A folding clothes hanger

By incorporating a receiving cavity and a linkage design within the hanger arm, the clips can be hidden and rotated on the hanger, solving the problems of exposed clips and limited usability in traditional folding hangers, thus improving the hanger's practicality and stability.

CN224420677UActive Publication Date: 2026-06-30DELI GROUP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DELI GROUP CO LTD
Filing Date
2025-06-20
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Traditional folding clothes hanger clips are exposed after folding, which can easily damage clothes and cannot effectively hold small items of clothing, thus limiting their use.

Method used

A first receiving cavity is provided inside the clothes hanger arm to accommodate the linkage and the clamp. The clamp can be completely detached from the receiving cavity during use through the linkage, and can rotate 360 ​​degrees through the rotational connection between the linkage and the clamp. The clamping angle can be adjusted as needed.

Benefits of technology

The clips are hidden when not in use, preventing them from being exposed, thus expanding their range of applications and gripping capabilities, improving the practicality and stability of the clothes hanger, and simplifying the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a folding clothes hanger, including a hook and hanger arms. The hook is rotatably connected to at least two hanger arms. The hanger arms can be unfolded or folded by rotation. Each hanger arm has a first receiving cavity. A linkage is rotatably installed in the first receiving cavity. The linkage is connected to a clip. The linkage rotates inward to drive the clip into the first receiving cavity. The linkage rotates outward to drive the clip out of the first receiving cavity. By adding a first receiving cavity to completely store the clip, and by adding a linkage to allow the clip to be completely detached from the first receiving cavity during use, the use of the clip is not interfered with. This not only meets the needs of space utilization and portability, but also improves the practicality of the clothes hanger.
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Description

Technical Field

[0001] This application relates to the field of consumer goods technology, and more specifically to a folding clothes hanger. Background Technology

[0002] Clothes hangers, a common household item, are primarily used for drying clothes. Traditional hangers are mostly fixed structures, taking up considerable space, which is inflexible, especially in situations with limited wardrobe space or frequent carrying needs. Folding hangers, on the other hand, solve the problem of inconvenient storage and carrying by folding them down to a smaller size when not in use. Folding hangers typically consist of hooks, hanger arms, and other main components. Through clever mechanical design, they can be folded up when not in use, significantly reducing their size and making them more practical for storage, travel, and other occasions, meeting modern people's needs for space utilization and portability. However, ordinary folding hangers rely on the hanger arms to hang clothes, and small items or items that are prone to slipping, such as socks, towels, and trousers, may not hang properly or may slip off, limiting the applicability of folding hangers. To address the aforementioned issues, Chinese invention patent CN112167932A discloses a telescopic folding clothes hanger, comprising a hook, a first connecting post, a lifting rope, a main frame, a lifting buckle, and a stretching mechanism. The main frame has a through hole in the center of its top, a sliding lifting rope on which the first connecting post is mounted, a rotatable hook on the first connecting post, a lifting buckle at the bottom of the lifting rope, and the lifting rope passing through the through hole. Stretching mechanisms are symmetrically located on the left and right sides of the main frame. This technical solution utilizes a folding frame to allow the clothes hanger to be folded when not in use, preventing it from taking up space. A fixed frame on the clothesline effectively secures the clothes. However, this hanger lacks a space to store clips; when folded, the clips are exposed, easily snagging and damaging clothing during storage or placement in a closet, thus presenting several usability problems. Summary of the Invention

[0003] The technical problem to be solved by this application is to provide a folding clothes hanger, which adds a first accommodating cavity to completely store the clips, and adds a linkage to allow the clips to be completely detached from the first accommodating cavity during use, so that the use of the clips is not interfered with. This not only meets the needs of space utilization and portability, but also improves the practicality of the clothes hanger.

[0004] This application provides a folding clothes hanger, including a hook and hanger arms. The hook is rotatably connected to at least two hanger arms. The hanger arms can be unfolded or folded by rotation. Each hanger arm has a first receiving cavity. A linkage is rotatably installed in the first receiving cavity. The linkage is connected to a clip. The linkage rotates inward to drive the clip into the first receiving cavity. The linkage rotates outward to drive the clip out of the first receiving cavity.

