole machine, thereby reducing the inconvenience and cost in the process of packaging and transportation.

[0006] According to some embodiments of the utility model, the clothes processing equipment further comprises a packaging assembly, the packaging assembly is arranged on at least one side of the whole machine in the height direction, the thickness of the packaging assembly is H3, and 0.05 is less than or equal to H3 / H1 and is greater than or equal to 0.06, and H4 / (H1+H3) is greater than or equal to 3.

[0007] According to some embodiments of the present application, the height H1 of the whole machine and the thickness H3 of the packaging assembly satisfy: H1+H3≤893mm.

[0008] According to some embodiments of the present application, the thickness H3 of the packaging assembly satisfies: 45mm≤H3≤50mm.

[0009] According to some embodiments of the present application, the packaging assembly comprises: an upper pad, which is arranged on the top of the whole machine, and the edge of the upper pad is formed with an upper turning edge part covering the outer periphery of the whole machine; and a lower pad, which is arranged on the bottom of the whole machine, and the edge of the lower pad is formed with a lower turning edge part covering the outer periphery of the whole machine.

[0010] According to some embodiments of the present application, the width of the whole machine is W, the diameter of the inner cylinder is D, and they satisfy: 0.78≤D / W≤0.9.

[0011] According to some embodiments of the present application, the height H2 of the inner cylinder satisfies: 400mm≤H2≤450mm.

[0012] According to some embodiments of the present application, the whole machine further comprises: a base, on which the inner cylinder is rotatably arranged; a cabinet body, which is arranged on the base and covers the outer periphery of the inner cylinder; and a workbench, which is arranged on the top of the cabinet body.

[0013] According to some embodiments of the present application, the workbench is formed with a top surface and an operation area connected with the top surface, the operation area is suitable for mounting a computer board, and the operation area and the top surface are arranged at an angle α and satisfy: 0°<α<20°.

[0014] According to some embodiments of the present application, the thickness of the base is d1 and satisfies: 45mm≤d1≤58mm, and the thickness of the workbench is d2 and satisfies: 60mm≤d2≤78mm.

[0015] According to some embodiments of the present application, the whole machine further comprises: an outer barrel; a first shaft segment, one end of which penetrates through the outer barrel and is connected with the inner cylinder; a second shaft segment, one end of which is selectively connected with the first shaft segment; and a clutch assembly, which is arranged on the outer barrel and selectively connects or disconnects the first shaft segment and the second shaft segment; wherein the height of the clutch assembly in the axial direction is h1 and satisfies: 42mm≤h1≤62mm.

[0016] According to some embodiments of the present application, the other end of the second shaft segment is provided with a belt pulley, and the distance between the belt pulley and the outer barrel in the axial direction is h2 and satisfies: 90mm≤h2≤100mm.

[0017] According to some embodiments of the present application, the capacity V of the inner drum satisfies 50L≤V≤65L.

