Winding device for electric wire production
The design of the limited blanking component and the coil diameter adjustment component solves the problems of cumbersome blanking and coil diameter error in traditional winding devices, and realizes efficient, stable and high-quality winding operations in the wire production process.
Patent Information
- Application Number
- CN202511003628.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-21
- Publication Date
- 2025-09-16
AI Technical Summary
Traditional winding devices are cumbersome to operate during the blanking process and are prone to errors in the diameter of the formed coils, affecting the quality and efficiency of the finished product.
The limited feeding component and the coil diameter adjustment component are used to ensure smooth coil feeding and consistent coil diameter through automatic limiting and precise adjustment of coil diameter. Combined with the auxiliary bundling component, stable bundling is achieved.
It simplifies the cutting steps, reduces the circle diameter error, improves the finished product yield and operating efficiency, enhances the versatility and flexibility of the equipment, and ensures the stability and efficiency of the strapping process.
Smart Images

Figure CN120646344A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of electric wire winding equipment, and in particular relates to a winding device for electric wire production. Background Art
[0002] Wires refer to conductors that transmit electrical energy, and are usually divided into bare wires, electromagnetic wires, and insulated wires. In the production process of wires and cables, the winding device is one of the key equipment, and its performance directly affects the quality and production efficiency of the finished wires.
[0003] The document with publication number CN119079686A discloses a cable winding device and a working method thereof, including a winding module and a wire feeding module, the winding module includes a turntable structure and a bundling assembly, the bundling assembly includes a bundling wire feeder and an arc-shaped winding arm, the bundling wire feeder and the arc-shaped winding arm are respectively arranged on both sides of the turntable structure, a wire feeding channel that can pass through the opening is installed below the bundling wire feeder, a contact piece is provided at one end of the wire feeding channel, a rotating clamping cylinder is provided between the bundling wire feeder and the wire feeding channel, two clamping blocks are installed on the rotating clamping cylinder, and relative clamping blocks are respectively installed on the two clamping blocks. The invention uses a turntable structure and a bundling assembly to realize the automated operation of cable winding and bundling at the same work station, which significantly reduces the equipment footprint and improves production efficiency. At the same time, the automated operation of cable winding and bundling also ensures the quality and consistency of the cable rolls, and improves the market competitiveness of the product. However, in actual use, the traditional winding device is more cumbersome for the blanking operation of the formed coils, and the repeated adjustment of the winding device during the blanking process will also cause errors in the circle diameter of the formed coils. Therefore, improvement is needed. Summary of the Invention
[0004] The purpose of the present invention is to propose a winding device for wire production in order to solve the problem that the traditional winding device is relatively cumbersome in the blanking operation of the formed coil, and the winding device is repeatedly adjusted during the blanking process, which will also cause errors in the coil diameter of the formed coil.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions: A winding device for electric wire production, comprising a driving device, one side of which is rotatably connected to a rotating disc, one side of which is provided with an auxiliary bundling assembly, one side of which is connected to a fixed cylinder, the outer circumference of which is provided with a position-limiting blanking assembly for facilitating coil blanking, and one side of which is provided with a coil diameter adjustment assembly; The limit blanking assembly includes a plurality of support plates distributed in a circular array, a plurality of first telescopic rods are connected to one side of the support plate, the other ends of the plurality of first telescopic rods are connected to an outer support plate, a pushing wheel is connected to the bottom center position of the outer support plate, a pushing block for pushing the pushing wheel to move is provided on one side of the support plate, a connecting rod is hinged on one side of the pushing block, and a limit adjustment plate is hinged on the other end of the connecting rod, one side of the limit adjustment plate is hinged to one side of the support plate, and the outer support plate moves to one side during the movement of the pushing block. At the same time, the pushing block drives the limit adjustment plate to rotate horizontally through the connecting rod to release the limit on the coil.
[0006] As a further description of the above technical solution: The top of the support plate is rotatably connected to a movable screw, and the outer surface of the movable screw is transmission-connected to a first screw seat, one side of the first screw seat can be in contact with the pushing wheel, one side of the first screw seat is in contact with one side of the support plate, and the side of the first screw seat away from the support plate is connected to one side of the pushing block, and a tension spring is sleeved on the outer surface of the first telescopic rod, and the two ends of the tension spring are respectively connected to one side of the support plate and one side of the outer support plate.
