A wire winding apparatus and method for wire production
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2026-08-11
AI Technical Summary
而在连接线加工的过程中,连接线的线芯通常为一些易导电的金属材料,并在外层包裹有绝缘皮,而现在的卷线加工设备,将线芯穿进绝缘皮中时,并不容易穿进,且容易导致线芯折皱不顺,影响连接线的导电性能
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Figure CN118723689B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cable winding technology, specifically to a cable winding device and method for producing cables. Background Technology
[0002] With the rapid development of modern society and the continuous advancement of technology, people are paying increasing attention to the safety of various electronic products, and the requirements for the quality and functionality of electronic products are also becoming higher. As the carrier of data and power exchange between devices, machines, and other equipment, the importance of connecting cables is self-evident. Waterproofing requirements for electronic products have become one of the basic quality elements for an increasing number of electronic products. However, during the processing of connecting cables, the core is usually made of a conductive metal material and wrapped with an insulating sheath. Current wire winding equipment often struggles to thread the core through the insulating sheath, easily causing wrinkles and affecting the conductivity of the connecting cable. Summary of the Invention
[0003] To address the shortcomings of existing technologies, this invention provides a winding device and method for producing connecting wires, solving the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention is implemented through the following technical solution: a winding equipment for producing connecting wires, comprising a winding base, a raw material pressing assembly, a winding adapting roller assembly, and an insulation stripping assembly, wherein a winding processing table is fixedly installed on the upper end of the winding base, a winding processing back plate is fixedly installed on the front surface of the winding processing table, the raw material pressing assembly is fixedly installed on the front surface of the winding processing back plate, and the winding adapting roller assembly is fixedly installed on the upper end of the winding processing table; The front surface of the winding processing back plate is also fixedly installed with a sheathing frame, and the insulation stripping assembly is fixedly installed on the front surface of the sheathing frame.
[0005] Preferably, an insulating reel is rotatably mounted on the upper end of the front surface of the sheathing frame, and an insulating guide roller is rotatably mounted on the front surface of the sheathing frame and above the insulating peeling assembly. A hot melt sleeve is fixedly installed on the front surface of the casing frame, and a hot melt heating strip is provided at the lower end of the hot melt sleeve.
[0006] Preferably, a steel bar for the equipment base is fixedly installed at the lower end of the winding base, and a raw material base is fixedly installed at the upper end of the steel bar for the equipment base. A raw material processing table is provided at the upper end of the raw material base, and a number of raw material wire reels are rotatably installed at the front end of the raw material processing table. A number of raw material wire guide rollers corresponding to the raw material wire reels are also rotatably installed at the front end of the raw material processing table.
[0007] Preferably, a finished wire reel is rotatably mounted on the front end of the wire winding back plate, and an adaptation roller slide rail is provided on the front end of the wire winding back plate and on one side of the finished wire reel. A wire adaptation roller is slidably mounted on the front end of the adaptation roller slide rail. The rear end of the winding processing table is equipped with a motor transmission box, and a drive motor for driving the finished wire reel to rotate is located at the lower rear end of the motor transmission box.
[0008] Preferably, the raw material pressing assembly includes: a pressing assembly shell, a pressing assembly module base, a top line roller groove, a fixed top line roller, a pressing roller box spring shaft, a pressing roller box, a winding limit spring tube, and a flipping pressing roller; The inner and outer sides of both sides of the outer shell of the pressing assembly are fixedly installed with winding limit spring tubes. The inner side of the inner wall of the pressing assembly is fixedly installed with a pressing assembly module base. The front end of the pressing assembly module base has two top wire roller grooves. Fixed top wire rollers are rotatably installed in the top wire roller grooves. Two pressing roller box spring shafts are provided at the front end of the pressing assembly module base and above the two fixed top wire rollers. Each of the two pressure roller boxes has a pressure roller box rotatably mounted on its spring shaft, and each of the two pressure roller boxes has a flipping pressure roller rotatably mounted inside its shell.
[0009] Preferably, both of the outer ends of the two pressing roller boxes are integrally provided with pressing fixing platforms, and the pressing fixing platforms are provided with flip screw slots. The front end of the pressing component module base and below the two flip screw slots are both provided with flip screw slots. Both of the aforementioned flip screw grooves are rotatably installed with flip screws, and both of the aforementioned flip screws are fitted with flip clamping screw sleeves.
