Clothes processing device and combined clothes processing equipment

By designing side-by-side drums and a flush front surface of the door in a drum washing machine, combined with a handle and a clearance section, the problems of fingers getting pinched by the door and large space occupation are solved, thus improving safety and space utilization.

CN224119309UActive Publication Date: 2026-04-14HISENSE(SHANDONG)REFRIGERATOR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The doors of existing drum washing machines can easily pinch fingers when closed, and the flush-mounted design takes up a lot of space, affecting the layout of internal components.

Method used

Design a garment handling device that uses two parallel rollers and a door. When closed, the door is located in a recessed area. The front surface of the door is flush with the front surface of the box. The design of the handle and the avoidance part prevents finger pinching. A non-push-type door lock is used.

Benefits of technology

It solves the problem of finger pinching, reduces the space occupied by the device depth, simplifies the door lock structure, and improves the efficiency of internal component layout.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of clothes treatment devices, in particular to a clothes treatment device and combined clothes treatment equipment. The clothes processing device comprises two door bodies, each door body comprises a door body, and the door bodies are rotationally connected to the box body; two clothes throwing openings distributed in the width direction of the box body are formed in the front side of the box body, the two clothes throwing openings correspond to the two rollers respectively, the box body is provided with concave parts arranged around the clothes throwing openings in the circumferential direction, the door body can open or close the corresponding clothes throwing openings, and when the door body closes the corresponding clothes throwing openings, the door body is located in the concave parts; the hand buckling part is formed on the door body, and a hand buckling groove is formed in the side, away from the front surface of the hand buckling part, of the hand buckling part; the front surface of the door body is partially sunken to form an avoiding part; and the avoiding part is communicated with the hand buckling groove, so that the hand can extend into the hand buckling groove through the avoiding part. The problem that fingers of a user are easily pinched by the door body can be solved.
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Description

Technical Field

[0001] This application relates to the field of clothing processing devices, and in particular to a clothing processing device and a combined clothing processing equipment. Background Technology

[0002] In modern life, washing machines have become an essential household appliance. Washing machines include top-loading washing machines and front-loading washing machines. Front-loading washing machines are generally front-opening machines. The front panel of the washing machine has a loading port, and the door is hinged to the machine via a hinge assembly to open or close the loading port.

[0003] Currently, when the door of a front-loading washing machine is closed, its front surface protrudes beyond the front surface of the machine body. This results in a larger depth and takes up more space. Related technologies aim to reduce the depth of front-loading washing machines by employing a flush-fitting door design, where the front surface of the door is flush with the front surface of the machine body when closed.

[0004] However, using a flush-mounted door design results in the door lock taking up a significant amount of space, affecting the layout of other components inside the washing machine. Even if the door lock structure is modified to reduce its space requirements, it can still easily cause users to pinch their fingers while opening and closing the door. Utility Model Content

[0005] This application discloses a clothing processing device and a combined clothing processing equipment, which can solve the problem of users' fingers being easily pinched by doors.

[0006] To achieve the above objectives, in a first aspect, embodiments of this application disclose a garment processing device, comprising:

[0007] Box;

[0008] Two rollers are arranged side by side within the box body along the width direction of the box body.

[0009] Two doors, each door comprising:

[0010] The door body is rotatably connected to the housing;

[0011] The front side of the box is provided with two clothes inlets distributed along the width direction of the box. The two clothes inlets are respectively arranged corresponding to the two rollers. The box has a recessed portion arranged around the clothes inlets. The door body can open or close the corresponding clothes inlet. When the door body closes the corresponding clothes inlet, the door body is located in the recessed portion.

[0012] The door body has a handle portion formed thereon, and a handle groove is provided on the side of the handle portion away from the front surface of the handle portion. The front surface of the door body is partially recessed to form a relief portion. The relief portion communicates with the handle groove so that a hand can be inserted into the handle groove through the relief portion.

[0013] In this application, the garment processing device includes two rollers, which are arranged side by side in the width direction of the box. That is, the garment processing device of this application has two independent rollers in one box, and the two rollers can operate independently, thereby realizing zoned washing. Zoned washing can separate garments with different washing requirements for washing. For example, underwear and other intimate clothing can be washed separately from outerwear, socks and other clothing to avoid cross-contamination and ensure the washing quality of the garments.

[0014] In this application, when the door body closes the garment inlet, the door body is located in the corresponding recess. This prevents the door body from protruding forward from the front surface of the box when the garment inlet is closed, thus making the garment handling device occupy less space when the garment inlet is closed.

[0015] Furthermore, the door of this application includes a door body and a handle. The front surface of the door body is partially recessed to form a relief portion. The handle is formed on the door body. The side of the handle away from the front surface of the handle has a handle groove, which communicates with the relief portion. The user's hand can be inserted into the handle groove through the relief portion to move the handle to open or close the door body. This eliminates the need for a recessed structure on the front panel of the housing, as in related technologies, thus solving the problem of fingers being pinched due to accidental insertion into the gap between the recessed structure and the side of the door body. Moreover, after the handle is provided on the door body, the door body can be opened or closed by operating the handle. This allows the use of a non-push-spring door lock, such as an electromagnetic door lock or a PTC door lock, instead of a push-spring door lock. Compared to push-spring door locks, non-push-spring door locks have a simpler structure, occupy less space, and are more conducive to the layout of other components within the garment handling device.

[0016] In one alternative embodiment, when the door body closes the corresponding garment opening, the front surface of the door body is flush with the front surface of the box.

[0017] In this embodiment, the front surface of the door body is flush with the front surface of the box. The flush design can reduce the gap between the door body and the box, making it easier to wipe during cleaning and avoiding the accumulation of dust and dirt.

[0018] In one alternative embodiment, the front surface of the handle is located on the same plane as the front surface of the door body.

[0019] Since the front surface of the handle in this application is on the same plane as the front surface of the door body, the handle does not protrude forward from the front surface of the door body. Therefore, providing the handle will not increase the depth of the clothing handling device.

[0020] In one optional embodiment, the garment handling device further includes:

[0021] Two outer cylinders are arranged side by side within the box body along the width direction of the box body;

[0022] In the direction from the front to the rear of the housing, each roller is inclined from top to bottom inside the corresponding outer cylinder, and both rollers have the aforementioned cylinder opening.

[0023] The drum of the garment handling device of this application can rotate relative to the outer drum, thereby lifting the clothes to a certain height and allowing them to fall freely, achieving the purpose of tumbling and removing dirt from the clothes. Furthermore, the drum of this application is inclined downwards from the front to the rear of the unit. This inclined arrangement extends the trajectory of the clothes as they fall, increasing their potential and kinetic energy, and thus increasing the impact force of the clothes hitting the drum wall, thereby improving the washing effect. Moreover, compared to a horizontally positioned drum, the downward inclination of the drum from the front to the rear of the unit shifts the point of impact of the lifted clothes onto the drum wall towards the rear of the drum, preventing the clothes from getting caught between the drum opening and the door seal located in front of the drum opening.

[0024] In one alternative embodiment, the door body includes:

[0025] A door frame, which is rotatably connected to the housing;

[0026] A cover plate, located on the front side of the door frame and connected to the door frame, wherein the front surface of the door body includes the front surface of the cover plate:

[0027] The door also includes:

[0028] A door bowl, which is connected to the door frame;

[0029] The handle portion includes:

[0030] A first handle layer is disposed on the cover plate, and the front surface of the first handle layer is flush with the front surface of the cover plate;

[0031] The clearance portion is recessed from the front surface of the cover plate and extends into the door frame. The door frame is provided with the handle groove, which is located on the rear side of the first handle layer.