[0007] As a further description of the above technical solution: The cam is connected to the drive gear of the driving member, and the cam is meshed with the transmission gear of the driving member. The cam is connected to the second end of the driving member, and the cam is meshed with the transmission gear of the driving member. The cam is connected to the second end of the driving member, and the cam is meshed with the transmission gear of the driving member. The cam is connected to the second end of the driving member, and the cam is meshed with the transmission gear of the driving member. The cam is connected to the second end of the driving member.
[0008] As a further description of the above technical solution: The ring diameter adjustment assembly includes a plurality of second screw seats distributed in a circular array, one side of the second screw seat is connected to one side of the support plate, a rotating groove is provided on one side of the rotating disc, the second screw seat is slidably connected in the rotating groove, an adjusting screw is rotatably connected in the rotating groove, the adjusting screw is transmission-connected to the second screw seat, a plurality of fixed square tubes distributed in a circular array are connected to the outer surface of the fixed cylinder, a movable column is slidably connected in the fixed square tube, one side of the movable column is connected to one side of the support plate, a plurality of triangular blocks distributed in a linear array are connected on one side of the movable column, and a limit block for limiting the triangular block is provided on one side of the movable column.
[0009] As a further description of the above technical solution: The outer surface of the adjusting screw is connected to a driving gear, and one side of multiple driving gears is meshed and connected to the same driving gear ring. One side of the rotating disc is rotatably connected to a rotating ring, and the interior of the rotating ring is connected to the driving gear ring. One side of the rotating ring is provided with multiple limiting holes distributed in a circular array, and the outer peripheral side of the rotating disc is connected to two symmetrically arranged threaded seats, and the threaded seats are internally threaded with limiting bolts, and the limiting bolts can be inserted and connected with the limiting holes.
[0010] As a further description of the above technical solution: The sliding blocks are connected to both sides of the inner wall of the fixed square tube, and the sliding blocks are provided with sliding grooves on both sides of the movable column, and the sliding blocks are slidably connected to the sliding grooves, and the side of the limit block away from the triangular block is connected to the fixing frame, and a rotating hole is provided on one side of the fixing frame, and an adjusting bolt is sleeved in the rotating hole, and one side of the adjusting bolt is connected to the limiting circular plate, and a threaded hole is provided on one side of the fixed square tube, and the adjusting bolt is threadedly connected to the threaded hole, and a symmetrical fixed sliding rod is connected to the inside of the fixed square tube, and the fixed sliding rod is slidably connected to the pushing block. The outer surface of the fixed sliding rod is sleeved with a second spring, and the two sides of the second spring are respectively connected to one side of the pushing block and one side of the inner wall of the fixed square tube.
[0011] As a further description of the above technical solution: The auxiliary strapping assembly includes a plurality of winding wheels distributed in a circular array, a plurality of through slots distributed in a circular array are opened on one side of the rotating disc, the winding wheels are rotatably connected in the through slots, a plurality of connecting frames distributed in a circular array are connected to one side of the rotating disc, a plurality of guide wheels opposite to each other are rotatably connected to the connecting frames and the through slots, a driving roller is rotatably connected to one end of the connecting frame, and a movable extrusion wheel is provided on one side of the driving roller.
[0012] As a further description of the above technical solution: One side of the connecting frame is connected to a connecting transverse plate, and two symmetrically arranged moving rods are slidably connected to the connecting transverse plate. One side of the extrusion wheel is connected to one end of the moving rod, and the ends of the two moving rods away from the extrusion wheel are connected to the same top plate. A first spring is sleeved on the outer surface of the moving rod, and the two ends of the first spring are respectively connected to one side of the connecting transverse plate and one side of the extrusion wheel.
[0013] As a further description of the above technical solution: A driving member is fixedly installed on one side of the connecting frame, and connecting shafts are connected to both sides of the driving roller. The connecting shafts rotate with the connecting frame, and one end of the connecting shaft extends to the other side of the connecting frame and is connected to one end of the output shaft of the driving member.
[0014] As a further description of the above technical solution: A control device is provided on the top of the driving device, and a wiring device is provided on one side of the driving device.