[0010] Preferably, the winding adaptation roller assembly includes: a sliding support column, an adaptation support frame, an adaptation roller connecting shaft, a slide rail limiting seat, a reel support seat, a reel rotating wheel, a clamping wheel flipping frame, and a reel clamping wheel; The upper end of the sliding support column is integrally provided with an adaptive support frame, and the lower end of the adaptive support frame is integrally provided with a reel support seat. The lower end of the reel support seat is rotatably installed with a reel rotating wheel. Both sides of the lower end of the reel support seat are rotatably installed with clamping wheel flipping frames via spring shafts. The outer ends of the two clamping wheel flipping frames are rotatably installed with reel clamping wheels. An adaptive roller connecting shaft is integrally provided on the front surface of the lower end of the sliding support column, and a slide rail limiting seat is integrally provided at the front end of the adaptive roller connecting shaft.
[0011] Preferably, the insulation stripping assembly includes: a stripping roller housing, a stripping blade back plate, a concave insulating roller, an outer supporting insulating roller, an insulating support platform, a blade mounting plate frame, a stripping assembly mounting plate, and a blade back mounting hole. The peeling assembly mounting plate has a peeling roller housing fixedly mounted on its front end. A peeling blade back plate is integrally provided on the side of the peeling roller housing. A blade mounting plate frame is integrally provided on one side of the peeling blade back plate. Several blade mounting holes are provided on the blade mounting plate frame. An inwardly recessed insulating rubber roller is rotatably mounted on the upper end of the peeling roller housing, and an outwardly supporting insulating rubber roller is rotatably mounted on the lower end of the peeling roller housing. An insulating rubber support platform is provided between the inner walls of the peeling roller housing and between the inwardly recessed insulating rubber roller and the outwardly supporting insulating rubber roller.
[0012] Preferably, a peeling blade back is installed in the blade back mounting hole, a peeling blade handle is integrally provided on the outer side of the peeling blade back, and a peeling blade is fixedly installed on the inner surface of the peeling blade back.
[0013] A method for producing connecting wires is also proposed, with the following specific steps; S1: First, the wire harnesses of various materials are taken from the raw material wire reel, passed through their respective raw material wire guide rollers, and then converged into a bundle and passed through the raw material pressing assembly. At the same time, the insulation material on the insulation reel is passed through the insulation guide roller and the insulation stripping assembly, so that the insulation is peeled off and stretched, and then found on the wire harness. Then, it passes through the hot melt sleeve together with the wire harness. The insulation is re-hot melted and sealed by the hot melt heating strip at the lower end. Finally, the drive motor drives the finished wire reel to rotate through the motor transmission box, and winds the finished connecting wire into a coil. S2: In the raw material pressing assembly, the wire harness is guided through each winding limit spring tube and passes over the two fixed top wire rollers and the front end of the pressing assembly module base. By pressing the flip pressing roller box, the internal rotating flip pressing roller is pressed onto the corresponding fixed top wire roller, so that the wire harness can be integrated and will not rotate and tangle together. After pressing down the flipping pressure roller box, the position of the flipping pressure sleeve on the flipping screw is adjusted by rotating the flipping pressure screw sleeve. Then the flipping screw is flipped so that the flipping pressure screw sleeve can press onto the pressure fixing table to fix it. S3: The reel rotating wheel is pressed against the side of the finished wire reel, and then the reel clamping wheels on both sides will clamp the finished wire reel. As the wire bundle on the finished wire reel is continuously wound, the diameter will continuously increase, which will support the reel rotating wheel. The upper adaptive support frame and sliding support column can synchronously move the lower adaptive roller connecting shaft, thereby adjusting the up and down movement of the rotating wire adaptive roller and adjusting the tension of the wire bundle during winding. S4: In this process, the insulation can be smoothly wrapped around the concave insulation roller, and then cut open by a stripping blade fixed on one side at the insulation support platform. The cut insulation is then spread open by the outer insulation roller, thereby wrapping the wire harness inside.
