Fiber forming polymer winding device
Through the combined design of the general rotation assembly, winding assembly and harness assembly, the problems of dispersion and intactness during the winding of the fiber-forming polymer are solved, and stable and efficient winding operation is achieved, reducing costs and labor losses.
Patent Information
- Application Number
- CN202422434339.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The fiber-forming polymer is prone to dissipation during winding, resulting in loss of manpower and not tight during winding, and the existing equipment is high in cost and low in efficiency.
The combined design of the general rotation assembly, winding assembly and beaming assembly is adopted. The main shaft machine drives the rotation of the main rotor, combined with the winding motor and signal transmission system, accurately control the number of winding coils and tight windings, and use twisted springs and beaming plates to maintain winding stability.
The winding is stable and tight, reducing labor losses, improving winding efficiency and finished product quality, and reducing equipment costs.
Smart Images

Figure CN223213537U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of industrial processing, in particular to a fiber-forming polymer winding device. Background Art
[0002] Fiber-forming polymers should not only have the ability to form fibers, but also must be completely dissolved in suitable solvents to form a viscous concentrated solution; or melt at elevated temperatures and convert into a viscous flow state without decomposition. This type of polymer usually uses coal, oil, natural gas, etc. as raw materials, and undergoes a series of chemical reactions to generate various low-molecular organic monomers, which are then artificially synthesized to obtain fiber-forming polymers. The structural characteristics of fiber-forming polymers include straight linear macromolecules, orderly arranged fiber longitudinal axis direction, appropriately high molecular weight and certain thermal stability.
[0003] After searching, the document of announcement number "CN218560720U" mentioned that "the utility model discloses a fiber-forming polymer winding device, which relates to the field of fiber-forming polymer spinning processing technology. The above-mentioned fiber-forming polymer winding device includes a processing base and a transposition mechanism, multiple rotating parts, multiple winding drums, and a winding drive mechanism. The transposition mechanism includes a servo motor fixedly mounted on the bottom of the processing base and a rotating table fixedly mounted on the output shaft end of the servo motor and arranged on the upper surface of the processing base. The multiple rotating parts are respectively connected to the rotating table for equidistant rotation. The winding drive mechanism provides a longitudinal pressure rotation force for any winding drum. ", when in use, the utility model sets a transposition mechanism, a rotating member, a winding drum movably assembled on the rotating member, and a winding drive mechanism, so as to realize that multiple winding drums share the same winding drive force, thereby reducing the cost of the winding drive equipment and improving the processing efficiency of winding and unwinding the winding drum, effectively saving the time of spinning and winding the fiber-forming polymer. However, in the winding process of the fiber-forming polymer, since such polymers are relatively hard and elastic, it is easy to cause the fibers to spread out after winding, resulting in a waste of manpower during and after the winding process, and the need for separate monitoring.
[0004] Therefore, we provide a fiber-forming polymer winding device to solve the above problems. Utility Model Content
[0005] The purpose of the present invention is to provide a fiber-forming polymer winding device to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solutions: a fiber-forming polymer winding device, comprising a placement wall and a fiber-forming polymer winding mechanism, wherein the fiber-forming polymer winding mechanism is installed on the front side of the placement wall;
[0007] The fiber-forming polymer winding mechanism includes a wire feeding port, a total rotation assembly, a winding assembly and a wire bundling assembly. The wire feeding port is provided on the right side of the installation wall, the total rotation assembly is installed on the front side of the installation wall, the winding assembly is installed on the front side of the total rotation assembly, and the wire bundling assembly is provided in the middle of the winding assembly.
[0008] Preferably, the total rotation assembly includes a total shaft machine and a total turntable, the total shaft machine is welded to the front side of the installation wall, and the total turntable is installed on the front side of the total shaft machine.
[0009] Preferably, the winding assembly includes a winding motor, a rotating shaft rod, a chuck, a signal receiver, a signal generator and a winding column. The front side of the main turntable is welded with a winding motor, the front side of the winding motor is connected to a rotating shaft rod, a chuck is installed on the outside of the rotating shaft rod, a signal receiver is installed on the upper end of the front side of the winding motor, a signal generator is installed on the upper end of the rear side of the chuck, and a winding column is installed on the front side of the chuck.
[0010] Preferably, the signal receiver and the signal generator are electrically connected, and a laser signal transmission structure is formed between the signal receiver and the signal generator.
[0011] Preferably, the winding post and the rotating shaft rod are connected by a slot, and the winding post and the rotating shaft rod form a fixed structure through a chuck.
[0012] Preferably, the wiring harness assembly includes a welding rod, a twist spring, a sleeve and a wiring harness reel. A welding rod is welded in the middle of the winding motor, a twist spring is installed on the inner side of the welding rod, a sleeve is connected to the outer side of the welding rod through a slot, and a wiring harness reel is connected to the outer side of the sleeve.
