Enameled wire anti-winding winding reel and winding device
By designing a spiral receiving groove and a guiding mechanism, combined with the squeezing rollers of the fastening mechanism, the problem of entanglement during the winding process of enameled wire is solved, achieving uniform distribution and stable tension of the enameled wire, and improving winding efficiency and insulation performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHANXI LUHONG INTELLIGENT TECH CO LTD
- Filing Date
- 2026-03-09
- Publication Date
- 2026-04-17
AI Technical Summary
Existing winding drum structures are prone to causing enameled wires to cross-wrap, accumulate, and wear on the insulation layer, and have poor adaptability, affecting winding efficiency and insulation performance.
The spiral receiving groove and guiding mechanism, along with the fastening mechanism, are used to achieve uniform distribution and stable tension of the enameled wire through reciprocating screw drive and extrusion roller design, preventing tangling and wear of the insulation layer.
It effectively prevents the enameled wire from crossing, tangling, and piling up, maintains insulation performance, and improves winding efficiency and the service life of the enameled wire.
Smart Images

Figure CN121872172A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of enameled wire processing equipment, and more particularly to an anti-tangle winding spool and winding device for enameled wire. Background Technology
[0002] Enameled wire is a key winding material for products such as motors, electrical appliances, and instruments. Its surface is covered with an insulating varnish layer. If problems such as wire entanglement or uneven stacking occur during the winding process, it will not only cause wear and scratches on the insulating varnish layer, affecting the insulation performance and service life of the product, but also reduce the winding efficiency and increase the difficulty of subsequent wire unwinding operations. Currently, existing technologies for winding enameled wire using spools and winding devices have the following shortcomings: First, traditional spools are mostly cylindrical structures, relying solely on simple grooves on the surface of the spool for wire positioning. When the winding speed changes or the wire tension is unstable, the enameled wire is prone to coming out of the grooves, resulting in cross-entanglement. Second, the winding device lacks an effective wire guiding and adjusting mechanism, and cannot adjust the guiding position in real time according to changes in the winding radius of the spool, causing the wire to accumulate at both ends of the spool, forming "bulges" and further aggravating the risk of entanglement. Third, some anti-entanglement devices have complex structures, high costs, and poor adaptability to different specifications of enameled wire, making it difficult to meet diverse production needs. Therefore, in view of the shortcomings of the existing technology, there is an urgent need to design an enameled wire anti-winding spool and winding device with simple structure, good anti-winding effect and strong adaptability, so as to solve the winding problem in the winding process of enameled wire, ensure the quality of enameled wire and improve the winding operation efficiency. Summary of the Invention
[0003] The anti-tangle winding spool and winding device for enameled wire proposed in this invention solves the above-mentioned shortcomings of the prior art.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: Anti-tangle spool for enameled wire, including: The main body of the spool is used for winding and storing enameled wire; The guiding mechanism, located on both sides of the main body of the winding drum, is used to prevent tangling during the winding of the enameled wire; The fastening mechanism, located inside the guiding mechanism, is used to constrain the slack of the enameled wire during winding.
[0005] Furthermore, the main body of the winding drum includes a sleeve, with a first baffle and a second baffle fixedly connected to both sides of the sleeve, a spiral storage groove on the sleeve, and multiple linkage grooves arrayed inside the sleeve.
[0006] Furthermore, the guiding mechanism includes the same fixed frame rotatably connected to the outer sides of the first baffle and the second baffle. A reciprocating screw is rotatably connected to the inner side of the fixed frame. A moving block is threaded onto the reciprocating screw. A conduit is fixedly connected to one end of the moving block. A guide block is fixedly connected to one side of the conduit. A guide rod is fixedly connected to the inner side of the fixed frame corresponding to the guide block. The guide rod is movably sleeved inside the guide block. A moving groove is provided on the fixed frame corresponding to the conduit. The moving groove passes through the center of the conduit. A transmission gear is fixedly connected to one end of the reciprocating screw. A gear ring is fixedly connected to one side of the second baffle corresponding to the transmission gear. One side of the gear ring meshes with the transmission gear for transmission.
