Protruding component of door, door and clothes treating equipment

By designing a sloping structure with protruding components on the door of the garment processing equipment, the problem of washing water leakage between the inner and outer drums is solved, achieving water conservation and improved washing effect, while reducing the risk of odors and bacteria.

CN120867071APending Publication Date: 2025-10-31QINGDAO HAIER WASHING MASCH CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202410532714.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-04-29
Publication Date
2025-10-31

AI Technical Summary

Technical Problem

In existing garment processing equipment, the gap between the inner and outer drums causes washing water leakage, increases humidity and bacterial growth, reduces the amount of washing water, and the uneven water flow affects the washing effect.

Method used

Design a protruding component for the door of a garment processing device, including a protruding body and an inclined structure. The inclined structure extends downward to the inner side of the inner drum, changing the direction of water flow so that the washing water collects and returns to the inner drum, reducing gap leakage.

Benefits of technology

It effectively reduces the gaps in the washing water flow, saves water resources, improves washing effect and cleaning efficiency, reduces odor and bacteria production, and optimizes water flow distribution.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120867071A_ABST
    Figure CN120867071A_ABST
Patent Text Reader

Abstract

The invention relates to the field of clothes treatment equipment, in particular to a protruding component of a door, the door and the clothes treatment equipment, and aims to solve the problem of how to reduce the possibility that washing water in an inner barrel of the clothes treatment equipment enters a gap between the inner barrel and an outer barrel. In order to achieve the purpose, the protruding component of the door of the clothes treating equipment comprises a protruding body and an inclined structure, and the protruding body protrudes out of a door body of the door; the inclined structure is arranged on the lower portion of the protruding body, inclines downwards and at least extends to the inner side of an inner barrel from a gap between an inner barrel opening and an outer barrel opening of the clothes processing equipment. By means of the arrangement mode, the amount of washing water entering the gap between the inner barrel opening and the outer barrel opening is greatly reduced, water resources are saved, and meanwhile the possibility that peculiar smells and bacteria are generated is reduced. And water flow can be controlled, and water splashing and leakage caused by water flow impact when the door is opened and closed are reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of clothing processing equipment, specifically providing a protruding component of a door, a door, and clothing processing equipment. Background Technology

[0002] In the design of similar garment handling equipment such as washing machines, more and more garment handling equipment has the need to reduce the gap between the inner drum and the outer drum where washing water enters.

[0003] For example, a closed inner drum design, meaning no drainage holes are present, prevents wash water from flowing back and forth between the inner and outer drums during washing. This reduces the likelihood of dirt or grime entering the inner drum and directly contacting the clothes, thus improving washing performance. However, this design still requires a certain gap between the inner and outer drums to allow the inner drum to rotate freely. While this gap is a necessary mechanical feature, it also becomes a channel for detergent and water leakage, especially noticeable during high-speed rotation when the water flow exacerbates the problem. This not only increases humidity inside the washing machine but also causes detergent and water to accumulate in the gap, promoting bacterial growth and odor. Furthermore, it reduces the amount of water in the inner drum.

[0004] Accordingly, there is a need in the art for a new door protrusion member, door, and garment handling equipment to address the problem of how to reduce the possibility of washing water in the inner drum of the garment handling equipment entering the gap between the inner and outer drums. Application content

[0005] This application aims to solve the aforementioned technical problem, namely, how to reduce the possibility of washing water in the inner drum of a garment processing device entering the gap between the inner and outer drums.

[0006] In a first aspect, this application provides a protruding member for a door of a garment processing device, characterized in that it comprises: a protruding body protruding from the door body of the door; and an inclined structure disposed at the lower part of the protruding body, the inclined structure being inclined downward and extending at least from the gap between the inner and outer openings of the garment processing device to the inner side of the inner cylinder.

