Take-up roller and take-up device for enameled wire production

By designing an automated wire collection device, the problems of cumbersome and safety hazards of wire collection roller replacement in the prior art are solved, and the automatic replacement and stable rotation of wire collection rollers are realized, and the efficiency and safety of wire collection rollers are improved.

CN120348800AActive Publication Date: 2025-07-22YANTAI HANLIN NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202510845532.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-23
Publication Date
2025-07-22
Estimated Expiration
2045-06-23

AI Technical Summary

Technical Problem

The coil replacement operation of the thread-collection roller in the production of existing enameled wires is cumbersome and time-consuming, and manual operation poses safety risks, making it impossible to achieve flexible and efficient coil replacement.

Method used

A wire retraction device including a base, slide, wire retraction roller, wire retraction roller, telescopic member, limit sleeve, clamping assembly, tangent knife and other components is designed. The automatic replacement and discharge of wire retraction rollers through the driving component and the linkage component are realized, and the wire retraction rollers of different sizes and models are stably clamped and rotated.

Benefits of technology

The automatic replacement and discharge of the wire-receiving roller is realized, which improves the efficiency and safety of the wire-receiving rollers and ensures the stability and versatility of the wire-receiving rollers during rotation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of enameled wire production, particularly discloses a take-up roller and a take-up device for enameled wire production, and solves the problem that the take-up roller is inconvenient to replace efficiently and flexibly during take-up of an existing enameled wire. The device comprises a base, a sliding seat, a take-up rotating roller, a take-up roller, a telescopic piece, a limiting sleeve, a clamping assembly, a first sliding rod frame, a wire cutter, a fourth spring, a sliding plate and an arc angle plate, a driving assembly is arranged on the base, and the driving assembly is used for driving the sliding plate to drive the arc angle plate to abut against the wire cutter so as to cut off an enameled wire. The base is provided with a bearing seat used for bearing the take-up roller, the base is further provided with a linkage assembly, and the linkage assembly is used for turning over the bearing seat when the sliding plate slides so that the take-up roller in the linkage assembly can be turned over and discharged. According to the device, the take-up roller of the enameled wire can be efficiently and flexibly replaced, reel replacement is convenient, meanwhile, take-up is stable, and universality is good.
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Description

Technical Field

[0001] The present invention relates to the field of enameled wire production, and particularly to a take-up roller and a take-up device for enameled wire production. Background Art

[0002] Enameled wire is an electromagnetic wire with a film insulation layer, usually coated with multiple layers of insulating paint on a drawn red copper wire or aluminum wire. It consists of two parts: a conductor and an insulation layer. The conductor is generally copper or aluminum, and there are also cases where special conductor materials such as brass, silver, nickel, gold, and stainless steel are used; the insulation layer is formed by coating various insulating paints.

[0003] After the enameled wire is processed and formed, it needs to be wound into a coil by a take-up roller. The take-up roller is a key component of the take-up device in enameled wire production. Its main function is to drive the take-up disk to rotate, so as to wind the produced enameled wire around the take-up disk, facilitating subsequent transportation and sales. In order to adapt to the use of take-up disks of different sizes, some take-up rollers are provided with an adjustment mechanism. For example, an adjustment groove is opened along the axial direction on the rotating rod, and sliding sleeves are symmetrically and slidably sleeved on the rotating rod. A top bolt is helically sleeved on the side wall of the sliding sleeve along the radial direction. By rotating the top bolt, the top bolt can rotate relative to the sliding sleeve, thereby adjusting the distance between the two top bolts to fit against the inner wall of the take-up disk with different inner diameters, keeping the take-up disk and the rotating rod coaxial. However, the existing adjustable sliding sleeve is relatively cumbersome and time-consuming during specific adjustment because during winding, it is necessary to frequently change the coil, and the above operations are extremely inefficient and are usually manually operated for replacement. Moreover, the high-speed rotating take-up roller is also likely to cause harm to workers.