[0007] Furthermore, the fastening mechanism includes a support rod fixedly connected to both sides of the moving block and the guide block, a fixed plate fixedly connected to the other end of the support rod, a sliding plate slidably connected to the support rod, a traction plate rotatably connected to the opposite side of the sliding plate and the fixed plate, a driven plate rotatably connected to the traction plate, a squeezing roller rotatably connected to the driven plate, and a resistance spring fixedly connected to one end of the support rod on one side of the sliding plate, with the support rod movably penetrating through the interior of the resistance spring.
[0008] An anti-tangle winding device for enameled wire, applicable to any one of the above-mentioned anti-tangle winding drums for enameled wire, comprising: Rack assembly, used to support and secure the entire equipment; The winding assembly, located on the frame assembly, is used to drive the sleeve to rotate, facilitating the orderly winding of the enameled wire; A power output assembly, located at the top of the frame assembly, is used to provide power to the winding assembly; A transmission assembly is located between the winding assembly and the power output assembly, with one side of the transmission assembly connected to the power output assembly.
[0009] Furthermore, the rack assembly includes a base plate, and a first support plate, a second support plate, a third support plate, and a fourth support plate are fixedly connected to the top array of the base plate.
[0010] Furthermore, the winding assembly includes a short shaft rotatably connected to the opposite side of the first support plate and the fourth support plate, respectively. A winding rod is fixedly connected to one end of the short shaft, and a linkage block is fixedly connected in an array on the winding rod. The winding rod is movably sleeved inside the sleeve, and the linkage block is movably sleeved inside the linkage groove. A first staggered tooth disc is fixedly connected to the other end of the short shaft. A threaded rod is fixedly connected to one end of the winding rod, and a fastening nut is threaded onto the threaded rod. An abutment cover is rotatably connected to one side of the fastening nut, and one side of the abutment cover abuts against the outer side of the second baffle. An abutment plate is fixedly connected to the other end of the winding rod, and one side of the abutment plate abuts against the first baffle.
[0011] Furthermore, the power output assembly includes a drive motor fixedly connected to one side of the third support plate, a drive rod fixedly connected to the output end of the drive motor, and a first pulley fixedly connected to the drive rod.
[0012] Furthermore, the transmission assembly includes a transmission rod rotatably connected to the second support plate and the third support plate. Second staggered gear discs are movably sleeved at both ends of the transmission rod, and the second staggered gear discs mesh with the first staggered gear discs. A limit spring is fixedly connected between the second support plate and the third support plate relative to the second staggered gear discs. The other end of the limit spring abuts against the second staggered gear discs. A sliding groove is formed inside the second staggered gear discs. Slider blocks are fixedly connected at both ends of the transmission rod corresponding to the sliding grooves, and the sliders are movably sleeved inside the sliding grooves. A second pulley is fixedly connected to the transmission rod, and the second pulley and the first pulley are connected by the same belt.
[0013] Furthermore, the base plate has multiple mounting holes for fixing the device. Limit locks are installed on one side of the first support plate and the fourth support plate respectively, and one side of the limit lock abuts against the fixing frame.