[0007] With the above-mentioned technical solution, during the washing process, due to the movement of the inner drum and the dynamic action of the water flow, the washing water flows onto the protruding body. Under the influence of gravity, the washing water collects at the lower part of the protruding body. Because the lower part of the protruding body has a downward-sloping structure that extends at least from the gap between the inner and outer drum openings to the inner side of the inner drum, the water, after collecting at the lower part, does not fall directly into the gap between the inner and outer drum openings. Instead, it flows along the inclined structure into the inner drum, allowing more washing water to return to the inner drum for further washing circulation. This significantly reduces the amount of washing water entering the gap between the inner and outer drum openings, saving water resources and ensuring that optimal washing results are achieved with minimal water and energy each time. It also reduces the possibility of odor and bacterial growth. Furthermore, by changing the water flow direction through the inclined structure, it helps to distribute the water more evenly on the clothes, enhancing the washing effect, utilizing detergent more effectively, and improving cleaning efficiency. In addition, the inclined structure design also helps to control the water flow, reducing splashing and leakage caused by water impact when opening and closing the door.

[0008] In the optional technical solution of the protruding component of the above-mentioned clothing processing equipment door, the inclined structure and the protruding body form an integrally formed door protruding structure, so that the lower part of the door protruding structure is inclined downward.

[0009] In the optional technical solutions for the protruding component of the door of the aforementioned clothing processing equipment, the protruding structure of the door is made of plastic or glass.

[0010] By adopting the above technical solution, the inclined design at the bottom of the door glass naturally forms a water flow guiding structure. This allows water overflowing from the inner drum during washing, or water dripping onto the door glass due to clothing residue when the door is opened, to be effectively guided back to the inside of the inner drum, reducing water waste. Furthermore, because the door glass is integrally molded without gaps or joints, it reduces the residue of dirt and detergent.

[0011] In the optional technical solution of the protruding component of the above-mentioned clothing processing equipment door, the inclined structure is configured as a guide plate, and a flow space is formed between the guide plate and the protruding body.

[0012] By adopting the above solution, equipment performance can be optimized without large-scale modifications. Only simple improvements need to be made to the protruding body—namely, adding a deflector—avoiding a complete redesign of the door or the protruding body, thus reducing manufacturing and R&D costs. Furthermore, the deflector's design facilitates easy installation, making upgrades and maintenance simpler and faster. For example, the deflector can be installed on the door glass using methods such as clips, screws, or magnetic attachments. These methods require no specialized tools and are easy to perform at home.

[0013] In the optional technical solution of the protruding component of the above-mentioned clothing processing equipment door, the guide plate is arc-shaped, and the concave surface of the guide plate faces the protruding body.

[0014] When the above solution is adopted, the concave surface of the arc-shaped guide plate faces the convex body, thus guiding the water flow more naturally along a specific path. This helps reduce water turbulence and resistance, effectively concentrating and controlling the water flow, reducing the possibility of water overflow, and making the water flow smoother and more efficient, especially when the door is open. At the same time, efficient water flow management allows for excellent washing results while using less water and energy.

[0015] In the optional technical solution of the protruding component of the above-mentioned clothing processing equipment door, the top of the protruding body is inclined downward.

[0016] By adopting the above-mentioned design, both the top and bottom of the protruding body are designed to slope downwards. This design fully considers the optimization of water dynamics, greatly enhancing the ability to guide water flow and minimizing water splashing. This design also helps the water flow to act quickly and directly on the clothes, enhancing the contact between water and detergent and the clothes, effectively removing stains. At the same time, faster water return reduces the washing and rinsing cycle time, thereby improving the overall washing speed. Furthermore, the protruding body can be naturally cleaned during the washing process, reducing the accumulation of detergent and limescale, thus lowering long-term maintenance costs and frequency.

[0017] On the other hand, this application also provides a door for a garment processing device, characterized in that it includes a door body and a protruding member as described in any of the above embodiments.

[0018] In another aspect, this application also provides a garment processing device, characterized in that the garment processing device includes the door described in the above embodiments.