[0004] The take-up roller and take-up device for enameled wire production with the publication number of CN118439453B disclose "a take-up roller and take-up device for enameled wire production, including a winding mechanism, including a rotating rod, a U-shaped frame arranged at the lower end position of the rotating rod, and a first motor arranged at one end of the rotating rod. The vertical cross-section of the U-shaped frame is L-shaped, and support blocks are integrally formed at both upper ends of the U-shaped frame. A placement groove is opened on the top surface of the support block. Both ends of the rotating rod are slidably sleeved with rolling bearings, and the two rolling bearings are respectively placed in the two placement grooves. A ring gear is circumferentially opened on the outer side wall of one end of the rotating rod outside the U-shaped frame, and a second gear disk is meshed with the lower end of the ring gear. A first rotating shaft is fixedly sleeved in the second gear disk, and one end of the first rotating shaft is fitted into the output end of the first motor; an adjustment groove is opened along the axial direction on the rotating rod inside the U-shaped frame, which can be suitable for the fitting and fixing of take-up disks of different sizes, and the installation is convenient and the applicability is good."

[0005] Although the above technical solution is convenient for the fitting and fixing and installation of take-up disks of different sizes, it cannot achieve flexible and efficient coil changing. Therefore, a take-up roller and a take-up device for enameled wire production are proposed. Summary of the Invention

[0006] In order to overcome the deficiencies of the prior art, the present invention proposes a take-up roller and a take-up device for enameled wire production, which can be used for general clamping of take-up rollers of different sizes and models, and can automatically replace and unload the take-up rollers.

[0007] To solve the above technical problems, the basic technical solution proposed by the present invention is as follows: A take-up device for enameled wire production, comprising a base, on both ends of the base there are symmetrically and slidably sleeved with sliding seats, on one side where the two sliding seats are close to each other there is a rotatably connected take-up roller, on the outer side of one end where the two take-up rollers are close to each other there is a sleeved take-up roller, on the inner wall of one end where the two take-up rollers are far from each other there are installed telescopic members, on one end where the two telescopic members are close to each other there is a connected limit sleeve, on the limit sleeve there is a clamping assembly, the clamping assembly is used for clamping the take-up roller, so as to drive it to rotate when the take-up roller rotates, on the base there is installed a slide bar frame one, and at both ends of the slide bar frame one there are symmetrically and slidably sleeved with tangent knives; Between the two tangent knives on both sides there is a spring four sleeved outside the slide bar frame one, on the base there is a slidably connected slide plate, on both sides of the slide plate there are connected arc angle plates that slidably abut against the two tangent knives, on the base there is a driving assembly, the driving assembly is used for driving the slide plate to drive the arc angle plates to abut against the tangent knives, so as to cut the enameled wire, on the base there is installed a supporting seat for supporting the take-up roller, on the base there is also a linkage assembly, the linkage assembly is used for flipping the supporting seat when the slide plate slides, so as to flip and unload the take-up roller therein.

[0008] Preferably, on the base there is installed a mounting seat, and on both sides of the mounting seat there are symmetrically installed electric guide rails, the two sliding seats on both sides are respectively and symmetrically slidably sleeved outside the two electric guide rails, on one side where the two sliding seats are close to each other there are installed variable frequency motors, each take-up roller is installed at the output end of the variable frequency motor on its respective side, on one side of the supporting seat there are two ends rotatably installed on the upper end surface of the mounting seat through pin shafts, and the supporting seat is located directly below one end where the two take-up rollers are close to each other.

[0009] Preferably, on the base there is connected a T-shaped seat, and inside the T-shaped seat there is a slidably sleeved limit slide bar three, and the slide plate is connected to the limit slide bar three on the side of the T-shaped seat close to the take-up roller.

[0010] Preferably, the clamping assembly includes a sliding column, a T-shaped sliding rod, a rotating rod, and a clamping block. The sliding column is slidably sleeved in the limiting sleeve, and a first spring is connected between the sliding column and the inner wall of the limiting sleeve. One end of the T-shaped sliding rod is slidably sleeved in the limiting sleeve and connected to the sliding column, while the other end extends outside the limiting sleeve. The rotating rods are rotatably connected to the extending end of the T-shaped sliding rod and one end of the limiting sleeve in an array. Both ends of the clamping block are rotatably connected to the rotating rods on both sides respectively.

[0011] Preferably, sliding grooves are arranged in an array on the outer side of the wire winding roller. Clamping seats are connected to the outer side surface of the limiting sleeve in an array. The clamping seats slide through the sliding grooves and extend to the outside of the wire winding roller. A sliding ring is sleeved on the extending end of the clamping seat. A plurality of first limiting sliding rods are slidably sleeved through the sliding ring in an array. One ends of the first limiting sliding rods on both sides of the wire winding roller close to each other are both connected with annular groove seats. A rotating ring that fits and abuts against both ends of the wire winding roller is rotatably sleeved on the annular groove seat. A second spring sleeved on the outside of the first limiting sliding rod is connected between the annular groove seat and the sliding ring.