[0014] Compared with existing technologies, the beneficial effects of this invention are: 1. This invention achieves initial positioning of the enameled wire through a spiral storage groove. Combined with the reciprocating motion of the threading tube driven by the reciprocating screw in the guide mechanism, it can ensure that the enameled wire is evenly distributed along the axial direction of the main body of the winding drum, completely solving the problems of cross-winding and "bulging" of wire at both ends in traditional winding drums. The main body of the winding drum cooperates with the linkage block of the winding rod through the linkage groove, which can be quickly disassembled and assembled, and is suitable for winding drums of different specifications. 2. This invention uses a fastening mechanism to dynamically maintain the tension of the enameled wire through the extrusion roller, thus preventing the wire from loosening. At the same time, the rotation design of the extrusion roller reduces friction with the insulation layer of the enameled wire, effectively preventing wear and scratches on the insulation layer and ensuring the insulation performance and service life of the enameled wire. In summary, this equipment not only enables orderly winding and coiling of enameled wire through the guiding mechanism, avoiding the problem of accumulation at both ends, but also maintains stable tension of the enameled wire through the fastening mechanism, preventing wire slack. In addition, the rotating design of the extrusion roller reduces friction with the insulation layer of the enameled wire, effectively preventing wear and scratches on the insulation varnish layer, and ensuring the insulation performance and service life of the enameled wire. Attached Figure Description
[0015] Figure 1 This is a top-view three-dimensional structural diagram of the anti-tangle winding drum and winding device for enameled wire proposed in this invention. Figure 2This is a top-view three-dimensional structural diagram of the frame assembly and main body of the enameled wire anti-winding spool and winding device proposed in this invention. Figure 3 This is a top-view three-dimensional structural diagram of the power output component and transmission component of the enameled wire anti-winding spool and winding device proposed in this invention. Figure 4 This is a top-view three-dimensional structural diagram of the main body and fixing frame of the enameled wire anti-winding spool and winding device proposed in this invention; Figure 5 This is a top-view three-dimensional structural diagram of the enameled wire anti-winding winding device and winding apparatus proposed in this invention. Figure 6 This is a top-view three-dimensional structural diagram of the winding rod of the anti-winding spool and winding device for enameled wire proposed in this invention; Figure 7 This is a top-view perspective view of the contact cover and fastening nut of the anti-winding spool and winding device for enameled wire proposed in this invention. Figure 8 This is a top-view three-dimensional structural diagram of the main body of the enameled wire anti-winding spool and winding device proposed in this invention; Figure 9 This is a top-view three-dimensional structural diagram of the guiding mechanism and fastening mechanism of the enameled wire anti-winding spool and winding device proposed in this invention; Figure 10 This is a top-view three-dimensional structural diagram of the fastening mechanism of the enameled wire anti-winding spool and winding device proposed in this invention.
[0016] In the diagram: 1. Main body of the winding drum; 101. Sleeve; 102. First baffle; 103. Second baffle; 104. Spiral storage groove; 105. Linkage groove; 2. Guide mechanism; 201. Fixed frame; 202. Reciprocating screw; 203. Moving block; 204. Transmission gear; 205. Gear ring; 206. Threading tube; 207. Guide block; 208. Guide rod; 209. Moving groove; 3. Fastening mechanism; 301. Support rod; 302. Fixed plate; 303. Sliding plate; 304. Traction plate; 305. Driven plate; 306. Extrusion roller; 4. Frame assembly; 401. Base plate ; 402, First support plate (402); 403, Second support plate; 404, Third support plate; 405, Fourth support plate; 5, Rewinding assembly; 501, Rewinding rod; 502, First staggered tooth disc; 503, Threaded rod; 504, Linkage block; 505, Abutment plate; 506, Abutment cover; 507, Fastening nut; 6, Power output assembly; 601, Drive motor; 602, First pulley; 7, Transmission assembly; 701, Transmission rod; 702, Second staggered tooth disc; 703, Limiting spring; 704, Slider; 705, Second pulley; 706, Belt; 8, Limit lock. Detailed Implementation
[0017] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0018] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", 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.
[0019] Example, refer to Figure 1-10 : Anti-tangle reel for enameled wire, including: reel body 1, guide mechanism 2, fastening mechanism 3; The main body 1 of the winding drum includes a sleeve 101. A first baffle 102 and a second baffle 103 are fixedly connected to both sides of the sleeve 101. A spiral storage groove 104 is provided on the sleeve 101. Multiple linkage grooves 105 are arrayed inside the sleeve 101. The rotation of the sleeve 101 guides the winding of the enameled wire in an orderly manner through the spiral storage groove 104.