[0014] This invention provides a winding device and method for producing connector wires. It has the following beneficial effects: (1) In this invention, wires of various materials are passed from the raw material wire reel through their respective raw material wire guide rollers, and then converged into a bundle and passed through the raw material pressing assembly. At this time, the insulating material on the insulating reel is passed through the insulating guide roller and the insulating stripping assembly, so that the insulating material is peeled off and stretched and then found on the wires. Then, it passes through the hot melt sleeve together with the wires. The insulating material is re-hot melted and sealed by the hot melt heating strip at the lower end. Finally, the driven motor drives the finished wire reel to rotate through the motor transmission box, and the finished connecting wire is wound into a coil. (2) In this invention, the wire harness is guided through each winding limit spring tube in the raw material pressing assembly and passes around from above the two fixed top wire rollers and inside the front end of the pressing assembly module base. By pressing the flip pressing roller box, the internal rotating flip pressing roller is pressed onto the corresponding fixed top wire roller, so that the wire harness can be integrated and will not rotate and tangle together. After pressing down the flipping pressure roller box, the position of the flipping pressure sleeve on the flipping screw is adjusted by rotating the flipping pressure screw sleeve. Then the flipping screw is flipped so that the flipping pressure screw sleeve can press onto the pressure fixing table to fix it. (3) In this invention, the rotating wheel of the reel presses against the side of the finished wire reel, and then the reel clamping wheels on both sides clamp the finished wire reel. As the wire bundle on the finished wire reel is continuously wound, the diameter will continuously increase, thereby supporting the rotating wheel of the reel. The upper adaptive support frame and the sliding support column can synchronously move the lower adaptive roller connecting shaft, thereby adjusting the up and down movement of the rotating wire adaptive roller and adjusting the tension of the wire bundle when winding. (4) The present invention can smoothly pass the insulating skin around the concave insulating skin roller, and then cut it open at the insulating skin support platform by a peeling blade fixed on one side, and then open the cut insulating skin by the outer insulating skin roller, so as to wrap the wire harness. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a structural schematic diagram from another perspective of the present invention; Figure 3 For the present invention Figure 2 Enlarged structural diagram at point A; Figure 4 This is a schematic diagram of the raw material crimping assembly in this invention; Figure 5 This is a front view of the raw material crimping assembly in this invention. Figure 6 For the present invention Figure 5 Schematic diagram of the cross-sectional structure of line aa in the middle; Figure 7 This is a schematic diagram of the winding adaptation roller assembly in this invention; Figure 8 This is a side view of the winding adaptation roller assembly in this invention. Figure 9 For the present invention Figure 8 Schematic diagram of the cross-sectional structure of the middle BB line; Figure 10 This is a schematic diagram of the insulation stripping assembly in this invention; Figure 11 This is a side view of the insulation stripping assembly in this invention. Figure 12 For the present invention Figure 11 A schematic diagram of the cross-sectional structure of the middle CC line.
[0016] The components include: 1. Equipment base steel bars; 2. Wire winding base; 3. Raw material base; 4. Wire winding processing table; 5. Raw material processing table; 6. Wire winding processing back plate; 7. Raw material pressing assembly; 701. Pressing assembly shell; 702. Pressing assembly module base; 703. Top wire roller groove; 704. Fixed top wire roller; 705. Pressing roller box spring shaft; 706. Pressing roller box; 707. Pressing fixing table; 708. Turning screw through groove; 709. Turning screw groove; 710. Turning screw; 711. Turning clamping screw sleeve; 712. Wire winding limit spring tube; 713. Turning pressing roller; 8. Wire winding adapting roller assembly; 801. Sliding support column; 802. Adaptive support frame; 803. Adaptive roller connecting shaft; 804. Slide rail limit seat; 805. Reel support seat; 806. Wire winding... 807. Rotating wheel; 808. Clamping wheel turning frame; 809. Reel clamping wheel; 10. Raw material reel; 11. Raw material guide roller; 12. Motor transmission box; 13. Drive motor; 14. Finished product reel; 15. Adaptive roller slide rail; 16. Wire winding adaptive roller; 17. Sheath frame; 18. Insulating sheath reel; 19. Insulating sheath guide roller; 20. Hot melt sleeve; 20. Insulating sheathing assembly; 2001. Sheathing roller housing; 2002. Sheathing knife back plate; 2003. Concave insulating sheath roller; 2004. Externally supported insulating sheath roller; 2005. Insulating sheath support platform; 2006. Blade mounting plate frame; 2007. Sheathing knife back; 2008. Sheathing knife handle; 2009. Sheathing assembly mounting plate; 2010. Knife back mounting hole; 2011. Sheathing blade; 21. Hot melt heating strip. Detailed Implementation