[0015] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: The present invention provides a limiting blanking component, in which the limiting adjustment plate and the outer support plate automatically form a right-angle limiting structure during the winding process, which laterally constrains the wire and prevents interlayer dislocation or looseness during winding, ensuring that the coil is neat and tight. When the hand crank is shaken, the transmission between multiple components drives the pushing block to move smoothly, so that the outer support plate automatically contracts under the action of the tension spring, and the limit on the coil is quickly released. At the same time, the limiting adjustment plate synchronously rotates to a horizontal position and is flush with the support plate, forming an unobstructed blanking channel, so that the operator can easily take out the formed coil, simplifying the disassembly and assembly steps of traditional blanking and greatly improving the blanking efficiency. At the same time, during the blanking process, the position of the support plate remains unchanged, and the diameter of the support coil is only adjusted by the extension and contraction of the outer support plate. After the outer support plate is reset, the diameter of the coil can be ensured to be consistent each time it is wound, avoiding the diameter error of the coil caused by the overall adjustment of the traditional mechanism, thereby reducing the size deviation of the finished coil and improving the yield rate of the finished product.
[0016] 2. In the present invention, by setting a ring diameter adjustment component, the coordinated operation of multiple moving screws, the second screw seat, the support plate and the outer support plate is realized through the cooperation of the rotating ring, the driving gear ring and the driving gear, and the high efficiency and synchronization of power transmission are achieved, which ensures the precise and synchronous rotation of multiple moving screws, thereby driving the coordinated movement of the second screw seat, the support plate and the outer support plate, making the winding ring diameter adjustment process of the wound wire more stable and accurate, which not only improves the convenience of operation, but also can adapt to the winding requirements of wires of different specifications, and enhances the versatility and flexibility of the equipment. At the same time, when the support plate moves, it drives the moving column and the triangular block to work in conjunction, and the limit block resets under the action of the second spring and the fixed slide rod and forms a one-way limit for the triangular block, thereby providing rigid support for one side of the support plate, significantly enhancing the deformation resistance and bearing strength of the support plate and the outer support plate, making the wire winding process more stable, and effectively preventing the problem of loose winding or deformation caused by uneven force, thereby improving the winding quality and work efficiency.
[0017] 3. In the present invention, by setting an auxiliary strapping component, through the precise cooperation of the driving roller and the extrusion wheel, a stable and reliable clamping force is formed under the elastic pressure of the first spring, which can not only automatically realize the limited clamping of the strapping belt, but also automatically adjust the clamping force according to the different thicknesses of the strapping belt, ensuring that the strapping belt always remains in a tensioned state during the winding process without slipping or falling off, significantly improving the stability of operation and work efficiency. The guide wheels are arranged symmetrically in pairs, which can accurately guide the direction of the strapping belt, effectively preventing the strapping belt from deflecting, twisting or winding chaos during transportation, ensuring that the strapping belt is always transported smoothly along the predetermined path, creating good conditions for subsequent strapping operations, and the strapping belt is automatically output through the cooperation of the driving roller and the extrusion wheel, which simplifies the manual operation steps, reduces labor intensity and improves processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the overall three-dimensional structure of the present invention; Figure 2 A schematic diagram of the three-dimensional structure of the present invention from another perspective; Figure 3 It is a schematic diagram of a partial three-dimensional structure of the present invention; Figure 4 For the present invention Figure 3 A schematic diagram of the enlarged structure of part A; Figure 5 It is a schematic diagram of a partially three-dimensional split structure of the present invention; Figure 6 It is a partial three-dimensional cross-sectional structural schematic diagram of the present invention; Figure 7 It is a schematic diagram of a partial three-dimensional structure of the position limiting blanking component in the present invention; Figure 8 For the present invention Figure 7 The enlarged structural diagram of part B in the middle; Figure 9 Schematic diagram of the three-dimensional cross-sectional structure of the ring diameter adjustment component of the present invention; Figure 10 For the present invention Figure 9 Schematic diagram of the enlarged structure of part C in the middle.
[0019] Legend: 1. Control device; 2. Driving device; 3. Wire arrangement device; 4. Rotating disc; 5. Position limiting and unloading assembly; 501. Position limiting adjustment plate; 502. Hand crank; 503. Connecting rod; 504. Pushing block; 505. First screw seat; 506. Pushing wheel; 507. Outer support plate; 508. Support plate; 509. Rotating sleeve; 510. Transmission gear; 511. Rotating gear disc; 512. Moving screw; 513. First bevel gear; 514. Second bevel gear; 515. Rotating rod; 516. First telescopic rod; 517. Tension spring; 6. Auxiliary strapping assembly; 601. Winding wheel; 602. Guide wheel; 603. Connecting cross plate; 604, connecting frame; 605, driving part; 606, driving roller; 607, extrusion wheel; 608, moving rod; 609, first spring; 7, ring diameter adjustment assembly; 701, rotating ring; 702, limiting hole; 703, adjusting screw; 704, rotating groove; 705, limiting bolt; 706, driving gear; 707, driving gear ring; 708, second screw seat; 709, fixed square tube; 710, moving column; 711, triangular block; 712, slider; 713, limiting block; 714, fixed slide rod; 715, second spring; 716, limiting circular plate; 717, fixing frame; 718, adjusting bolt; 8, fixed cylinder. DETAILED DESCRIPTION
[0020] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments 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 any creative efforts shall fall within the scope of protection of the present invention.