[0032] In this embodiment, the handle includes a first handle layer, which is disposed on the cover plate, resulting in a simple structure.

[0033] In an optional embodiment, the handle further includes:

[0034] The second handle layer is disposed on the door frame and located behind the first handle layer;

[0035] The handle groove is located on the rear side of the second handle layer.

[0036] Compared to a handle consisting only of a first handle layer, the handle in this embodiment includes both a first handle layer and a second handle layer, allowing for a greater thickness and thus increasing the structural strength of the handle, preventing damage during door opening and closing. Furthermore, since the second handle layer is located behind the first handle layer, and the handle groove is also located behind the second handle layer, when the user's hand reaches into the handle groove to move the handle, the user's fingers within the handle groove will press against the second handle layer. The second handle layer directly bears the force exerted by the user moving the handle; that is, the first handle layer does not directly bear the force exerted by the user moving the handle. Therefore, when the user moves the handle, the connection structure between the cover plate and the door frame is not subjected to force, preventing the cover plate from detaching from the door frame and extending the door's lifespan.

[0037] In an optional embodiment, the door body further includes:

[0038] The guide portion has a first end connected to the inner wall of the avoidance portion on the side away from the first handle layer, and a second end of the guide portion offset relative to the first end of the guide portion in a direction close to the door frame. The second end of the guide portion is located close to the connection between the avoidance portion and the handle groove.

[0039] In this embodiment, the door also includes a guide portion. The first end of the guide portion is connected to the inner wall of the clearance portion, and the connection between the two and the first handle layer are located on opposite sides of the clearance portion. The second end of the guide portion is offset relative to the first end in a direction close to the door frame. That is, the guide portion is an inclined or curved structure, and at least part of the guide portion is located inside the clearance portion and is disposed opposite to the groove of the clearance portion. The second end of the guide portion is disposed close to the connection between the clearance portion and the handle groove. In this way, after the user's hand is inserted into the groove of the clearance portion, the guide portion can guide the user's hand into the handle groove so that the user's hand can be inserted into the handle groove to operate the handle.

[0040] In one optional embodiment, the clearance portion and the handle groove are arranged along the width direction of the housing, and the dimension of the guide portion along the height direction of the housing increases from the second end of the guide portion to the first end of the guide portion.

[0041] In this embodiment, the dimension of the guide portion along the height direction of the housing increases from the second end of the guide portion to the first end of the guide portion. That is, the width of the first end of the guide portion is larger, and the width of the second end of the guide portion is smaller. The first end of the guide portion is connected to the inner wall of the avoidance portion away from the first handle layer. Therefore, when the user's hand is first inserted into the avoidance portion, the hand will first contact the first end of the guide portion. Setting the width of the first end of the guide portion to be larger can increase the guiding area, making it easier for the user's hand to contact the guide portion. After the hand contacts the first end of the guide portion, it will be gradually guided to the second end of the guide portion and then enter the handle groove. Therefore, setting the width of the second end of the guide portion to be smaller can improve the guiding accuracy, so that the user's hand can accurately enter the handle groove.

[0042] In one optional embodiment, the direction from one side of the handle groove connected to the avoidance part to the other side, the handle groove includes a first groove segment and a second groove segment that are sequentially distributed and connected, the inner wall of the first groove segment away from the handle part and the inner wall of the second groove segment away from the handle part are located on the same plane;

[0043] Along the thickness direction of the door body, the extension dimension of the first groove segment is not equal to the extension dimension of the second groove segment.

[0044] In this embodiment, the handle groove includes a first groove segment and a second groove segment distributed along the width direction of the door body. The inner walls of the first groove segment and the second groove segment facing away from the handle are located on the same plane. Furthermore, along the thickness direction of the door body, the extension dimension of the first groove segment is not equal to the extension dimension of the second groove segment. That is, the inner walls of the first groove segment and the second groove segment near the handle are not coplanar. The inner walls of the first and second groove segments near the handle are the two force-bearing surfaces for the user's hand to actuate the handle. The non-coplanar nature of these two force-bearing surfaces provides the user with different points of force application, allowing the user to actuate the handle from different directions and angles. For example, when the user stands in different positions or uses different postures to open the door, a suitable groove segment can be found to apply force, eliminating the need to deliberately adjust hand posture and making operation more flexible and convenient.

[0045] In one optional embodiment, the clearance portion forms a slot on the front surface of the door body, the slot having a first dimension along the width direction of the box, and the first dimension of the slot decreasing from the middle of the slot along the height direction of the box towards both ends.

[0046] In this embodiment, the first dimension of the slot decreases from the middle to both ends along the height direction of the box. That is, the size of the slot is largest at the middle of the height direction of the box. When a person operates the door, the center of force is usually located in the middle of the door. The largest size in the middle of the slot can provide a more spacious gripping area, which fits the size of the palm when it is naturally open. In addition, the shape design of the slot being wider in the middle and narrower at both ends can guide the fingers to concentrate in the middle of the avoidance part when pulling the handle, reducing the risk of slippage caused by force deviation. This is especially suitable for scenarios where hands are wet or gloves are worn.

[0047] In one optional embodiment, the rim of the slot includes:

[0048] The first arc edge is located on the side of the clearance portion near the handle portion;

[0049] The second arc edge is located on the side of the avoidance portion away from the handle portion. The upper end of the second arc edge is connected to the upper end of the first arc edge, and the lower end of the second arc edge is connected to the lower end of the second arc edge.

[0050] The first arc edge protrudes in a direction away from the second arc edge, and the second arc edge protrudes in a direction away from the first arc edge.

[0051] In this embodiment, the groove of the clearance portion includes a first arc edge and a second arc edge. The upper end of the first arc edge is connected to the upper end of the second arc edge, and the lower end of the first arc edge is connected to the lower end of the second arc edge. The first arc edge protrudes in a direction away from the second arc edge, and the second arc edge protrudes in a direction away from the first arc edge. This allows the first dimension of the groove to decrease from the middle of the groove along the height direction of the box to both ends, providing a more spacious gripping area in the middle of the groove, which fits the size of the palm when it is naturally open. Furthermore, the groove's shape, which is wider in the middle and narrower at both ends, guides the fingers towards the middle of the clearance portion when the handle is pulled, reducing the risk of slippage caused by force deviation.

[0052] Furthermore, when the user's hand is inserted into the handle slot, the first curved edge faces the palm. Therefore, the design of the first curved edge better conforms to the natural curvature of the fingers, making it more comfortable for the user to operate the handle and reducing discomfort and fatigue in the finger joints. In addition, the second curved edge supports the back of the hand, and its design also better conforms to the back of the hand, distributing the pressure on the back of the hand.

[0053] In one alternative embodiment, the curvature of the first arc edge is greater than the curvature of the second arc edge.

[0054] In this embodiment, the curvature of the first arc edge is greater than that of the second arc edge. That is, the radius of the first arc edge is smaller than that of the second arc edge. The greater curvature of the first arc edge can more closely resemble the natural curvature of the palm and significantly reduce local pressure. The smaller curvature of the second arc edge can form a smooth transition surface, which conforms to the physiological curvature of the extensor muscles of the back of the hand when they are extended.