[0019] In the optional technical solutions of the above-mentioned garment processing equipment, the lower gap corresponds to the middle of the inclined structure in the height direction of the garment processing equipment; and / or the inner cylinder is configured as a closed inner cylinder.

[0020] When the above technical solution is adopted, since the gap at the bottom corresponds to the middle of the inclined structure in the height direction, the gap is left with a distance on both sides in the axial direction to correspond to the inclined structure. This allows the water flow that passes through the gap during washing or rinsing to fall onto the door glass and then be guided along the inclined surface of the inclined structure into the inner drum, reducing the possibility of water entering the gap and ensuring that most of the water flow can be effectively utilized instead of being wasted in unnecessary places.

[0021] In the optional technical solution of the above-mentioned clothing processing equipment, the clothing processing equipment includes a water inlet mechanism, which is configured to guide water to the top of the protruding body, and the water outlet of the water inlet mechanism corresponds to the inclined structure in the height direction of the clothing processing equipment.

[0022] By adopting the above technical solution, the water inlet mechanism guides water to the top of the protruding body and then collects it at the bottom. Since the water outlet of the inlet mechanism corresponds to the inclined structure in the height direction of the garment processing equipment, water can flow from the top of the protruding body to the inclined structure, allowing the water to be directly introduced into the inner drum. This ensures that the water flows smoothly from the top of the protruding body along the inclined structure to the inner drum, preventing water from entering the gap between the inner and outer drum openings, reducing maintenance costs and potential water loss risks. Furthermore, this arrangement ensures that the water flow is effectively utilized throughout the entire process from water inlet to washing, significantly reducing water loss, improving washing performance, and reducing energy consumption.

[0023] In the optional technical solution of the above-mentioned clothing processing equipment, a window gasket is sealed to the outer cylinder opening, the window gasket is also sealed to the protruding body, the top of the window gasket is provided with a water inlet, and the water outlet of the water inlet mechanism is connected to the water inlet.

[0024] When the above technical solution is adopted, the water can be directly guided to the top of the protruding body, and then the water flow can enter the inner side of the inner cylinder along the protruding body. Attached Figure Description

[0025] The preferred embodiments of this application are described below with reference to the accompanying drawings, in which:

[0026] Figure 1 This is a possible cross-sectional view of the garment processing device of this application;

[0027] Figure 2 This is a possible structural schematic diagram of the protruding member of this application;

[0028] Figure 3 This is a schematic diagram of one possible structure of the gate in this application;

[0029] Figure 4 This is a possible structural diagram of the inclined structure of the garment processing equipment of this application.

[0030] Explanation of reference numerals in the attached figures:

[0031] 1-Protruding component; 11-Protruding body; 12-Inclined structure; 13-Guide plate; 131-Arc-shaped end face; 14-Flow space; 15-Connecting part; 2-Door body; 3-Inner cylinder; 31-Inner cylinder opening; 4-Outer cylinder; 41-Outer cylinder opening; 5-Gap; 6-Window gasket. Detailed Implementation

[0032] Preferred embodiments of this application are described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of this application and are not intended to limit the scope of protection of this application. Those skilled in the art can make adjustments as needed to adapt to specific application scenarios.

[0033] It should be noted that in the description of this application, terms such as "top" and "bottom" indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. This is merely for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this application.

[0034] like Figure 1 As shown, this application proposes a garment processing device, which can be a drum washing machine, a drum washer-dryer combo, or a sock washing machine, etc., and this application does not impose specific limitations on it. The garment processing device of this application includes an inner drum 3, an outer drum 4, and a door. The inner drum 3 is rotatably disposed inside the outer drum 4 with a gap 5 between them. The inner drum 3 can be rotatably connected to the outer drum 4 via a shaft, and the specific connection method can be any existing or future connection method, which will not be described in detail here.

