Laundry treating apparatus
By employing simple telescopic and rotating connecting components in the garment handling device, the problem of the door not being able to be embedded is solved, achieving an embedded and aesthetically pleasing effect on the panel, suitable for various installation scenarios.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2026-04-24
AI Technical Summary
Traditional garment handling devices cannot have their doors recessed, resulting in an unsightly appearance. Furthermore, the existing dual-axis hinge structure is complex and takes up a lot of space.
The door body is embedded in the panel by using a connecting assembly consisting of a first rotating component and a second rotating component. Through simple extension and rotation functions, the door body occupies little space when embedded in the panel and does not affect the aesthetics when opened.
The door is embedded in the panel, which improves the aesthetics of the clothing handling device and makes the door opening and closing process stable, suitable for different installation scenarios.
Smart Images

Figure CN121915593A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of clothing processing devices, and more specifically, to a clothing processing device. Background Technology
[0002] Traditional garment handling devices typically connect the door to the panel using a hinge assembly consisting of a single pivot. Due to the structural limitations of this connection, the door of the garment handling device needs to protrude from the panel, making it impossible to embed the door within the garment handling device. Related technologies have used double pivot hinges to achieve this embedding, but double pivot hinges are complex and take up a lot of space, affecting the aesthetics of the garment handling device and leaving room for improvement. Summary of the Invention
[0003] The present invention aims to at least partially solve one of the aforementioned technical problems in the prior art. To this end, the present invention proposes a garment handling device that allows the door to be embedded in the panel, resulting in a more aesthetically pleasing appearance whether the door is closed or open.
[0004] A garment processing apparatus according to an embodiment of the present invention includes: a panel having an opening;
[0005] A door body, which is movably disposed on the outside of the panel via a connecting assembly to open and close the passage;
[0006] The connecting assembly includes a first rotating member and a second rotating member. The first rotating member is rotatably connected to the panel via a first rotating shaft, and the second rotating member is rotatably connected to the door via a second rotating shaft. The first rotating member and the second rotating member are rotatably connected via a third rotating shaft.
[0007] According to an embodiment of the present invention, the clothing handling device, by setting a simple connecting component that can simultaneously have telescopic and rotational functions, allows the opening angle of the clothing handling device to be unrestricted by the panel, making the clothing handling device suitable for different indoor installation scenarios, and enabling the door to be embedded in the panel. The clothing handling device has a higher aesthetic appeal when the door is closed or open.
[0008] In addition, the garment processing apparatus according to the embodiments of the invention may also have the following additional technical features:
[0009] According to some embodiments of the present invention, the rotation axis of the first rotating shaft, the rotation axis of the second rotating shaft, and the rotation axis of the third rotating shaft are arranged in parallel.
[0010] According to some embodiments of the present invention, the connection component further includes:
[0011] A first limiting member is used to limit the rotation angle of the first rotating member relative to the panel.
[0012] The second limiting member is used to limit the rotation angle of the second rotating member relative to the door body.
[0013] According to some embodiments of the present invention, one end of the second rotating member and the door body are rotatably connected via the second rotating shaft;
[0014] One end of the first limiting member is rotatably connected to the panel via a first mounting shaft, and the other end of the first limiting member is rotatably connected to the other end of the second rotating member via a second mounting shaft, so as to limit the rotation angle of the first rotating member relative to the panel. The third rotating shaft is located between the first mounting shaft and the second mounting shaft.
[0015] According to some embodiments of the present invention, the rotation axis of the first mounting shaft, the rotation axis of the second mounting shaft, and the rotation axis of the third rotating shaft are arranged in parallel.
[0016] According to some embodiments of the present invention, the distance between the rotation axis of the first mounting shaft and the rotation axis of the second mounting shaft is greater than the distance between the rotation axis of the second mounting shaft and the rotation axis of the third rotating shaft.
[0017] According to some embodiments of the present invention, the panel is provided with two first mounting lugs on the side facing the door body, one end of the first rotating member and one end of the first limiting member are both located between the two first mounting lugs, and the first rotating shaft and the first mounting shaft both pass through the two first mounting lugs;
[0018] When the door is in the closed position, the first limiting member is located between the first rotating member and the panel.
[0019] According to some embodiments of the present invention, the first rotating shaft and the first mounting shaft are arranged at least in the thickness direction of the panel, and the second mounting shaft and the third rotating shaft are arranged at least in the thickness direction of the panel.
[0020] According to some embodiments of the present invention, the panel includes a panel body and a first connecting seat, wherein the first connecting seat is mounted on the panel body;
[0021] The first rotating member is rotatably connected to the first connecting seat via the first rotating shaft, and one end of the first limiting member is rotatably connected to the first connecting seat via the first mounting shaft.
[0022] According to some embodiments of the present invention, one end of the first rotating member and the panel are rotatably connected via the first rotating shaft;
[0023] One end of the second limiting member is rotatably connected to the door body via a first connecting shaft, and the other end of the second limiting member is rotatably connected to the other end of the first rotating member via a second connecting shaft, so as to limit the rotation angle of the second rotating member relative to the door body. The third rotating shaft is located between the first connecting shaft and the second connecting shaft.
[0024] According to some embodiments of the present invention, the rotation axis of the first connecting shaft, the rotation axis of the second connecting shaft, and the rotation axis of the third rotating shaft are arranged in parallel.
[0025] According to some embodiments of the present invention, the distance between the rotation axis of the first connecting shaft and the rotation axis of the second connecting shaft is greater than the distance between the rotation axis of the second connecting shaft and the rotation axis of the third rotating shaft.
[0026] According to some embodiments of the present invention, the door body is provided with two second mounting lugs on the side facing the panel, one end of the second rotating member and one end of the second limiting member are both located between the two second mounting lugs, and the second rotating shaft and the first connecting shaft both pass through the two second mounting lugs;
[0027] When the door is in the closed position, the second limiting member is located between the second rotating member and the door.
[0028] According to some embodiments of the present invention, the plane containing the rotation axis of the second rotating shaft and the rotation axis of the first connecting shaft is parallel to the door body, the second rotating member has a first clearance recess for avoiding the first connecting shaft, and the second limiting member has a second clearance recess for avoiding the third rotating shaft.
[0029] According to some embodiments of the present invention, the second rotating member has a through hole, and the first rotating member passes through the through hole to be rotatably connected to the second limiting member via the first connecting shaft, and is rotatably connected to the second rotating member at the through hole via the third rotating shaft.