[0055] In one optional embodiment, the central angle of the second arc edge is 90° to 150°.

[0056] If the central angle of the second arc edge is less than 90°, the circumferential extension dimension of the second arc edge is too small, and correspondingly, the area of ​​the slot is also too small. Thus, it is not easy for the user's fingers to pass through the slot into the clearance part. If the central angle of the second arc edge is greater than 150°, the circumferential extension dimension of the second arc edge is too large, and the area of ​​the slot is also too large. In other words, the area of ​​the clearance part occupies too large an area of ​​the door body. This will not only reduce the structural strength of the door body, but also restrict the design position of other structures on the door body, such as reinforcing structures and snap-fit ​​structures.

[0057] Therefore, in this embodiment, the central angle of the second arc edge is controlled between 90° and 150°, which can make the circumferential extension dimension of the second arc edge and the area of ​​the groove within a suitable range. This not only facilitates the user's fingers to reach into the avoidance part, but also makes the door body have high structural strength and facilitates the layout of other structures on the door body.

[0058] In one alternative embodiment, the clearance portion forms a groove on the front surface of the door body;

[0059] The ratio of the area of ​​the slot to the area of ​​the front surface of the door body is 0.1 to 0.3. If the ratio of the two areas is less than 0.1, the area of ​​the slot is too small, making it difficult for the user's fingers to pass through the slot into the clearance part. If the ratio of the two areas is greater than 0.3, the area of ​​the slot is too large, meaning that the area of ​​the clearance part occupies too much of the area of ​​the door body. This will not only reduce the structural strength of the door body, but also limit the design position of other structures on the door body, such as reinforcing structures and snap-fit ​​structures.

[0060] Therefore, in this embodiment, the ratio of the two areas is controlled between 0.1 and 0.3, which can make the area of ​​the slot within a suitable range. This not only makes it easier for the user's fingers to insert into the avoidance part, but also makes the door body have high structural strength and facilitates the layout of other structures on the door body.

[0061] In one optional embodiment, the clearance portion forms a slot on the front surface of the door body; the front surface of the door body is circular, and the ratio of the maximum dimension of the slot along the width direction of the housing to the radius of the front surface of the door body is 0.5 to 0.7. If the ratio of the two dimensions is less than 0.5, the area of ​​the slot is too small, making it difficult for the user's fingers to pass through the slot into the clearance portion; if the ratio of the two dimensions is greater than 0.7, the area of ​​the slot is too large, meaning that the area of ​​the clearance portion occupies too much of the area of ​​the door body. This not only reduces the structural strength of the door body but also restricts the design position of other structures on the door body, such as reinforcing structures and snap-fit ​​structures.

[0062] Therefore, in this embodiment, the ratio of the two dimensions is controlled between 0.5 and 0.7, which can make the area of ​​the slot within a suitable range. This not only makes it easier for the user's fingers to reach into the avoidance part, but also gives the door body high structural strength and facilitates the layout of other structures on the door body.

[0063] In one optional embodiment, the maximum extension dimension of the handle groove along the thickness direction of the door body is 10-18mm. If the maximum extension dimension of the handle groove is less than 10mm, it is not easy for the user's fingers to pass through the groove and enter the avoidance part. If the maximum extension dimension of the handle groove is greater than 18mm, the area of ​​the handle groove is too large, that is, the area of ​​the handle groove occupies too much of the area of ​​the door body. This will not only reduce the structural strength of the door body, but also restrict the design position of other structures on the door body, such as reinforcing structures and latching structures.

[0064] Therefore, in this embodiment, the maximum extension size of the handle groove is controlled within 10 to 18 mm, which makes the maximum extension size of the handle groove within a suitable range. This not only makes it easier for users to insert their fingers into the handle groove, but also gives the door body high structural strength and facilitates the layout of other structures on the door body.

[0065] In one optional embodiment, the door body further includes a door cup, which is connected to the door body and located on the rear side of the door body. The maximum thickness of the door body is 22–40 mm. If the maximum thickness of the door body is less than 22 mm, the structural strength of the door body is low, and the door body is easily damaged when the user opens and closes the door. If the maximum thickness of the door body is greater than 40 mm, it will increase the depth of the clothing handling device, causing the clothing handling device to occupy too much space.

[0066] Therefore, in this embodiment, the maximum thickness of the door body is controlled between 22 and 40 mm. This not only gives the door body high structural strength and reduces the risk of damage to the door body, but also reduces the depth of the clothing processing device, thus avoiding the clothing processing device from occupying too much space.

[0067] Secondly, this application discloses a combined garment processing device, comprising:

[0068] First garment processing device;

[0069] The second garment processing device is the garment processing device described in any of the above embodiments, and the second garment processing device is detachably disposed on the top of the first garment processing device.

[0070] In this embodiment, the second garment processing device is detachably mounted on top of the first garment processing device. This allows for the replacement of either the first or second garment processing device individually when either device is damaged, without the need to replace the entire combined garment processing equipment, thereby reducing maintenance costs. Attached Figure Description

[0071] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0072] Figure 1 This is a schematic diagram of the structure of the garment processing device disclosed in the embodiments of this application;

[0073] Figure 2 This is a partial structural schematic diagram of the garment processing device disclosed in the embodiments of this application;

[0074] Figure 3 This is an exploded view of the door body disclosed in an embodiment of this application. Figure 1 ;

[0075] Figure 4 This is a cross-sectional view of the door body disclosed in an embodiment of this application;

[0076] Figure 5 For this application Figure 4 Enlarged view of point A in the middle;

[0077] Figure 6 This is an exploded view of the door body disclosed in an embodiment of this application. Figure 2 ;

[0078] Figure 7 This is a front view of the door disclosed in an embodiment of this application.

[0079] Explanation of reference numerals in the attached figures:

[0080] 100. Box body; 101. Groove; 102. Clothes opening; 110. Front panel; 111. Opening; 120. Recess; 210. Outer cylinder; 300. Door body; 400. Door body; 401. Clearance part; 403. First arc edge; 404. Second arc edge; 410. Door frame; 411. Front frame; 412. Rear frame; 413. Handle groove; 4131. First groove segment; 4132. Second groove segment; 420. Cover plate; 430. Guide part; 500. Handle part; 510. First handle layer; 520. Second handle layer; 600. Door bowl. Detailed Implementation

[0081] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0082] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0083] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0084] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0085] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.

[0086] In modern life, washing machines have become an essential household appliance. Washing machines include top-loading washing machines and front-loading washing machines. Front-loading washing machines are generally front-opening machines. The front panel of the washing machine has a loading port, and the door is hinged to the machine via a hinge assembly to open or close the loading port.

[0087] To reduce the depth dimension of drum washing machines, related technologies have created a groove on the front panel of the washing machine's casing, with the loading port located at the bottom of the groove. When the loading port is closed, the door is positioned within the groove, and the front surface of the door is flush with the front surface of the casing. This prevents the door from protruding from the front surface of the casing and thus increasing the depth dimension of the drum washing machine.

[0088] To facilitate opening the door, some related technologies adopt a push-to-open door lock structure. However, the push-to-open door lock structure is complex, occupies a large space, and is not conducive to the layout of other components inside the cabinet.