[0020] In this invention, the guiding mechanism 2 includes a fixed frame 201 rotatably connected to the outer sides of the first baffle 102 and the second baffle 103. A reciprocating screw 202 is rotatably connected to the inner side of the fixed frame 201. A moving block 203 is threaded onto the reciprocating screw 202. A wire guide tube 206 is fixedly connected to one end of the moving block 203. A guide block 207 is fixedly connected to one side of the wire guide tube 206. A guide rod 208 is fixedly connected to the inner side of the fixed frame 201 at the location corresponding to the guide block 207. The guide rod 208 is movably sleeved inside the guide block 207. A moving groove 209 is provided on the fixed frame 201 at the location corresponding to the wire guide tube 206. The moving groove 209 passes through the center of the wire guide tube 206. The reciprocating screw 202... One end of the sleeve 101 is fixedly connected to a transmission gear 204. A gear ring 205 is fixedly connected to one side of the second baffle 103 corresponding to the transmission gear 204. One side of the gear ring 205 meshes with the transmission gear 204 for transmission. The rotation of the sleeve 101 drives the first baffle 102 and the second baffle 103 to rotate synchronously. The rotation of the second baffle 103 drives the gear ring 205 to rotate synchronously. The rotation of the gear ring 205 drives the transmission gear 204 to rotate synchronously. The rotation of the transmission gear 204 drives the reciprocating screw 202 to rotate. The rotation of the reciprocating screw 202 drives the moving block 203 to move back and forth. At the same time, it drives the conduit 206 to move smoothly along the guide rod 208 through the guide block 207.
[0021] In this invention, the fastening mechanism 3 includes a support rod 301 fixedly connected to both sides of the moving block 203 and the guide block 207, and a fixed plate 302 fixedly connected to the other end of the support rod 301. A sliding plate 303 is slidably connected to the support rod 301. A traction plate 304 is rotatably connected to the opposite side of the sliding plate 303 and the fixed plate 302, and a driven plate 305 is rotatably connected to the traction plate 304. A pressing roller 306 is rotatably connected to the driven plate 305. One side of the sliding plate 303 is connected to the support rod. One end of 301 is fixedly connected to a resistance spring, and the support rod 301 moves through the inside of the resistance spring. When the enameled wire passes through the wire tube 206, it abuts against the extrusion roller 306. At the same time, the resistance spring provides sliding resistance to the sliding plate 303, thereby driving the extrusion roller 306 to clamp and fix the passing enameled wire through the traction plate 304. This ensures that the enameled wire remains taut even when it is not being wound up, preventing the enameled wire on the sleeve 101 from loosening after the enameled wire is wound up and the head is cut.
[0022] An anti-tangle winding device for enameled wire, applicable to any of the above-mentioned anti-tangle winding drums for enameled wire, includes: a frame assembly 4, a winding assembly 5, a power output assembly 6, and a transmission assembly 7, wherein one side of the transmission assembly 7 is connected to the power output assembly 6.
[0023] In this invention, the frame assembly 4 includes a base plate 401, and the top of the base plate 401 is fixedly connected to a first support plate 402, a second support plate 403, a third support plate 404 and a fourth support plate 405. The equipment is fixedly installed in a designated position by the base plate 401.
[0024] In this invention, the winding assembly 5 includes a short shaft rotatably connected to the opposite side of the first support plate 402 and the fourth support plate 405, respectively. One end of the short shaft is fixedly connected to a winding rod 501, and a linkage block 504 is fixedly connected in an array on the winding rod 501. The winding rod 501 is movably sleeved inside the sleeve 101, and the linkage block 504 is movably sleeved inside the linkage groove 105. The other end of the short shaft is fixedly connected to a first staggered tooth disc 502, and one end of the winding rod 501 is fixedly connected to a threaded rod 503, on which a threaded connection is made. A fastening nut 507 is provided, and an abutment cover 506 is rotatably connected to one side of the fastening nut 507. One side of the abutment cover 506 abuts against the outer side of the second baffle 103. An abutment plate 505 is fixedly connected to the other end of the winding rod 501. One side of the abutment plate 505 abuts against the first baffle 102. The sleeve 101 is sleeved on the winding rod 501 and threadedly connected to the threaded rod 503 by the fastening nut 507. The sleeve 101 is fixed and limited by the abutment cover 506 to prevent it from swinging during the winding of the enameled wire and affecting the winding effect.