[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0018] like Figures 1 to 3 As shown, this embodiment of the invention provides a winding device for producing connecting wires, including a winding base 2, a raw material pressing assembly 7, a winding adapting roller assembly 8, and an insulation stripping assembly 20. A winding processing table 4 is fixedly installed on the upper end of the winding base 2. A winding processing back plate 6 is fixedly installed on the front surface of the winding processing table 4. The raw material pressing assembly 7 is fixedly installed on the front surface of the winding processing back plate 6. The winding adapting roller assembly 8 is fixedly installed on the upper end of the winding processing table 4. A sheathing frame 16 is also fixedly installed on the front surface of the winding processing back plate 6. The insulation stripping assembly 20 is fixedly installed on the front surface of the sheathing frame 16. An insulation reel 17 is rotatably installed on the upper end of the front surface of the sheathing frame 16. An insulation guide roller 18 is rotatably installed on the front surface of the sheathing frame 16 and above the insulation stripping assembly 20. A hot melt... The sleeve 19 has a heat-melting heating strip 21 at its lower end. The equipment base steel bar 1 is fixedly installed at the lower end of the winding base 2. The raw material base 3 is also fixedly installed at the upper end of the equipment base steel bar 1. The raw material base 3 has a raw material processing table 5 at its upper end. Several raw material wire reels 9 are rotatably installed at the front end of the raw material processing table 5. Several raw material wire guide rollers 10 corresponding to the raw material wire reels 9 are also rotatably installed at the front end of the raw material processing table 5. The finished wire reel 13 is rotatably installed at the front end of the winding processing back plate 6. An adaptation roller slide rail 14 is provided at the front end of the winding processing back plate 6 and on one side of the finished wire reel 13. A winding adaptation roller 15 is slidably installed at the front end of the adaptation roller slide rail 14. A motor transmission box 11 is provided at the rear end of the winding processing table 4. A drive motor 12 for driving the finished wire reel 13 to rotate is provided at the rear of the lower end of the motor transmission box 11.
[0019] In the above technical solution, wire harnesses of various materials are taken from the raw material wire reel 9, pass through their respective raw material wire guide rollers 10, and then converge into a bundle and pass through the raw material pressing assembly 7. At this time, the insulating material on the insulating reel 17 passes through the insulating guide roller 18 and the insulating stripping assembly 20, so that the insulating material is peeled off and stretched, and then found on the wire harness. Then, it passes through the hot melt sleeve 19 together with the wire harness. The insulating material is re-hot melted and sealed by the hot melt heating strip 21 at the lower end. Finally, the driven motor 12 drives the finished wire reel 13 to rotate through the motor transmission box 11, and winds the finished connecting wire into a coil.
[0020] like Figure 1 , Figures 4 to 6 As shown, the raw material pressing assembly 7 includes: a pressing assembly housing 701, a pressing assembly module base 702, a top wire roller groove 703, a fixed top wire roller 704, a pressing roller box spring shaft 705, a pressing roller box 706, a winding limit spring tube 712, and a flipping pressing roller 713; winding limit spring tubes 712 are fixedly installed on both the inner and outer sides of the two side walls of the pressing assembly housing 701, and a pressing assembly module base 702 is fixedly installed on the inner side wall of the pressing assembly housing 701. Two top wire roller grooves 703 are opened at the front end of the pressing assembly module base 702, and a fixed top wire roller 704 is rotatably installed in the top wire roller grooves 703. The front end of the pressing assembly module base 702 and located at the two... Above a fixed top roller 704, two pressure roller box spring shafts 705 are provided; each of the two pressure roller box spring shafts 705 is rotatably mounted with a pressure roller box 706, and each of the two pressure roller box 706 is rotatably mounted with a flip pressure roller 713. Each of the two pressure roller box 706 has an integrally provided pressure fixing platform 707 at its outer end. The pressure fixing platform 707 has a flip screw through groove 708. The front end of the pressure component module base 702 and below the two flip screw through grooves 708 has a flip screw groove 709. Each of the two flip screw grooves 709 has a flip screw 710 rotatably mounted, and each of the two flip screws 710 is fitted with a flip clamping screw sleeve 711.