[0089] To address this, the technology incorporates a recessed structure on the front panel of the enclosure and locally thins the outer perimeter of the door to create a handle step. This handle step is exposed through the recessed structure, allowing users to reach into the recessed structure and pry open the door. This enables the use of non-push-type door lock structures, such as electromagnetic or PTC locks, thereby reducing the space occupied by the lock.

[0090] However, the inventors discovered that after the relevant technology sets a recessed structure on the front panel, when the door is closed, a narrow gap will be formed between the edge of the recessed structure and the side of the door; when the user operates the door handle step to open or close the door, the user's fingers may accidentally stick into the gap, resulting in finger injury.

[0091] To address the problem of users' fingers being easily pinched by doors, this application provides a clothing processing device and a combined clothing processing equipment. The clothing processing device and combined clothing processing equipment provided in this application will be described in detail below with reference to the accompanying drawings, through specific embodiments and application scenarios.

[0092] Please see Figure 1 , Figures 3 to 5 As shown in the figure, this application discloses a clothing processing device, including:

[0093] Box 100. Exemplarily, box 100 includes a frame and an outer shell. The outer shell includes a front panel 110, a rear panel, a left side panel, a right side panel, and a top panel. The front panel 110 is connected to the front side of the frame, the rear panel is connected to the rear side of the frame, the left side panel is connected to the left side of the frame, the right side panel is connected to the right side of the frame, and the top panel is connected to the top side of the frame. The width direction of box 100 is the arrangement direction of the left and right side panels, as shown below. Figure 1 The direction indicated by the arrow y in the middle; the depth direction of the housing 100 is the arrangement direction of the front panel 110 and the rear panel, as shown in the figure. Figure 1 The direction indicated by the x-arrow in the middle; the height direction of box 100 is... Figure 1 The direction indicated by the arrow in the middle. Furthermore, the outer shell also includes a bottom plate, which is connected to the lower side of the frame, and the height direction of the housing 100 is the arrangement direction of the top plate and the bottom plate.

[0094] The frame is hollow inside to form a receiving cavity. This cavity is configured to house multiple components of the garment handling device, such as rollers, circuitry, drive components, and drainage components. The housing 100 can be rectangular for placement against a wall. However, the housing 100 can also be cylindrical; this application is not limited to this.

[0095] Two rollers are arranged side-by-side along the width of the housing 100. Specifically, each roller has a drum opening 111, which is connected to one of the two garment inlets 102 described below. That is, one drum opening 111 is connected to one garment inlet 102, and the other drum opening 111 is connected to the other garment inlet 102. Clothes put into the garment inlet 102 by the user will enter the roller through the drum opening 111. The roller is used to hold and wash clothes. For example, the clothes handling device may also include an outer drum 210, which can be hooked to the housing 100 by a spring. The roller is rotatably disposed inside the outer drum 210 to wash the clothes. The outer drum 210 is also used to hold washing water.

[0096] Two door bodies 300, each door body 300 includes:

[0097] The door body 400 is rotatably connected to the housing 100, for example, the door body 400 can be rotatably connected to the housing 100 through a hinge assembly.

[0098] The front side of the box 100 is provided with two prongs along the width direction of the box 100. Figure 1The garment inlets 102 are distributed in the direction indicated by the y-arrow line in the figure. The two garment inlets 102 are respectively arranged corresponding to the two rollers, and the housing 100 has a recess 120 arranged around the garment inlets 102. The door body 400 can open or close the corresponding garment inlet 102. When the door body 400 closes the corresponding garment inlet 102, the door body 400 is located in the recess 120 to prevent the door body 400 from protruding forward from the front surface of the housing 100 and increasing the depth dimension of the garment handling device. For example, the recess 120 has a side wall and a bottom wall, which cooperate to form a groove 101. The garment opening 102 is provided on the bottom wall of the recess 120. The front surface of the box 100 has two openings 111 spaced apart along the width direction of the box 100. The two openings 111 are respectively connected to the two grooves 101. The two openings 111 are respectively used to allow the two door bodies 400 described below to enter the corresponding two grooves 101. The two grooves 101 are used to accommodate the two door bodies 400. It should be noted that the front surface of the box 100 is the front surface of the front panel 110 of the box 100.

[0099] The handle portion 500 is formed on the door body 400. The handle portion 500 has a handle groove 413 on the side opposite to the front surface of the handle portion 500. The front surface of the door body 400 is partially recessed to form a relief portion 401. The relief portion 401 communicates with the handle groove 413 so that a hand can be inserted into the handle groove 413 through the relief portion 401.

[0100] In this application, the garment processing device includes two rollers, which are arranged side by side in the width direction of the housing 100. That is to say, the garment processing device of this application has two independent rollers in one housing 100, and the two rollers can operate independently, thereby realizing zone washing. Zone washing can separate garments with different washing requirements for washing. For example, underwear and other intimate clothing can be washed separately from outerwear, socks and other clothing to avoid cross-contamination and ensure the washing quality of the garments.

[0101] In this application, when the door body 400 closes the garment inlet 102, the door body 400 is located in the corresponding recess 120. This can prevent the door body 400 from protruding forward from the front surface of the housing 100 when the garment inlet 102 is closed, so that the garment handling device occupies less space when the garment inlet 102 is closed.

[0102] Furthermore, the door 300 of this application includes a door body 400 and a handle 500. The front surface of the door body 400 is partially recessed to form a relief portion 401. The handle 500 is formed on the door body 400. The side of the handle 500 away from the front surface of the handle 500 has a handle groove 413. The handle groove 413 communicates with the relief portion 401. The user's hand can be inserted into the handle groove 413 through the relief portion 401, thereby moving the handle 500 to open or close the door body 400. This eliminates the need for a recessed structure on the front panel 110 of the housing 100 as in related technologies, thus solving the problem of fingers being pinched when accidentally inserted into the gap between the recessed structure and the side of the door body 400. Furthermore, by providing a handle 500 on the door body 400, the door body 400 can be opened or closed by operating the handle 500. This allows for the use of non-push-spring type door locks, such as electromagnetic door locks or PTC door locks, instead of using push-spring type door locks. Compared to push-spring type door locks, non-push-spring type door locks have a simpler structure, occupy less space, and are more conducive to the layout of other components within the garment handling device.

[0103] In one optional embodiment, when the door body 400 closes the corresponding garment opening 102, the front surface of the door body 400 is flush with the front surface of the box body 100.

[0104] In this embodiment, the front surface of the door body 400 is flush with the front surface of the box 100. The flush design can reduce the gap between the door body 400 and the box 100, making it easier to wipe during cleaning and avoiding the accumulation of dust and dirt.

[0105] In one alternative embodiment, the front surface of the handle portion 500 is located on the same plane as the front surface of the door body 400.

[0106] Since the front surface of the handle portion 500 of this application is on the same plane as the front surface of the door body 400, the handle portion 500 does not protrude forward from the front surface of the door body 400. Therefore, providing the handle portion 500 will not increase the depth dimension of the clothing handling device.

[0107] Please see Figure 2 In some embodiments, the garment handling apparatus further includes:

[0108] Two outer cylinders 210 are arranged side by side within the housing 100 along the width direction of the housing 100.