[0030] According to some embodiments of the present invention, the door body includes a door body and a second connecting seat, wherein the second connecting seat is mounted on the door body;
[0031] The second rotating member is rotatably connected to the second connecting seat via the second rotating shaft, and one end of the second limiting member is rotatably connected to the second connecting seat via the second connecting shaft.
[0032] According to some embodiments of the present invention, the outer side of the panel has a receiving recess recessed along its thickness direction, the opening is provided on the bottom wall of the receiving recess, and when the door is closed, the door is at least partially received in the receiving recess. Attached Figure Description
[0033] Figure 1 This is a partial structural schematic diagram of a clothing processing device according to an embodiment of the present invention;
[0034] Figure 2 yes Figure 1 A magnified view of a portion at point A;
[0035] Figure 3 This is a partial structural schematic diagram of a clothing processing device according to an embodiment of the present invention;
[0036] Figure 4 yes Figure 3 Sectional view at AA;
[0037] Figure 5 yes Figure 4 A magnified view of the area at point B;
[0038] Figure 6 This is a partial structural diagram of the garment processing apparatus at the connecting component according to an embodiment of the present invention;
[0039] Figure 7 This is a partial structural diagram of the garment processing apparatus at the connecting component according to an embodiment of the present invention;
[0040] Figure 8 This is a partial structural diagram of the clothing handling device at the connecting component when the door is closed according to an embodiment of the present invention;
[0041] Figure 9 This is a partial structural diagram of the clothing handling device at the connecting component after the door is opened to a certain angle according to an embodiment of the present invention;
[0042] Figure 10 This is a partial structural diagram of the clothing handling device at the connecting component when the door is fully open according to an embodiment of the present invention;
[0043] Figure 11 This is a partial cross-sectional view of the garment handling apparatus according to an embodiment of the present invention at the connecting component;
[0044] Figure 12 This is a partial cross-sectional view of the garment handling apparatus according to an embodiment of the present invention at the connecting component;
[0045] Figure 13 This is a partial cross-sectional view of the garment handling apparatus according to an embodiment of the present invention at the connecting component;
[0046] Figure 14 This is a schematic diagram of the structure of the second connector according to an embodiment of the present invention;
[0047] Figure 15 This is a schematic diagram of the structure of the second rotating member according to an embodiment of the present invention;
[0048] Figure 16 This is a schematic diagram of the structure of the second limiting member according to an embodiment of the present invention;
[0049] Figure 17 This is a schematic diagram of the structure of the first rotating member according to an embodiment of the present invention;
[0050] Figure 18 This is a schematic diagram of the structure of the first limiting member according to an embodiment of the present invention;
[0051] Figure 19 This is a schematic diagram of the structure of the first connecting seat according to an embodiment of the present invention.
[0052] Figure label:
[0053] Panel 1, first mounting lug 11, panel body 12, first connecting seat 13, receiving recess 14, through opening 141, door body 2, second mounting lug 21, door body 22, second connecting seat 23, connecting assembly 3, first rotating member 4, second rotating member 5, first clearance recess 51, through hole 52, first limiting member 6, second limiting member 7, second clearance recess 71, first rotating shaft 104, first mounting shaft 106, second rotating shaft 205, first connecting shaft 207, third rotating shaft 405, second connecting shaft 407, second mounting shaft 506. Detailed Implementation
[0054] Embodiments of the present invention are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, and should not be construed as limiting the present invention.
[0055] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0056] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0057] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0058] The following is for reference. Figures 1-19 A garment processing apparatus according to an embodiment of the present invention is described.
[0059] The garment handling device according to an embodiment of the present invention may include: a panel 1, a door 2, and a connecting component 3.
[0060] The panel 1 has an opening 141, and the door 2 is movably disposed on the outside of the panel 1 via a connecting component 3 to open and close the opening 141.
[0061] Traditional garment handling devices typically connect the door 2 to the panel 1 via a hinge assembly consisting of a single pivot. Due to the limitations of the connection structure, the door 2 of the garment handling device needs to protrude from the panel 1, making it impossible to embed the door inside the garment handling device. Related technologies use a double pivot hinge to achieve the embedding of the door 2, but the double pivot hinge structure is complex and occupies a large amount of space, affecting the aesthetics of the garment handling device.
[0062] To address this, this invention provides a clothing processing device that uses a connecting assembly 3 composed of a first rotating member 4 and a second rotating member 5 to connect the door 2 and the panel 1. When the door 2 closes the opening 141, the first rotating member 4 and the second rotating member 5 can be folded between the door 2 and the panel 1. This design is simple, occupies little space, and does not encroach on the interior space of the panel 1, thus eliminating the need for openings in the panel 1. This avoids the connecting assembly 3 affecting the aesthetic appearance of the clothing processing device when the door 2 is open. Furthermore, when the user pulls the door 2 to open the opening 141, the first rotating member 4 and the second rotating member 5 rotate from a folded state to an open state. During this process, the door 2 can be horizontally moved a certain distance away from the opening 141 and then flipped open the opening 141 away from the panel 1. Thus, when the door 2 is embedded inside the panel 1, the connecting assembly 3 can support the normal opening and closing of the opening 141, achieving a horizontally fully embedded appearance for the clothing processing device and improving its aesthetic appeal.
[0063] Specifically, the connecting component 3 includes a first rotating member 4 and a second rotating member 5. The first rotating member 4 is rotatably connected to the panel 1 via a first rotating shaft 104, the second rotating member 5 is rotatably connected to the door body 2 via a second rotating shaft 205, and the first rotating member 4 and the second rotating member 5 are rotatably connected via a third rotating shaft 405.
[0064] When the door 2 closes the opening 141, the first rotating member 4 is located on one side of the first rotating shaft 104 in the first direction and on the other side of the third rotating shaft 405 in the first direction, and extends along the first direction. The second rotating member 5 is located on the other side of the third rotating shaft 405 in the first direction and on one side of the second rotating shaft 205 in the first direction, and extends along the first direction. The second direction is parallel to the thickness direction of the panel 1 and perpendicular to the first direction. The door 2 is located on one side of the second direction of the panel 1, that is, on one side of the thickness direction of the panel 1. The third direction is perpendicular to both the first and second directions. The first rotating shaft 104, the second rotating shaft 205 and the third rotating shaft 405 extend along the third direction.
[0065] In other words, the first rotating component 4 and the second rotating component 5 are folded and disposed between the panel 1 and the door 2. Since the connecting component 3 composed of the first rotating component 4 and the second rotating component 5 has a simple structure and occupies less space after folding, it does not need to encroach on the space inside the panel 1, and there is no need to open holes on the panel 1 for installation and avoidance. The setting of the connecting component 3 will not affect the appearance of the clothing handling device when the door 2 is opened.