[0035] The inner drum 3 can be a closed inner drum 3, which isolates the inner drum 3 from the outer drum 4 during washing. That is, the inner drum 3 does not have water-permeable holes to prevent dirt that may be present at the gap 5 during washing from entering the inner drum 3 and directly contacting the clothes. It should be noted that, despite this, the inner drum 3 can still have openings to install structures that can be sealed during washing, such as a drainage structure. This is sufficient as long as the inner drum 3 is closed during washing to prevent water from flowing outwards from the inner wall of the inner drum 3. For example, the drainage structure can be designed to close during washing and open during drainage, so that the inner drum 3 is closed during washing, and the washing water can be discharged to the outside of the inner drum 3 through the drainage structure during drainage. The drainage structure can be a centrifugal valve, etc. Of course, the above description is not limiting; the drainage structure can also be omitted in this application.

[0036] As described in the background art, since the inner drum 3 is a closed inner drum 3, a certain gap 5 still needs to be maintained between the inner drum 3 and the outer drum 4 to ensure that the inner drum 3 can rotate automatically. This causes water to enter the gap 5 during the washing process, resulting in less and less washing water during the washing process. Furthermore, as the washing liquid accumulates in the gap 5, it easily promotes bacterial growth and the generation of odors.

[0037] like Figures 2 to 4 As shown, and refer to Figure 1 To address the problems caused by washing water entering the gap 5, this application provides a door comprising a door body 2 and a protruding member 1. The protruding member 1 includes a protruding body 11 protruding from the door body 2. The lower part of the protruding body 11 is provided with a downwardly inclined structure 12, which extends at least from the gap 5 between the inner tub opening 31 and the outer tub opening 41 to the inner side of the inner tub 3. This application does not limit the orientation of the gap 5 formed between the inner tub opening 31 and the outer tub opening 41. For example, the gap 5 between the inner tub opening 31 and the outer tub opening 41 can face one side of the door body 2, or it can face upwards, etc. It should be noted that "upper" and "lower" refer to the upper and lower parts of the garment handling equipment in use, based on the height direction.

[0038] During the washing process, due to the movement of the inner drum 3 and the dynamic action of the water flow, the washing water flows onto the protruding body 11. Under the action of gravity, the washing water collects at the lower part of the protruding body 11. Because the lower part of the protruding body 11 is provided with a downwardly inclined structure 12, and the inclined structure 12 extends at least from the gap 5 between the inner drum opening 31 and the outer drum opening 41 to the inner side of the inner drum 3, the water, after collecting at the lower part, does not fall directly into the gap 5 between the inner drum opening 31 and the outer drum opening 41, but flows into the inner side of the inner drum 3 along the inclined structure 12. This allows more washing water to return to the inner drum 3 to participate in the washing cycle, greatly reducing the amount of washing water entering the gap 5 between the inner drum opening 31 and the outer drum opening 41, saving water resources, ensuring that only the minimum amount of water and energy is needed to achieve the best washing effect each time, and also reducing the possibility of odor and bacteria generation. In addition, by changing the direction of water flow through the inclined structure 12, it helps the water flow to be more evenly distributed on the clothes, enhancing the washing effect, utilizing detergent more effectively, and improving cleaning efficiency. In addition, the design of the inclined structure 12 helps to control the water flow and reduce splashing and leakage caused by the impact of water flow when opening and closing the door.

[0039] As one possible implementation, the top of the protruding body 11 of this application is inclined downwards. This design, with both the top and bottom of the protruding body 11 inclined downwards, fully considers the optimization of water dynamics, greatly enhancing the ability to guide water flow and minimizing water splashing. This design also helps the water flow to act quickly and directly on the clothes, strengthening the contact between water and detergent and the clothes, and effectively removing stains. At the same time, faster water return also reduces the washing and rinsing cycle time, thereby improving the overall washing speed. The protruding body 11 can also be naturally cleaned during the washing process, reducing the accumulation of detergent and limescale, thereby reducing long-term maintenance costs and frequency.

[0040] The following describes the configuration between the protruding body 11 and the inclined structure 12.