[0018] In summary, according to the laundry treating apparatus of the embodiments of the present application, by optimizing the size ratio of the whole machine and the inner drum, the apparatus is more compact and efficient. Under the premise of ensuring that the capacity of the inner drum satisfies 52L≤V≤62L, the capacity utilization rate of the inner drum is improved, and the size of the whole machine is successfully compressed. Specifically, the ratio of the height H1 of the whole machine to the height H2 of the inner drum is controlled within the range of 0.48≤H2 / H1≤0.6, which helps to reduce the increase of the height of the whole machine due to the increase of the capacity of the inner drum, and thus reduces the inconvenience and cost in the packaging and transportation process. By limiting the range of H3 / H1, while ensuring that the whole machine is fully protected, the extra space occupied by the packaging assembly is minimized. The value of H3 / H1 is greater than or equal to 0.05, which can reduce the thickness of the packaging assembly 12 under the premise of ensuring that the whole machine is effectively buffered, thereby reducing the transportation and storage space occupied by the packaging assembly and improving the loading efficiency. When the value of H3 / H1 is less than or equal to 0.06, the thickness of the packaging assembly can provide sufficient buffering and protection for the whole machine. By optimizing the size ratio and limiting the thickness of the packaging assembly, more efficient loading can be achieved in the same freight container size (such as a 40-foot freight container), so that the laundry treating apparatus can be vertically placed in more layers in a 40-foot high cabinet freight container, from two layers to three layers. The sum of the height H1 of the whole machine and the thickness H3 of the packaging assembly is less than or equal to 893mm, so that the overall height of the laundry treating apparatus after packaging meets the specific transportation requirements, increases the loading capacity, and optimizes the transportation efficiency, thereby reducing the transportation cost. For a 40-foot high cabinet freight container, the height of the freight container is 2680mm, so at least three layers of packaged laundry treating apparatus can be stacked inside each freight container, and the height of each device is not more than 893mm, which ensures efficient use of the loading space, not only improves the loading capacity of the freight container, but also optimizes the transportation efficiency, so that more laundry treating apparatus can be carried in each transportation. The increase in loading capacity reduces the transportation cost per unit product, which can reduce logistics costs for the production enterprise and improve overall economic efficiency for the consumer. Since the production enterprise can convert part of the saved cost into price concessions, the purchase cost can be reduced. The width W of the whole machine and the diameter D of the inner drum satisfy 0.78≤D / W≤0.9, so the diameter of the inner drum accounts for at least 0.78 of the width of the whole machine, and at most 0.9 of the width of the whole machine, which not only ensures that the inner drum has enough space to accommodate and treat laundry, but also optimizes the space utilization inside the apparatus and reduces unnecessary space waste.

[0019] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0020] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0021] Figure 1 This is a cross-sectional schematic diagram of a garment processing device according to an embodiment of the present invention;

[0022] Figure 2 This is a cross-sectional schematic diagram of the entire garment processing device according to an embodiment of the present utility model;

[0023] Figure 3 This is a schematic diagram of the entire garment processing device according to an embodiment of the present utility model;

[0024] Figure 4 This is a schematic diagram of the inner drum and drive motor of a garment processing device according to an embodiment of the present invention;

[0025] Figure 5 This is a half-sectional view of the outer cylinder, shock absorber assembly, and pulley of a garment processing device according to an embodiment of the present invention;

[0026] Figure 6 This is a schematic diagram of a garment processing device according to an embodiment of the present invention housed inside a cargo container.

[0027] Figure label:

[0028] 1. Garment processing equipment;

[0029] 11. Complete machine; 111. Inner cylinder; 112. Base; 113. Box body; 114. Workbench; 115. Outer cylinder; 116. First shaft section; 117. Second shaft section; 118. Clutch assembly; 119. Pulley.

[0030] 12. Packaging components; 121. Upper pad; 122. Lower pad;

[0031] 2. Freight container. Detailed Implementation

[0032] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0033] In the description of the utility model, it needs to be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as a limitation on the utility model. In the description of the utility model, "first feature" and "second feature" can include one or more features. In the description of the utility model, "a plurality of" means two or more. In the description of the utility model, "above" or "below" of the first feature to the second feature can include that the first and second features are in direct contact, or can include that the first and second features are not in direct contact but are in contact through another feature between them. In the description of the utility model, "above", "upper" and "upper surface" of the first feature to the second feature include that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature.

[0034] In the related art clothes processing equipment, the increase of the inner drum capacity will cause the increase of the overall height, and the packaging thickness for buffering protection will also be increased accordingly, resulting in the inconvenience of the clothes processing equipment in transportation. Especially in the process of loading into the freight box, due to the height limitation of the clothes processing equipment, the number of clothes processing equipment that can be loaded in each freight box is reduced, thereby significantly increasing the transportation cost, not only affecting the economic benefit of the production enterprise, but also increasing the purchase cost of the consumer.