[0025] In this invention, the power output assembly 6 includes a drive motor 601 fixedly connected to one side of the third support plate 404. The output end of the drive motor 601 is fixedly connected to a drive rod, and a first pulley 602 is fixedly connected to the drive rod. When the drive motor 601 is started, it drives the drive rod to rotate, and at the same time drives the first pulley 602 to rotate.
[0026] In this invention, the transmission assembly 7 includes a transmission rod 701 rotatably connected to the second support plate 403 and the third support plate 404. Second toothed discs 702 are movably sleeved at both ends of the transmission rod 701. The second toothed discs 702 mesh with and transmit power to the first toothed disc 502. A limiting spring 703 is fixedly connected between the second support plate 403 and the third support plate 404 relative to the second toothed disc 702. The other end of the limiting spring 703 abuts against the second toothed disc 702. A sliding groove is formed inside the second toothed disc 702. Sliding blocks 704 are fixedly connected at both ends of the transmission rod 701 corresponding to the sliding grooves. The sliding blocks 704 are movably sleeved in the sliding grooves. Inside, a second pulley 705 is fixedly connected to the transmission rod 701. The second pulley 705 and the first pulley 602 are connected by the same belt 706. The rotation of the first pulley 602 drives the second pulley 705 to rotate through the belt 706. The rotation of the second pulley 705 drives the rotation of the transmission rod 701. At the same time, the slider 704 drives the rotation of the second toothed disc 702. It meshes with the first toothed disc 502, driving the short shaft and the winding rod 501 to rotate. The rotation of the winding rod 501 drives the sleeve 101 to rotate synchronously through the linkage block 504, thereby performing orderly winding of the enameled wire. It is worth mentioning that when one of the sleeves 101 finishes winding or gets stuck, the first misaligned tooth disc 502 and the second misaligned tooth disc 702 will be unable to continue meshing and driving. This causes the second misaligned tooth disc 702 to slide along the slider 704 on the transmission rod 701. At the same time, the limiting spring 703 limits the movement of the second misaligned tooth disc 702, thereby ensuring that the transmission rod 701 continues to rotate and does not affect the normal rotation of the winding rod 501 on the other side. This ensures that the non-faulty side can continue to wind the enameled wire. After the staff maintains the faulty side, the limiting spring 703 generates a pushing force on the second misaligned tooth disc 702, causing the first misaligned tooth disc 502 and the second misaligned tooth disc 702 to mesh and drive again (the misaligned tooth disc is existing technology, and the working principle of the misaligned tooth disc will not be described or explained in detail in this invention).
[0027] In this invention, the base plate 401 has multiple mounting holes for fixing the device. Limit locks 8 are respectively installed on one side of the first support plate 402 and the fourth support plate 405, and one side of the limit lock 8 abuts against the fixing frame 201. It is worth mentioning that the drive motor 601 adopts a frequency conversion design, which can adjust the winding speed, and the resistance spring is replaceable, adapting to enameled wires with different tension requirements and meeting diverse production scenarios.
[0028] Working principle: Equipment assembly and debugging: First, fix the winding device in the designated position through the mounting holes on the base plate 401. Then, put the main body 1 of the winding drum onto the winding rod 501, so that the linkage block 504 is embedded in the linkage groove 105. Rotate the fastening nut 507 to push the abutment cover 506 to abut against the second baffle 103, and fix the main body 1 of the winding drum in cooperation with the abutment plate 505. Adjust the limit lock 8 to keep the fixing frame 201 stable and ensure that the guide mechanism 2 is coaxial with the main body 1 of the winding drum.