[0012] Preferably, sliding rod frames three are connected to the outer side surface of the wire winding roller in an array. The sliding ring is slidably sleeved on the outside of each sliding rod frame three. Limiting strips are connected to the inner wall of the limiting sleeve in an array. Limiting grooves that cooperate with the limiting strips for clamping are arranged in an array on the outside of the sliding column.

[0013] Preferably, the cutting knife is arranged on the front side of the wire winding roller. The arc angle plates on both sides are arranged on the front side of the cutting knife and are located on the sides away from each other of the two cutting knives.

[0014] Preferably, the driving assembly includes a support, a second limiting sliding rod, a sliding frame, and a first rotating plate. The supports are connected to both sides of the base, and the supports on both sides are axially centered and collinear with the wire winding roller. The second limiting sliding rod slidably penetrates through the support, and a third spring sleeved on the outside of the second limiting sliding rod is connected between the second limiting sliding rod and the support. The sliding frame is connected to the ends close to each other of the second limiting sliding rods on both sides. The first rotating plate is rotatably connected to the ends close to each other of the two sliding frames, and one ends close to each other of the two first rotating plates are respectively connected to both sides of the sliding plate.

[0015] Preferably, the linkage assembly includes two sliding rod frames two, socket seats, push rods, second rotating plates, and push plates. The two sliding rod frames two are arranged and installed on both sides of the base and are located on the sides away from each other of the two cutting knives. The socket seats are slidably sleeved on the outside of the sliding rod frames two. The push rods are connected to the socket seats. A second rotating plate is rotatably connected between the push rod and the supporting seat. The push plate is connected to the lower end of the sliding plate and cooperates and abuts against the end of the push rod away from the second rotating plate.

[0016] A wire winding roller for enameled wire production includes a wire winding roller (6). A groove body that cooperates with the clamping assembly for clamping is provided in the central inner wall of the wire winding roller (6).

[0017] The beneficial effects of the present invention are: 1. The technical solution of the present invention controls the telescopic parts in the wire-taking rollers on both sides to extend synchronously to drive the limiting sleeves on both sides to slide close to each other and slide out their respective wire-taking rollers, so that the T-shaped sliding bars at one end of the limiting sleeves on both sides can contact each other, and drive the sliding column connected to the T-shaped sliding bar in the limiting sleeve to slide in the limiting sleeve and compress the spring 1. In the process, each rotating rod will be driven to rotate, and then each blocking block will be synchronously spread apart from each other, so that the inner wall of the wire-taking roller delivered between the wire-taking rollers on both sides by manual or mechanical arms can be blocked. At the same time, in the process of blocking the inner wall of the wire-taking roller, it can also drive The slip ring and each limiting slide bar 1 slidably sleeved thereon approach the two sides of the take-up roller and contact the side surface of the take-up roller through the rotating ring. As the limiting sleeve continues to slide, the contact between the rotating ring and the side surface of the take-up roller will push the limiting slide bar 1 to slide on the slip ring and compress the spring 2. In this way, the inner wall of the take-up roller can be clamped while the side surface of the take-up roller can be contacted and stabilized to ensure that the take-up roller can be more stable during the process of driving the take-up roller to rotate. When the take-up roller is replaced, the limiting sleeves on both sides are driven to slide away from each other, so that the take-up roller that has completed the take-up can automatically fall onto the supporting seat. 2. The technical solution of the present invention can make the slide seats on both sides contact with the limit slide bar 2 by controlling the slide seats on both sides to move away from each other, so that the limit slide bars on both sides move away from each other and compress the spring 3, and at the same time pull the rotating plate 1 to rotate, thereby driving the slide plate and the arc angle plate to move in the direction close to the wire cutter, and come into conflict with the wire cutter, driving the wire cutters on both sides to move close to each other and compress the spring 4, and cutting off the cable pulled and wound by the wire take-up roller that falls on the supporting seat, so as to facilitate the cable to be wound up after the roll is changed; 3. The technical solution of the present invention drives the wire cutters on both sides to approach each other and cut the cables through the slide plate and the arc angle plate. The slide plate and the arc angle plate can continue to move backward. After that, the arc angle plate will no longer act on the wire cutter, but will push the push rod to move backward through the push plate, and drive the second rotating plate to rotate, so that the supporting seat rotates with the rotating connection between it and the mounting seat as the center of the circle, so that the take-up roller carried in the supporting seat and cut by the wire cutter is flipped to the rear side for unloading, which greatly improves the degree of automation. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a structural schematic diagram of the present invention; Figure 2 is a cross-sectional view of the structure of the present invention; Figure 3 It is a schematic diagram of the structure without a base of the present invention; Figure 4 It is a schematic diagram of the relevant structures on the slide seats on both sides of the present invention; Figure 5Schematic diagram of related structures on the wire take-up roller of the present invention; Figure 6 Side view sectional view of related structures on the wire take-up roller of the present invention; Figure 7 Sectional view of related structures on the wire take-up roller of the present invention; Figure 8 Schematic diagram of the structure of the driving component of the present invention; Figure 9 Schematic diagram of the structure of the linkage component of the present invention.

