A deformable kite line winder
By designing a deformable kite line winder, which utilizes sliding control components and a frame structure to flip and wind the line, the problems of inconvenient kite line storage and limited winding function are solved, enabling quick adjustment of the winding radius and labor-saving operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 姚琪
- Filing Date
- 2025-06-03
- Publication Date
- 2026-07-21
AI Technical Summary
Existing kite winders take up a lot of space when stored, have a limited line winding function, and cannot meet the needs of frequent line length adjustments.
Design a deformable kite line winder. The position of the handle can be adjusted by sliding control components to quickly switch the winding radius. The main body and the auxiliary body form a frame structure for flipping and winding. Combined with the dual handle design, it can adapt to different operating habits and needs.
It improves operational efficiency, reduces the risk of line accumulation and jamming, prevents line tangling and loosening, and is ergonomically designed for long-term kite flying.
Smart Images

Figure CN224523949U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of kite line winders, and in particular relates to a deformable kite line winder. Background Technology
[0002] A kite swivel is a traditional folk toy primarily used to assist in flying and controlling kites. Its main function is to help kite flyers better control the kite's direction and altitude, especially in strong winds or with long kite lines. When using a kite swivel, one can adjust the tension of the kite line by turning or swinging the swivel, thereby changing the kite's flight attitude. This tool not only adds to the enjoyment of kite flying but also makes kite control more flexible and precise. The kite swivel holds an important place in traditional Chinese kite culture, especially in northern regions, where many kite enthusiasts make their own or purchase kite swivels to enhance their flying experience.
[0003] Comparing this to Chinese patent CN219272145U, a kite hook is disclosed, including a line support hook frame. The frame comprises two parallel winding tubes, each with a winding baffle. A support tube connects the winding tubes, located inside the winding baffles on each tube and perpendicularly connected to them. A handle is rotatably mounted on the outer side of the winding baffles on each tube via a rolling bearing. The overall structure is strong, and the rotating tube, mounted on the winding tube via the rolling bearing, rotates flexibly, is durable, and has a long service life. When letting out or retrieving the kite line, simply grasp the handle and rotate the line support hook frame to release or retrieve the line. Simultaneously, the rotation of the rolling bearing drives the handle to rotate, resulting in fast line release or retrieving speeds while avoiding friction between the hand and the handle, making operation more effortless.
[0004] However, the aforementioned patent uses a fixed four-handle design to adjust the winding radius, which takes up a lot of space when storing, reducing the convenience of storage. Furthermore, the winding function is singular and lacks differentiated design, making it unable to meet the need for frequent adjustment of the wire length. Therefore, a new device needs to be designed. Utility Model Content
[0005] The purpose of this invention is to provide a deformable kite line winder to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A deformable kite line winder includes a main body assembly for winding and securing kite line. Control components for varying the winding speed are slidably mounted on both sides of the main body assembly. The main body assembly includes two symmetrically parallel main rods, each with two internal connecting tee joints symmetrically mounted. A secondary rod is installed between the two opposing internal connecting tee joints on the two main rods, and the secondary rod is perpendicular to the main rods. The control components include a sliding tee joint with a handle rod on its outer side. A handle sleeve is rotatably mounted on the surface of the handle rod, and a positioning screw is installed on the sliding tee joint.
[0008] Furthermore: the internal connecting tee protrudes from both ends of the main rod.
[0009] Furthermore, the external protrusion length of the main rod is 2-10 cm.
[0010] Furthermore, the main rod, the secondary rod, and the grip rod are all made of hollow cylindrical tubular material.
[0011] Furthermore: a sealing plug is installed at the end of the main rod, and a limit plug is installed at the end of the grip rod.
[0012] Furthermore, the grip sleeve is cylindrical and made of polypropylene.
[0013] Compared with existing technologies, the beneficial effects are:
[0014] The position of the handle bar can be adjusted by sliding the control component to quickly switch the winding radius (full or half the length of the main bar), meeting different speed requirements when reeling in and out (such as fast reeling in or fine adjustment), and significantly improving operating efficiency; the sliding sleeve tee and positioning screw can be used to flexibly adjust the position of the handle bar to adapt to different arm lengths and operating habits.
[0015] The frame structure consisting of the main rod and the auxiliary rod automatically changes the winding position when flipped, avoiding wire accumulation and reducing the risk of wire jamming; the two ends of the main rod protrude 2-10 cm into the internal connecting tee, forming a physical barrier and effectively preventing the wire from coming loose from the end during winding;
[0016] The main and auxiliary rods are connected by an internal tee to form a rigid frame. The hollow round tube material balances lightweight and strength, while the sealing plug and limiting plug further enhance the structural integrity. The dual grip design is ergonomic, allowing for easier and more effortless rotation with both hands, making it especially suitable for long-term kite flying. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of a deformable kite string winder according to the present invention;
[0018] Figure 2This is a front view of the slow winding state of a deformable kite line winder according to this utility model;
[0019] Figure 3 This is a front view of the fast winding state of the deformable kite line winder described in this utility model;
[0020] Figure 4 This is a front view of the main component of the deformable kite string winder described in this utility model;
[0021] Figure 5 This is a schematic diagram of the control components of a deformable kite string winder according to the present invention;
[0022] Figure 6 This is a secondary view of the control components of the deformable kite line winder described in this utility model.