[0021] In the above technical solution, the wire harness is guided through each winding limit spring tube 712 in the raw material pressing assembly 7, and passes around from above the two fixed top wire rollers 704 and inside the front end of the pressing assembly module base 702. By pressing the flip pressing roller box 706, the internal rotating flip pressing roller 713 presses onto the corresponding fixed top wire roller 704, thereby enabling the wire harness to be integrated and not rotated and tangled together. After pressing down the flipping pressure roller box 706, the flipping clamping sleeve 711 is rotated to adjust its position on the flipping screw 710. Then, the flipping screw 710 is flipped so that the flipping clamping sleeve 711 can press onto the pressure fixing table 707 to fix it.
[0022] like Figure 1 , Figures 7 to 9 As shown, the winding adapting roller assembly 8 includes: a sliding support column 801, an adapting support frame 802, an adapting roller connecting shaft 803, a slide rail limiting seat 804, a reel support seat 805, a reel rotating wheel 806, a clamping wheel flipping frame 807, and a reel clamping wheel 808; the upper end of the sliding support column 801 is integrally provided with the adapting support frame 802, the lower end of the adapting support frame 802 is integrally provided with the reel support seat 805, the lower end of the reel support seat 805 is rotatably mounted with the reel rotating wheel 806, both sides of the lower end of the reel support seat 805 are rotatably mounted with the clamping wheel flipping frame 807 through spring shafts, and the outer ends of the two clamping wheel flipping frames 807 are rotatably mounted with the reel clamping wheel 808; the front surface of the lower end of the sliding support column 801 is integrally provided with the adapting roller connecting shaft 803, and the front end of the adapting roller connecting shaft 803 is integrally provided with the slide rail limiting seat 804.
[0023] In the above technical solution, the reel rotating wheel 806 is pressed against the side of the finished wire reel 13, and then the reel clamping wheels 808 on both sides will clamp the finished wire reel 13. As the wire bundle on the finished wire reel 13 is continuously wound, the diameter will continuously increase, thereby supporting the reel rotating wheel 806. The upper adaptive support frame 802 and the sliding support column 801 can move synchronously with the lower adaptive roller connecting shaft 803, thereby adjusting the up and down movement of the rotating winding adaptive roller 15 and adjusting the tension of the wire bundle during winding.
[0024] like Figure 3 , Figures 10 to 12As shown, the insulation stripping assembly 20 includes: a stripping roller housing 2001, a stripping blade back plate 2002, a concave insulation roller 2003, an outer supporting insulation roller 2004, an insulation support platform 2005, a blade mounting plate frame 2006, a stripping assembly mounting plate 2009, and a blade back mounting hole 2010. The stripping roller housing 2001 is fixedly mounted on the front end of the stripping assembly mounting plate 2009. The stripping blade back plate 2002 is integrally provided on the side of the stripping roller housing 2001. The blade mounting plate frame 2006 is integrally provided on one side of the stripping blade back plate 2002, and the blade mounting plate frame 2006 has openings on it. Several blade mounting holes 2010 are provided; an inner concave insulating rubber roller 2003 is rotatably mounted on the upper end of the peeling roller housing 2001, and an outer supporting insulating rubber roller 2004 is rotatably mounted on the lower end of the peeling roller housing 2001. An insulating rubber support platform 2005 is provided between the inner walls of the peeling roller housing 2001 and between the inner concave insulating rubber roller 2003 and the outer supporting insulating rubber roller 2004. A peeling blade back 2007 is installed in the blade mounting holes 2010. A peeling blade handle 2008 is integrally provided on the outer side of the peeling blade back 2007. A peeling blade 2011 is fixedly mounted on the inner surface of the peeling blade back 2007.
[0025] In the above technical solution, when the insulating skin passes around the concave insulating skin roller 2003, the insulating skin can be smoothly passed around. It is then cut open by the stripping blade 2011 fixed on one side at the insulating skin support platform 2005. The cut insulating skin is then opened by the outer insulating skin roller 2004, thereby wrapping the wire harness inside.