[0035] Reference will be made below to Figures 1-5 The clothes processing equipment 1 according to the embodiment of the present application is described.

[0036] As Figures 1-4 shown, according to the clothes processing equipment 1 of the utility model, the clothes processing equipment 1 is accommodated in the freight box 2, and the height of the freight box 2 is H4.

[0037] The clothes processing equipment 1 comprises an overall machine 11, which refers to a complete and assembled equipment. The height of the overall machine 11 is H1, which is the vertical distance from the bottom to the top of the overall machine 11. The height H1 of the overall machine 11 and the height H4 of the freight box 2 satisfy H4 / H1≥3. Therefore, the height H4 of the freight box 2 is at least three times the height H1 of the overall machine 11, which is beneficial to stacking and transporting in the freight box 2, improves the loading capacity, and reduces the transportation cost.

[0038] The whole machine 11 is provided with an inner cylinder 111 for accommodating and processing clothes. The height of the inner cylinder is H2, which refers to the vertical distance from the bottom to the top of the inner cylinder 111. The height H1 of the whole machine 11 and the height H2 of the inner cylinder 111 satisfy 0.48≤H2 / H1≤0.6.

[0039] By optimizing the height ratio of the whole machine 11 and the inner cylinder 111, the device is more compact and efficient. On the premise of ensuring the capacity of the inner cylinder 111, the space utilization of the whole machine 11 is improved, and the size of the whole machine 11 is successfully compressed. Specifically, the ratio of the height H1 of the whole machine 11 to the height H2 of the inner cylinder 111 is controlled within the range of 0.48≤H2 / H1≤0.6, which helps to reduce the height of the whole machine 11 on the premise of ensuring the capacity of the inner cylinder 111, thereby reducing the inconvenience and cost in the process of packaging and transportation.

[0040] Therefore, according to the clothes processing device 1 of the utility model, the height ratio of the whole machine 11 and the inner cylinder 111 is optimized, the loading capacity of the clothes processing device 1 is improved, and the transportation cost is reduced.

[0041] According to some embodiments of the utility model, as shown in Figure 1 and Figure 2 The clothes processing device 1 further comprises a packaging assembly 12, which can provide cushioning to protect the whole machine 11 from damage during transportation and storage. The packaging assembly 12 is arranged on at least one side of the whole machine 11 in the height direction to provide protection. On the one hand, the packaging assembly 12 can be arranged on one side of the whole machine 11 in the height direction, which can cover the top of the whole machine 11 or be arranged at the bottom. On the other hand, the packaging assembly 12 can also be arranged on both sides of the whole machine 11 in the height direction, i.e. covering the top and bottom of the whole machine 11 at the same time. By arranging the packaging assembly 12, the packaging assembly 12 can wrap the whole machine 11, effectively resist impact and extrusion, and ensure the safety of the whole machine 11 during transportation and storage.

[0042] The thickness of the packaging assembly 12 is H3, and satisfies: 0.05≤H3 / H1≤0.06, H4 / (H1+H3)≥3. H3 / H1 defines a reasonable range of the thickness H3 of the packaging assembly 12 relative to the height H1 of the whole machine 11. Specifically, the ratio of H3 to H1 should be between 0.05 and 0.06. The height H4 of the freight box 2 is at least three times the overall height of the packaged clothes processing device 1. If the clothes processing device 1 is placed vertically and its packaging is considered, at least three layers of packaged clothes processing devices 1 can be stacked inside each freight box 2, improving space utilization and transportation efficiency.

[0043] By limiting the range of H3 / H1, the extra space occupied by the packaging assembly 12 is minimized while ensuring that the entire machine 11 is adequately protected. When the value of H3 / H1 is greater than or equal to 0.05, the thickness of the packaging assembly 12 can be reduced under the premise that the entire machine 11 is effectively buffered, thereby reducing the transportation and storage space occupied by the packaging assembly 12 and improving loading efficiency. When the value of H3 / H1 is less than or equal to 0.06, the thickness of the packaging assembly 12 can provide sufficient buffering and protection for the entire machine 11.