[0005] In this technical solution, the hanger arm can be unfolded or folded by rotation. The folding design allows the hanger to be significantly reduced in size when not in use, making it easy to store and carry. A first receiving cavity is set inside the hanger arm to accommodate the linkage and clips. The clip design allows the hanger to not only hang clothes but also clip some items that are inconvenient to hang directly on hooks, such as towels and socks. When not in use, the clips can be completely hidden in the first receiving cavity by the linkage, avoiding exposure and reducing damage to clothes. By adding a linkage to connect the clips and the first receiving cavity, the clips can be completely detached from the first receiving cavity when in use, expanding the application range and clamping range of the clips. Users will not be interfered with by the first receiving cavity when using the clips, and the clips will not be interfered with by the first receiving cavity when clamping, ensuring the stability and reliability of the clips and avoiding inconvenience caused by structural limitations. Furthermore, the rotation design of the linkage makes the use and storage of the clips very convenient. Users can unfold and fold the clips with a simple rotation operation, which not only improves the user experience but also reduces the complexity of operation.

[0006] As an improvement, the bottom of the linkage component is provided with a first rotating shaft. The linkage component is rotatably connected to the clip via the first rotating shaft, allowing the clip to rotate circumferentially relative to the linkage component. In this technical solution, the clip is rotatably connected to the linkage component via the first rotating shaft, allowing the clip to rotate 360 ​​degrees around the first rotating shaft. Users can adjust the clip to any angle as needed. The clip can adjust the clamping angle according to different usage requirements, ensuring that clothing is securely clamped. Through the design of the first rotating shaft, users can quickly adjust the angle of the clip during use without complicated operation steps, improving usage efficiency. Through the design of the linkage component and the first rotating shaft, the clip can realize both folding storage and rotating use functions. Users can quickly switch the clip from the folded storage state to the rotating use state through simple operation, improving usage efficiency.

[0007] As an improvement, the clip is provided with a first U-shaped hole adapted to the first rotating shaft. The clip passes through the first U-shaped hole and is circumferentially connected to the first rotating shaft. In this technical solution, the addition of a first U-shaped hole to the clip ensures a precise fit between the clip and the first rotating shaft. The clip passes through the first U-shaped hole to achieve connection with the first rotating shaft, making the assembly method simple and reliable, facilitating production and assembly. The circumferential connection between the first U-shaped hole and the first rotating shaft allows the clip to rotate freely around the first rotating shaft, making the clip more reliable during use and improving the stability and practicality of the clothes hanger.

[0008] As an improvement, the first rotating shaft is provided with a first limiting seat, and the first U-shaped hole passes through the first rotating shaft and abuts against the first limiting seat to lock the clip to the linkage. In this technical solution, the first limiting seat is mainly used to ensure a stable connection between the clip and the linkage. The first U-shaped hole on the clip passes through the first rotating shaft and abuts against the first limiting seat, ensuring that the clip can be tightly connected to the linkage after installation and will not loosen during use, thus improving the stability of the clip. When the clip clamps clothing, it needs to withstand a certain amount of tension. The first limiting seat can effectively prevent the clip from loosening or coming off due to external force, thereby improving the clip's performance.

[0009] As an improvement, the inner wall of the first accommodating cavity is provided with a second rotating shaft, and the linkage is provided with a second U-shaped hole adapted to the second rotating shaft. The second rotating shaft and the second U-shaped hole are rotatably connected. In this technical solution, by setting a second rotating shaft in the first accommodating cavity and setting a second U-shaped hole on the linkage, the second rotating shaft and the second U-shaped hole are rotatably connected, allowing the linkage to rotate around the second rotating shaft to enter or exit the first accommodating cavity. The adaptation design of the second U-shaped hole and the second rotating shaft ensures a precise connection between the linkage and the first accommodating cavity, reducing shaking or loosening caused by loose fit, and improving the stability of the overall structure. The rotatable connection between the second rotating shaft and the second U-shaped hole allows the linkage to distribute the force more evenly during use, reducing wear caused by uneven force on the components and improving the durability of the linkage. On the other hand, the second rotating shaft can be set on the linkage, and the second U-shaped hole can be set in the first accommodating cavity. The principle is the same as described above and will not be repeated.

[0010] As an improvement, the linkage is provided with a ball head, and the first accommodating cavity is provided with a first mounting seat adapted to the ball head. The linkage allows the clip to rotate circumferentially via the ball head. In this technical solution, by providing a ball head on the linkage, the ball head can rotate freely in multiple directions to achieve circumferential rotation of the clip. The first mounting seat is used to fix and support the ball head, realizing the rotational connection between the linkage and the first accommodating cavity, ensuring its stability and reliability within the first accommodating cavity. Users can adjust the clip to any angle as needed, and the clip can adjust the clamping angle according to different usage requirements to ensure that clothing can be firmly clamped, improving the flexibility of the clip's use.