[0109] In the direction from the front to the rear of the housing 100, each roller is inclined from top to bottom within the corresponding outer cylinder 210, and both rollers have the aforementioned cylinder opening 111. For example, the outer cylinder 210 may be inclined from top to bottom within the housing 100 in the direction from the front to the rear of the housing 100, and the inclination angle of the outer cylinder 210 may be the same as the inclination angle of the roller.

[0110] The drum of the garment handling device of this application can rotate relative to the outer drum 210, thereby lifting the clothes to a certain height and allowing them to fall freely, achieving the purpose of tumbling and removing dirt from the clothes. Furthermore, the drum of this application is inclined downwards from the front to the rear of the housing 100. This inclined arrangement extends the trajectory of the clothes as they fall, increasing their potential and kinetic energy, and thus increasing the impact force of the clothes hitting the drum wall, thereby improving the washing effect. Moreover, compared to a horizontally positioned drum, the inclined arrangement of the drum downwards from the front to the rear of the housing 100 allows the landing point of the lifted clothes on the drum wall to move towards the rear of the drum. This prevents the clothes from being trapped between the drum opening 111 and the door seal located in front of the drum opening 111.

[0111] Please see Figures 3 to 5 In one alternative embodiment, the door body 400 includes:

[0112] Door frame 410 is rotatably connected to housing 100 and is used to mount the door cup 600 described below. For an example, please refer to... Figure 6 The door frame 410 includes a front frame 411 and a rear frame 412. The front frame 411 and the rear frame 412 are distributed along the depth direction of the housing 100 and are detachably connected. The front frame 411 is located in front of the rear frame 412. The flanged portion of the front end of the door cup 600 (described below) is clamped between the front frame 411 and the rear frame 412, thus facilitating the installation and removal of the door cup 600. Of course, the door cup 600 (described below) can also be connected to the door frame 410 by means of adhesive bonding or other methods, and this application does not limit this.

[0113] A cover plate 420 is located on the front side of the door frame 410 and connected to the door frame 410. The front surface of the door body 400 includes the front surface of the cover plate 420. Here, the cover plate 420 can make the front surface of the door body 400 relatively flat, improving the aesthetics of the door body 300. For example, the cover plate 420 can be connected to the door frame 410 by means of adhesive, snap-fit, etc. The front surface of the door frame 410 is provided with a receiving groove, and the cover plate 420 is received in the receiving groove. The outer peripheral wall of the cover plate 420 is in contact with the inner wall of the receiving groove. At this time, the front surface of the housing 100 also includes the front surface of the front frame 411, and the front surface of the front frame 411 is flush with the front surface of the cover plate 420.

[0114] Door body 300 also includes:

[0115] A door cup 600 is connected to the door frame 410. The door cup 600 extends into the roller to prevent clothing from being caught in the gap between the roller and the door seal located on the front side of the roller, thus avoiding damage to the clothing. For example, the door cup 600 can be supported by materials such as glass or plastic, and the door cup 600 has a transparent structure.

[0116] The 500-piece hand strap includes:

[0117] The first handle layer 510 is disposed on the cover plate 420. The front surface of the first handle layer 510 is flush with the front surface of the cover plate 420. The first handle layer 510 is used for the user's hand to hold in order to open or close the door body 400.

[0118] The clearance portion 401 is recessed from the front surface of the cover plate 420 and extends into the door frame 410. The door frame 410 is provided with a handle groove 413, which is located on the rear side of the first handle layer 510.

[0119] In this embodiment, the handle portion 500 includes a first handle layer 510, which is disposed on the cover plate 420, and has a simple structure.

[0120] Please see Figure 5 In an optional embodiment, the handle 500 further includes:

[0121] The second handle layer 520 is disposed on the door frame 410 and located behind the first handle layer 510. The second handle layer 520 is used for the user's hand to hold and open or close the door body 400. The handle groove 413 is located behind the second handle layer 520, that is, the inner wall of the handle groove 413 includes the side of the second handle layer 520 that faces away from the first handle layer 510.

[0122] Compared to the case where the handle portion 500 only includes the first handle layer 510, the handle portion 500 in this embodiment includes the first handle layer 510 and the second handle layer 520, which can make the handle portion 500 have a larger thickness, thereby improving the structural strength of the handle portion 500 and preventing the user from damaging the handle portion 500 when opening and closing the door body 400. Furthermore, since the second handle layer 520 in this embodiment is located behind the first handle layer 510, and the handle groove 413 is located behind the second handle layer 520, when the user's hand is inserted into the handle groove 413 to move the handle part 500, the user's fingers located in the handle groove 413 will press against the second handle layer 520, and the second handle layer 520 will directly bear the force of the user moving the handle part 500. That is to say, the first handle layer 510 will not directly bear the force of the user moving the handle part 500. Thus, when the user moves the handle part 500, the connection structure between the cover plate 420 and the door frame 410 will not be subjected to force, thereby preventing the cover plate 420 from detaching from the door frame 410 and extending the service life of the door 300.

[0123] In one alternative embodiment, the first handle layer 510 is integrally formed with the cover plate 420, and the second handle layer 520 is integrally formed with the door frame 410.

[0124] In this embodiment, the first handle layer 510 and the cover plate 420 are integrally formed, meaning that the first handle layer 510 and the cover plate 420 are seamlessly connected without screws or clips, reducing the risk of loosening or breaking of the first handle layer 510 and making the overall structure more stable. Similarly, the second handle layer 520 and the door frame 410 are integrally formed, meaning that the second handle layer 520 and the door frame 410 are seamlessly connected without screws or clips, reducing the risk of loosening or breaking of the second handle layer 520 and making the overall structure more stable. Of course, the first handle layer 510 and the cover plate 420 can also be separate parts, connected by screws or other connecting structures; similarly, the second handle layer 520 and the door frame 410 can also be separate parts, connected by screws or other connecting structures.

[0125] Please see Figure 3 In an optional embodiment, the door body 400 further includes:

[0126] The guide portion 430 has a first end connected to the inner wall of the avoidance portion 401 on the side away from the first handle layer 510. The second end of the guide portion 430 is offset relative to the first end of the guide portion 430 in a direction close to the door frame 410. The second end of the guide portion 430 is located near the connection between the avoidance portion 401 and the handle groove 413.

[0127] In this embodiment, the door body 300 also includes a guide portion 430. The first end of the guide portion 430 is connected to the inner wall of the clearance portion 401, and the connection between the two and the first handle layer 510 are located on opposite sides of the clearance portion 401. The second end of the guide portion 430 is offset relative to the first end in a direction close to the door frame 410. That is, the guide portion 430 is an inclined or curved structure, and at least a part of the guide portion 430 is located inside the clearance portion 401 and is disposed opposite to the slot of the clearance portion 401. The second end of the guide portion 430 is disposed close to the connection between the clearance portion 401 and the handle slot 413. In this way, after the user's hand is inserted into the slot of the clearance portion 401, the guide portion 430 can guide the user's hand into the handle slot 413 so that the user's hand can be inserted into the handle slot 413 to operate the handle 500.

[0128] In one optional embodiment, the clearance portion 401 and the handle groove 413 are arranged along the width direction of the housing 100, and the guide portion 430 is arranged along the height direction of the housing 100. Figure 1 The dimension (in the direction indicated by the z-arrow line) increases from the second end of the guide portion 430 toward the first end of the guide portion 430.