[0066] For the clothing handling device embedded inside the panel 1 within the door body 2, during the process of the user pulling the door body 2 to open the opening 141, the door body 2 will move horizontally a certain distance away from the opening 141 along the second direction, that is, the thickness direction of the panel 1, under the guidance of the panel 1. During this process, the first rotating member 4 rotates a certain angle around the first rotating axis 104 in the fourth direction [the fourth direction can be either clockwise or counterclockwise], and at the same time rotates the same angle around the third rotating axis 405 in the fourth direction. The second rotating member 5 rotates the same angle around the third rotating axis 405 in the fifth direction opposite to the fourth direction, and at the same time rotates the same angle around the second rotating axis 205 in the fifth direction.
[0067] Since the first rotating member 4 and the second rotating member 5 rotate around the third rotating axis 405 in opposite fourth and fifth directions respectively, during the rotation, the first rotating member 4 and the second rotating member 5 change from a folded state to an open state. During this process, the door body 2 can be horizontally translated a certain distance away from the opening 141, changing the door body 2 from a state embedded in the panel 1 to a state protruding from the panel 1. At this time, the door body 2 is flipped over, so that the door body 2 can fully open the opening 141 by flipping. The flipping process of the door body 2 will not interfere with the structure of the panel 1, ensuring the normal flipping of the door body 2.
[0068] Furthermore, since the door 2 can extend to a position far away from the panel 1, the flipping angle of the door 2 is not limited by the panel 1. The door 2 can have a larger flipping angle and can better open the passage 141, which is beneficial to improving the user experience.
[0069] According to an embodiment of the present invention, the clothing processing device, by setting a simple structure and a connecting component 3 that can simultaneously extend, retract and rotate, allows the opening angle of the clothing processing device to be unrestricted by the panel 1, making the clothing processing device suitable for different indoor installation scenarios, and enabling the door 2 to be embedded in the panel 1. The clothing processing device has a higher aesthetic appeal when the door 2 is closed or opened.
[0070] To ensure stability during the movement of door 2 and to prevent interference between door 2, panel 1, first rotating component 4, and second rotating component 5, the following measures are taken: Figures 4-13 In the embodiment shown, the rotation axes of the first rotating shaft 104, the second rotating shaft 205, and the third rotating shaft 405 are arranged in parallel, and the rotation axes of the first rotating shaft 104, the second rotating shaft 205, and the third rotating shaft 405 are parallel to the plane where the door body 2 and the panel 1 are located.
[0071] Furthermore, since the rotation axes of the first rotating shaft 104, the second rotating shaft 205, and the third rotating shaft 405 are arranged in parallel and extend along the third direction, the first rotating member 4 located between the first rotating shaft 104 and the third rotating shaft 405 and the second rotating member 5 located between the second rotating shaft 205 and the third rotating shaft 405 are parallel to the third rotating shaft 405. Thus, the first rotating member 4 and the second rotating member 5 can be folded and arranged between the panel 1 and the door body 2 to achieve the embedding of the door body 2 and occupy a small space.
[0072] like Figures 4-13 As shown, the connecting component 3 also includes: a first limiting member 6 and a second limiting member 7.
[0073] Among them, the first limiting member 6 is used to limit the rotation angle of the first rotating member 4 relative to the panel 1, and the second limiting member 7 is used to limit the rotation angle of the second rotating member 5 relative to the door body 2. When the connecting component 3 is composed only of the first rotating member 4 and the second rotating member 5, the rotation range of the first rotating member 4 and the second rotating member 5 is large, and the rotation sequence of each structure is random. The door body 2 and the first rotating member 4 can rotate around the first rotating axis 104 at any angle. During the rotation, the door body 2, the first rotating member 4 and the second rotating member 5 are prone to collision with the panel 1, which will cause damage to the paint on the door body 2 or the panel 1, affecting the aesthetics. In addition, the connecting component 3 is also prone to interference with the door body 2 or the panel 1, causing the connecting component 3 to be damaged and deformed, affecting the rotation or sealing performance of the door body 2.
[0074] By setting the first limiting member 6 and the second limiting member 7, the rotation of the first rotating member 4 and the second rotating member 5 can be restricted within a certain range, so as to avoid the door body 2, the first rotating member 4 and the second rotating member 5 from rotating at too large an angle, and the connecting component 3 from interfering with the door body 2 or the panel 1, which would cause structural damage, affect the rotation or sealing performance of the door body 2, and prevent the door body 2 or the panel 1 from being damaged by collision, which would affect the aesthetics.
[0075] Specifically, one end of the second rotating member 5 is rotatably connected to the door body 2 via the second rotating shaft 205, one end of the first limiting member 6 is rotatably connected to the panel 1 via the first mounting shaft 106, and the other end of the first limiting member 6 and the other end of the second rotating member 5 are rotatably connected via the second mounting shaft 506. One end of the first rotating member 4 is rotatably connected to the panel 1 via the first rotating shaft 104, and the other end of the first rotating member 4 is rotatably connected to the second rotating member 5 via the third rotating shaft 405. The third rotating shaft 405 is located between the first mounting shaft 106 and the second mounting shaft 506, that is, the part of the second rotating member 5 located between the third rotating shaft 405 and the second mounting shaft 506 is folded and arranged with the first limiting member 6.
[0076] Therefore, the portion of the structure on panel 1 located between the first rotating shaft 104 and the first mounting shaft 106, the portion of the first rotating member 4, the portion of the first limiting member 6, and the portion of the second rotating member 5 located between the third rotating shaft 405 and the second mounting shaft 506 together form a quadrilateral structure. The position of panel 1 remains relatively constant. During the rotation of the first rotating member 4 relative to panel 1, the positions of the other two portions of the structure also change accordingly. That is, the positions of the first limiting member 6 and the portion of the second rotating member 5 located between the third rotating shaft 405 and the second mounting shaft 506 change during the rotation of the first rotating member 4 relative to panel 1, and conversely affect the first rotating member 4, limiting its rotation angle relative to panel 1.
[0077] Meanwhile, since the first rotating member 4 and the second rotating member 5 are respectively formed as two sides of the quadrilateral, the first rotating member 4 and the second rotating member 5 will rotate synchronously in a regular manner during the opening and closing of the door body 2, ensuring that the movement stroke of the door body 2 is stable during the opening and closing process.