[0044] According to some embodiments of the present application, the height H1 of the entire machine 11 and the thickness H3 of the packaging assembly 12 satisfy: H1+H3≤893mm. Therefore, the sum of the height H1 of the entire machine 11 and the thickness H3 of the packaging assembly 12 is less than or equal to 893mm, so that the overall height of the laundry processing device 1 after packaging meets the specific transportation requirements, increases the loading capacity, and optimizes the transportation efficiency, thereby reducing transportation costs.

[0045] For a 40-foot high container freight box, the height of the freight box is 2680mm, so at least three layers of packaged laundry processing devices 1 can be stacked inside each freight box, and the height of each layer of devices is not more than 893mm, ensuring efficient use of loading space, not only improving the loading capacity of the freight box, but also optimizing the transportation efficiency, so that each transportation can carry more laundry processing devices 1. The increase in loading capacity reduces the transportation cost per unit product, which can reduce logistics costs for the production enterprise and improve overall economic efficiency; for consumers, since the production enterprise can convert part of the saved cost into price concessions, the purchase cost can be reduced.

[0046] According to some embodiments of the present application, the thickness H3 of the packaging assembly 12 satisfies: 45mm≤H3≤50mm, so that the thickness H3 of the packaging assembly 12 satisfies between 45mm and 50mm, so that the packaging assembly 12 can provide sufficient protection performance, and will not be too thick and heavy to increase transportation and storage costs.

[0047] Since the thickness H3 of the packaging assembly 12 is limited to between 45mm and 50mm, the height H1 of the entire machine 11 is correspondingly limited to ensure that the overall height meets the requirements.

[0048] Specifically, if the thickness H3 of the packaging assembly 12 takes the maximum value of 50 mm, the height H1 of the whole machine 11 needs to satisfy H1 + 50 mm ≤ 893 mm, i.e. H1 ≤ 843 mm. Similarly, if the thickness H3 of the packaging assembly 12 takes the minimum value of 45 mm, the height H1 of the whole machine 11 can be slightly higher, but still needs to satisfy H1 + 45 mm ≤ 893 mm, i.e. H1 ≤ 848 mm. For example, if the thickness H3 of the packaging assembly 12 is equal to 48 mm, the height H1 of the whole machine 11 needs to satisfy H1 + 48 mm ≤ 893 mm, i.e. H1 ≤ 845 mm.

[0049] According to some embodiments of the present application, as shown in Figure 1 The packaging assembly 12 includes an upper pad 121 arranged on the top of the whole machine 11. The upper pad 121 can prevent the whole machine 11 from being impacted from above during transportation or storage. The edge of the upper pad 121 is formed with an upper turning edge portion covering the outer periphery of the whole machine 11. The upper pad 121 can further wrap the outer periphery of the whole machine 11 through the upper turning edge portion, increase the contact area, increase the protection range of the whole machine 11, and ensure that the top and edge portions of the whole machine 11 are fully protected.

[0050] The packaging assembly 12 also includes a lower pad 122 arranged on the bottom of the whole machine 11. The lower pad 122 can prevent the whole machine 11 from being impacted from below during transportation or storage. The edge of the lower pad 122 is formed with a lower turning edge portion covering the outer periphery of the whole machine 11. The lower pad 122 can further wrap the outer periphery of the whole machine 11 through the lower turning edge portion, increase the contact area, increase the protection range of the whole machine 11, and ensure that the bottom and edge portions of the whole machine 11 are fully protected.