[0029] Wire threading and tension adjustment: One end of the enameled wire is sequentially threaded through the moving groove 209 of the fixed frame 201, the threading tube 206, and between the two sets of extrusion rollers 306, and finally fixed at the starting end of the spiral storage groove 104 of the sleeve 101; the resistance spring drives the extrusion roller 306 to press against the enameled wire through the sliding plate 303, the traction plate 304, and the driven plate 305. According to the tension requirements of the enameled wire, the extrusion pressure can be adjusted by replacing the resistance spring with a different elastic coefficient.
[0030] Winding operation start-up and operation: Start the drive motor 601. The drive motor 601 drives the first pulley 602 to rotate via the drive rod. The first pulley 602 drives the second pulley 705 and the transmission rod 701 to rotate via the belt 706. The transmission rod 701 drives the second toothed disc 702 to rotate via the slider 704. The second toothed disc 702 meshes with the first toothed disc 702, thereby driving the short shaft, take-up rod 501 and sleeve 101 to rotate synchronously. The sleeve 101 passes through the spiral take-up groove. 104 performs initial winding of the enameled wire; simultaneously, the second baffle 103 drives the gear ring 205 to rotate, and the gear ring 205 meshes with the transmission gear 204 to drive the reciprocating screw 202 to rotate. The reciprocating screw 202 drives the moving block 203 and the wire guide tube 206 to reciprocate along the guide rod 208, so as to achieve uniform distribution of the enameled wire along the axial direction of the sleeve 101 and avoid entanglement; the extrusion roller 306 rotates synchronously during the movement of the enameled wire, dynamically maintaining the stability of the enameled wire tension and reducing the wear of the insulation layer.
[0031] End of winding operation and unloading: When the enameled wire on the main body 1 of the winding drum reaches the preset winding amount, turn off the drive motor 601, cut the enameled wire and fix the end; loosen the limit lock 8, push the second staggered tooth disc 702 to compress the limit spring 703, so that the second staggered tooth disc 702 separates from the first staggered tooth disc 502, rotate the fastening nut 507 in the opposite direction, remove the abutment cover 506, and the wound main body 1 of the winding drum can be removed from the winding rod 501 to complete the unloading.
[0032] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. An anti-tangle spool for enameled wire, characterized in that, include: The main body of the wire spool (1) is used for winding and storing enameled wire; The guide mechanism (2) is located on both sides of the main body (1) of the winding drum and is used to prevent the enameled wire from winding and guide it. The fastening mechanism (3) is located inside the guiding mechanism (2) and is used to constrain the slack of the enameled wire during winding.
2. The anti-tangle spool for enameled wire according to claim 1, characterized in that, The main body (1) of the winding drum includes a sleeve (101), and a first baffle (102) and a second baffle (103) are fixedly connected to both sides of the sleeve (101). A spiral storage groove (104) is provided on the sleeve (101), and multiple linkage grooves (105) are arrayed inside the sleeve (101).
3. The anti-tangle spool for enameled wire according to claim 2, characterized in that, The guiding mechanism (2) includes the same fixed frame (201) rotatably connected to the outer sides of the first baffle (102) and the second baffle (103). A reciprocating screw (202) is rotatably connected to the inner side of the fixed frame (201). A moving block (203) is threaded onto the reciprocating screw (202). A conduit (206) is fixedly connected to one end of the moving block (203). A guide block (207) is fixedly connected to one side of the conduit (206). A guide is fixedly connected to the inner side of the fixed frame (201) at the location corresponding to the guide block (207). The guide rod (208) is movably sleeved inside the guide block (207). The fixed frame (201) has a moving groove (209) corresponding to the conduit (206). The moving groove (209) passes through the center of the conduit (206). One end of the reciprocating screw (202) is fixedly connected to a transmission gear (204). One side of the second baffle (103) is fixedly connected to a gear ring (205) corresponding to the transmission gear (204). One side of the gear ring (205) meshes with the transmission gear (204) for transmission.