[0078] In some embodiments, when the third rotating shaft 405, the first mounting shaft 106, and the second mounting shaft 506 are on the same straight line, the first rotating member 4 and the second rotating member 5 will be limited by the first limiting member 6. At this time, the distance between the rotation axis of the first mounting shaft 106 and the rotation axis of the second mounting shaft 506, and the sum of the distance between the rotation axis of the second mounting shaft 506 and the rotation axis of the third rotating shaft 405, determine the angle at which the first rotating member 4 and the door body 2 can rotate relative to the panel 1.
[0079] Alternatively, when the two mounting shafts abut against the first rotating member 4, the first rotating member 4 and the second rotating member 5 will also be limited by the first limiting member 6, and their positions relative to the panel 1 will be fixed.
[0080] Reference Figures 4-13 The rotation axes of the first mounting shaft 106, the second mounting shaft 506, and the third rotating shaft 405 are arranged in parallel to ensure that the first limiting member 6 can limit the rotation angle of the first rotating member 4 relative to the panel 1, avoid interference between the first limiting member 6 and the panel 1, the first rotating member 4, or the second rotating member 5, and ensure the stability of the connecting assembly 3 during the opening and closing of the door 2.
[0081] Reference Figure 11The distance L1 between the rotation axis of the first mounting shaft 106 and the rotation axis of the second mounting shaft 506 is greater than the distance L2 between the rotation axis of the second mounting shaft 506 and the rotation axis of the third rotating shaft 405. This ensures that when the door 2 closes the opening 141, the first rotating member 4 and the second rotating member 5 of the connecting assembly 3 can be folded, and the second rotating member 5 and the first limiting member 6 can be folded. This ensures that the first limiting member 6 has the function of limiting the first rotating member 4, while avoiding the partial structure between the second mounting shaft 506 and the third rotating shaft 405 occupying a large space in the second direction. This reduces the space occupied by the connecting assembly 3 as a whole in the second direction, which is beneficial to the sealed installation of the door 2 and to the thinning of the clothing handling device.
[0082] Combination Figure 1 , Figures 4-13 and Figure 19 In the embodiment shown, to achieve a rotatable connection between the first rotating member 4, the first limiting member 6, and the panel 1, the panel 1 is provided with two first mounting lugs 11 on the side facing the door body 2. One end of the first rotating member 4 and one end of the first limiting member 6 are located between the two first mounting lugs 11, and the first rotating shaft 104 and the first mounting shaft 106 are both passed through the two first mounting lugs 11. The two first mounting lugs 11 can limit the first rotating member 4 on both sides of the first rotating shaft 104 axial direction to ensure the stability of the first rotating member 4 during rotation relative to the panel 1. At the same time, they can limit the first limiting member 6 on both sides of the first mounting shaft 106 axial direction to ensure the stability of the first limiting member 6 during rotation relative to the panel 1. Since the first rotating shaft 104 and the first mounting shaft 106 are arranged in parallel, the two first mounting lugs 11 can be provided on both sides of the first rotating member 4 and the first limiting member 6, simplifying the structure of the panel 1.
[0083] Furthermore, the first mounting lug 11 provides an installation position for the first rotating shaft 104 and the first mounting shaft 106, avoiding the need to make holes in the panel 1, improving the aesthetics of the garment handling device when the door 2 is open, and improving the sealing performance of the garment handling device.
[0084] When the door 2 is in the closed opening 141 state, the first limiting member 6 is located between the first rotating member 4 and the panel 1, so that the first rotating member 4 and the first limiting member 6 can be stacked in the thickness direction of the panel 1, reducing the space occupied by the connecting component 3 in the thickness direction of the clothing processing device.
[0085] Furthermore, such as Figure 8 and Figure 11 As shown, the second mounting shaft 506 and the third rotating shaft 405 are arranged at least in the thickness direction of the panel 1.
[0086] The second rotating member 5 is disposed between the panel 1 and the door body 2 and is inclined in the thickness direction of the panel 1. The second mounting shaft 506, the second rotating shaft 205 and the third rotating shaft 405 are simultaneously disposed on the second rotating member 5, and the third rotating shaft 405 is disposed between the second mounting shaft 506 and the third mounting shaft. Therefore, the second mounting shaft 506, the third rotating shaft 405 and the second rotating shaft 205 are arranged in the thickness direction of the panel 1. Since the second mounting shaft 506 is connected to the first limiting member 6 disposed near the panel 1, the second mounting shaft 506 is disposed in the second direction between the panel 1 and the door body 2, closer to the side of the panel 1. The second rotating shaft 205 is disposed on the door body 2. The second rotating member 5 is connected between the second rotating shaft 205 and the second mounting shaft 506. That is, in the thickness direction of the panel 1, the third rotating shaft 405 is located between the second rotating shaft 205 and the second mounting shaft 506.
[0087] In some embodiments, refer to Figure 8 and Figure 11 The first rotating shaft 104 and the first mounting shaft 106 are arranged at least in the thickness direction of the panel 1, and the first rotating shaft 104 is located on the side of the first mounting shaft 106 closer to the door body 2 in the thickness direction. Thus, the first rotating member 4 connected between the first rotating shaft 104 and the third rotating shaft 405 and the first limiting member 6 connected between the first mounting shaft 106 and the second mounting shaft 506 can also be arranged in the thickness direction without interference. Furthermore, the first rotating member 4 does not need to be designed with a more complex structure to avoid the first mounting shaft 106, which reduces production and design costs.
[0088] In other embodiments, the first rotating shaft 104 and the first mounting shaft 106 may be located on the same plane in the thickness direction of the panel 1. When the door 2 closes the opening 141, the first rotating shaft 104 is located on the side of the first mounting shaft 106 facing away from the first limiting member 6 in the first direction, and the first rotating member 4 should be provided with a clearance structure to avoid the first mounting shaft 106.
[0089] like Figure 1 As shown, panel 1 includes panel body 12 and first connecting seat 13. The first connecting seat 13 is mounted on panel body 12. The first rotating member 4 is rotatably connected to the first connecting seat 13 through the first rotating shaft 104. One end of the first limiting member 6 is rotatably connected to the first connecting seat 13 through the first mounting shaft 106.