[0051] It should be noted that the thickness H3 of the packaging assembly 12 does not include the thickness of the upper turning edge portion and the lower turning edge portion. The thickness H3 of the packaging assembly 12 only includes the vertical thickness of the part of the upper pad 121 and the lower pad 122 in direct contact with the whole machine 11, and does not include the additional extension of the upper turning edge portion formed at the edge of the upper pad 121 in the vertical direction, nor the additional extension of the lower turning edge portion formed at the edge of the lower pad 122 in the vertical direction, because the upper turning edge portion and the lower turning edge portion do not affect the overall height of the clothes processing apparatus 1 after packaging.

[0052] According to some embodiments of the present application, as shown in Figure 3 and Figure 4As shown, the width of the whole machine 11 is W, and the diameter of the inner drum 111 is D, and it satisfies: 0.78≤D / W≤0.9. The width of the whole machine 11 is the horizontal distance from one side edge of the whole machine 11 to the other side edge. The diameter and height of the inner drum 111 are directly related to the capacity of the inner drum 111. The width of the whole machine is W and the diameter D of the inner drum satisfy: 0.78≤D / W≤0.9, so the diameter of the inner drum 111 accounts for at least 0.78 of the width of the whole machine 11, and at the same time does not exceed 0.9 of the width of the whole machine 11, not only ensures that the inner drum 111 has enough space to accommodate and process clothes, but also optimizes the space utilization inside the device, reduces unnecessary space waste.

[0053] According to some embodiments of the present application, as shown in Figure 1 and Figure 2 As shown, the height H2 of the inner drum 111 satisfies: 400mm≤H2≤450mm. The height of the inner drum 111 cannot be lower than 400mm, so that the inner drum 111 has enough space to accommodate clothes, and at the same time ensures that the clothes have enough space to tumble and move during the washing or drying process, so as to achieve good processing effect. Since the height of the packaged clothes processing device 1 does not exceed 893mm, and other components also need to occupy space, the height of the inner drum 111 also cannot exceed 450mm, so that the whole device can meet the requirements of various use environments and space restrictions while maintaining compactness, ensuring that the overall device can maintain reasonable size and weight during packaging, transportation and storage.

[0054] According to some embodiments of the present application, as shown in Figure 1 and Figure 4 As shown, the whole machine 11 further comprises a base 112, which is used to provide stability and support force, so that the whole device can be stably placed on the ground. The inner drum 111 is rotatably arranged on the base 112. During the washing or drying process, the inner drum 111 can rotate uniformly and stably under the action of the driving system, so that the clothes can fully tumble and move during washing or drying, thereby uniformly stressed, achieving more effective cleaning or drying effect, and improving the processing quality and efficiency of the clothes.

[0055] The whole machine 11 further comprises a cabinet body 113, which is arranged on the base 112 and covers the outer periphery of the inner drum 111. The cabinet body 113 is a shell covering the outer periphery of the inner drum 111, which plays a role in protecting the inner drum 111 and the internal mechanical structure, and also provides an attractive appearance for the device.

[0056] The whole machine 11 further comprises a workbench 114, which is arranged on the top of the cabinet body 113. The workbench 114 provides an operation platform for the user, which facilitates the user to place or take out clothes, and operate the control panel of the device.

[0057] It should be noted that the laundry treatment apparatus 1 according to the embodiments of the present application can arrange the components in the workbench 114 and the base 112 more compactly and / or reduce the size of the components, compress the size of the workbench 114 and the base 112, thereby reducing the height of the whole machine 11, realizing more efficient loading and transportation, and reducing transportation cost.

[0058] According to some embodiments of the present application, the workbench 114 is formed with a top surface and an operation area connected with the top surface, the operation area is suitable for mounting a computer board, and a user can control the laundry treatment apparatus 1 by operating the computer board. The operation area is arranged obliquely between the top surface and the operation area, and the included angle is α and satisfies: 0° < α < 20°. By arranging the operation area obliquely between the top surface, α > 0° is satisfied, and the inclination of the operation area is sufficient to facilitate the user to operate the computer board. At the same time, by limiting α < 20°, the occupation of the internal space of the workbench 114 by the computer board can be reduced, and sufficient space is ensured in the workbench 114 to put the internal components into the workbench 114, which helps to reduce the thickness of the workbench 114, thereby reducing the height of the whole machine 11 and realizing more efficient loading.