[0011] As an improvement, the linkage component is provided with a rod, and the ball head is disposed on the rod. The first mounting base is provided with a first guide rail adapted to the rod, and the rod rotates back and forth along the first guide rail. In this technical solution, the ball head and the rod are integrally formed. The ball head is disposed on the rod and connected to the first mounting base through the rod, realizing the multi-directional rotation function of the clamp. The first mounting base is provided with a first guide rail to guide the movement of the rod, ensuring that the rod rotates back and forth along a predetermined path, ensuring that the clamp can enter or leave the first receiving cavity through the rod, so that the linkage component can fold and store the clamp in the first receiving cavity by rotation, and avoid the clamp from shaking due to the linkage component during use, thus improving the stability of the clamp. On the other hand, the first guide rail can also limit the rotation range of the linkage component, preventing excessive extension due to the rotation of the linkage component, thus improving the reliability of use.

[0012] As an improvement, the first accommodating cavity is provided with a first protrusion and a second protrusion. The first protrusion is used to abut against the outer wall of the clamp to restrict the clamp from leaving the first accommodating cavity, and the second protrusion is used to abut against the inner wall of the clamp to restrict the clamp from rotating within the first accommodating cavity. In this technical solution, when the clip is inserted into the first receiving cavity, the first protrusion abuts against the outer wall of the clip, thereby generating an inward supporting force on the clip. This effectively prevents the clip from slipping out of the first receiving cavity due to external force, improving the storage reliability of the clip. Users do not need to worry about the clip being accidentally lost or damaged in the stored state. It also ensures the overall neatness and safety of the clothes hanger during carrying or storage. When the clip is in the stored state, the second protrusion abuts against the inner wall of the clip. This inner wall refers to the side wall set opposite to the outer wall, which restricts the rotation of the clip. The clip will not go too deep into the first receiving cavity, avoiding the situation where it is difficult to quickly remove it during use due to the clip going too deep into the first receiving cavity. Through the design of the first and second protrusions, a dual restriction on the clip is achieved, ensuring the stability and reliability of the clip in the first receiving cavity.

[0013] As an improvement, the bottom of the hook is provided with a connecting seat, which is used to rotatably install the hanger arm. The connecting seat is provided with a second guide rail, which is arc-shaped. The hanger arm is provided with a third protrusion that is adapted to the second guide rail. The third protrusion is slidably connected to the second guide rail to limit the rotation range of the hanger arm. In this technical solution, the hook is used to rotate and install the hanger arm via a connecting seat. The connecting seat is equipped with an arc-shaped second guide rail to accommodate the rotation of the hanger arm. The sliding connection design between the third protrusion and the second guide rail makes the rotation of the hanger arm smoother and limits the range of rotation, ensuring that the hanger arm rotates within a predetermined angle. When the third protrusion slides to one end of the second guide rail, the hanger arm reaches its maximum rotational extension angle, at which point it can stably and reliably hang clothes without causing clothes to fall or the hanger structure to become unstable due to excessive rotation of the hanger arm. When the third protrusion slides to the other end of the second guide rail, the hanger arm reaches its maximum rotational folding limit, at which point the hanger is fully folded for easy storage and carrying. The cooperation between the second guide rail and the third protrusion effectively prevents the hanger arm from over-rotating or under-rotating during the rotation process, ensuring the stability of the hanger during use and storage.

[0014] As an improvement, the end of the connecting seat is provided with a mounting groove, and the hanger arm is provided with a third rotating shaft adapted to the mounting groove. The third rotating shaft is rotatably installed in the mounting groove, and the connection between the third rotating shaft and the mounting groove allows the hanger arm to be rotatably installed on the connecting seat. In this technical solution, the adaptation design of the third rotating shaft and the mounting groove makes the hanger arm more stable during rotation, reduces abnormal rotation caused by external forces, prevents the hanger arm from loosening or falling off during rotation, improves the reliability of the hanger, and allows users to quickly install the hanger arm onto the connecting seat with simple operations, improving installation efficiency.