[0041] As a first possible implementation, refer to Figure 1 and Figure 2 The inclined structure 12 and the protruding body 11 form an integrally molded door glass, so that the lower part of the door glass is inclined downward. That is, the protruding member 1 of this application is an integrally molded door glass, and the lower part of the door glass is inclined downward. The top and bottom of the door glass can both extend into the inner cylinder 3.

[0042] The inclined design at the bottom of the door glass naturally forms a water flow guiding structure, effectively guiding water overflowing from the inner drum 3 during washing or dripping onto the door glass due to clothing residue when the door is opened back to the inside of the inner drum 3, reducing water waste. Furthermore, since the door glass is integrally molded without gaps or joints, it reduces the residue of dirt and detergent. It should be noted that although the above description uses the inclined structure 12 and the protruding body 11 as an integrally molded door glass, the arrangement is not fixed. For example, alternatively, the inclined structure 12 and the protruding body 11 can form an integrally molded door plastic structure or metal structure, etc. These adjustments do not deviate from the principles of this application and are all within the scope of protection of this application.

[0043] Possibly, the opening end of the door glass in this application is integrally formed with an annular connecting portion 15. The door body 2 includes a first annular frame (not shown in the figure) and a second annular frame (not shown in the figure). The connecting portion 15 is sandwiched between the first annular frame and the second annular frame. The first annular frame and the second annular frame can be fixedly connected by means of snap-fit, bolt connection, etc., so that the door glass is fixed to the door body 2. It should be noted that although the above description uses the first annular frame and the second annular frame as examples, this is not intended to limit the scope of protection of this application. As long as the door glass can be fixed to the door body 2, its specific form can be adjusted. For example, a single annular frame can be used instead of two separate frames. This frame can have a concave groove to accommodate the connecting portion 15 of the door glass, and then it can be fixed by bolts, clamps, or other mechanical means. These adjustments do not deviate from the principle of this application and are all within the scope of protection of this application.

[0044] The tilt angle of the lower part of the door glass in this application can be adjusted according to actual usage, for example, by taking into account the size of the door glass (especially its length) and other design factors. The lower part of the door glass is tilted relative to the horizontal direction (e.g., Figure 1 The angle (perpendicular to the height direction) can be set between 15° and 45°, preferably 30°. A smaller angle (e.g., 15° to 25°) is sufficient to guide the water flow but maintains a gentler flow. A larger angle (e.g., 30° to 45°) allows the water flow to quickly return to the inner cylinder 3.

[0045] As a second possible implementation, refer to Figure 3 and Figure 4 The inclined structure 12 forms a flow guide plate 13, and a flow space 14 is formed between the flow guide plate 13 and the protruding body 11. The flow guide plate 13 can extend from the front end to the rear end of the protruding body 11. The protruding body 11 can be a door glass. With the above solution, the performance of the equipment can be optimized without large-scale modifications. Only a simple improvement can be made to the existing door glass, i.e., by adding the flow guide plate 13, avoiding the need to redesign the entire door or door glass, thereby reducing manufacturing and R&D costs. Moreover, the design of the flow guide plate 13 is easy to install, making the upgrade and maintenance process simpler and faster. For example, the flow guide plate 13 can be installed on the door glass using methods such as clips, screws, or magnetic fixation. These methods do not require professional tools and are easy to operate at home. It should be noted that although the protruding body 11 of this embodiment is described using a door glass as an example, this is not intended to limit the scope of protection of this application. For example, the protruding body can also be designed to be made of plastic, metal, etc.

[0046] Furthermore, the guide vane 13 is designed to be arc-shaped, meaning that the cross-section of the guide vane 13 at each position along its length is arc-shaped. The concave surface of the guide vane 13 faces the protruding body 11, so that the arc-shaped end face 131 of the arc-shaped guide vane 13 is connected to the protruding body 11.