[0059] According to some embodiments of the present application, the thickness of the base 112 is d1 and satisfies: 45mm ≤ d1 ≤ 58mm. By limiting the thickness of the base 112 as d1 to be greater than or equal to 45mm, it is ensured that the base 112 has sufficient strength and stability to support the entire laundry treatment apparatus and maintain its stability. By limiting the thickness of the base 112 as d2 to be less than or equal to 58mm, the base 112 provides sufficient support while not excessively increasing the height of the whole machine 11, which helps to improve the loading capacity.

[0060] The thickness of the workbench 114 is d2 and satisfies: 60mm ≤ d2 ≤ 78mm. By limiting the thickness d2 of the workbench 114 to be greater than or equal to 60mm, the workbench 114 has sufficient space to accommodate internal components, while ensuring that the workbench 114 has sufficient strength and durability to provide a stable operating platform for the user. By limiting the thickness d2 of the workbench 114 to be less than or equal to 78mm, the workbench 114 helps to control the height of the whole machine 11 while maintaining sufficient strength and functionality, making it more compact, improving the loading efficiency and space utilization of the equipment.

[0061] According to some embodiments of the present application, the whole machine 11 further comprises a driving motor, and the driving motor is arranged at the bottom of the inner cylinder and is used to drive the rotation of the inner cylinder. During the washing or drying process, the driving motor converts electrical energy into mechanical energy, thereby driving the inner cylinder 111 to rotate at a certain speed and direction.

[0062] According to some embodiments of the present application, the whole machine 11 further comprises a balance ring, the balance ring is arranged at the top of the inner cylinder 111 and coaxially arranged with the inner cylinder 111, that is, the central axis is coincident with the central axis of the inner cylinder 111. The balance ring is used to help the device to keep balance when running. When the clothes loaded in the inner cylinder 111 are unevenly distributed, the device may shake due to the shift of the center of gravity. The balance ring can automatically adjust the position of its center of gravity when the device is running, thereby effectively reducing the shaking and noise, improving the stability and durability of the device.

[0063] According to some embodiments of the present application, as shown in Figure 6 The whole machine 11 further comprises an outer barrel 115, a first shaft section 116 and a second shaft section 117, the inner cylinder 111 is arranged in the outer barrel 115, and the outer barrel 115 provides a stable working environment for the inner cylinder 111. One end of the first shaft section 116 penetrates through the outer barrel 115 and is connected with the inner cylinder 111, so that the first shaft section 116 can transmit power to the inner cylinder 111, thereby driving the inner cylinder 111 to rotate at a certain speed and direction. When the clothes processing device is working, the second shaft section 117 obtains power from the driving motor 115. Through the optional connection of one end of the second shaft section 117 with the first shaft section 116, the power transmission between the second shaft section 117 and the first shaft section 116 can be controlled, so that the inner cylinder 111 rotates at a suitable speed, thereby realizing different functions such as washing, rinsing and dewatering.

[0064] The whole machine 11 further comprises a clutch assembly 118, which is arranged in the outer barrel 115 and can selectively connect or disconnect the first shaft section 116 and the second shaft section 117. By arranging the clutch assembly 118, the clutch assembly 118 can selectively connect or disconnect the first shaft section 116 and the second shaft section 117 according to the functions required by the inner cylinder 111, and the working state of the clutch assembly 118 directly determines whether the power connection between the first shaft section 116 and the second shaft section 117 is realized. The height of the clutch assembly 118 in the axial direction is h1 and satisfies: 42mm≤h1≤62mm. By limiting the height h1 of the clutch assembly 118 in the axial direction to be greater than or equal to 42mm, the clutch assembly 118 has sufficient structural strength and stability to withstand the torque and axial force transmitted to the inner cylinder 111 by the driving motor 115 during the washing, rinsing and dewatering processes. By limiting the height h1 of the clutch assembly 118 in the axial direction to be less than or equal to 62mm, the safety distance of the clutch assembly 118 to the ground can be improved, which is beneficial to the operation of the whole machine 11.