[0021] See also Figures 1-10 , the present invention provides a technical solution: A winding device for electric wire production includes a driving device 2, a rotating disc 4 is rotatably connected to one side of the driving device 2, an auxiliary bundling component 6 is provided on one side of the rotating disc 4, a fixed cylinder 8 is connected to one side of the rotating disc 4, a limiting blanking component 5 is provided on the outer periphery of the fixed cylinder 8 for facilitating coil blanking, a coil diameter adjustment component 7 is provided on one side of the limiting blanking component 5, a control device 1 is provided on the top of the driving device 2, and a wire arrangement device 3 is provided on one side of the driving device 2.
[0022] The position limiting blanking assembly 5 includes a plurality of support plates 508 distributed in a circular array, one side of the support plate 508 is connected to a plurality of first telescopic rods 516, the other end of the plurality of first telescopic rods 516 is connected to an outer support plate 507, the bottom center of the outer support plate 507 is connected to a pushing wheel 506, and one side of the support plate 508 is provided with a pushing block 504 for pushing the pushing wheel 506 to move, one side of the pushing block 504 is hinged to a connecting rod 503, the other end of the connecting rod 503 is hinged to a position limiting adjustment plate 501, and one side of the position limiting adjustment plate 501 is hinged to one side of the support plate 508. Then, during the movement of the pushing block 504, the outer support plate 507 moves to one side. At the same time, the pushing block 504 drives the limit adjustment plate 501 to rotate horizontally through the connecting rod 503, releasing the limit of the coil, and the top of the support plate 508 is rotatably connected to the moving screw 512, and the outer surface of the moving screw 512 is transmission-connected to the first screw seat 505. One side of the first screw seat 505 can fit with the pushing wheel 506, and one side of the first screw seat 505 fits with one side of the support plate 508. The side of the first screw seat 505 away from the support plate 508 fits with the pushing wheel 506. The first telescopic rod 516 is connected to one side of the movable block 504, and a tension spring 517 is provided on the outer surface of the first telescopic rod 516. The two ends of the tension spring 517 are respectively connected to one side of the support plate 508 and one side of the outer support plate 507. One end of the movable screw 512 is connected to the first bevel gear 513, and one side of the first bevel gear 513 is meshed with the second bevel gear 514. The bottom of the second bevel gear 514 is connected to the rotating shaft, and one end of the rotating shaft extends to the other side of the support plate 508 and is connected to the rotating rod 515. The outer surface of the rotating rod 515 is slidably connected to the rotating sleeve 509, and the inner wall of the rotating sleeve 509 is connected to the rotating The cross-sectional shape of the movable rod 515 is a regular hexagon. One end of the rotating sleeve 509 extends to the interior of the fixed cylinder 8 and is rotatably connected to the fixed cylinder 8. One end of the rotating sleeve 509 located inside the fixed cylinder 8 is connected to a transmission gear 510. The interior of the fixed cylinder 8 is rotatably connected to a rotating gear plate 511 through a rotating shaft. The rotating gear plate 511 is meshed with the transmission gear 510. The outer surface of the rotating shaft is rotatably connected to a mounting rod. The mounting rod is fixedly connected to the interior of the fixed cylinder 8. One end of the rotating shaft extends to the outside of the fixed cylinder 8 and is connected to a hand crank 502.
[0023] The specific implementation method is as follows: by setting the limiting blanking component 5, during the winding process, the limiting adjustment plate 501 and the outer support plate 507 automatically form a right-angle limiting structure to laterally constrain the wire, prevent interlayer dislocation or looseness during winding, and ensure that the coil is neat and tight. When the hand crank 502 is shaken, the transmission between multiple components drives the push block 504 to move smoothly, so that the outer support plate 507 automatically contracts under the action of the tension spring 517, quickly releasing the limit on the coil. At the same time, the limiting adjustment plate 501 rotates synchronously to the horizontal The position of the support plate 508 is flush with the support plate 508, forming an unobstructed unloading channel. The operator can easily take out the formed coil, which simplifies the disassembly and assembly steps of traditional unloading and greatly improves the efficiency of unloading. At the same time, during the unloading process, the position of the support plate 508 remains unchanged, and the support ring diameter is only adjusted by the extension and contraction of the outer support plate 507. After the outer support plate 507 is reset, it can ensure that the ring diameter of each winding is consistent, avoiding the ring diameter error caused by the overall adjustment of the traditional mechanism, thereby reducing the size deviation of the finished coil and improving the yield rate of the finished product.