[0015] As an improvement, the hanger arms are provided with a second receiving cavity adapted to the hooks. At least two hanger arms can be rotated and folded to allow the hooks to be stored in the second receiving cavity. In this technical solution, the second receiving cavity on the hanger arm is used to store the hooks. By storing the hooks in the second receiving cavity, the volume of the folded hanger is significantly reduced, saving storage and transportation space. The hooks are completely hidden in the second receiving cavity, making the folded hanger look neater, avoiding damage to clothing from exposed parts, and improving the overall aesthetics of the product. Users can quickly fold the two hanger arms with a simple relative rotation operation, so that the hooks are completely stored in the two closed second receiving cavities, improving folding efficiency. Users can easily complete the storage and use of the hanger without complicated operation steps. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of the folding clothes hanger in the unfolded state according to Embodiment 2 of this application.

[0017] Figure 2 This is a three-dimensional structural diagram of the folding clothes hanger in the folded state according to Embodiment 2 of this application.

[0018] Figure 3 For this application Figure 2 A cross-sectional view of the structure shown.

[0019] Figure 4 This is an exploded structural diagram of the linkage and clamp in Embodiment 2 of this application.

[0020] Figure 5 This is a three-dimensional structural diagram of the clothes hanger arm according to Embodiment 2 of this application.

[0021] Figure 6 This is a three-dimensional structural diagram of the folding clothes hanger in the unfolded state according to Embodiment 3 of this application.

[0022] Figure 7 This is a schematic diagram of the connection structure of the linkage and the clamp in Embodiment 3 of this application.

[0023] Figure 8 This is a three-dimensional structural diagram of the clothes hanger arm according to Embodiment 3 of this application.

[0024] Figure 9 This is a schematic diagram of the connection structure between the hook and the clothes hanger arm in this application.

[0025] Figure 10 This is a schematic diagram of the connection structure between the first decorative cover and the second decorative cover in this application.

[0026] The figure shows: 1. Hook; 11. Connecting seat; 111. Second guide rail; 112. Through hole; 2. Hanger arm; 21. First receiving cavity; 22. Second rotating shaft; 23. First mounting seat; 231. First guide rail; 24. First protrusion; 25. Second protrusion; 26. Third protrusion; 27. Second receiving cavity; 3. Linkage component; 31. First rotating shaft; 32. First limiting seat; 33. Second U-shaped hole; 34. Ball head; 35. Rod; 4. Clip; 41. First U-shaped hole; 5. First decorative cover; 51. First locking pin; 6. Second decorative cover; 62. Second locking pin. Detailed Implementation

[0027] To better understand this application, various aspects of this application will be described in more detail with reference to the accompanying drawings. It should be understood that these detailed descriptions are merely illustrative of exemplary embodiments of this application and are not intended to limit the scope of this application in any way. Throughout the specification, the same reference numerals refer to the same elements.

[0028] In the accompanying drawings, the thickness, size, and shape of the objects have been slightly exaggerated for illustrative purposes. The drawings are for illustrative purposes only and are not drawn to scale.

[0029] It should also be understood that the terms "comprising," "including," "having," "containing," and "including," when used in this specification, indicate the presence of the stated features, integrals, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components, and / or combinations thereof. The terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (the specific types and constructions may be the same or different), 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.

[0030] Furthermore, it should be noted that the terms "installation," "setting," "equipped with," "connection," and "linking" 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, elements, or components; they can refer to a direct installation on another component or the possible presence of another intermediate component. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the specification of this invention is for the purpose of describing particular embodiments only and is not intended to limit the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0031] Example 1