[0026] A method for producing connecting wires is also proposed, with the following specific steps; S1: First, the wire harnesses of various materials are taken from the raw material wire reel 9 and passed through their respective raw material wire guide rollers 10. Then, they are gathered into a bundle and passed through the raw material pressing assembly 7. At this time, the insulating material on the insulating reel 17 is passed through the insulating guide roller 18 and the insulating stripping assembly 20, so that the insulating material is peeled off and stretched open and then found on the wire harness. Then, it is passed through the hot melt sleeve 19 together with the wire harness. The insulating material is re-hot melted and sealed by the hot melt heating strip 21 at the lower end. Finally, the driven motor 12 drives the finished wire reel 13 to rotate through the motor transmission box 11, and the finished connecting wire is wound into a coil. S2: In the raw material pressing assembly 7, the wire harness is guided through each winding limit spring tube 712 and passes over the two fixed top wire rollers 704 and the front end of the pressing assembly module base 702. By pressing the flip pressing roller box 706, the internal rotating flip pressing roller 713 presses on the corresponding fixed top wire roller 704, so that the wire harness can be integrated and will not rotate and tangle together. After pressing down the flipping pressure roller box 706, the flipping clamping sleeve 711 is rotated to adjust its position on the flipping screw 710. Then the flipping screw 710 is flipped so that the flipping clamping sleeve 711 can press onto the pressure fixing table 707 to fix it. S3: The reel rotating wheel 806 is pressed against the side of the finished wire reel 13. Then the reel clamping wheels 808 on both sides will clamp the finished wire reel 13. As the wire bundle on the finished wire reel 13 is continuously wound, the diameter will continuously increase, thereby supporting the reel rotating wheel 806. The upper adaptive support frame 802 and the sliding support column 801 can move synchronously with the lower adaptive roller connecting shaft 803, thereby adjusting the up and down movement of the rotating wire adaptive roller 15 and adjusting the tension of the wire bundle when winding. S4: When the insulating skin passes around the concave insulating skin roller 2003, the insulating skin can be smoothly passed around and cut open by the stripping blade 2011 fixed on one side at the insulating skin support platform 2005. Then, the cut insulating skin is opened by the outer insulating skin roller 2004, so that the wire harness can be wrapped in it.
[0027] Working principle: First, the wire harnesses of various materials are taken from the raw material wire reel 9 and passed through their respective raw material wire guide rollers 10. Then, they are gathered into a bundle and passed through the raw material pressing assembly 7. At this time, the insulating material on the insulating reel 17 is passed through the insulating guide roller 18 and the insulating stripping assembly 20, so that the insulating material is peeled off and stretched open and then found on the wire harness. Then, it is passed through the hot melt sleeve 19 together with the wire harness. The insulating material is re-hot melted and sealed by the hot melt heating strip 21 at the lower end. Finally, the driven motor 12 drives the finished wire reel 13 to rotate through the motor transmission box 11, and winds the finished connecting wire into a coil. In the raw material crimping assembly 7, the wire harness is guided through each winding limit spring tube 712 and passes over the two fixed top wire rollers 704 and the front end of the crimping assembly module base 702. By pressing the flip crimping roller box 706, the internally rotating flip crimping roller 713 presses onto the corresponding fixed top wire roller 704, thereby enabling the wire harness to be integrated and not rotated and tangled together. After pressing down the flipping pressure roller box 706, the flipping clamping sleeve 711 is rotated to adjust its position on the flipping screw 710. Then the flipping screw 710 is flipped so that the flipping clamping sleeve 711 can press onto the pressure fixing table 707 to fix it. In this process, the reel rotating wheel 806 is pressed against the side of the finished wire reel 13, and then the reel clamping wheels 808 on both sides will clamp the finished wire reel 13. As the wire bundle on the finished wire reel 13 is continuously wound, the diameter will continuously increase, thereby supporting the reel rotating wheel 806. The upper adaptive support frame 802 and the sliding support column 801 can move synchronously with the lower adaptive roller connecting shaft 803, thereby adjusting the up and down movement of the rotating wire adaptive roller 15 and adjusting the tension of the wire bundle during winding. In this process, the insulation can be smoothly bypassed by the concave insulation roller 2003, and then cut open by the stripping blade 2011 fixed on one side at the insulation support platform 2005. The cut insulation is then spread open by the outer insulation roller 2004, thereby wrapping the wire harness inside.
[0028] Obviously, the above embodiments of the present invention are merely examples for clearly illustrating the present invention, and are not intended to limit the implementation of the present invention. For those skilled in the art, other variations or modifications can be made based on the above description. It is impossible to exhaustively list all the implementation methods here. All obvious variations or modifications derived from the technical solutions of the present invention are still within the protection scope of the present invention.