[0024] The ring diameter adjustment component 7 includes a plurality of second screw seats 708 distributed in a circular array. One side of the second screw seat 708 is connected to one side of the support plate 508. A rotating groove 704 is provided on one side of the rotating disc 4. The second screw seat 708 is slidably connected to the rotating groove 704. An adjusting screw 703 is rotatably connected in the rotating groove 704. The adjusting screw 703 is transmission-connected to the second screw seat 708. The outer surface of the fixed cylinder 8 is connected to a plurality of fixed square tubes 709 distributed in a circular array. A movable screw 703 is slidably connected in the fixed square tube 709. The movable column 710 has one side connected to the support plate 508, and one side of the movable column 710 is connected to a plurality of triangular blocks 711 distributed in a linear array. A limit block 713 for limiting the triangular block 711 is provided on one side of the movable column 710. The outer surface of the adjusting screw 703 is connected to the driving gear 706. One side of the plurality of driving gears 706 is meshed and connected to the same driving gear ring 707. One side of the rotating disk 4 is rotatably connected to the rotating ring 701. The interior of the rotating ring 701 is connected to the driving gear ring 707. A plurality of limiting holes 702 distributed in a circular array are provided on one side of the dynamic ring 701. Two symmetrically arranged threaded seats are connected to the outer circumference of the rotating disk 4. The threaded seats are internally threaded with limiting bolts 705. The limiting bolts 705 can be inserted and connected with the limiting holes 702. Sliders 712 are connected to the inner walls of the fixed square tube 709 on both sides. Slide grooves are provided on both sides of the movable column 710. The slides 712 are slidably connected in the slide grooves. The side of the limiting block 713 away from the triangular block 711 is connected to a fixing frame 717. One side of the fixing frame 717 is opened. A rotating hole is provided, and an adjusting bolt 718 is sleeved in the rotating hole. One side of the adjusting bolt 718 is connected to a limiting circular plate 716. A threaded hole is provided on one side of the fixed square tube 709, and the adjusting bolt 718 is threadedly connected to the threaded hole. A symmetrically arranged fixed slide rod 714 is connected to the inside of the fixed square tube 709. The fixed slide rod 714 is slidably connected to the push block 504. A second spring 715 is sleeved on the outer surface of the fixed slide rod 714. The two sides of the second spring 715 are respectively connected to one side of the push block 504 and one side of the inner wall of the fixed square tube 709.
[0025] The specific implementation method is as follows: by setting the ring diameter adjustment component 7, through the cooperation of the rotating ring 701, the driving gear ring 707 and the driving gear 706, the coordinated operation of multiple moving screws 512, the second screw seat 708, the support plate 508 and the outer support plate 507 is realized, ensuring the precise synchronous rotation of multiple moving screws 512, thereby driving the coordinated movement of the second screw seat 708, the support plate 508 and the outer support plate 507, making the winding diameter adjustment process of the wound wire more stable and accurate, not only improving the convenience of operation, but also adapting to the winding requirements of wires of different specifications, enhancing the versatility and flexibility of the device, and at the same time, the support plate 508 moves When the lever 714 is in the unlocked position, the movable column 710 and the triangular block 711 are driven to move in a linkage manner. The limit block 713 is reset under the action of the second spring 715 and the fixed slide bar 714 and forms a one-way limit for the triangular block 711, thereby providing rigid support for one side of the support plate 508, significantly enhancing the deformation resistance and bearing strength of the support plate 508 and the outer support plate 507, making the wire winding process more stable, effectively preventing the winding from being loose or deformed due to uneven force, and improving the winding quality and work efficiency. The insertion connection between the limit bolt 705 and the limit hole 702 effectively prevents the rotating ring 701 from rotating, ensuring the stability of the ring diameter after adjustment, and avoiding the change of the ring diameter due to accidental loosening.