[0032] like Figures 1 to 10As shown, this application discloses a folding clothes hanger, including a hook 1 and hanger arms 2. The hook 1 is rotatably connected to at least two hanger arms 2. The hanger arms 2 can be unfolded or folded by rotation. Each hanger arm 2 has a first receiving cavity 21, and a linkage 3 is rotatably mounted in the first receiving cavity 21. The linkage 3 is connected to a clip 4. The linkage 3 rotates inward to drive the clip 4 into the first receiving cavity 21, and rotates outward to drive the clip 4 out of the first receiving cavity 21. The hanger arms 2 can be unfolded or folded by rotation. The folding design allows the hanger to significantly reduce its size when not in use, making it easy to store and carry. The first receiving cavity 21 inside the hanger arm 2 is used to accommodate the linkage 3 and the clip 4. The design of the clip 4 allows the hanger not only to hang clothes but also to clip some clothes that are inconvenient to hang directly on the hook 1, such as… For items like towels and socks, the clip 4 can be completely hidden inside the first receiving cavity 21 when not in use, thanks to the linkage 3, preventing exposure and reducing damage to clothing. The linkage 3 connects the clip 4 to the first receiving cavity 21, allowing the clip 4 to be completely detached from the cavity during use. This expands the clip 4's usability and clamping range. Users will not experience interference from the first receiving cavity 21 when using the clip 4, and the clip 4's clamping will also be unaffected by the cavity 21, ensuring the clip 4's stability and reliability. This avoids inconvenience caused by structural limitations. Furthermore, the rotating design of the linkage 3 makes the clip 4 very convenient to use and store; users can easily unfold and retract it with a simple rotation, improving the user experience and reducing operational complexity.

[0033] Example 2

[0034] like Figures 1 to 5 As shown, this embodiment provides a folding clothes hanger based on Embodiment 1, with the same structure. The bottom of the linkage 3 is provided with a first rotating shaft 31. The linkage 3 is rotatably connected to the clip 4 via the first rotating shaft 31, allowing the clip 4 to rotate circumferentially relative to the linkage 3. The clip 4 can rotate 360 ​​degrees around the first rotating shaft 31, allowing the user to adjust the clip 4 to any angle as needed. The clip 4 can adjust its clamping angle according to different usage requirements, ensuring that clothing is securely clamped. The design of the first rotating shaft 31 allows the user to quickly adjust the angle of the clip 4 during use without complicated operating steps, improving efficiency. Through the design of the linkage 3 and the first rotating shaft 31, the clip 4 can achieve both folding and rotating functions. Users can quickly switch the clip 4 from the folded storage state to the rotating use state with simple operations, further improving efficiency.

[0035] More specifically, such as Figure 4As shown, the clip 4 is provided with a first U-shaped hole 41 that is adapted to the first rotating shaft 31. The clip 4 passes through the first U-shaped hole 41 and is circumferentially connected to the first rotating shaft 31. The addition of the first U-shaped hole 41 to the clip 4 ensures a precise fit between the clip 4 and the first rotating shaft 31. The clip 4 is connected by passing through the first U-shaped hole 41 and the first rotating shaft 31. The assembly method is simple and reliable, and it is convenient for production and assembly. The circumferential connection between the first U-shaped hole 41 and the first rotating shaft 31 allows the clip 4 to rotate freely around the first rotating shaft 31. The clip 4 is more reliable during use and improves the stability and practicality of the clothes hanger.

[0036] More specifically, such as Figure 1 and Figure 4 As shown, the first rotating shaft 31 is provided with a first limiting seat 32. The first U-shaped hole 41 passes through the first rotating shaft 31 and abuts against the first limiting seat 32 to lock the clip 4 to the linkage 3. The first limiting seat 32 is mainly used to ensure the stable connection between the clip 4 and the linkage 3. The first U-shaped hole 41 on the clip 4 passes through the first rotating shaft 31 and abuts against the first limiting seat 32, ensuring that the clip 4 can be tightly connected to the linkage 3 after installation and will not loosen during use, thus improving the stability of the clip 4. When the clip 4 clamps clothing, it needs to withstand a certain amount of tension. The first limiting seat 32 can effectively prevent the clip 4 from loosening or coming off due to external force, thus improving the effectiveness of the clip 4.

[0037] More specifically, such as Figure 4 and Figure 5 As shown, the inner wall of the first accommodating cavity 21 is provided with a second rotating shaft 22, and the linkage 3 is provided with a second U-shaped hole 33 adapted to the second rotating shaft 22. The second rotating shaft 22 and the second U-shaped hole 33 are rotatably connected. By setting the second rotating shaft 22 in the first accommodating cavity 21 and the second U-shaped hole 33 on the linkage 3, a rotatable connection is achieved between the second rotating shaft 22 and the second U-shaped hole 33, allowing the linkage 3 to rotate around the second rotating shaft 22 to enter or exit the first accommodating cavity 21. The adaptation design of the second U-shaped hole 33 and the second rotating shaft 22 ensures the linkage... The precise connection between the moving part 3 and the first accommodating cavity 21 reduces shaking or loosening caused by loose fit, and improves the stability of the overall structure. The rotational connection between the second rotating shaft 22 and the second U-shaped hole 33 allows the linkage part 3 to distribute the force more evenly during use, reducing wear caused by uneven force on the parts and improving the durability of the linkage part 3. On the other hand, the second rotating shaft 22 can be set on the linkage part 3, and the second U-shaped hole 33 can be set in the first accommodating cavity 21. The principle is the same as described above and will not be repeated.