[0065] According to some embodiments of the present application, as shown in Figure 6As shown, the clutch assembly 118 includes a clutch housing and a clutch body, the clutch housing is arranged on the outer barrel 115 and defines a clutch cavity with the outer barrel 115, which provides a closed and stable working environment for the clutch body. The clutch body is arranged in the clutch cavity, which ensures the accuracy and efficiency of power transmission. The height h1 of the clutch assembly 118 in the axial direction corresponds to the height of the clutch housing in the axial direction.

[0066] According to some embodiments of the present application, as shown in Figure 6 As shown, the other end of the second shaft segment 117 is provided with a belt pulley 119, and the distance between the belt pulley 119 and the outer barrel 115 in the axial direction is h2 and satisfies: 90mm≤h2≤100mm. By arranging the belt pulley 119, the belt pulley 119 can transmit the power output by the driving motor 115 to the second shaft segment 117. By limiting the distance between the belt pulley 119 and the outer barrel 115 in the axial direction to be h2 greater than or equal to 90mm, sufficient operation space is obtained between the belt pulley 119 and the clutch assembly 118, which ensures that the belt pulley 119 can maintain a stable operation state while efficiently transmitting power, and provides convenience for installation, debugging and maintenance of the belt pulley 119. By limiting the distance between the belt pulley 119 and the outer barrel 115 in the axial direction to be h2 less than or equal to 100mm, the occupation of the internal space of the whole machine 11 by the belt pulley 119 and the clutch assembly 118 can be reduced, and more sufficient installation space is provided for the inner cylinder 111, so that the capacity of the inner cylinder 111 can be maintained within the range of 52L to 62L while reducing the height of the whole machine 11.

[0067] The method for determining the height of the whole machine 11 and adjusting the effective height of the inner cylinder 111 of the clothes treatment equipment 1 according to the present application is introduced as follows, which specifically includes the following steps:

[0068] First, adjust the modeling size of the workbench 114 to ensure that the water inlet valve protrudes 16mm to the limit position on the top surface of the workbench. At the same time, the top bubble thickness on the workbench 114 is adjusted synchronously to ensure that the door lock, door switch and door cover and other components can be smoothly installed under normal assembly conditions.

[0069] After the above workbench 114 adjustment is completed, the height of the base 112 is further adjusted to its limit state. This step needs to ensure that the drain pipe can smoothly and unobstructedly during normal water discharge and left-right reversing, and the clothes treatment equipment 1 will not contact the ground under dynamic conditions such as vibration, so as to determine the limit height of the whole machine 11.

[0070] On the basis of the determined limit height of the whole machine 11, the height of the clutch assembly 118 is adjusted. Through technical means such as simulation, it is ensured that the claw meets the strength requirement of the current capacity section while reaching the lowest height, so as to determine the effective height of the inner cylinder 111.

[0071] The method adopts an outside-to-inside sequence to determine the size ratio of each component. First, the size of the external components such as the workbench 114 and the base 112 is determined, and then based on the size of the external components, the size of the internal components such as the clutch assembly 118 directly related to the inner cylinder 111 is further determined, and finally the volume size of the inner cylinder 111 is determined.

[0072] According to some embodiments of the present application, the capacity of the inner cylinder 111 satisfies 50L≤V≤65L.

[0073] In the related art, the laundry treatment apparatus with 50L≤V≤65L can only be vertically placed in two layers in a 40-foot high cabinet freight box.