[0013] Preferably, the cable tie reel and the winding post are connected by a slot, and there is a one-to-one correspondence between the cable tie reel and the winding post.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] 1. Through the setting of the fiber-forming polymer winding mechanism, when it is needed, the main shaft machine can be used to drive the main turntable to rotate, and as the main turntable rotates, the winding posts can be made to correspond to the wire feeding ports in turn to achieve separate winding operations, while the remaining winding posts are used to take out the wires and install new winding posts. The winding motor drives the rotating shaft rod to rotate, and the pulling force of the winding motor can be used to make the rotating shaft rod more convenient to control the winding operation when it passes through the winding posts for winding operations, and the wound wire can be made tighter through the signal transmission effect between the signal receiver and the signal generator. The number of windings on the winding post can be controlled by calculating the number of electronic confirmation turns, so that the winding lengths are all within a standardized range.
[0016] 2. Through the setting of the fiber-forming polymer winding mechanism, when it is needed, the mutual engagement between the winding post and the rotating shaft rod can make the installation of the winding post more stable, avoiding the phenomenon of the winding post loosening. At the same time, through the use of the twist spring, the bundle reel can maintain sufficient compression effect through its own elasticity as the polymer wire is wound more. The use of the bundle reel on the winding post can ensure that the polymer wire can avoid the problem of loose winding during the winding process, and the wire can maintain good compressive strength due to the pressure throughout the body. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the overall appearance structure of the utility model;
[0018] Figure 2 This is a schematic diagram of the overall side structure of the utility model;
[0019] Figure 3 This is a schematic diagram of the structure of the winding assembly of the utility model;
[0020] Figure 4 This is a schematic diagram of the combined structure of the winding assembly and the wire harness assembly of the present invention.
[0021] Numbers in the figure: 1. Installation wall; 2. Fiber-forming polymer winding mechanism; 21. Wire feed port; 22. Main rotation assembly; 221. Main shaft machine; 222. Main turntable; 23. Winding assembly; 231. Winding motor; 232. Rotating shaft rod; 233. Chuck; 234. Signal receiver; 235. Signal generator; 236. Winding column; 24. Wire harness assembly; 241. Welding rod; 242. Twist spring; 243. Sleeve; 244. Wire harness reel. DETAILED DESCRIPTION
[0022] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0023] See also Figure 1-4 As shown, the utility model provides a technical solution: a fiber-forming polymer winding device, comprising a placement wall 1 and a fiber-forming polymer winding mechanism 2, wherein the fiber-forming polymer winding mechanism 2 is installed on the front side of the placement wall 1;
[0024] The fiber-forming polymer winding mechanism 2 includes a wire feeding port 21, a total rotation assembly 22, a winding assembly 23 and a wire bundling assembly 24. The wire feeding port 21 is provided on the right side of the installation wall 1, the total rotation assembly 22 is installed on the front side of the installation wall 1, the winding assembly 23 is installed on the front side of the total rotation assembly 22, and the wire bundling assembly 24 is provided in the middle of the winding assembly 23.
[0025] Furthermore, the total rotation assembly 22 includes a total shaft machine 221 and a total turntable 222. The total shaft machine 221 is welded to the front side of the installation wall 1, and the total turntable 222 is installed on the front side of the total shaft machine 221. When needed, the total turntable 222 can be driven to rotate by the total shaft machine 221. As the total turntable 222 rotates, the winding poles 236 can correspond to the wire feeding port 21 in turn to achieve a separate winding operation, while the remaining winding poles 236 are used to take out the wire and install new winding poles 236.
[0026] Furthermore, the winding assembly 23 includes a winding motor 231, a rotating shaft rod 232, a chuck 233, a signal receiver 234, a signal generator 235 and a winding post 236. The front side of the main turntable 222 is welded with a winding motor 231, the front side of the winding motor 231 is connected to the rotating shaft rod 232, the outer side of the rotating shaft rod 232 is installed with a chuck 233, the front upper end of the winding motor 231 is installed with a signal receiver 234, the rear upper end of the chuck 233 is installed with a signal generator 235, and the front side of the chuck 233 is installed with a winding post 236. When needed, the rotating shaft rod 232 is driven to rotate by the winding motor 231, and the suction force of the winding motor 231 can make the rotating shaft rod 232 more convenient to control the winding operation through the winding post 236, and can make the wound wire tighter.
[0027] Furthermore, the signal receiver 234 and the signal generator 235 are electrically connected, and a laser signal transmission structure is formed between the signal receiver 234 and the signal generator 235. Through the signal transmission effect between the signal receiver 234 and the signal generator 235, the number of windings on the winding pole 236 can be controlled by calculating the number of electronically confirmed turns, so that the winding length is within a standardized range.
[0028] Furthermore, the winding post 236 and the rotating shaft rod 232 are connected by a card slot, and the winding post 236 and the rotating shaft rod 232 form a fixed structure through the chuck 233. When needed, the winding post 236 and the rotating shaft rod 232 are engaged with each other, so that the installation of the winding post 236 can be more stable, avoiding the phenomenon of the winding post 236 loosening.