[0026] The auxiliary strapping assembly 6 includes a plurality of winding wheels 601 distributed in a circular array, a plurality of through slots distributed in a circular array are opened on one side of the rotating disc 4, the winding wheels 601 are rotatably connected in the through slots, a plurality of connecting frames 604 distributed in a circular array are connected on one side of the rotating disc 4, the connecting frames 604 and the through slots are rotatably connected with a plurality of guide wheels 602 opposite to each other, one end of the connecting frame 604 is rotatably connected to a driving roller 606, a movable squeezing wheel 607 is provided on one side of the driving roller 606, a connecting cross plate 603 is connected on one side of the connecting cross plate 603, and a connecting cross plate 603 is slidably connected to the connecting cross plate 603. Two symmetrically arranged moving rods 608 are connected to one end of the moving rod 608 on one side of the extrusion wheel 607. The ends of the two moving rods 608 away from the extrusion wheel 607 are connected to the same top plate. A first spring 609 is sleeved on the outer surface of the moving rod 608. The two ends of the first spring 609 are respectively connected to one side of the connecting cross plate 603 and one side of the extrusion wheel 607. A driving member 605 is fixedly installed on one side of the connecting frame 604. Connecting shafts are connected to both sides of the driving roller 606. The connecting shafts rotate with the connecting frame 604, and one end of the connecting shaft extends to the other side of the connecting frame 604 and is connected to one end of the output shaft of the driving member 605.
[0027] The specific implementation method is as follows: by setting an auxiliary strapping component 6, through the precise cooperation of the driving roller 606 and the extrusion wheel 607, a stable and reliable clamping force is formed under the elastic pressure of the first spring 609, which can not only automatically realize the limited clamping of the strapping belt, but also automatically adjust the clamping force according to the different thicknesses of the strapping belt, ensuring that the strapping belt always remains in a tensioned state during the winding process without slipping or falling off, significantly improving the stability of the operation and work efficiency. The guide wheels 602 are arranged symmetrically in pairs, which can accurately guide the direction of the strapping belt, effectively preventing the strapping belt from deflecting, twisting or winding chaos during transportation, ensuring that the strapping belt is always transported smoothly along the predetermined path, creating good conditions for subsequent strapping operations, and the strapping belt is automatically output through the cooperation of the driving roller 606 and the extrusion wheel 607, which simplifies the manual operation steps, reduces labor intensity, and improves processing efficiency.
[0028] Working principle: When in use, the staff first adjusts the circle diameter formed by the multiple support plates 508 according to the requirements of the winding circle, and the staff rotates the rotating ring 701, and the rotating ring 701 drives the driving gear ring 707 to rotate, and the driving gear ring 707 drives the multiple driving gears 706 to rotate, and the multiple driving gears 706 drive the multiple moving screws 512 to rotate, and the multiple moving screws 512 drive the multiple second screw seats 708 to move synchronously, and the second screw seat 708 drives the support plate 508 and the outer support plate 507 to move, thereby changing the winding circle diameter of the reeled wire. Afterwards, the staff tightens the limit bolt 705, and the limit The bolt 705 is inserted and connected with the limiting hole 702 to prevent the rotating ring 701 from rotating, and during the movement of the support plate 508, the support plate 508 can drive the movable column 710 to move in the fixed square tube 709, the movable column 710 drives the triangular block 711 to move, and the triangular block 711 drives the limiting block 713 to move, and then the limiting block 713 is reset and unidirectionally limited to the triangular block 711 under the cooperation of the second spring 715 and the fixed slide rod 714, thereby providing rigid support to one side of the support plate 508, thereby improving the supporting effect of the support plate 508 and the outer support plate 507 on the winding of the wire.
[0029] After the adjustment of the circle diameter is completed, the staff winds the strapping tape on the winding wheel 601 and passes the strapping tape between the two opposite guide wheels 602, and passes one end of the strapping tape through the driving roller 606 and the squeezing wheel 607. At this time, the squeezing wheel 607 cooperates with the driving roller 606 under the drive of the first spring 609 to limit and clamp the strapping tape. After that, the staff passes the processed wire through the wire arrangement device 3 and winds it with the winding mechanism formed by multiple outer plates. The driving device 2 is started, and the driving device 2 drives the rotating disk 4, the fixed cylinder 8, the support plate 508 and the outer support plate 507 to rotate, thereby realizing the winding and winding of the wire. After the winding is completed, the staff starts the driving member 605, and the driving member 605 drives the driving roller 606 to rotate. The driving roller 606 cooperates with the squeezing wheel 607 to drive the strapping tape to move out of the wire. The staff grabs one end of the strapping tape to strap the completed coil. After strapping is completed, the staff cuts the strapping tape.