[0019] Explanation of reference numerals in the drawings: 1. Base; 2. Electric guide rail; 3. Slide seat; 4. Variable-frequency motor; 5. Wire take-up roller; 6. Wire take-up reel; 7. Telescopic member; 8. Limit sleeve; 9. Slide post; 10. T-shaped slide bar; 11. Rotating rod; 12. Clamping block; 13. First spring; 14. Slideway; 15. Clamping seat; 16. Slip ring; 17. First limit slide bar; 18. Ring groove seat; 19. Rotating ring; 20. Second spring; 21. Support; 22. Second limit slide bar; 23. Third spring; 24. Slide frame; 25. T-shaped seat; 26. Third limit slide bar; 27. Slide plate; 28. First rotating plate; 29. First slide bar frame; 30. Tangent knife; 31. Arc angle plate; 32. Fourth spring; 33. Mounting seat; 34. Supporting seat; 35. Second slide bar frame; 36. Sleeve seat; 37. Push rod; 38. Second rotating plate; 39. Push plate; 40. Third slide bar frame; 41. Limit strip; 42. Limit groove. Detailed implementation manners

[0020] Next, the technical solutions in the embodiments of the present invention will be described clearly and completely in conjunction with the appended Figure 1 to the appended Figure 9 drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0021] Embodiment 1: As Figures 1-9 shown, the present invention discloses a wire take-up device for enameled wire production, including a base 1. Slide seats 3 are symmetrically and slidably sleeved at both ends of the base 1. A wire take-up roller 5 is rotatably connected to the mutually close sides of the two slide seats 3. Wire take-up reels 6 are sleeved on the outer sides of the mutually close ends of the two wire take-up rollers 5. Telescopic members 7 are installed on the inner walls of the mutually far ends of the two wire take-up rollers 5. The mutually close ends of the two telescopic members 7 are connected to a limit sleeve 8. A clamping assembly is arranged on the limit sleeve 8 and is used to clamp the wire take-up reel 6 so as to drive it to rotate when the wire take-up roller 5 rotates. A first slide bar frame 29 is installed on the base 1, and tangent knives 30 are symmetrically and slidably sleeved at both ends of the first slide bar frame 29; Among them, a transmission belt and a robotic arm can also be arranged above the wire-receiving rollers 5 on both sides. The transmission belt conveys the wire-receiving roller 6, and the robotic arm clamps the wire-receiving roller 6 conveyed by the transmission belt and delivers it between the wire-receiving rollers 5 on both sides, so as to facilitate the automatic delivery of the wire-receiving roller 6. The telescopic member 7 adopts existing electric cylinders, electric hydraulic cylinders, etc. A fourth spring 32 sleeved outside the first slide bar frame 29 is connected between the tangent knives 30 on both sides. A slide plate 27 is slidably connected to the base 1. Arc-shaped plates 31 that slidably abut against the tangent knives 30 on both sides are connected to both sides of the slide plate 27. A driving component is arranged on the base 1. The driving component is used to drive the slide plate 27 to drive the arc-shaped plates 31 to abut against the tangent knives 30 to cut the enameled wire. A supporting seat 34 for supporting the wire-receiving roller 6 is installed on the base 1. A linkage component is also arranged on the base 1. The linkage component is used to flip the supporting seat 34 when the slide plate 27 slides, so as to turn over and discharge the wire-receiving roller 6 therein.

[0022] When the tangent knives 30 on both sides are specifically used, one side can be provided with a cutting edge and the other side can be provided with a knife groove for accommodating the cutting edge, or both sides can be cutting edges. Specifically, those skilled in the art can select and use according to the actual production situation.