[0090] In other words, the panel body 12 realizes the installation of the first rotating shaft 104 and the first mounting shaft 106 through the setting of the first connecting seat 13. By setting the first connecting seat 13 on the panel body 12, on the one hand, the first connecting seat 13 can be made of a material with higher strength than the panel body 12, which improves the strength of the connection between the connecting component 3 and the panel 1 and improves the stability of the door body 2. On the other hand, the structure of the part of the panel 1 that connects to the first mounting shaft 106 and the first rotating shaft 104 is relatively complex. Dividing the panel 1 into the first connecting seat 13 and the panel body 12 for connecting with the first rotating shaft 104 and the first mounting shaft 106, molding and processing the two separately, and then connecting and fixing them into a whole can reduce the molding difficulty of the panel 1 and reduce the production cost.
[0091] Reference Figures 4-13 One end of the second limiting member 7 is rotatably connected to the door body 2 via the first connecting shaft 207. One end of the second rotating member 5 is rotatably connected to the door body 2 via the second rotating shaft 205. One end of the first rotating member 4 is rotatably connected to the panel 1 via the first rotating shaft 104. The other end of the second limiting member 7 and the other end of the first rotating member 4 are rotatably connected via the second connecting shaft 407. The first rotating member 4 and the second rotating member 5 are rotatably connected via the third rotating shaft 405. The third rotating shaft 405 is located between the first connecting shaft 207 and the second connecting shaft 407. That is, the part of the first rotating member 4 located between the third rotating shaft 405 and the second connecting shaft 407 is folded and arranged with the second limiting member 7.
[0092] Therefore, the portion of the structure on the door body 2 located between the second rotating shaft 205 and the first connecting shaft 207, the second rotating member 5, the second limiting member 7, and the portion of the structure on the first rotating member 4 located between the third rotating shaft 405 and the second connecting shaft 407 together form a quadrilateral structure. During the rotation of the second rotating member 5 relative to the door body 2, the positions of the second limiting member 7 and the first rotating member 4 relative to the door body 2 also change accordingly. That is, the positions of the second limiting member 7 and the portion of the first rotating member 4 located between the third rotating shaft 405 and the second connecting shaft 407 change during the rotation of the second rotating member 5 relative to the door body 2, and conversely affect the second rotating member 5, limiting its rotation angle relative to the door body 2.
[0093] Meanwhile, since at least a portion of the first rotating member 4 and the second rotating member 5 are respectively formed as two sides of the quadrilateral, the first rotating member 4 and the second rotating member 5 will rotate synchronously in a regular manner during the opening and closing of the door body 2, ensuring that the movement stroke of the door body 2 is stable during the opening and closing process.
[0094] In some embodiments, when the third rotating shaft 405, the first connecting shaft 207 and the second connecting shaft 407 are on the same straight line, the first rotating member 4 and the second rotating member 5 will be limited by the second limiting member 7. At this time, the sum of the distance between the rotation axis of the first connecting shaft 207 and the rotation axis of the second connecting shaft 407 and the rotation axis of the second connecting shaft 407 and the rotation axis of the third rotating shaft 405 determines the angle at which the second rotating member 5 can rotate relative to the door body 2.
[0095] Alternatively, when the two connecting shafts abut against the second rotating member 5, the first rotating member 4 and the second rotating member 5 will also be limited by the second limiting member 7, and their positions relative to the door body 2 will be fixed.
[0096] like Figures 4-13 As shown, the rotation axis of the first connecting shaft 207, the rotation axis of the second connecting shaft 407, and the rotation axis of the third rotating shaft 405 are arranged in parallel to ensure that the second limiting member 7 can achieve the purpose of limiting the rotation angle of the second rotating member 5 relative to the door body 2, avoiding interference between the second limiting member 7 and the door body 2, the first rotating member 4, or the second rotating member 5, and ensuring the stability of the connecting assembly 3 during the opening and closing of the door body 2.
[0097] like Figure 8 As shown, the distance L3 between the rotation axis of the first connecting shaft 207 and the rotation axis of the second connecting shaft 407 is greater than the distance L4 between the rotation axis of the second connecting shaft 407 and the rotation axis of the third rotating shaft 405. This ensures that when the door 2 closes the opening 141, the first rotating member 4 and the second rotating member 5 of the connecting assembly 3 can be folded, and the first rotating member 4 and the second limiting member 7 can be folded. This ensures that the second limiting member 7 has the function of limiting the second rotating member 5, while avoiding the part of the structure on the first rotating member 4 located between the second connecting shaft 407 and the third rotating shaft 405 occupying a large space in the second direction. This reduces the space occupied by the connecting assembly 3 as a whole in the second direction, which is beneficial for the sealed installation of the door 2 and for the thinning of the clothing handling device.
[0098] Combination Figure 1 , Figures 4-13 and Figure 19In the illustrated embodiment, to achieve a rotatable connection between the second rotating member 5, the second limiting member 7, and the door body 2, the door body 2 has two second mounting lugs 21 on the side facing the panel 1. One end of the second rotating member 5 and one end of the second limiting member 7 are both located between the two second mounting lugs 21, and the second rotating shaft 205 and the first connecting shaft 207 both pass through the two second mounting lugs 21. The two second mounting lugs 21 can limit the second rotating member 5 on both sides of the axial direction of the second rotating shaft 205, ensuring the stability of the second rotating member 5 during rotation relative to the door body 2. At the same time, they can limit the second limiting member 7 on both sides of the axial direction of the first connecting shaft 207, ensuring the stability of the second limiting member 7 during rotation relative to the door body 2. Since the second rotating shaft 205 and the first connecting shaft 207 are arranged parallel to each other, the two second mounting lugs 21 can be provided on both sides of the second rotating member 5 and the second limiting member 7, simplifying the structure of the door body 2.
[0099] Furthermore, the second mounting lug 21 provides an installation position for the second rotating shaft 205 and the first connecting shaft 207, avoiding the need to drill holes in the door body 2, improving the aesthetics of the clothing handling device when the door body 2 is open, and improving the sealing performance of the clothing handling device.
[0100] When the door 2 is in the closed opening 141 state, the second limiting member 7 is located between the second rotating member 5 and the door 2. Thus, when the door 2 is in the closed opening 141 state, the second rotating member 5 and the second limiting member 7 can be stacked in the thickness direction of the panel 1, reducing the space occupied by the connecting component 3 in the thickness direction of the clothing processing device.