[0023] In the attached diagram, the following are the reference numerals: 101, main rod body; 102, internal connecting tee; 103, secondary rod body; 104, sealing plug; 201, sliding sleeve tee; 202, handle bar; 203, positioning screw; 204, handle sleeve; 205, limit plug. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figures 1-6 A deformable kite line winder includes a main body component for winding and fixing the kite line, and control components for changing the speed of winding the kite line are slidably installed on both sides of the main body component.
[0026] In this embodiment: the main component includes two symmetrically parallel main rods 101, with two internal connecting tees 102 symmetrically installed on each main rod 101. A secondary rod 103 is installed between the two opposing internal connecting tees 102 on the two main rods 101, and the secondary rod 103 is perpendicular to the main rods 101. The internal connecting tees 102 protrude from both ends of the main rods 101. The protruding length of the main rod 101 is 5 cm. Both the main rods 101 and the secondary rods 103 are made of hollow round tube material. A sealing plug 104 is installed at the end of the main rod 101. The internal connecting tees 102 are fixedly connected to the main rods 101 and the secondary rods 103 to form a winding frame. The main rods 101 drive the two secondary rods 103 to alternately rotate and change positions to wind the kite line. The protrusion of the main rods 101 prevents the line from loosening.
[0027] In this embodiment: the control component includes a sliding sleeve tee 201, a handle 202 is provided on the outside of the sliding sleeve tee 201, a handle sleeve 204 is rotatably mounted on the surface of the handle tee 202, and a positioning screw 203 is installed on the sliding sleeve tee 201; the handle tee 202 is made of hollow round tube material; a limit plug 205 is installed at the end of the handle tee 202; the handle sleeve 204 is round tube and made of polypropylene material; both hands hold the handle tee 202 through the handle sleeve 204 to rotate the main rod 101 for winding. When changing the winding radius, first loosen the positioning screw 203 of one of the sliding sleeve tee 201, then slide the sliding sleeve tee 201 along the main rod 101. After adjusting to the position, tighten the positioning screw 203 to fix it. The limit plug 205 prevents the handle sleeve 204 from loosening.
[0028] Working principle: When winding kite line normally, both hands hold the handles 202 through the handle sleeves 204 and rotate the main rod 101. This causes the main rod 101 to drive the two auxiliary rods 103 to alternately rotate up and down to change their positions and wind the kite line. At this time, the radius of rotation is half the length of the main rod 101, which is the slow winding state. To switch to the fast winding state, first loosen the positioning screw 203 of one of the sliding sleeve tee 201, then slide the sliding sleeve tee 201 along the main rod 101 so that the two handles 202 are at the same end and coaxial. Tighten the positioning screw 203 to fix it. Then, with the common axis of rotation of the two handles 202 as the center, rotate the main rod 101 to drive the two auxiliary rods 103 to alternately rotate up and down to change their positions and wind the kite line. At this time, the radius of rotation is the full length of the main rod 101, which is the fast winding state.
[0029] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A deformable kite line winder, characterized in that: It includes a main component for securing the kite line, and control components for changing the speed of kite line winding are slidably installed on both sides of the main component. The main component includes two main rods (101) arranged symmetrically and parallelly. Two internal connecting tees (102) are symmetrically installed on the main rods (101). A secondary rod (103) is installed between the two opposing internal connecting tees (102) on the two main rods (101). The secondary rod (103) is perpendicular to the main rods (101). The control assembly includes a sliding sleeve tee (201), a handle bar (202) is provided on the outside of the sliding sleeve tee (201), a handle sleeve (204) is rotatably mounted on the surface of the handle bar (202), and a positioning screw (203) is installed on the sliding sleeve tee (201).
2. The deformable kite line winder according to claim 1, characterized in that: The internal connecting tee (102) protrudes from both ends of the main rod (101).
3. The deformable kite line winder according to claim 2, characterized in that: The protruding length of the main rod (101) is 2-10 cm.
4. The deformable kite line winder according to claim 1, characterized in that: The main rod (101), the secondary rod (103), and the grip rod (202) are all made of hollow round tube material.
5. A deformable kite line winder according to claim 4, characterized in that: A sealing plug (104) is installed at the end of the main rod (101), and a limit plug (205) is installed at the end of the handle (202).
6. A deformable kite line winder according to claim 1, characterized in that: The grip sleeve (204) is cylindrical and made of polypropylene.