[0023] An installation seat 33 is installed on the base 1, and electric guide rails 2 are symmetrically installed on both sides of the installation seat 33. The sliding seats 3 on both sides are symmetrically and slidably sleeved outside the electric guide rails 2 on both sides. Variable-frequency motors 4 are installed on the sides of the sliding seats 3 on both sides close to each other. Each wire-receiving roller 5 is installed at the output end of the variable-frequency motor 4 on its respective side. The electric guide rail 2 adopts existing screw linear motors, linear roller guide rails, etc., and the sliding seat 3 is a corresponding sliding block slidably sleeved thereon.

[0024] Both ends of one side of the supporting seat 34 are rotatably installed on the upper end surface of the installation seat 33 through pins. The supporting seat 34 is located directly below the mutually close ends of the wire-receiving rollers 5 on both sides, that is, both sides of the end of the supporting seat 34 away from the tangent knife 30 are rotatably connected to the upper end surface of the installation seat 33 through pins, and the supporting seat 34 is located directly below the mutually close ends of the wire-receiving rollers 5 on both sides, which is convenient for directly receiving and accommodating the wire-receiving roller 6 when the wire-receiving roller 6 falls between the wire-receiving rollers 5 on both sides.

[0025] A T-shaped seat 25 is connected to the base 1, and a third limiting slide bar 26 is slidably sleeved through the T-shaped seat 25. The slide plate 27 is connected to the third limiting slide bar 26 on the side of the T-shaped seat 25 close to the wire-receiving roller 6, so that the slide plate 27 can slide more stably on the base 1.

[0026] Embodiment 2: As Figures 1-9As shown in the figure, the present invention discloses a wire winding device for enameled wire production. Compared with the first embodiment, the structure of the clamping assembly is disclosed in this embodiment.

[0027] The clamping assembly includes a sliding column 9, a T-shaped sliding rod 10, a rotating rod 11, and a clamping block 12. The sliding column 9 is slidably sleeved in the limiting sleeve 8, and a first spring 13 is connected between the sliding column 9 and the inner wall of the limiting sleeve 8. One end of the T-shaped sliding rod 10 is slidably sleeved in the limiting sleeve 8 and is connected to the sliding column 9, while the other end extends outside the limiting sleeve 8. The rotating rods 11 are arrayed and rotatably connected to the extended end of the T-shaped sliding rod 10 and one end of the limiting sleeve 8. Both ends of the clamping block 12 are rotatably connected to the rotating rods 11 on both sides.

[0028] When installing the winding roller 6, the winding roller 6 can be first delivered between the two winding rollers 5 on both sides. At this time, the two limiting sleeves 8 and the T-shaped sliding rods 10 are both inside the winding rollers 5 on both sides. Subsequently, the telescopic members 7 inside the two winding rollers 5 on both sides are synchronously controlled to extend, so as to push the two limiting sleeves 8 out of their respective winding rollers 5, and make the T-shaped sliding rods 10 at the mutually approaching ends of the two limiting sleeves 8 be able to abut against each other and compress the first spring 13, that is, the T-shaped sliding rod 10 can slide relative to the limiting sleeve 8 into it. During this process, each rotating rod 11 can be driven to rotate, and each clamping block 12 can be abutted and unfolded to abut against the inner wall of the winding roller 6, realizing the clamping of the winding roller 6, and can clamp the winding rollers 6 of different sizes and models within a certain range, with good versatility.

[0029] When replacing the winding roller 6, the telescopic members 7 inside the two winding rollers 5 on both sides are controlled to contract, so that the two limiting sleeves 8 move away from each other, and the T-shaped sliding rods 10 are also retracted into the winding rollers 5. At this time, the winding roller 6 that has completed winding will automatically fall onto the supporting seat 34 without support, and the cable pulled on the winding roller 6 will be guided into the space between the two cutting knives 30 on both sides.

[0030] Sliding grooves 14 are arrayed on the outer side of the winding roller 5. On the outer side surface of the limiting sleeve 8, clamping seats 15 are arrayed and slidably penetrate through the sliding grooves 14 and extend to the outside of the winding roller 5. A sliding ring 16 is sleeved on the extended end of the clamping seat 15. A plurality of first limiting sliding rods 17 are slidably sleeved through the sliding ring 16 in an array. On both sides of the winding roller 5, both ends of the first limiting sliding rods 17 that are close to each other are connected with ring groove seats 18. And a rotating ring 19 that abuts against both ends of the winding roller 6 is rotatably sleeved on the ring groove seat 18. A second spring 20 sleeved on the outer side of the first limiting sliding rod 17 is connected between the ring groove seat 18 and the sliding ring 16.