[0129] In this embodiment, the dimension of the guide portion 430 along the height direction of the housing 100 increases from the second end of the guide portion 430 to the first end of the guide portion 430. That is, the width of the first end of the guide portion 430 is larger, and the width of the second end of the guide portion 430 is smaller. The first end of the guide portion 430 is connected to the inner wall of the avoidance portion 401 away from the first handle layer 510. Therefore, when the user's hand is first inserted into the avoidance portion 401, the hand will first contact the first end of the guide portion 430. Setting the width of the first end of the guide portion 430 to be larger can increase the guiding area, making it easier for the user's hand to contact the guide portion 430. After the hand contacts the first end of the guide portion 430, it will be gradually guided to the second end of the guide portion 430 and then enter the handle groove 413. Therefore, setting the width of the second end of the guide portion 430 to be smaller can improve the guiding accuracy, so that the user's hand can accurately enter the handle groove 413. Of course, the dimensions of the guide portion 430 along the height direction of the housing 100 can remain unchanged or decrease from the second end of the guide portion 430 to the first end of the guide portion 430, and this application does not impose any restrictions on this.

[0130] It should be noted that the positional relationship between the avoidance part 401 and the handle groove 413 in this embodiment is the positional relationship when the door body 400 closes the corresponding clothes opening 102. That is, when the door body 400 closes the corresponding clothes opening 102, the avoidance part 401 and the handle groove 413 are arranged along the width direction of the box body 100.

[0131] In one alternative embodiment, the cover plate 420 and the guide portion 430 are integrally formed, that is, the cover plate 420 and the guide portion 430 are seamlessly connected, and there are no screws or clips or other connection points between them, which reduces the risk of the guide portion 430 loosening or breaking, and the overall structure is more stable.

[0132] In an alternative embodiment, the bottom wall of the clearance portion 401 is in contact with the guide portion 430.

[0133] In this embodiment, the bottom wall of the groove of the avoidance part 401 is in contact with the guide part 430. The bottom wall of the groove of the avoidance part 401 can provide support for the guide part 430, preventing the guide part 430 from collapsing when the user's hand contacts the guide part 430 and applies force to the guide part 430, so as to ensure the guiding accuracy of the guide part 430 and reduce the risk of damage to the guide part 430.

[0134] Please see Figure 5 In one optional embodiment, the direction from which the handle groove 413 connects to the clearance portion 401 is defined. The handle groove 413 includes a first groove segment 4131 and a second groove segment 4132 that are sequentially distributed and connected. That is, the first groove segment 4131 is closer to the clearance portion 401 than the second groove segment 4132. The inner wall of the first groove segment 4131 facing away from the handle portion 500 and the inner wall of the second groove segment 4132 facing away from the handle portion 500 are located on the same plane. It should be noted that the other side of the handle groove 413 refers to the side of the handle groove 413 that is away from the clearance portion 401.

[0135] Along the thickness direction of the door body 300 ( Figure 5 (As indicated by the arrow m in the middle), the extension dimension of the first groove segment 4131 is not equal to the extension dimension of the second groove segment 4132. This ensures that the inner wall of the first groove segment 4131 near the handle portion 500 is not coplanar with the inner wall of the second groove segment 4132 near the handle portion 500. For example, the extension dimension of the first groove segment 4131 can be greater than or less than the extension dimension of the second groove segment 4132. It should be noted that when the door body 400 closes the garment opening 102, the thickness direction of the door body 300 is parallel to the depth direction of the box body 100.

[0136] In this embodiment, the handle groove 413 includes a first groove segment 4131 and a second groove segment 4132 distributed along the width direction of the housing 100. The first groove segment 4131 and the second groove segment 4132, which are opposite to the inner wall of the handle 500, are located on the same plane. Along the thickness direction of the door 300, the extension dimension of the first groove segment 4131 is not equal to the extension dimension of the second groove segment 4132. That is, the inner wall of the first groove segment 4131 near the handle 500 and the inner wall of the second groove segment 4132 near the handle 500 are not coplanar. The inner walls of the first groove segment 4131 and the second groove segment 4132 near the handle 500 are the two force-bearing surfaces for the user to move the handle 500. The fact that the two force-bearing surfaces are not coplanar can provide the user with force points at different angles, making it convenient for the user to move the handle 500 from different directions and angles. For example, when a user stands in different positions or uses different postures to open the door 300, a suitable groove can be found to apply force, without having to deliberately adjust the hand posture, making the operation more flexible and convenient.

[0137] Please see Figure 7 In one optional embodiment, the clearance portion 401 forms a slot on the front surface of the door body 400, and the dimension of the slot along the width direction of the housing 100 is a first dimension, the first dimension including... Figure 7 In the L dimension, the first dimension of the slot decreases from the middle of the slot along the height direction of the box 100 towards both ends. It should be noted that the first dimension in this embodiment is the dimension when the door body 400 closes the corresponding garment opening 102. That is, when the door body 400 closes the corresponding garment opening 102, the dimension of the slot along the width direction of the box 100 is the first dimension.

[0138] In this embodiment, the first dimension of the slot decreases from the middle of the slot along the height direction of the housing 100 towards both ends. That is, the size of the slot is largest at the middle of the height direction of the housing 100. When a person operates the door 300, the center of force is usually located in the middle of the door 300. The largest size in the middle of the slot can provide a more spacious gripping area, which fits the size of the palm when it is naturally open. In addition, the shape design of the slot being wider in the middle and narrower at both ends can guide the fingers to concentrate in the middle of the avoidance part 401 when pulling the handle part 500, reducing the risk of slippage caused by force deviation, which is especially suitable for scenarios where hands are wet or gloves are worn.

[0139] Please see Figure 7 In one optional embodiment, the rim of the slot includes:

[0140] The first arc edge 403 is located on the side of the clearance portion 401 near the handle portion 500. Here, the first arc edge 403 and the second arc edge 404, described below, together surround and form the groove of the clearance portion 401.

[0141] The second arc edge 404 is located on the side of the avoidance part 401 away from the handle part 500. The upper end of the second arc edge 404 is connected to the upper end of the first arc edge 403, and the lower end of the second arc edge 404 is connected to the lower end of the first arc edge 403.

[0142] The first arc edge 403 protrudes in a direction away from the second arc edge 404, and the second arc edge 404 protrudes in a direction away from the first arc edge 403.

[0143] In this embodiment, the groove of the clearance portion 401 includes a first arc edge 403 and a second arc edge 404. The upper end of the first arc edge 403 is connected to the upper end of the second arc edge 404, and the lower end of the first arc edge 403 is connected to the lower end of the second arc edge 404. The first arc edge 403 protrudes in a direction away from the second arc edge 404, and the second arc edge 404 protrudes in a direction away from the first arc edge 403. This allows the first dimension of the groove to decrease from the middle of the groove along the height direction of the housing 100 towards both ends, providing a more spacious gripping area in the middle of the groove, which fits the size of a naturally open palm. Furthermore, the groove's shape, wider in the middle and narrower at both ends, guides the fingers towards the middle of the clearance portion 401 when the handle portion 500 is pulled, reducing the risk of slippage due to force deviation.

[0144] Furthermore, after the user's hand is inserted into the handle groove 413, the first arc edge 403 will face the palm. Therefore, the arc edge design of the first arc edge 403 can better conform to the natural curvature of the fingers, making it more comfortable for the user to operate the handle and reducing discomfort and fatigue in the finger joints. In addition, the second arc edge 404 can support the back of the hand, and the arc edge design of the second arc edge 404 can also better conform to the back of the hand, distributing the pressure on the back of the hand.