[0030] After the bundling of the coils is completed, the staff shakes the hand crank 502, the hand crank 502 drives the rotating shaft to rotate, the rotating shaft drives the rotating gear plate 511, the rotating gear plate 511 drives the transmission gear 510 to rotate, the transmission gear 510 drives the rotating sleeve 509 to rotate, the rotating sleeve 509 drives the rotating rod 515 to rotate, the rotating rod 515 drives the second bevel gear 514 to rotate, the second bevel gear 514 drives the first bevel gear 513 to rotate, the first bevel gear 513 drives the moving screw 512 to rotate, and the moving screw 512 drives the first bevel gear 513 to rotate. The lever seat 505 moves, and the first screw seat 505 drives the pushing block 504 to move, so that the pushing block 504 gradually separates from the pushing wheel 506. At this time, the first telescopic rod 516 and the tension spring 517 drive the outer support plate 507 to shrink toward the fixed cylinder 8, so that the outer support plate 507 no longer provides limiting support for the coil. At the same time, the movement of the pushing block 504 drives the limiting adjustment plate 501 to rotate horizontally through the connecting rod 503, and makes the limiting adjustment plate 501 finally remain parallel to the support plate 508, thereby facilitating the unloading of the formed coil.
[0031] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A winding device for electric wire production, comprising a driving device (2), characterized in that: One side of the driving device (2) is rotatably connected to a rotating disc (4), one side of the rotating disc (4) is provided with an auxiliary bundling component (6), one side of the rotating disc (4) is connected to a fixed cylinder (8), the outer circumference of the fixed cylinder (8) is provided with a limiting blanking component (5) for facilitating coil blanking, and one side of the limiting blanking component (5) is provided with a coil diameter adjustment component (7); The position-limiting blanking assembly (5) comprises a plurality of support plates (508) distributed in a circular array, one side of the support plate (508) is connected to a plurality of first telescopic rods (516), the other ends of the plurality of first telescopic rods (516) are connected to an outer support plate (507), the bottom center of the outer support plate (507) is connected to a driving wheel (506), one side of the support plate (508) is provided with a pushing block (504) for pushing the driving wheel (506) to move, one side of the pushing block (504) is hinged to a connecting rod (503), the other end of the connecting rod (503) is hinged to a position-limiting adjustment plate (501), one side of the position-limiting adjustment plate (501) is hinged to one side of the support plate (508), and during the movement of the pushing block (504), the outer support plate (507) is moved to one side, and at the same time, the pushing block (504) drives the position-limiting adjustment plate (501) to rotate to the horizontal side through the connecting rod (503), thereby releasing the position limit on the coil.
2. A winding device for electric wire production according to claim 1, characterized in that: The top of the support plate (508) is rotatably connected to a movable screw (512), and the outer surface of the movable screw (512) is transmission-connected to a first screw seat (505), one side of the first screw seat (505) can be fitted with a push wheel (506), one side of the first screw seat (505) is fitted with a side of the support plate (508), and the side of the first screw seat (505) away from the support plate (508) is connected to a side of the push block (504), and a tension spring (517) is sleeved on the outer surface of the first telescopic rod (516), and the two ends of the tension spring (517) are respectively connected to one side of the support plate (508) and one side of the outer support plate (507).
3. A winding device for electric wire production according to claim 2, characterized in that: One end of the movable lead screw (512) is connected to a first bevel gear (513), one side of the first bevel gear (513) is meshedly connected to a second bevel gear (514), the bottom of the second bevel gear (514) is connected to a rotating shaft, one end of the rotating shaft extends to the other side of the support plate (508) and is connected to a rotating rod (515), the outer surface of the rotating rod (515) is slidably connected to a rotating sleeve (509), the inner wall of the rotating sleeve (509) and the rotating rod (515) are both regular hexagonal in cross-section, and one end of the rotating sleeve (509) is connected to a rotating rod (515). The rotating sleeve (509) extends into the interior of the fixed cylinder (8) and is rotatably connected to the fixed cylinder (8). One end of the rotating sleeve (509) located inside the fixed cylinder (8) is connected to a transmission gear (510). The interior of the fixed cylinder (8) is rotatably connected to a rotating toothed disc (511) via a rotating shaft. The rotating toothed disc (511) is meshed with the transmission gear (510). The outer surface of the rotating shaft is rotatably connected to a mounting rod. The mounting rod is fixedly connected to the interior of the fixed cylinder (8). One end of the rotating shaft extends to the exterior of the fixed cylinder (8) and is connected to a hand crank (502).