[0047] Because the concave surface of the arc-shaped guide plate 13 faces the convex body 11, it can guide the water flow more naturally, allowing it to flow along a specific path. This helps reduce water turbulence and resistance, effectively concentrating and controlling the water flow, reducing the possibility of water overflow, and making the water flow smoother and more efficient, especially when the door is open. At the same time, efficient water flow management allows for excellent washing results while using less water and energy.

[0048] The garment processing device of this application also includes a water inlet mechanism (not shown in the figure), which is configured to guide water to the top of the protruding body 11, and the water outlet of the water inlet mechanism corresponds to the inclined structure 12 in the height direction of the garment processing device.

[0049] The above-described configuration allows the water inlet mechanism to guide water to the top of the protruding body 11 and then collect it at the bottom. Since the outlet of the water inlet mechanism corresponds to the inclined structure 12 in the height direction of the garment handling equipment, water can flow from the top of the protruding body 11 to the inclined structure 12, thus directly guiding the water into the inner drum 3. This ensures that the water flows smoothly from the top of the protruding body 11 along the inclined structure 12 to the inner drum 3, preventing water from entering the gap 5 between the inner drum opening 31 and the outer drum opening 41, reducing maintenance costs and potential water loss risks. Furthermore, this configuration ensures that the water flow is effectively utilized throughout the entire process from water inlet to washing, significantly reducing water loss, improving washing performance, and reducing energy consumption.

[0050] In one possible implementation, a window gasket 6 (annular) is sealed to the outer tube opening 41 of this application. The window gasket 6 is also sealed to the protruding body 11. For ease of explanation, the protruding body 11 is described below using a door glass as an example. The window gasket 6 is typically made of flexible rubber or silicone material and is designed to fill the gap between the door glass of the garment processing equipment and the outer tube opening 41 to prevent water and moisture leakage. The outer tube opening 41 and the window gasket 6 can be clamped or snapped together to securely fix the window gasket 6 to the outer tube opening 41. The sealing of the door glass focuses on ensuring water tightness and air tightness when the door is closed. The other side of the window gasket 6 is designed to form a tight contact with the surface of the door glass. This part of the window gasket 6 has a certain degree of elasticity to adapt to the pressure when the door glass is closed. After the door is closed and locked, the window gasket 6 will deform slightly due to pressure, thereby filling any possible tiny gaps and ensuring that no water overflows during the washing process.

[0051] A water inlet can be provided at the top of the window mat 6. The water inlet mechanism may include a water inlet pipe, with the outlet end of the water inlet pipe connected to the water inlet, for example, by interference fit or bonding. This allows water to enter through the water inlet at the window mat 6, ensuring that the water is directed to the top of the protruding body 11. Alternatively, the water inlet mechanism may also include a detergent dispenser. The water inlet pipe includes a first water pipe and a second water pipe. The outlet end of the first water pipe is connected to the water inlet of the detergent dispenser, the inlet end of the second water pipe is connected to the outlet of the detergent dispenser, and the outlet end of the second water pipe is connected to the water inlet at the top of the window mat 6. It should be noted that although the above description uses a water inlet on the window mat 6 as an example, this is not intended to limit the scope of protection of this application. The water inlet position can be adaptively adjusted according to the different structures of the clothing processing equipment, as long as the water inlet mechanism can direct water to the top of the protruding body 11 so that the water falls onto the top of the door glass.

[0052] When the water inlet mechanism includes an inlet pipe and a detergent dispenser, the above arrangement guides the water and detergent mixture to the top of the door glass and allows it to flow evenly down the glass, thereby improving the uniformity of the detergent-water mixture and enabling effective cleaning of the door glass.

[0053] As one possible implementation, the lower gap 5 between the inner tube opening 31 and the outer tube opening 41 of this application is located at the center of the inclined structure 12 in the height direction of the garment handling device (e.g., ...). Figure 1 (As shown at point A in the diagram). It can be understood that the above-mentioned height direction refers to the height direction of the garment processing equipment when it is in use.