[0145] Please see Figure 7 In one alternative embodiment, the curvature of the first arc edge 403 is greater than the curvature of the second arc edge 404, that is, the degree of bending of the first arc edge 403 is greater than the degree of bending of the second arc edge 404.

[0146] In this embodiment, the curvature of the first arc edge 403 is greater than the curvature of the second arc edge 404. That is, the radius of the first arc edge 403 is smaller than the radius of the second arc edge 404. The greater curvature of the first arc edge 403 can more closely resemble the natural curvature of the palm and significantly reduce local pressure. The smaller curvature of the second arc edge 404 can make the second arc edge 404 form a smooth transition surface, which conforms to the physiological curvature of the extensor muscles of the back of the hand when they are extended.

[0147] Please see Figure 7In one optional embodiment, the central angle of the second arc edge 404 is 90° to 150°. The central angle of the second arc edge 404 is determined by... Figure 7 The α dimension is shown in the figure. The central angle of the second arc edge 404 can be 95°, 100°, 110°, 118°, 123°, 130°, 132°, 136°, 140°, 145°, 148°, etc., and this application does not limit it.

[0148] If the central angle of the second arc edge 404 is less than 90°, the circumferential extension dimension of the second arc edge 404 is too small, and correspondingly, the area of ​​the slot is also too small. Thus, it is not easy for the user's fingers to pass through the slot into the clearance part 401. If the central angle of the second arc edge 404 is greater than 150°, the circumferential extension dimension of the second arc edge 404 is too large, and the area of ​​the slot is also too large. In other words, the area of ​​the clearance part 401 occupies too large an area of ​​the door body 400. This will not only reduce the structural strength of the door body 400, but also restrict the design position of other structures on the door body 400, such as reinforcing structures and snap-fit ​​structures.

[0149] Therefore, in this embodiment, the central angle of the second arc edge 404 is controlled between 90° and 150°, so that the circumferential extension dimension of the second arc edge 404 and the area of ​​the groove are within a suitable range. This not only makes it easier for the user's fingers to insert into the avoidance part 401, but also makes the door body 400 have high structural strength and facilitates the layout of other structures on the door body 400.

[0150] In one optional embodiment, the clearance portion 401 forms a slot on the front surface of the door body 400, and the ratio of the area of ​​the slot to the area of ​​the front surface of the door body 400 is 0.1 to 0.3. For example, the ratio of the area of ​​the slot to the cross-sectional area of ​​the region enclosed by the outer peripheral wall of the door body 400 can be 0.16, 0.2, 0.25, 0.28, etc., and this application does not limit it to this.

[0151] If the ratio of the two areas is less than 0.1, the area of ​​the slot is too small, making it difficult for the user's fingers to pass through the slot into the clearance part 401; if the ratio of the two areas is greater than 0.3, the area of ​​the slot is too large, meaning that the area of ​​the clearance part 401 occupies too much of the area of ​​the door body 400. This will not only reduce the structural strength of the door body 400, but also restrict the design position of other structures on the door body 400, such as reinforcing structures and snap-fit ​​structures.

[0152] Therefore, in this embodiment, the ratio of the two areas is controlled between 0.1 and 0.3, which can make the area of ​​the slot within a suitable range. This not only makes it easier for the user's fingers to insert into the avoidance part 401, but also makes the door body 400 have high structural strength and facilitates the layout of other structures on the door body 400.

[0153] Please see Figure 7 In one optional embodiment, the clearance portion 401 forms a slot on the front surface of the door body 400, the front surface of the door body 400 being circular, and the ratio of the maximum dimension of the slot along the width direction of the housing 100 to the radius of the front surface of the door body 400 is 0.5 to 0.7. For example, the ratio of the maximum dimension of the slot along the width direction of the housing 100 to the radius of the front surface of the door body 400 can be 0.58, 0.6, 0.65, etc.

[0154] If the ratio of the two dimensions is less than 0.5, the area of ​​the slot is too small, making it difficult for the user's fingers to pass through the slot into the clearance part 401. If the ratio of the two dimensions is greater than 0.7, the area of ​​the slot is too large, meaning that the area of ​​the clearance part 401 occupies too much of the area of ​​the door body 400. This will not only reduce the structural strength of the door body 400, but also restrict the design position of other structures on the door body 400, such as reinforcing structures and snap-fit ​​structures.

[0155] Therefore, in this embodiment, the ratio of the two dimensions is controlled between 0.5 and 0.7, which can make the area of ​​the slot within a suitable range. This not only makes it easier for the user's fingers to insert into the avoidance part 401, but also makes the door body 400 have high structural strength and facilitates the layout of other structures on the door body 400.

[0156] Please see Figure 5 In one alternative embodiment, along the thickness direction of the door body 400 ( Figure 5 (As indicated by the arrow in the middle), the maximum extension dimension of the handle groove 413 is 10-18 mm. The maximum extension dimension of the handle groove 413 is determined by... Figure 5 The h dimension is shown in the figure. For example, the maximum extension dimension of the handle groove 413 can be 11mm, 12mm, 13mm, 14mm, 15mm, 16mm, 17mm, etc.

[0157] If the maximum extension dimension of the handle groove 413 is less than 10mm, the user's fingers will not easily pass through the groove into the avoidance part 401; if the maximum extension dimension of the handle groove 413 is greater than 18mm, the area of ​​the handle groove 413 is too large, that is to say, the area of ​​the handle groove 413 occupies too much of the area of ​​the door body 400. This will not only reduce the structural strength of the door body 400, but also restrict the design position of other structures on the door body 400, such as the reinforcing structure and the latching structure.

[0158] Therefore, in this embodiment, the maximum extension dimension of the handle groove 413 is controlled within 10 to 18 mm, which can make the maximum extension dimension of the handle groove 413 within a suitable range. This not only makes it easier for the user's fingers to insert into the handle groove 413, but also makes the door body 400 have high structural strength and facilitates the layout of other structures on the door body 400.

[0159] Please see Figure 1 In an optional embodiment, the door body 300 further includes a door cup 600, which is connected to the door body 400 and located on the rear side of the door body 400. The maximum thickness of the door body 400 is 22-40 mm. The maximum thickness of the door body 400 is determined by... Figure 1 The dimension d is shown in the figure. For example, the maximum thickness of the door body 400 can be 25mm, 28mm, 30mm, 31mm, 36mm, 38mm, etc.

[0160] If the maximum thickness of the door body 400 is less than 22mm, the structural strength of the door body 400 is low, and the door body 400 is easily damaged when the user opens and closes the door; if the maximum thickness of the door body 400 is greater than 40mm, the depth of the clothing handling device will be increased, causing the clothing handling device to occupy too much space.

[0161] Therefore, in this embodiment, the maximum thickness of the door body 400 is controlled to be between 22 and 40 mm. This not only gives the door body 400 high structural strength and reduces the risk of damage to the door body 400, but also reduces the depth of the clothing processing device, thus avoiding the clothing processing device from occupying too much space.