[0074] According to the laundry treatment apparatus 1 of the embodiments of the present application, under the premise that the capacity of the inner cylinder 111 satisfies 50L≤V≤65L, through the optimized size ratio, in the same freight box size (such as a 40-foot freight box), more efficient loading can be achieved, so that the laundry treatment apparatus 1 can be vertically placed in more layers in a 40-foot freight box, from two layers to three layers.

[0075] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "illustrative embodiment", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the described specific features, structures, materials or characteristics can be combined in any one or more embodiments or examples in a suitable manner.

[0076] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A laundry treating apparatus, characterized by, The laundry treating apparatus is accommodated in a freight box body (2), the height of the freight box body (2) is H4; The laundry treating apparatus comprises: The whole machine (11) has a height H1, and H4 / H1≥3 is satisfied; The whole machine (11) is provided with an inner drum (111), the height of the inner drum (111) is H2, and 0.48≤H2 / H1≤0.6 is satisfied. 2.The laundry treating apparatus according to claim 1, characterized in that, Further comprising: A packaging assembly (12) is arranged on at least one side of the whole machine (11) in the height direction, the thickness of the packaging assembly (12) is H3, and 0.05≤H3 / H1≤0.06 and H4 / (H1+H3)≥3 are satisfied. 3.The laundry treating apparatus of claim 2, wherein The height H1 of the whole machine (11) and the thickness H3 of the packaging assembly (12) satisfy H1+H3≤893mm. 4.The laundry treating apparatus of claim 3, wherein The thickness H3 of the packaging assembly (12) satisfies 45mm≤H3≤50mm. 5.The laundry treating apparatus of claim 4, wherein The packaging assembly (12) comprises: An upper pad (121) is arranged on the top of the whole machine (11), and the edge of the upper pad (121) is formed with an upper turning edge portion wrapped around the outer periphery of the whole machine (11); A lower pad (122) is arranged on the bottom of the whole machine (11), and the edge of the lower pad (122) is formed with a lower turning edge portion wrapped around the outer periphery of the whole machine (11). 6.The laundry treating apparatus according to claim 1, wherein, The width of the whole machine (11) is W, the diameter of the inner drum (111) is D, and 0.78≤D / W≤0.9 is satisfied. 7.The laundry treating apparatus according to claim 1, wherein, The height H2 of the inner drum (111) satisfies 400mm≤H2≤450mm. 8.The laundry treating apparatus according to claim 1, wherein, The whole machine (11) further comprises: A base (112) rotatably arranged with the inner drum (111) thereon; A box body (113) arranged on the base (112) and covering the outer periphery of the inner drum (111); A workbench (114) arranged on the top of the box body (113). 9.The laundry treating apparatus of claim 8, wherein, The workbench (114) is formed with a top surface and an operation area connected with the top surface, the operation area is adapted to install a computer board, and the operation area and the top surface are arranged at an angle α and satisfy 0°<α<20°. 10.The laundry treating apparatus according to claim 8, wherein, The thickness of the base (112) is d1 and satisfies 45mm≤d1≤58mm, and the thickness of the workbench (114) is d2 and satisfies 60mm≤d2≤78mm. 11.The laundry treating apparatus according to claim 1, wherein, The whole machine (11) further comprises: An outer drum (115); A first shaft section (116) having one end penetrating through the outer drum (115) and connected with the inner drum (111); A second shaft section (117) having one end selectively connected with the first shaft section (116); A clutch assembly (118) arranged on the outer drum (115) and selectively connecting or disconnecting the first shaft section (116) and the second shaft section (117); wherein The clutch assembly (118) has a height h1 in the axial direction and satisfies: 42mm≤h1≤62mm. 12.The laundry treating apparatus according to claim 11, wherein, The other end of the second shaft section (117) is provided with a belt pulley (119), and the distance between the belt pulley (119) and the outer barrel (115) in the axial direction is h2 and satisfies: 90mm≤h2≤100mm.

13. The laundry treating apparatus according to any one of claims 1-12, characterized in that, The capacity V of the inner cylinder (111) satisfies: 50L≤V≤65L.