[0101] like Figure 8 and Figure 11As shown, when the door 2 closes the opening 141, the second rotating member 5 and the first rotating member 4 are folded and positioned between the door 2 and the panel 1. The plane containing the rotation axis of the second rotating shaft 205 and the rotation axis of the first connecting shaft 207 is parallel to the door 2. In other words, when the door 2 closes the opening 141, the second rotating shaft 205 and the first connecting shaft 207 are located on the same plane in the thickness direction of the panel 1. The second rotating shaft 205 is located on the side of the first connecting shaft 207 facing away from the second limiting member 7 in the first direction. When the door 2 closes the opening 141, the second rotating shaft 5... The rotating member 5 extends from the second rotating shaft 205 in a first direction toward the second limiting member 7, and the length of the second rotating member 5 is greater than the distance between the second rotating shaft 205 and the first connecting shaft 207. The second limiting member 7 extends from the first connecting shaft 207 in a direction away from the second rotating shaft 205 in the first direction. That is, the second rotating member 5 and the second limiting member 7 have a portion of their structure overlapping in the thickness direction of the panel 1. To avoid interference between the second rotating member 5 and the second limiting member 7, the second rotating member 5 has a first clearance recess 51 for avoiding the first connecting shaft 207. The first clearance recess extends away from the door body 2 at a position near the first connecting shaft 207 so that the second rotating member 5 and the second limiting member can overlap.
[0102] like Figure 8 and Figure 11 As shown, the planes where the first connecting shaft 207 and the second connecting shaft 407 are located at both ends of the second limiting member 7 are inclined in the thickness direction of the panel 1, that is, the second connecting shaft 407 is spaced apart from the door body 2. The second limiting member 7 has a second avoidance recess 71 for avoiding the third rotating shaft 405, so that the third rotating shaft 405 can be set close to the door body 2. The various structures of the connecting assembly 3 in the thickness direction of the panel 1 can be more tightly fitted and stacked, reducing the space occupied by the connecting assembly 3 in the thickness direction of the clothing processing device.
[0103] In other embodiments, the second rotating shaft 205 and the first connecting shaft 207 are arranged in the thickness direction of the door body 2. As a result, there is no need to provide an avoidance structure on the second rotating member 5. The second rotating member 5 and the second limiting member 7 can also be arranged in the thickness direction without interference. Furthermore, the second rotating member 5 does not need to be designed with a more complex structure to avoid the first connecting shaft 207, which reduces production and design costs.
[0104] like Figure 6 , Figure 7 and Figure 15As shown, the second rotating member 5 has a through hole 52, through which the first rotating member 4 passes. The first rotating member 4 and the second limiting member 7 are rotatably connected via a first connecting shaft 207. The first connecting shaft 207 and the first rotating shaft 104 are located on opposite sides of the plane containing the second rotating member 5. The second rotating member 5 has a through hole 52, through which the first rotating member 4 passes, allowing the first rotating member 4 to pass through the first rotating shaft 104 and the second connecting shaft 407 on both sides of the second rotating member 5. The first rotating member 4 is rotatably connected to the second rotating member 5 at the through hole 52 via a third rotating shaft 405. Furthermore, the structure on both sides of the through hole 52 of the second rotating member 5 can limit the first rotating member 4 on both axial sides, making the connection between the first rotating member 4 and the second rotating member 5 more stable.
[0105] Reference Figure 1 , Figures 4-13 and Figure 14 The door body 2 includes a door body 22 and a second connecting seat 23. The second connecting seat 23 is installed on the door body 22. The second rotating member 5 is rotatably connected to the second connecting seat 23 through the second rotating shaft 205. One end of the second limiting member 7 is rotatably connected to the second connecting seat 23 through the second connecting shaft 407.
[0106] In other words, the door body 22 is equipped with the second pivot 205 and the first connecting shaft 207 through the second connecting seat 23. By setting the second connecting seat 23 on the door body 22, on the one hand, the second connecting seat 23 can be made of a material with higher strength than the door body 22, which improves the strength of the connection between the connecting component 3 and the door body 2 and improves the stability of the door body 2. On the other hand, the structure of the part of the door body 2 that connects to the first connecting shaft 207 and the second pivot 205 is relatively complex. Dividing the door body 2 into the second connecting seat 23 and the door body 22 for connecting with the second pivot 205 and the first connecting shaft 207, molding and processing the two separately, and then connecting and fixing them into a whole can reduce the molding difficulty of the door body 2 and reduce the production cost.
[0107] like Figure 1 and Figure 2 As shown, the outer side of the panel 1 has a recessed portion 14 along its thickness direction. The opening 141 is provided on the bottom wall of the recessed portion 14. When the door 2 is closed, the door 2 is at least partially accommodated in the recessed portion 14. Thus, the door 2 can be embedded inside the panel 1. Due to the arrangement of the connecting component 3, the door 2 can open and close the opening 141 normally. The clothing processing device can have a horizontal fully embedded appearance, which improves the aesthetics of the clothing processing device and reduces the thickness of the clothing processing device, thereby achieving miniaturization and weight reduction of the clothing processing device.
[0108] A specific embodiment of the garment processing apparatus of the present invention will now be described with reference to the illustrations.
[0109] like Figures 1-19 As shown, the garment handling device includes: a panel 1, a door 2, and a connecting component 3.
[0110] The outer side of panel 1 has a recessed receiving portion 14 recessed along its thickness direction. A through-hole 141 is provided on the bottom wall of the receiving recess 14. The door body 2 is movably provided on the outer side of panel 1 via a connecting component 3 to open and close the through-hole 141. When the door body 2 closes the through-hole 141, the door body 2 is at least partially received in the receiving recess 14. Thus, the door body 2 can be embedded inside panel 1. Due to the provision of the connecting component 3, the door body 2 can normally open and close the through-hole 141. The clothing processing device can have a horizontal fully embedded appearance, which improves the aesthetics of the clothing processing device and reduces the thickness of the clothing processing device, thereby achieving miniaturization and weight reduction of the clothing processing device.
[0111] The connecting assembly 3 includes: a first rotating member 4, a second rotating member 5, a first limiting member 6, a second limiting member 7, a first rotating shaft 104, a second rotating shaft 205, a third rotating shaft 405, a first connecting shaft 207, a second connecting shaft 407, a first mounting shaft 106, and a second mounting shaft 506. The first rotating shaft 104, the second rotating shaft 205, the third rotating shaft 405, the first connecting shaft 207, the second connecting shaft 407, the first mounting shaft 106, and the second mounting shaft 506 are arranged in parallel.
[0112] Panel 1 includes panel body 12 and first connecting seat 13. The first connecting seat 13 is installed on panel body 12. The first connecting seat 13 has two first mounting lugs 11 on the side facing door body 2. Door body 2 includes door body 22 and second connecting seat 23. The second connecting seat 23 is installed on door body 22. The second connecting seat 23 has two second mounting lugs 21 on the side facing panel 1.