4. The anti-tangle spool for enameled wire according to claim 1, characterized in that, The fastening mechanism (3) includes a support rod (301) fixedly connected to both sides of the moving block (203) and the guide block (207). A fixed plate (302) is fixedly connected to the other end of the support rod (301). A sliding plate (303) is slidably connected to the support rod (301). A traction plate (304) is rotatably connected to the opposite side of the sliding plate (303) and the fixed plate (302). A driven plate (305) is rotatably connected to the traction plate (304). A squeezing roller (306) is rotatably connected to the driven plate (305). A resistance spring is fixedly connected to one side of the sliding plate (303) and one end of the support rod (301). The support rod (301) moves through the interior of the resistance spring.
5. An anti-tangle winding device for enameled wire, applicable to the anti-tangle winding spool for enameled wire as described in any one of claims 1-4, characterized in that, include: The frame assembly (4) is used to support and fix the entire equipment; The winding assembly (5), located on the frame assembly (4), is used to drive the sleeve (101) to rotate, so as to facilitate the orderly winding of the enameled wire; The power output assembly (6), located on top of the frame assembly (4), is used to provide power output to the winding assembly (5); A transmission assembly (7) is located between the winding assembly (5) and the power output assembly (6), with one side of the transmission assembly (7) connected to the power output assembly (6).
6. The anti-tangle winding device for enameled wire according to claim 5, characterized in that, The rack assembly (4) includes a base plate (401), and the top of the base plate (401) is fixedly connected to a first support plate (402), a second support plate (403), a third support plate (404) and a fourth support plate (405).
7. The anti-tangle winding device for enameled wire according to claim 6, characterized in that, The winding assembly (5) includes a short shaft rotatably connected to the opposite side of the first support plate (402) and the fourth support plate (405). One end of the short shaft is fixedly connected to a winding rod (501), and a linkage block (504) is fixedly connected in an array on the winding rod (501). The winding rod (501) is movably sleeved inside the sleeve (101), and the linkage block (504) is movably sleeved inside the linkage groove (105). The other end of the short shaft is fixedly connected to a first staggered tooth disc (5). 02), one end of the winding rod (501) is fixedly connected to a threaded rod (503), a fastening nut (507) is threaded onto the threaded rod (503), a stop cover (506) is rotatably connected to one side of the fastening nut (507), one side of the stop cover (506) abuts against the outside of the second baffle (103), and the other end of the winding rod (501) is fixedly connected to a stop plate (505), one side of the stop plate (505) abuts against the first baffle (102).
8. The anti-tangle winding device for enameled wire according to claim 6, characterized in that, The power output assembly (6) includes a drive motor (601) fixedly connected to one side of the third support plate (404). The output end of the drive motor (601) is fixedly connected to a drive rod, and a first pulley (602) is fixedly connected to the drive rod.
9. The anti-tangle winding device for enameled wire according to claim 6, characterized in that, The transmission assembly (7) includes a transmission rod (701) rotatably connected to the second support plate (403) and the third support plate (404). The two ends of the transmission rod (701) are respectively movably fitted with second staggered tooth discs (702). The second staggered tooth discs (702) mesh with the first staggered tooth discs (502). The second support plate (403) and the third support plate (404) are fixedly connected with limit springs (703) relative to the second staggered tooth discs (702). The other end of the limit springs (703) abuts against the second staggered tooth discs (702). The interior of the second staggered tooth discs (702) is provided with a sliding groove. The two ends of the transmission rod (701) are respectively fixedly connected with sliders (704) corresponding to the sliding grooves. The sliders (704) are movably fitted inside the sliding grooves. The transmission rod (701) is fixedly connected with a second pulley (705). The second pulley (705) and the first pulley (602) are connected by the same belt (706).
10. The anti-tangle winding device for enameled wire according to claim 6, characterized in that, The base plate (401) has multiple mounting holes for fixing the device. Limit locks (8) are installed on one side of the first support plate (402) and the fourth support plate (405), and one side of the limit lock (8) abuts against the fixing frame (201).