[0038] More specifically, such as Figure 3As shown, the first receiving cavity 21 is provided with a first protrusion 24 and a second protrusion 25. The first protrusion 24 is used to abut against the outer wall of the clip 4 to prevent the clip 4 from detaching from the first receiving cavity 21. The second protrusion 25 is used to abut against the inner wall of the clip 4 to prevent the clip 4 from rotating within the first receiving cavity 21. When the clip 4 is retracted into the first receiving cavity 21, the first protrusion 24 will abut against the outer wall of the clip 4, thereby generating an inward supporting force on the clip 4. This effectively prevents the clip 4 from slipping out of the first receiving cavity 21 due to external force, improving the storage reliability of the clip 4. Users do not need to worry about the clip 4 slipping out when stored. In case of loss or damage, the clothes hanger is kept neat and safe during carrying or storage. When the clip 4 is in the storage state, the second protrusion 25 will abut against the inner wall of the clip 4. The inner wall refers to the side wall set opposite to the outer wall, which restricts the rotation of the clip 4. The clip 4 will not go too deep into the first receiving cavity 21, avoiding the situation that the clip 4 is difficult to remove quickly when in use due to going too deep into the first receiving cavity 21. Through the design of the first protrusion 24 and the second protrusion 25, the clip 4 is doubly restricted, ensuring the stability and reliability of the clip 4 in the first receiving cavity 21.

[0039] Example 3

[0040] like Figures 6 to 8 As shown, this embodiment provides a folding clothes hanger based on embodiment 1, with the same structure as embodiment 1. The linkage 3 has a ball head 34, and the first accommodating cavity 21 has a first mounting seat 23 adapted to the ball head 34. The linkage 3 allows the clip 4 to rotate circumferentially via the ball head 34. By providing the ball head 34 on the linkage 3, the ball head 34 can rotate freely in multiple directions, enabling the circumferential rotation of the clip 4. The first mounting seat 23 is used to fix and support the ball head 34, achieving a rotatable connection between the linkage 3 and the first accommodating cavity 21, ensuring its stability and reliability within the first accommodating cavity 21. Users can adjust the clip 4 to any angle as needed. The clip 4 can adjust its clamping angle according to different usage requirements, ensuring that clothing can be firmly clamped, thus improving the flexibility of the clip 4.

[0041] More specifically, such as Figure 7 and Figure 8As shown, the linkage 3 has a rod 35, and a ball head 34 is disposed on the rod 35. The first mounting base 23 has a first guide rail 231 adapted to the rod 35. The rod 35 rotates back and forth along the first guide rail 231. The ball head 34 and the rod 35 are integrally formed. The ball head 34 is disposed on the rod 35 and connected to the first mounting base 23 through the rod 35 to realize the multi-directional rotation function of the clamp 4. The first guide rail 231 is provided in the first mounting base 23 to guide the movement of the rod 35, ensuring that the rod 35 rotates back and forth along a predetermined path, ensuring that the clamp 4 can enter or leave the first receiving cavity 21 through the rod 35, so that the linkage 3 can fold and store the clamp 4 in the first receiving cavity 21 by rotation, and avoid the clamp 4 from shaking due to the linkage 3 in use, thus improving the stability of the clamp 4. On the other hand, the first guide rail 231 can also limit the rotation range of the linkage 3, preventing the linkage 3 from extending excessively due to rotation, thus improving the reliability of use.

[0042] More specifically, such as Figure 7 As shown, the linkage 3 is integrally formed on the clamp 4. The integrated structure makes installation easier and has better overall integrity, making the use of the clamp 4 more reliable.