[0113] When the door 2 closes the opening 141, the first connecting seat 13 and the second connecting seat 23 are arranged opposite each other in the thickness direction of the panel 1. The first mounting lug 11 and the second mounting lug 21 are staggered in the first direction, and the second mounting lug 21 is located on one side of the first mounting lug 11 in the first direction. The first rotating member 4 and the second rotating member 5 are folded and arranged between the first connecting seat 13 and the second connecting seat 23 and are located on one side of the first mounting lug 11 and the second mounting lug 21 in the first direction, so as to avoid interference between the first mounting lug 11 and the second mounting lug 21 when the door 2 closes the opening 141, and reduce the space occupied by the first mounting lug 11 and the second mounting lug 21 in the thickness direction of the panel 1.
[0114] One end of the first rotating member 4 and one end of the first limiting member 6 are both located between the two first mounting lugs 11. The first rotating member 4 and the first mounting lugs 11 are rotatably connected by the first rotating shaft 104, and the first limiting member 6 and the first mounting lugs 11 are rotatably connected by the first mounting shaft 106. The first rotating shaft 104 and the first mounting shaft 106 are both inserted through the two first mounting lugs 11. The two first mounting lugs 11 can limit the first rotating member 4 on both sides of the axial direction of the first rotating shaft 104 to ensure the stability of the first rotating member 4 during rotation relative to the panel 1. At the same time, they can limit the first limiting member 6 on both sides of the axial direction of the first mounting shaft 106 to ensure the stability of the first limiting member 6 during rotation relative to the panel 1.
[0115] One end of the second rotating member 5 and one end of the second limiting member 7 are both located between the two second mounting lugs 21. The second rotating member 5 and the second mounting lugs 21 are rotatably connected by the second rotating shaft 205, and the second limiting member 7 and the second mounting lugs 21 are rotatably connected by the first connecting shaft 207. The second rotating shaft 205 and the first connecting shaft 207 are both inserted through the two second mounting lugs 21. The two second mounting lugs 21 can limit the second rotating member 5 on both sides of the axial direction of the second rotating shaft 205 to ensure the stability of the second rotating member 5 during rotation relative to the panel 1. At the same time, they can limit the second limiting member 7 on both sides of the axial direction of the first connecting shaft 207 to ensure the stability of the second limiting member 7 during rotation relative to the panel 1.
[0116] The second rotating member 5 has a through hole 52, and the first rotating member 4 passes through the through hole 52. The first rotating member 4 is rotatably connected to the second rotating member 5 at the through hole 52 via a third rotating shaft 405. The other end of the first limiting member 6 and the other end of the second rotating member 5 are rotatably connected via a second mounting shaft 506. The other end of the second limiting member 7 and the other end of the first rotating member 4 are rotatably connected via a second connecting shaft 407.
[0117] The portion of the panel 1 located between the first rotating shaft 104 and the first mounting shaft 106, the portion of the first rotating member 4, the portion of the first limiting member 6 and the portion of the second rotating member 5 located between the third rotating shaft 405 and the second mounting shaft 506 together form a quadrilateral structure. The portion of the door body 2 located between the second rotating shaft 205 and the first connecting shaft 207, the second rotating member 5, the second limiting member 7 and the portion of the first rotating member 4 located between the third rotating shaft 405 and the second connecting shaft 407 together form another quadrilateral structure.
[0118] As the door 2 moves away from the panel 1 under the user's drive, opening the passage 141, the user pulls the door 2 outward and flips it counterclockwise. The position of the panel 1 remains relatively unchanged. The first rotating component 4 rotates counterclockwise around the first rotating shaft 104, the first limiting component 6 rotates counterclockwise around the first mounting shaft 106, the second rotating component 5 rotates clockwise around the second rotating shaft 205, and the second limiting component 7 rotates clockwise around the first connecting shaft 207.
[0119] Since the part of the panel 1 located between the first rotating shaft 104 and the first mounting shaft 106, the part of the first rotating member 4, the part of the first limiting member 6 and the part of the second rotating member 5 located between the third rotating shaft 405 and the second mounting shaft 506 together form a quadrilateral structure, when two sides of the quadrilateral are fixed, the first limiting member 6 limits and fixes the first rotating member 4 and the second rotating member 5. At this time, the opening angle of the door 2 is the maximum angle that the door 2 can open.
[0120] Alternatively, the part of the door body 2 located between the second pivot 205 and the first connecting shaft 207, the second rotating member 5, the second limiting member 7, and the part of the first rotating member 4 located between the third pivot 405 and the second connecting shaft 407 together form another quadrilateral structure. When two sides of the other quadrilateral are fixed, the second limiting member 7 can limit and fix the first rotating member 4 and the second rotating member 5. At this time, the opening angle of the door body 2 is the maximum angle that the door body 2 can open.
[0121] Since the first rotating member 4 and the second rotating member 5 are respectively formed as two sides of any one of the two quadrilaterals, the first rotating member 4 and the second rotating member 5 will rotate synchronously in a regular manner during the opening and closing of the door body 2, ensuring that the movement of the door body 2 is stable during the opening and closing process.
[0122] When the door 2 closes the opening 141, at least a portion of the door 2 and the panel 1 are spaced apart in the second direction. The connecting component 3 is located between at least a portion of the door 2 and the panel 1. In order to reduce the space occupied by the connecting component 3 between the door 2 and the panel 1 in the first and second directions, when the door 2 closes the opening 141, the first rotating shaft 104, the second rotating shaft 205, the third rotating shaft 405, the first mounting shaft 106 and the second mounting shaft 506 are staggered in the first and second directions.
[0123] When the door 2 closes the opening 141, the first mounting shaft 106 and the second mounting shaft 506 are positioned closer to the panel 1 in the thickness direction of the panel 1, and the first connecting shaft 207 and the second rotating shaft 205 are positioned closer to the door 2 in the thickness direction of the panel 1. The first rotating shaft 104 and the third rotating shaft 405 are located between the second mounting shaft 506 and the first connecting shaft 207 in the thickness direction of the panel 1, and the second connecting shaft 407 is located between the third rotating shaft 405 and the first connecting shaft 207 in the thickness direction of the panel 1.
[0124] Furthermore, in the first direction, the second connecting shaft 407 and the second mounting shaft 506 are located on one side of the third rotating shaft 405 in the first direction, while the first rotating shaft 104, the second rotating shaft 205, the first mounting shaft 106, and the first connecting shaft 207 are located on the other side of the third rotating shaft 405 in the first direction. The first mounting shaft 106 is located on one side of the first rotating shaft 104 in the first direction, the first connecting shaft 207 is located on one side of the second rotating shaft 205 in the first direction, and the second connecting shaft 407 is located on one side of the second mounting shaft 506 in the first direction.