[0031] When the two limiting sleeves 8 are pushed closer to each other, so that the clamping blocks 12 are unfolded and abutted against the inner wall of the wire winding roller 6 for clamping, it can also drive the sliding ring 16 to slide, and synchronously drive each limiting slide bar one 17 slidably sleeved on the sliding ring 16 and the ring groove seat 18 and the rotating ring 19 connected to the limiting slide bar one 17 to approach the side of the wire winding roller 6. During the process, when the rotating ring 19 abuts against the side of the wire winding roller 6, it will push the limiting slide bar one 17 to slide relative to the sliding ring 16 and compress the second spring 20, so as to realize that during the process of clamping the inner wall of the wire winding roller 6, it can also abut against the side of the wire winding roller 6, so as to improve the stability of the wire winding roller 6 when it is driven by the wire winding roller 5 to rotate for wire winding. At the same time, the limiting slide bar one 17 can slide on the sliding ring 16, and can also abut against the sides of wire winding rollers 6 of different sizes and models within a certain range to be stable, with good versatility.

[0032] The outer side of the wire winding roller 5 is connected with a slide bar frame three 40 in an array. The sliding ring 16 is slidably sleeved on the outer sides of the slide bar frames three 40. The inner wall of the limiting sleeve 8 is connected with limiting strips 41 in an array. The outer sides of the sliding columns 9 are provided with limiting grooves 42 which are matched with the limiting strips 41 for clamping. The sliding sleeve of the sliding ring 16 and the slide bar frames three 40 can ensure the stability of the sliding ring 16 when it slides on the outer side of the wire winding roller 5. At the same time, the clamping of the limiting strips 41 and the limiting grooves 42 can ensure that while the sliding columns 9 slide in the limiting sleeves 8, the sliding columns 9 can also be prevented from rotating relative to the limiting sleeves 8 with respect to the T-shaped slide bars 10, so as to improve the stability of driving the wire winding roller 6 to rotate.

[0033] The tangent knife 30 is arranged on the front side of the wire winding roller 6. The arc angle plates 31 on both sides are arranged on the front side of the tangent knife 30 and are on the side where the two tangent knives 30 are far away from each other.

[0034] Embodiment Three: As Figures 1-9 shown, the present invention discloses a wire winding device for enameled wire production. Compared with Embodiment Two, the structure of the driving component is disclosed in this embodiment.

[0035] The driving component includes a support 21, a limiting slide bar two 22, a slide frame 24, and a rotating plate one 28. The supports 21 are connected to both sides of the base 1, and the two supports 21 are axially centered and collinear with the wire winding roller 5. The limiting slide bar two 22 slidably penetrates through the support 21, and a spring three 23 sleeved on the outer side of the limiting slide bar two 22 is connected between the limiting slide bar two 22 and the support 21. The slide frame 24 is connected to the mutually approaching ends of the two limiting slide bars two 22. The rotating plate one 28 is rotatably connected to the mutually approaching ends of the two slide frames 24, and the mutually approaching ends of the two rotating plates one 28 are respectively connected to both sides of the sliding plate 27.

[0036] It causes the two side sliding seats 3 to move away from each other, making the sliding seat 3 contact the second limiting sliding rod 22 and compressing the third spring 23. During this process, the second limiting sliding rod 22 will pull the two side sliding frames 24 away from each other and drive the first rotating plate 28 to rotate. Then, through the first rotating plate 28, it pulls the sliding plate 27 to slide towards the side close to the wire-receiving roller 5, drives the arc-angle plate 31 to contact and move away from the two side cutting knives 30, and pushes the two side cutting knives 30 closer to each other and compresses the fourth spring 32, thus realizing the cutting of the cable pulled on the wire-receiving roller 6 that has fallen onto the supporting seat 34, so as to facilitate winding the cable around the new wire-receiving roller 6 after changing the winding of the wire-receiving roller 6.

[0037] Embodiment 4: As Figures 1-9 shown, the present invention discloses a wire-receiving device for enameled wire production. Compared with Embodiment 3, the structure of the linkage assembly is disclosed in this embodiment.