[0043] More specifically, such as Figure 3 As shown, the first receiving cavity 21 is provided with a first protrusion 24 and a second protrusion 25. The first protrusion 24 is used to abut against the outer wall of the clip 4 to prevent the clip 4 from detaching from the first receiving cavity 21. The second protrusion 25 is used to abut against the inner wall of the clip 4 to prevent the clip 4 from rotating within the first receiving cavity 21. When the clip 4 is retracted into the first receiving cavity 21, the first protrusion 24 will abut against the outer wall of the clip 4, thereby generating an inward supporting force on the clip 4. This effectively prevents the clip 4 from slipping out of the first receiving cavity 21 due to external force, improving the storage reliability of the clip 4. Users do not need to worry about the clip 4 slipping out when stored. In case of loss or damage, the clothes hanger is kept neat and safe during carrying or storage. When the clip 4 is in the storage state, the second protrusion 25 will abut against the inner wall of the clip 4. The inner wall refers to the side wall set opposite to the outer wall, which restricts the rotation of the clip 4. The clip 4 will not go too deep into the first receiving cavity 21, avoiding the situation that the clip 4 is difficult to remove quickly when in use due to going too deep into the first receiving cavity 21. Through the design of the first protrusion 24 and the second protrusion 25, the clip 4 is doubly restricted, ensuring the stability and reliability of the clip 4 in the first receiving cavity 21.

[0044] Example 4

[0045] like Figure 5 , Figure 8 and Figure 9As shown, this embodiment provides a folding clothes hanger based on any one of embodiments 1 to 3, with the same structure as the referenced embodiments. The hook 1 has a connecting seat 11 at its bottom, which is used to rotatably mount the hanger arm 2. The connecting seat 11 has a second guide rail 111, which is arc-shaped. The hanger arm 2 has a third protrusion 26 adapted to the second guide rail 111. The third protrusion 26 is slidably connected to the second guide rail 111 to limit the rotation range of the hanger arm 2. The hook 1 rotatably mounts the hanger arm 2 via the connecting seat 11. The arc-shaped second guide rail 111 on the connecting seat 11 is used to adapt to the rotation of the hanger arm 2. The slidable connection design between the third protrusion 26 and the second guide rail 111 allows... The rotation of the hanger arm 2 is made smoother, and the rotation range of the hanger arm 2 is limited to ensure that the hanger arm 2 rotates within a predetermined angle. When the third protrusion 26 slides to one end of the second guide rail 111, the hanger arm 2 reaches the maximum angle of rotation and unfolding. At this time, clothes can be hung to dry stably and reliably without clothes falling off or the hanger structure becoming unstable due to excessive rotation of the hanger arm 2. When the third protrusion 26 slides to the other end of the second guide rail 111, the hanger arm 2 reaches the maximum limit of rotation and folding. At this time, the hanger is fully folded, making it easy to store and carry. The cooperation between the second guide rail 111 and the third protrusion 26 effectively prevents the hanger arm 2 from over-rotating or under-rotating during the rotation process, ensuring the stability of the hanger during use and storage.

[0046] More specifically, such as Figure 5 , Figure 8 and Figure 9 As shown, the end of the connecting seat 11 is provided with a mounting groove, and the hanger arm 2 is provided with a third rotating shaft that is adapted to the mounting groove. The third rotating shaft is rotatably installed in the mounting groove. The third rotating shaft is connected to the mounting groove so that the hanger arm 2 is rotatably installed on the connecting seat 11. The adaptation design of the third rotating shaft and the mounting groove makes the hanger arm 2 more stable during rotation, reduces abnormal rotation caused by external force, prevents the hanger arm 2 from loosening or falling off during rotation, and improves the reliability of the hanger. Users can quickly install the hanger arm 2 onto the connecting seat 11 through simple operation, which improves the installation efficiency.

[0047] More specifically, such as Figure 3As shown, the hanger arm 2 is provided with a second receiving cavity 27 adapted to the hook 1. At least two hanger arms 2 can be rotated and folded to allow the hook 1 to be stored in the second receiving cavity 27. The second receiving cavity 27 on the hanger arm 2 is used to store the hook 1. By storing the hook 1 in the second receiving cavity 27, the volume of the folded hanger is greatly reduced, saving storage and transportation space. The hook 1 is completely hidden in the second receiving cavity 27, making the appearance of the folded hanger neater, avoiding damage to the clothes by exposed parts, and improving the overall aesthetics of the product. Users can quickly fold the two hanger arms 2 by simple relative rotation operation, so that the hook 1 is completely stored in the two closed second receiving cavities 27, improving folding efficiency. Users can easily complete the storage and use of the hanger without complicated operation steps.