Claims
1. A winding device for connecting wire production, comprising a winding base (2), a raw material wire pressing assembly (7), a winding adapting roller assembly (8) and an insulation stripping assembly (20), characterized in that, The winding base (2) is fixedly installed with a winding processing table (4) at the upper end. The winding processing table (4) is fixedly installed with a winding processing back plate (6) on the front surface of the front end. The raw material pressing assembly (7) is fixedly installed on the front surface of the winding processing back plate (6). The winding adapting roller assembly (8) is fixedly installed on the upper end of the winding processing table (4). The front surface of the winding processing back plate (6) is also fixedly installed with a sheath frame (16), and the insulation stripping assembly (20) is fixedly installed on the front surface of the sheath frame (16). The raw material pressing assembly (7) includes: pressing assembly housing (701), pressing assembly module base (702), top line roller groove (703), fixed top line roller (704), pressing roller box spring shaft (705), pressing roller box (706), winding limit spring tube (712), and flipping pressing roller (713). The inner and outer sides of the two side walls of the pressing assembly housing (701) are fixedly installed with winding limit spring tubes (712). The inner side wall of the pressing assembly housing (701) is fixedly installed with a pressing assembly module base (702). The front end of the pressing assembly module base (702) has two top wire roller grooves (703). Fixed top wire rollers (704) are rotatably installed in the top wire roller grooves (703). Two pressing roller box spring shafts (705) are provided at the front end of the pressing assembly module base (702) and above the two fixed top wire rollers (704). Each of the two pressure roller box spring shafts (705) is rotatably mounted with a pressure roller box (706), and each of the two pressure roller box (706) is rotatably mounted with a flip pressure roller (713). Both of the two pressing roller boxes (706) are integrally provided with pressing fixing platforms (707) at their outer ends. The pressing fixing platforms (707) are provided with flip screw through slots (708). The pressing assembly module base (702) is provided with flip screw slots (709) at its front end and below the two flip screw through slots (708). A flip screw (710) is rotatably installed in each of the two flip screw grooves (709), and a flip clamping screw sleeve (711) is fitted on each of the two flip screws (710).
2. The winding apparatus for a connection line according to claim 1, wherein An insulating reel (17) is rotatably mounted on the upper end of the front surface of the sheath frame (16), and an insulating guide roller (18) is rotatably mounted on the front surface of the sheath frame (16) and above the insulating stripping assembly (20). A hot melt sleeve (19) is fixedly installed on the front surface of the sleeve frame (16), and a hot melt heating strip (21) is provided at the lower end of the hot melt sleeve (19).
3. The winding apparatus for a connection line according to claim 2, wherein The lower end of the winding base (2) is fixedly installed with a steel bar (1) for the equipment base. The upper end of the steel bar (1) for the equipment base is also fixedly installed with a raw material base (3). The upper end of the raw material base (3) is provided with a raw material processing table (5). Several raw material wire reels (9) are rotatably installed at the front end of the raw material processing table (5). Several raw material wire guide rollers (10) corresponding to the raw material wire reels (9) are also rotatably installed at the front end of the raw material processing table (5).
4. The winding apparatus for a connection line according to claim 3, wherein The front end of the winding processing back plate (6) is also rotatably mounted with a finished wire reel (13). The front end of the winding processing back plate (6) and located on one side of the finished wire reel (13) is provided with an adaptation roller slide rail (14). The front end of the adaptation roller slide rail (14) is slidably provided with a winding adaptation roller (15). The rear end of the winding processing table (4) is provided with a motor transmission box (11), and a drive motor (12) for driving the finished wire reel (13) to rotate is provided at the lower rear end of the motor transmission box (11).