4. A winding device for electric wire production according to claim 1, characterized in that: The ring diameter adjustment assembly (7) includes a plurality of second screw seats (708) distributed in a circumferential array, one side of the second screw seat (708) is connected to one side of the support plate (508), one side of the rotating disc (4) is provided with a rotating groove (704), the second screw seat (708) is slidably connected in the rotating groove (704), an adjusting screw (703) is rotatably connected in the rotating groove (704), the adjusting screw (703) is transmission-connected to the second screw seat (708), the outer surface of the fixed cylinder (8) is connected to a plurality of fixed square tubes (709) distributed in a circumferential array, a moving column (710) is slidably connected in the fixed square tube (709), one side of the moving column (710) is connected to one side of the support plate (508), one side of the moving column (710) is connected to a plurality of triangular blocks (711) distributed in a linear array, and one side of the moving column (710) is provided with a limiting block (713) for limiting the triangular block (711).
5. A winding device for electric wire production according to claim 4, characterized in that: The adjusting screw (703) is externally connected to a driving gear (706), and one side of the plurality of driving gears (706) is meshedly connected to the same driving gear ring (707). One side of the rotating disc (4) is rotatably connected to a rotating ring (701), and the interior of the rotating ring (701) is connected to the driving gear ring (707). One side of the rotating ring (701) is provided with a plurality of limiting holes (702) distributed in a circumferential array. The outer peripheral side of the rotating disc (4) is connected to two symmetrically arranged threaded seats, and the threaded seats are internally threadedly connected to limiting bolts (705), and the limiting bolts (705) can be inserted and connected to the limiting holes (702).
6. A winding device for electric wire production according to claim 4, characterized in that: Both sides of the inner wall of the fixed square tube (709) are connected with sliders (712), both sides of the movable column (710) are provided with sliding grooves, the sliders (712) are slidably connected in the sliding grooves, the side of the limit block (713) away from the triangular block (711) is connected with a fixed frame (717), one side of the fixed frame (717) is provided with a rotating hole, an adjusting bolt (718) is sleeved in the rotating hole, one side of the adjusting bolt (718) is connected to a limiting circular plate (716), one side of the fixed square tube (709) is provided with a threaded hole, the adjusting bolt (718) is threadedly connected to the threaded hole, the interior of the fixed square tube (709) is connected with a symmetrically arranged fixed slide rod (714), the fixed slide rod (714) is slidably connected to the push block (504), the outer surface of the fixed slide rod (714) is sleeved with a second spring (715), and the two sides of the second spring (715) are respectively connected to one side of the push block (504) and one side of the inner wall of the fixed square tube (709).
7. The winding device for electric wire production according to claim 1, characterized in that: The auxiliary strapping assembly (6) comprises a plurality of winding wheels (601) distributed in a circumferential array, a plurality of through slots distributed in a circumferential array are provided on one side of the rotating disc (4), the winding wheels (601) are rotatably connected in the through slots, a plurality of connecting frames (604) distributed in a circumferential array are connected to one side of the rotating disc (4), a plurality of guide wheels (602) opposite to each other are rotatably connected to the connecting frames (604) and the through slots, one end of the connecting frame (604) is rotatably connected to a driving roller (606), and a movable extrusion wheel (607) is provided on one side of the driving roller (606).
8. A winding device for electric wire production according to claim 7, characterized in that: One side of the connecting frame (604) is connected to a connecting transverse plate (603), and two symmetrically arranged moving rods (608) are slidably connected to the connecting transverse plate (603). One side of the extrusion wheel (607) is connected to one end of the moving rod (608), and the ends of the two moving rods (608) away from the extrusion wheel (607) are connected to the same top plate. The outer surface of the moving rod (608) is provided with a first spring (609), and the two ends of the first spring (609) are respectively connected to one side of the connecting transverse plate (603) and one side of the extrusion wheel (607).
9. The winding device for electric wire production according to claim 7, characterized in that: A driving member (605) is fixedly mounted on one side of the connecting frame (604), and connecting shafts are connected to both sides of the driving roller (606). The connecting shafts rotate with the connecting frame (604), and one end of the connecting shaft extends to the other side of the connecting frame (604) and is connected to one end of the output shaft of the driving member (605).
10. The winding device for electric wire production according to claim 1, characterized in that: A control device (1) is provided on the top of the driving device (2), and a wiring device (3) is provided on one side of the driving device (2).
Citation Information
Patent Citations
Cable winding device and working method thereof
CN119079686A