[0038] The linkage assembly includes a second sliding rod frame 35, a socket 36, a push rod 37, a second rotating plate 38, and a push plate 39. There are two second sliding rod frames 35, which are installed on both sides of the base 1 and are on the side where the two side cutting knives 30 move away from each other. The socket 36 is slidably sleeved on the outside of the second sliding rod frame 35. The push rod 37 is connected to the socket 36. There is a second rotating plate 38 rotatably connected between the push rod 37 and the supporting seat 34. The push plate 39 is connected to the lower end of the sliding plate 27 and is in mating contact with the end of the push rod 37 away from the second rotating plate 38.

[0039] After the cable is cut by driving the arc-angle plate 31 to contact and cooperate with the cutting knife 30 through the sliding plate 27, the sliding plate 27 can be further driven to move backward, so that the push plate 39 can be pushed not to contact the push rod 37 during the cutting of the cable, but will contact the push rod 37 after cutting, driving the push rod 37 to slide backward and driving the second rotating plate 38 to rotate, enabling the supporting seat 34 to rotate around its rotational connection with the mounting seat 33, so as to turn over and unload the wire-receiving roller 6 that has fallen onto it, facilitating the support of the next wire-receiving roller 6 after changing the winding of the wire-receiving roller 6, and at the same time realizing automatic unloading.

[0040] Embodiment 5: As Figures 1-9 shown, the present invention discloses a wire-receiving roller for enameled wire production. Compared with Embodiment 4, the structure of the wire-receiving roller 6 is disclosed in this embodiment.

[0041] It includes a wire-receiving roller 6, and a groove body for cooperating with the clamping assembly for clamping is provided on the inner wall of the center of the wire-receiving roller 6.

[0042] In this way, when the clamping blocks 12 on each card-mounted component are lifted and unfolded, the clamping blocks 12 can be clamped with the grooves formed in the inner wall of the center of the wire take-up roller 6, thereby driving the wire take-up roller 6 to rotate stably, avoiding the wire take-up roller 6 from slipping relative to the wire take-up roller 5 during the process of being driven by the wire take-up roller 5, and affecting the stability during wire winding.

[0043] According to the disclosure and teachings of the above specification, those skilled in the art to which the present invention pertains can also make changes and modifications to the above embodiments. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present invention should also fall within the protection scope of the claims of the present invention. In addition, although some specific terms are used in this specification, these terms are only for convenience of description and do not constitute any limitation to the present invention.

Claims

1. A wire winding device for enameled wire production, comprising a base (1), two ends of the base (1) are symmetrically and slidably sleeved with sliding seats (3), a wire winding roller (5) is rotatably connected to one side of the two sliding seats (3) close to each other, and a wire winding reel (6) is sleeved on the outer sides of one ends of the two wire winding rollers (5) close to each other, characterized in that, On the inner walls at the mutually remote ends of the two wire take-up rollers (5), telescopic members (7) are installed. At the mutually approaching ends of the two telescopic members (7), a limiting sleeve (8) is connected. A clamping assembly is provided on the limiting sleeve (8), and the clamping assembly is used to clamp the wire take-up roll (6) so as to drive it to rotate when the wire take-up roller (5) rotates. A first slide bar bracket (29) is installed on the base (1), and two wire cutting knives (30) are symmetrically and slidably sleeved at the two ends of the first slide bar bracket (29). A fourth spring (32) sleeved outside the first slide bar bracket (29) is connected between the two wire cutting knives (30) on both sides. A slide plate (27) is slidably connected to the base (1). Arc angle plates (31) which are slidably in contact with the two wire cutting knives (30) are connected to both sides of the slide plate (27). A driving assembly is provided on the base (1), and the driving assembly is used to drive the slide plate (27) to drive the arc angle plates (31) to contact the wire cutting knives (30) so as to cut the enameled wire. A supporting seat (34) for supporting the wire take-up roll (6) is installed on the base (1). A linkage assembly is further provided on the base (1), and the linkage assembly is used to turn over the supporting seat (34) when the slide plate (27) slides so as to turn over and discharge the wire take-up roll (6) therein.

2. The take-up device for enameled wire production according to claim 1, wherein An installation seat (33) is installed on the base (1), and electric guide rails (2) are symmetrically installed on both sides of the installation seat (33). Two slide seats (3) are respectively symmetrically and slidably sleeved outside the two electric guide rails (2). Variable frequency motors (4) are installed on the mutually approaching sides of the two slide seats (3). Each wire take-up roller (5) is installed at the output end of the variable frequency motor (4) on its respective side. The two ends of one side of the supporting seat (34) are rotatably installed on the upper end surface of the installation seat (33) through pin shafts, and the supporting seat (34) is located directly below the mutually approaching ends of the two wire take-up rollers (5).