[0029] Furthermore, the wiring harness assembly 24 includes a welding rod 241, a twist spring 242, a sleeve 243 and a wiring harness reel 244. The welding rod 241 is welded in the middle of the winding motor 231, the inner side of the welding rod 241 is installed with a twist spring 242, the outer side of the welding rod 241 is connected to the sleeve 243 through a slot, and the outer side of the sleeve 243 is connected to the wiring harness reel 244. When needed, the use of the twist spring 242 can allow the wiring harness reel 244 to maintain sufficient compression effect through its own elasticity as the polymer wire is wound more.
[0030] Furthermore, the cable spool 244 and the winding post 236 are connected by a card slot, and there is a one-to-one correspondence between the cable spool 244 and the winding post 236. When needed, the cable spool 244 is used on the winding post 236 to ensure that the polymer wire can avoid the problem of loose winding of the wire during the winding process, and the wire can maintain good compressive strength due to the pressure throughout the body.
[0031] Working principle: A fiber-forming polymer winding device is moved to the working position. When in use, the first step is to insert the first group of winding poles 236 into the rotating shaft rod 232 and interlock them with the chuck 233. After preparation, the remaining groups are assembled in sequence. The second step is to connect the polymer filaments to the winding poles 236 through the wire feeding port 21. As the winding motor 231 rotates, the wire on the winding pole 236 will be wound onto the surface of the winding pole 236, and the signal receiver 234 and the signal generator 235 determine the number of winding turns based on the laser contact information to ensure that the winding length is the same. When winding again, the corresponding bundle reel 244 will adjust the corresponding winding pole. 236 is compressed. As the thickness of the winding increases, the bundled wire drum 244 will generate pressure through the twist spring 242 in the connected sleeve 243 and the welding rod 241 to prevent the silk thread wound on the winding post 236 from loosening. When the winding post 236 is fully wound, in the third step, the total axis machine 221 on the installation wall 1 will drive the total turntable 222 to fine-tune the angle and rotate to wind the next group of winding posts 236. Finally, until the first group of winding posts 236 arrives at the opposite side of the wire feeding port 21, the staff will remove the winding posts 236 and install the new winding posts 236. In this way, the use process of a fiber-forming polymer winding device is completed.
[0032] Although the 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 variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A fiber-forming polymer winding device, comprising a placement wall (1) and a fiber-forming polymer winding mechanism (2), characterized in that: A fiber-forming polymer winding mechanism (2) is installed on the front side of the placement wall (1); The fiber-forming polymer winding mechanism (2) comprises a wire feeding port (21), a total rotation assembly (22), a winding assembly (23) and a wire bundle assembly (24); the wire feeding port (21) is provided on the right side of the installation wall (1); the total rotation assembly (22) is installed on the front side of the installation wall (1); the winding assembly (23) is installed on the front side of the total rotation assembly (22); and the wire bundle assembly (24) is provided in the middle of the winding assembly (23).
2. A fiber-forming polymer winding device according to claim 1, characterized in that: The total rotation assembly (22) comprises a total shaft machine (221) and a total turntable (222); the total shaft machine (221) is welded to the front side of the placement wall (1); and the total turntable (222) is installed on the front side of the total shaft machine (221).
3. A fiber-forming polymer winding device according to claim 2, characterized in that: The winding assembly (23) comprises a winding motor (231), a rotating shaft (232), a chuck (233), a signal receiver (234), a signal generator (235) and a winding post (236). The front side of the main turntable (222) is welded with a winding motor (231), the front side of the winding motor (231) is connected to the rotating shaft (232), the outer side of the rotating shaft (232) is installed with a chuck (233), the upper end of the front side of the winding motor (231) is installed with a signal receiver (234), the upper end of the rear side of the chuck (233) is installed with a signal generator (235), and the front side of the chuck (233) is installed with a winding post (236).
4. A fiber-forming polymer winding device according to claim 3, characterized in that: The signal receiver (234) and the signal generator (235) are electrically connected, and a laser signal transmission structure is formed between the signal receiver (234) and the signal generator (235).
5. The fiber-forming polymer winding device according to claim 3, characterized in that: The winding post (236) and the rotating shaft rod (232) are connected by a clamping groove, and the winding post (236) and the rotating shaft rod (232) form a fixed structure through a chuck (233).
6. A fiber-forming polymer winding device according to claim 3, characterized in that: The wire harness assembly (24) comprises a welding rod (241), a twist spring (242), a sleeve (243) and a wire harness reel (244); the welding rod (241) is welded in the middle of the winding motor (231); the twist spring (242) is installed on the inner side of the welding rod (241); the outer side of the welding rod (241) is connected to the sleeve (243) through a slot; and the outer side of the sleeve (243) is connected to the wire harness reel (244).
7. A fiber-forming polymer winding device according to claim 6, characterized in that: The cable bundle reel (244) and the winding post (236) are connected via a slot, and there is a one-to-one correspondence between the cable bundle reel (244) and the winding post (236).
Citation Information
Patent Citations
Fiber forming polymer winding device
CN218560720U