[0125] The distance L1 between the rotation axis of the first mounting shaft 106 and the rotation axis of the second mounting shaft 506 is greater than the distance L2 between the rotation axis of the second mounting shaft 506 and the rotation axis of the third rotating shaft 405. The distance L3 between the rotation axis of the first connecting shaft 207 and the rotation axis of the second connecting shaft 407 is greater than the distance L4 between the rotation axis of the second connecting shaft 407 and the rotation axis of the third rotating shaft 405. This ensures that when the door 2 closes the opening 141, the first rotating member 4 and the second rotating member 5 of the connecting assembly 3 can be folded, the second rotating member 5 and the first limiting member 6 can be folded, and the first rotating member 4 and the second limiting member 7 can be folded. This ensures that the first limiting member 6 and the second limiting member 7 have the function of limiting the first rotating member 4 and the second rotating member 5, while avoiding the connecting assembly 3 occupying a large space in the second direction. This is beneficial for the sealed installation of the door 2 and for the reduction of the thickness of the clothing handling device.
[0126] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. In addition, those skilled in the art can combine and integrate the different embodiments or examples described in this specification.
[0127] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.
Claims
1. A garment processing device, characterized in that, include: Panel, the panel having a through-hole; A door body, which is movably disposed on the outside of the panel via a connecting assembly to open and close the opening; The connecting assembly includes a first rotating member and a second rotating member. The first rotating member is rotatably connected to the panel via a first rotating shaft, and the second rotating member is rotatably connected to the door via a second rotating shaft. The first rotating member and the second rotating member are rotatably connected via a third rotating shaft.
2. The garment processing device according to claim 1, characterized in that, The rotation axes of the first rotating shaft, the second rotating shaft, and the third rotating shaft are arranged in parallel.
3. The garment processing device according to claim 1, characterized in that, The connection component also includes: A first limiting member is used to limit the rotation angle of the first rotating member relative to the panel. The second limiting member is used to limit the rotation angle of the second rotating member relative to the door body.
4. The garment processing device according to claim 3, characterized in that, One end of the second rotating member and the door body are rotatably connected via the second rotating shaft; One end of the first limiting member is rotatably connected to the panel via a first mounting shaft, and the other end of the first limiting member is rotatably connected to the other end of the second rotating member via a second mounting shaft, so as to limit the rotation angle of the first rotating member relative to the panel. The third rotating shaft is located between the first mounting shaft and the second mounting shaft.
5. The garment processing apparatus according to claim 4, characterized in that, The rotation axis of the first mounting shaft, the rotation axis of the second mounting shaft, and the rotation axis of the third rotating shaft are arranged in parallel.
6. The garment processing apparatus according to claim 5, characterized in that, The distance between the rotation axis of the first mounting shaft and the rotation axis of the second mounting shaft is greater than the distance between the rotation axis of the second mounting shaft and the rotation axis of the third rotating shaft.
7. The garment processing apparatus according to claim 5, characterized in that, The panel is provided with two first mounting lugs on the side facing the door body. One end of the first rotating member and one end of the first limiting member are both located between the two first mounting lugs, and the first rotating shaft and the first mounting shaft both pass through the two first mounting lugs. When the door is in the closed position, the first limiting member is located between the first rotating member and the panel.
8. The garment processing apparatus according to claim 7, characterized in that, The first rotating shaft and the first mounting shaft are arranged at least in the thickness direction of the panel, and the second mounting shaft and the third rotating shaft are arranged at least in the thickness direction of the panel.
9. The garment handling apparatus according to any one of claims 4-8, characterized in that, The panel includes a panel body and a first connecting base, wherein the first connecting base is mounted on the panel body; The first rotating member is rotatably connected to the first connecting seat via the first rotating shaft, and one end of the first limiting member is rotatably connected to the first connecting seat via the first mounting shaft.
10. The garment processing apparatus according to claim 3, characterized in that, One end of the first rotating member and the panel are rotatably connected via the first rotating shaft; One end of the second limiting member is rotatably connected to the door body via a first connecting shaft, and the other end of the second limiting member is rotatably connected to the other end of the first rotating member via a second connecting shaft, so as to limit the rotation angle of the second rotating member relative to the door body. The third rotating shaft is located between the first connecting shaft and the second connecting shaft.
11. The garment processing apparatus according to claim 10, characterized in that, The rotation axis of the first connecting shaft, the rotation axis of the second connecting shaft, and the rotation axis of the third rotating shaft are arranged in parallel.
12. The garment processing apparatus according to claim 11, characterized in that, The distance between the rotation axis of the first connecting shaft and the rotation axis of the second connecting shaft is greater than the distance between the rotation axis of the second connecting shaft and the rotation axis of the third rotating shaft.
13. The garment processing apparatus according to claim 11, characterized in that, The door body is provided with two second mounting lugs on the side facing the panel. One end of the second rotating member and one end of the second limiting member are both located between the two second mounting lugs, and the second rotating shaft and the first connecting shaft both pass through the two second mounting lugs. When the door is in the closed position, the second limiting member is located between the second rotating member and the door.
14. The garment processing apparatus according to claim 13, characterized in that, The plane containing the rotation axis of the second rotating shaft and the rotation axis of the first connecting shaft is parallel to the door body. The second rotating member has a first clearance recess for avoiding the first connecting shaft, and the second limiting member has a second clearance recess for avoiding the third rotating shaft.
15. The garment processing apparatus according to claim 11, characterized in that, The second rotating member has a through hole, and the first rotating member passes through the through hole to be rotatably connected to the second limiting member via the first connecting shaft, and is rotatably connected to the second rotating member at the through hole via the third rotating shaft.
16. The garment handling apparatus according to any one of claims 10-15, characterized in that, The door body includes a door body and a second connecting seat, wherein the second connecting seat is installed on the door body; The second rotating member is rotatably connected to the second connecting seat via the second rotating shaft, and one end of the second limiting member is rotatably connected to the second connecting seat via the second connecting shaft.
17. The garment processing apparatus according to any one of claims 1-8 and 10-15, characterized in that, The outer side of the panel has a recessed receiving portion along its thickness direction, and the opening is located on the bottom wall of the receiving recess. When the door is closed, the door is at least partially received within the receiving recess.