3. The wire take-up device for enameled wire production according to claim 1, characterized in that, A T-shaped seat (25) is connected to the base (1), and a third limiting slide bar (26) is slidably sleeved through the T-shaped seat (25). The slide plate (27) is connected to the third limiting slide bar (26) on the side of the T-shaped seat (25) close to the wire take-up roll (6).

4. The wire take-up device for enameled wire production according to claim 1, characterized in that, The clamping assembly includes a slide column (9), a T-shaped slide bar (10), a rotating rod (11), and a clamping block (12). The slide column (9) is slidably sleeved in the limiting sleeve (8), and a first spring (13) is connected between the slide column (9) and the inner wall of the limiting sleeve (8). One end of the T-shaped slide bar (10) is slidably sleeved in the limiting sleeve (8) and is connected to the slide column (9), while the other end extends outside the limiting sleeve (8). The rotating rods (11) are arrayed and rotatably connected to the extending end of the T-shaped slide bar (10) and one end of the limiting sleeve (8). The two ends of the clamping block (12) are respectively rotatably connected to the two rotating rods (11).

5. The take-up device for enameled wire production according to claim 4, characterized in that, The outer side of the wire take-up roller (5) is provided with a chute (14) in an array. The outer side of the limit sleeve (8) is connected with a clamping seat (15) which slides through the chute (14) and extends to the outside of the wire take-up roller (5) in an array. A slip ring (16) is sleeved on the extended end of the clamping seat (15). A plurality of first limit slide rods (17) are slidably sleeved through the slip ring (16) in an array. One end of the first limit slide rods (17) on both sides of the wire take-up roller (5) close to each other is connected with an annular groove seat (18). A rotating ring (19) which is in fit and contact with both ends of the wire take-up roller (6) is rotatably sleeved on the annular groove seat (18). A second spring (20) sleeved on the outside of the first limit slide rod (17) is connected between the annular groove seat (18) and the slip ring (16).

6. The take-up device for enameled wire production according to claim 5, characterized in that, The outer side of the wire take-up roller (5) is connected with a third slide rod frame (40) in an array. The slip ring (16) is slidably sleeved on the outside of each third slide rod frame (40). The inner wall of the limit sleeve (8) is connected with limit strips (41) in an array. The outside of the slide post (9) is provided with limit grooves (42) which are in fit and sleeved with the limit strips (41).

7. The wire take-up device for enameled wire production according to claim 6, characterized in that, The tangent cutter (30) is arranged on the front side of the wire take-up roller (6). The two arc angle plates (31) are arranged on the front side of the tangent cutter (30) and are on the mutually far-away sides of the two tangent cutters (30).

8. The take-up device for enameled wire production according to claim 1, wherein, The driving component includes a support (21), a second limit slide rod (22), a slide frame (24), and a first rotating plate (28). The supports (21) are connected to both sides of the base (1), and the two supports (21) and the wire take-up roller (5) are axially centered and collinear. The second limit slide rod (22) slides through the support (21), and a third spring (23) sleeved on the outside of the second limit slide rod (22) is connected between the second limit slide rod (22) and the support (21). The slide frame (24) is connected to the mutually close ends of the two second limit slide rods (22). The first rotating plate (28) is rotatably connected to the mutually close ends of the two slide frames (24), and one end of the two first rotating plates (28) close to each other is respectively connected to both sides of the slide plate (27).

9. The wire take-up device for enameled wire production according to claim 1, characterized in that, The linkage component includes a second slide rod frame (35), a sleeve seat (36), a push rod (37), a second rotating plate (38), and a push plate (39). Two second slide rod frames (35) are provided and are installed on both sides of the base (1) and are on the mutually far-away sides of the two tangent cutters (30). The sleeve seat (36) is slidably sleeved on the outside of the second slide rod frame (35). The push rod (37) is connected to the sleeve seat (36). A second rotating plate (38) is rotatably connected between the push rod (37) and the supporting seat (34). The push plate (39) is connected to the lower end of the slide plate (27) and is in fit and contact with the end of the push rod (37) far away from the second rotating plate (38).

10. A take-up reel for enameled wire production, based on the take-up device for enameled wire production according to any one of claims 1-9, characterized in that, It includes a wire take-up roller (6). A groove body which is in fit and clamped with the clamping component is opened in the central inner wall of the wire take-up roller (6).

Citation Information

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