[0048] More specifically, such as Figure 1 , Figure 2 and Figure 10 As shown, a first decorative cover 5 is connected to one side of the connecting seat 11, and a second decorative cover 6 is connected to the other side of the connecting seat 11. A first locking pin 51 is provided on the first decorative cover 5, and a second locking pin 62 adapted to the first locking pin 51 is provided on the second decorative cover 6. The connecting seat 11 is provided with a through hole 112 for the first locking pin 51 and the second locking pin 62 to pass through. The first locking pin 51 and the second locking pin 62 pass through the through hole 112 and fit tightly to form a lock, so that the first decorative cover 5 and the second decorative cover 6 are stably installed on the connecting seat 11, which improves the aesthetics.

[0049] This application is not limited to the above-described preferred embodiments. Anyone can derive other products in various forms under the guidance of this application. However, regardless of any changes made to their shape or structure, any technical solution that is the same as or similar to that of this application falls within the protection scope of this application.

Claims

1. A folding clothes hanger, comprising a hook (1) and a hanger arm (2), characterized in that, The hook (1) is rotatably connected to at least two hanger arms (2). The hanger arms (2) can be unfolded or folded by rotation. The hanger arms (2) are provided with a first receiving cavity (21). The first receiving cavity (21) is rotatably installed with a linkage (3). The linkage (3) is connected to a clip (4). The linkage (3) rotates inward to drive the clip (4) into the first receiving cavity (21). The linkage (3) rotates outward to drive the clip (4) out of the first receiving cavity (21).

2. A folding clothes hanger according to claim 1, characterized in that, The bottom of the linkage (3) is provided with a first rotating shaft (31), and the linkage (3) is rotatably connected to the clamp (4) through the first rotating shaft (31) so that the clamp (4) can rotate circumferentially relative to the linkage (3).

3. A folding clothes hanger according to claim 2, characterized in that, The clamp (4) is provided with a first U-shaped hole (41) adapted to the first rotating shaft (31). The clamp (4) passes through the first U-shaped hole (41) and is circumferentially connected to the first rotating shaft (31).

4. A folding clothes hanger according to claim 3, characterized in that, The first rotating shaft (31) is provided with a first limiting seat (32), and the first U-shaped hole (41) passes through the first rotating shaft (31) and abuts against the first limiting seat (32) so that the clamp (4) is connected and locked with the linkage (3).

5. A folding clothes hanger according to claim 2, characterized in that, The inner wall of the first accommodating cavity (21) is provided with a second rotating shaft (22), and the linkage (3) is provided with a second U-shaped hole (33) adapted to the second rotating shaft (22). The second rotating shaft (22) and the second U-shaped hole (33) are rotatably connected.

6. A folding clothes hanger according to claim 1, characterized in that, The linkage (3) is provided with a ball head (34), and the first accommodating cavity (21) is provided with a first mounting seat (23) adapted to the ball head (34). The linkage (3) enables the clamp (4) to rotate circumferentially through the ball head (34).

7. A folding clothes hanger according to claim 6, characterized in that, The linkage (3) is provided with a rod (35), the ball head (34) is provided on the rod (35), the first mounting base (23) is provided with a first guide rail (231) adapted to the rod (35), and the rod (35) rotates back and forth along the first guide rail (231).

8. A folding clothes hanger according to claim 1, characterized in that, The first receiving cavity (21) is provided with a first protrusion (24) and a second protrusion (25). The first protrusion (24) is used to abut against the outer side wall of the clamp (4) to restrict the clamp (4) from leaving the first receiving cavity (21). The second protrusion (25) is used to abut against the inner side wall of the clamp (4) to restrict the clamp (4) from rotating within the first receiving cavity (21).

9. A folding clothes hanger according to claim 1, 2, or 6, characterized in that, The hook (1) is provided with a connecting seat (11) at the bottom. The connecting seat (11) is used to rotate and install the hanger arm (2). The connecting seat (11) is provided with a second guide rail (111). The second guide rail (111) is arc-shaped. The hanger arm (2) is provided with a third protrusion (26) that is adapted to the second guide rail (111). The third protrusion (26) is slidably connected to the second guide rail (111) to limit the rotation range of the hanger arm (2).

10. A folding clothes hanger according to claim 1, characterized in that, The hanger arm (2) is provided with a second receiving cavity (27) adapted to the hook (1), and at least two of the hanger arms (2) are rotated and folded so that the hook (1) is stored in the second receiving cavity (27).