5. A winding device for producing connecting wires according to claim 4, characterized in that, The winding adaptation roller assembly (8) includes: a sliding support column (801), an adaptation support frame (802), an adaptation roller connecting shaft (803), a slide rail limit seat (804), a reel support seat (805), a reel rotating wheel (806), a clamping wheel flipping frame (807), and a reel clamping wheel (808). The upper end of the sliding support column (801) is integrally provided with an adaptive support frame (802), and the lower end of the adaptive support frame (802) is integrally provided with a reel support base (805). The lower end of the reel support base (805) is rotatably installed with a reel rotating wheel (806). Both sides of the lower end of the reel support base (805) are rotatably installed with clamping wheel flipping frames (807) via spring shafts. The outer ends of the two clamping wheel flipping frames (807) are rotatably installed with reel clamping wheels (808). The sliding support column (801) has an integrated adaptive roller connecting shaft (803) on its lower front surface, and the adaptive roller connecting shaft (803) has an integrated slide rail limiting seat (804) at its front end.
6. A winding device for producing connecting wires according to claim 5, characterized in that, The insulation stripping assembly (20) includes: a stripping roller housing (2001), a stripping blade back plate (2002), a concave insulating rubber roller (2003), an outer supporting insulating rubber roller (2004), an insulating rubber support platform (2005), a blade mounting plate frame (2006), a stripping assembly mounting plate (2009), and a blade back mounting hole (2010). The peeling assembly mounting plate (2009) has a peeling roller housing (2001) fixedly mounted on its front end. The peeling roller housing (2001) has a peeling blade back plate (2002) integrally provided on its side. The peeling blade back plate (2002) has a blade mounting plate frame (2006) integrally provided on one side. The blade mounting plate frame (2006) has several blade back mounting holes (2010). An inwardly recessed insulating rubber roller (2003) is rotatably mounted on the upper end of the peeling roller housing (2001), and an outwardly supporting insulating rubber roller (2004) is rotatably mounted on the lower end of the peeling roller housing (2001). An insulating rubber support platform (2005) is provided between the inner walls of the peeling roller housing (2001) and between the inwardly recessed insulating rubber roller (2003) and the outwardly supporting insulating rubber roller (2004).
7. A winding device for producing connecting wires according to claim 6, characterized in that, A peeling knife back (2007) is installed in the knife back mounting hole (2010). A peeling knife handle (2008) is integrally provided on the outer side of the peeling knife back (2007). A peeling blade (2011) is fixedly installed on the inner surface of the peeling knife back (2007).
8. A method for winding wire for producing connecting wires according to claim 7, characterized in that, The specific steps are as follows; S1: First, take the wire harnesses of various materials from the raw material wire reel (9), pass them through their respective raw material wire guide rollers (10), and then gather them together and pass them through the raw material pressing assembly (7). At this time, pass the insulating material on the insulating reel (17) through the insulating guide roller (18) and the insulating stripping assembly (20) to make the insulating material peel off and spread out and then find the wire harness. Then, pass it through the hot melt sleeve (19) together with the wire harness. The insulating material is re-hot melted and sealed by the hot melt heating strip (21) at the lower end. Finally, the drive motor (12) drives the finished wire reel (13) to rotate through the motor transmission box (11) to wind the finished connecting wire into a coil. S2: In the raw material pressing assembly (7), the wire harness is guided through each winding limit spring tube (712) and passes over the two fixed top wire rollers (704) and the front end of the pressing assembly module base (702). By pressing the flip pressing roller box (706), the internal rotating flip pressing roller (713) presses on the corresponding fixed top wire roller (704), so that the wire harness can be integrated and will not rotate and tangle together. After pressing down the flipping pressure roller box (706), the position of the flipping screw (710) is adjusted by rotating the flipping clamping screw sleeve (711). Then the flipping screw (710) is flipped so that the flipping clamping screw sleeve (711) can press onto the pressure fixing table (707) to fix it. S3: The reel rotating wheel (806) is pressed against the side of the finished wire reel (13), and then the reel clamping wheels (808) on both sides will clamp the finished wire reel (13). As the wire bundle on the finished wire reel (13) is continuously wound, the diameter will continuously increase, thereby supporting the reel rotating wheel (806). The upper adaptive support frame (802) and the sliding support column (801) can synchronously move the lower adaptive roller connecting shaft (803), thereby adjusting the up and down movement of the rotating wire adaptation roller (15) and adjusting the tension of the wire bundle when winding. S4: When the insulating skin passes around the concave insulating skin roller (2003), the insulating skin can be smoothly passed around and cut open by the peeling blade (2011) fixed on one side at the insulating skin support platform (2005). Then, the cut insulating skin is opened by the outer insulating skin roller (2004), so that the wire harness can be wrapped in it.
Citation Information
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