[0162] This application also discloses a combined garment processing device, comprising:

[0163] The first garment handling device can be a drum washing machine, dryer, washer-dryer combo, etc., as long as the loading port of the first garment handling device is not located on the top of the device. For example, the loading port of the first garment handling device can be located on the front side of the device. For example, the first garment handling device includes an outer casing, and the drum of the first garment handling device is located inside the outer casing. When the first garment handling device is a drum washing machine, it can be a single-tub washing machine or a multi-tub washing machine; this application does not impose any limitations on this.

[0164] The second garment processing device, which is the garment processing device described in any of the above embodiments, is detachably mounted on top of the first garment processing device. It should be noted that the width direction of the housing 100 of the second garment processing device is parallel to the width direction of the outer casing of the first garment processing device; the height direction of the housing 100 of the second garment processing device is parallel to the height direction of the outer casing of the first garment processing device; and the depth direction of the housing 100 of the second garment processing device is parallel to the depth direction of the outer casing of the first garment processing device. For example, the first and second garment processing devices can be detachably connected via a connecting bracket, which is located on top of the first garment processing device. The second garment processing device and the connecting bracket can be detachably connected via a plug-in connection or similar method. Alternatively, the first and second garment processing devices can be detachably connected via a pressure plate, with one end detachably connected to the first garment processing device and the other end pressing against the top of the base of the second garment processing device, thus fixing the second garment processing device onto the first garment processing device.

[0165] In this embodiment, the second garment processing device is detachably mounted on top of the first garment processing device. This allows for the replacement of either the first or second garment processing device individually when either device is damaged, without the need to replace the entire combined garment processing equipment, thereby reducing maintenance costs.

[0166] The foregoing embodiments of this application focus on describing the differences between various embodiments. As long as the different optimization features between embodiments are not contradictory, they can be combined to form better embodiments. For the sake of brevity, these differences will not be elaborated upon here. The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art, under the guidance of this application, can make many modifications without departing from the spirit and scope of the claims, all of which fall within the protection scope of this application.

Claims

1. A garment processing device, characterized in that, include: Box (100); Two rollers are arranged side by side within the housing (100) along the width direction of the housing (100); Two door bodies (300), each door body (300) comprising: Door body (400), the door body (400) is rotatably connected to the housing (100); The front side of the box (100) is provided with two clothes inlets (102) distributed along the width direction of the box (100). The two clothes inlets (102) are respectively arranged corresponding to the two rollers. The box (100) has a recess (120) arranged around the clothes inlets (102). The door body (400) can open or close the corresponding clothes inlets (102). When the door body (400) closes the corresponding clothes inlets (102), the door body (400) is located in the recess (120). A handle (500) is formed on the door body (400). The handle (500) has a handle groove (413) on the side opposite to the front surface of the handle (500). A relief portion (401) is formed by a partial recess on the front surface of the door body (400). The relief portion (401) communicates with the handle groove (413) so that a hand can be inserted into the handle groove (413) through the relief portion (401).

2. The garment processing device according to claim 1, characterized in that, When the door body (400) closes the corresponding garment opening (102), the front surface of the door body (400) is flush with the front surface of the box body (100).

3. The garment processing device according to claim 1, characterized in that, The front surface of the handle (500) is on the same plane as the front surface of the door body (400).

4. The garment processing device according to claim 3, characterized in that, The door body (400) includes: A door frame (410) is rotatably connected to the housing (100); A cover plate (420) is located on the front side of the door frame (410) and connected to the door frame (410). The front surface of the door body (400) includes the front surface of the cover plate (420). The door body (300) also includes: A door bowl (600) is connected to the door frame (410); The buckle (500) includes: A first handle layer (510) is disposed on the cover plate (420), and the front surface of the first handle layer (510) is flush with the front surface of the cover plate (420). The clearance portion (401) is recessed from the front surface of the cover plate (420) and extends into the door frame (410). The door frame (410) is provided with the handle groove (413), which is located on the rear side of the first handle layer (510).

5. The garment processing apparatus according to claim 4, characterized in that, The handle (500) also includes: The second handle layer (520) is provided on the door frame (410) and located behind the first handle layer (510); The handle groove (413) is located on the rear side of the second handle layer (520).

6. The garment processing apparatus according to claim 4, characterized in that, The door body (400) also includes: A guide portion (430) is provided, the first end of which is connected to the inner wall of the avoidance portion (401) on the side away from the first handle layer (510). The second end of the guide portion (430) is offset relative to the first end of the guide portion (430) in a direction close to the door frame (410). The second end of the guide portion (430) is provided close to the connection between the avoidance portion (401) and the handle groove (413).

7. The garment processing apparatus according to claim 6, characterized in that, The clearance portion (401) and the handle groove (413) are arranged along the width direction of the box body, and the dimension of the guide portion (430) along the height direction of the box body (100) increases from the second end of the guide portion (430) to the first end of the guide portion (430).

8. The garment processing apparatus according to claim 1, characterized in that, The direction from one side of the handle groove (413) connected to the avoidance part (401) to the other side, the handle groove (413) includes a first groove segment (4131) and a second groove segment (4132) that are distributed and connected in sequence. The inner wall of the first groove segment (4131) away from the handle part (500) and the inner wall of the second groove segment (4132) away from the handle part (500) are located on the same plane. Along the thickness direction of the door body (300), the extension dimension of the first groove segment (4131) is not equal to the extension dimension of the second groove segment (4132).

9. The garment processing apparatus according to claim 1, characterized in that, The clearance portion (401) forms a slot on the front surface of the door body (400). The size of the slot along the width direction of the box body is a first size. The first size of the slot decreases from the middle of the slot along the height direction of the box body (100) towards both ends.

10. The garment processing apparatus according to claim 9, characterized in that, The rim of the groove includes: The first arc edge (403) is located on the side of the avoidance part (401) near the handle part (500); The second arc edge (404) is located on the side of the avoidance part (401) away from the handle part (500). The upper end of the second arc edge (404) is connected to the upper end of the first arc edge (403), and the lower end of the second arc edge (404) is connected to the lower end of the second arc edge (404). The first arc edge (403) protrudes in a direction away from the second arc edge (404), and the second arc edge (404) protrudes in a direction away from the first arc edge (403).

11. The garment processing apparatus according to claim 10, characterized in that, The curvature of the first arc edge (403) is greater than the curvature of the second arc edge (404).

12. The garment processing apparatus according to claim 10, characterized in that, The central angle of the second arc edge (404) is 90° to 150°.

13. The garment processing apparatus according to claim 1, characterized in that, The clearance part (401) forms a groove on the front surface of the door body (400), the front surface of the door body (400) is circular, and the ratio of the maximum dimension of the groove along the width direction of the box (100) to the radius of the front surface of the door body (400) is 0.5 to 0.

7.

14. The garment processing apparatus according to claim 1, characterized in that, The clearance part (401) forms a groove on the front surface of the door body (400), and the ratio of the area of ​​the groove to the area of ​​the front surface of the door body (400) is 0.1 to 0.

3.

15. The garment processing apparatus according to claim 1, characterized in that, Along the thickness direction of the door body (400), the maximum extension dimension of the handle groove (413) is 10-18 mm; The door body (300) also includes a door bowl (600), which is connected to the door body (400) and located on the rear side of the door body (400). The maximum thickness of the door body (400) is 22-40 mm.

16. A combined garment processing device, characterized in that, include: First garment processing device; The second garment processing device is the garment processing device according to any one of claims 1 to 15, and the second garment processing device is detachably disposed on the top of the first garment processing device.