[0054] Because the lower gap 5 corresponds to the middle of the inclined structure 12 in the height direction, the gap 5 has a distance on both sides in the axial direction to correspond to the inclined structure 12. This allows the water flow that passes through the gap 5 during washing or rinsing to fall onto the door glass and then be guided along the inclined surface of the inclined structure 12 into the inner drum 3. This reduces the possibility of water entering the gap 5 and ensures that most of the water flow can be effectively utilized instead of being wasted in unnecessary places.

[0055] It should be noted that the above-mentioned possible implementation methods can be used in combination to create new implementation methods suitable for more specific application scenarios. For example, the implementation method of "the top of the protruding body 11 is inclined downward" can be combined with "the inclined structure 12 and the protruding body 11 form an integrally molded door glass" to create a new implementation method of "both the top and bottom of the door glass are inclined downward". It can also be combined with "the inclined structure 12 is configured as a guide plate 13, and a flow space 14 is formed between the guide plate 13 and the protruding body 11" to create a new implementation method of "the top of the protruding body 11 is inclined downward, the inclined structure 12 is configured as a guide plate 13, and a flow space 14 is formed between the guide plate 13 and the protruding body 11". As another example, "the water inlet mechanism is configured to guide water to the top of the protruding body 11, and the water outlet of the water inlet mechanism corresponds to the inclined structure 12 in the height direction of the clothing treatment device" can be combined with the implementation method of "the top of the protruding body 11 is inclined downward". These all do not deviate from the principle of this application and are all within the protection scope of this application.

[0056] It should be noted that the above embodiments are only used to illustrate the principles of this application and are not intended to limit the scope of protection of this application. Without departing from the principles of this application, those skilled in the art can adjust the above structure so that this application can be applied to more specific application scenarios.

[0057] The technical solutions of this application have been described above with reference to the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of this application is obviously not limited to these specific embodiments. Without departing from the principles of this application, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the scope of protection of this application.

Claims

1. A protruding component of a garment processing device door, characterized in that, include: A protruding body, the protruding body protruding from the door body of the door; An inclined structure is provided at the lower part of the protruding body, the inclined structure is inclined downward, and extends at least from the gap between the inner and outer openings of the garment processing device to the inner side of the inner drum.

2. The protruding member of the door of the garment processing equipment according to claim 1, characterized in that, The inclined structure and the protruding body form an integrally formed door protrusion structure, so that the lower part of the door protrusion structure is inclined downward.

3. The protruding member of the door of the garment processing equipment according to claim 2, characterized in that, The protruding structure of the door is made of plastic or glass.

4. The protruding member of the door of the garment processing equipment according to claim 1, characterized in that, The inclined structure is configured as a flow guide plate, and a flow space is formed between the flow guide plate and the protruding body.

5. The protruding member of the door of the garment processing equipment according to claim 4, characterized in that, The guide plate is arc-shaped, and the concave surface of the guide plate faces the protruding body.

6. The protruding member of the garment processing equipment door according to any one of claims 1 to 5, characterized in that, The top of the protruding body is inclined downward.

7. A door of a garment processing device, characterized in that, It includes the door body and the protruding member as described in any one of claims 1 to 6.

8. A garment processing device, characterized in that, The garment handling device includes the door as described in claim 7.

9. The garment processing equipment according to claim 8, characterized in that, The lower gap corresponds to the middle of the inclined structure in the height direction of the garment handling equipment; and / or The inner cylinder is configured as a closed inner cylinder.

10. The garment processing equipment according to claim 8, characterized in that, The garment processing device includes a water inlet mechanism, which is configured to direct water to the top of the protruding body, and the water outlet of the water inlet mechanism corresponds to the inclined structure in the height direction of the garment processing device.

11. The garment processing equipment according to claim 10, characterized in that, A window gasket is sealed to the outer cylinder opening, and the window gasket is also sealed to the protruding body. A water inlet is provided on the top of the window gasket, and the water outlet of the water inlet mechanism is connected to the water inlet.