A high-speed wire winding device for wire and cable processing

By designing high-speed winding devices for components such as isosceles trapezoidal pedestal and rectangular pedestal, the problems of uneven cable winding and complex cylinder disassembly and assembly are solved, and the stable and uniform winding of the cable and rapid disassembly and assembly of the cylinder are achieved, improving the quality and efficiency of winding.

CN119100194BActive Publication Date: 2025-07-11傅高峰
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Patent Information

Application Number
CN202411595053.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-07-11
Estimated Expiration
2044-11-11

AI Technical Summary

Technical Problem

Existing cable winding equipment cannot stably ensure the uniformity of cable winding during the winding process, which can easily lead to cable accumulation or loose winding, and the cylinder disassembly and assembly complexly, affecting the winding quality and efficiency.

Method used

A high-speed winding device including an isosceles trapezoidal pedestal, a rectangular pedestal, a cable winding cylinder, a reciprocating wire mechanism, a winding rotating roller and a lifting and adjustment mechanism is designed. Through the reciprocating wire structure and a cable cylinder disassembly and assembly structure, the cable cylinder disassembly and assembly process is simplified.

Benefits of technology

The stable and uniform winding of the cable is achieved, the problems of stacking and loosening are avoided, the disassembly and assembly efficiency of the cylinder is improved, and the winding quality and operation convenience are improved.

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Abstract

The present invention relates to the technical field of cable processing, and discloses a high-speed winding device for cable processing, which includes an isosceles trapezoidal pedestal, a rectangular pedestal and a cable winding cylinder. The rectangular pedestal is fixedly installed in the middle of one side of the isosceles trapezoidal pedestal, and the cable winding cylinder is located on the surface of the rectangular pedestal. A vertical plate is fixedly installed on one side of the top of the rectangular pedestal, and a reciprocating wire guiding mechanism located directly above the cable winding cylinder is installed on the upper part of the vertical plate. A convex groove is opened in the middle of the top of the isosceles trapezoidal pedestal, and a groove communicating with the convex groove is opened in the middle of the top of the rectangular pedestal. A support plate is fixedly installed in the middle of the top of the convex groove, and winding rollers are rotatably installed on both sides of the top of the groove; this high-speed winding device has a reciprocating winding and wire guiding structure and a cable cylinder disassembly and assembly structure, and the structure of this high-speed winding device is designed simply, and is convenient and easy to use and operate, and the adjustment and winding are stable and reliable, and its performance can meet the use requirements of cable winding processing.
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Description

Technical Field

[0001] The present invention belongs to the technical field of wire and cable processing, and specifically relates to a high-speed wire winding device for wire and cable processing. Background Art

[0002] Wire and cable is a general term for items such as optical cables and power cables. Wire and cable has many uses, mainly for controlling installation, connecting equipment, transporting electricity and other multiple functions, and it is a common and indispensable thing in daily life; after the wire and cable is processed, it needs to be wound in the workshop with a winding device so that the wire and cable is wound around a cylinder to facilitate the transportation and storage of the wire and cable. However, when the existing wire and cable winding device is working, as the radius of the cylinder for winding increases, the length of the winding also increases. It cannot stably and effectively ensure the uniformity of the wire and cable winding, and it is easy for the wire and cable to accumulate in a certain place, or the wire and cable is wound loosely with a large spacing, thus affecting the quality of the wire and cable winding processing. At the same time, the disassembly and assembly of the cylinder by the existing wire and cable winding device is relatively complicated, thus affecting the efficiency of the wire and cable winding processing; therefore, in view of the above problems, improvement is needed now. Summary of the Invention

[0003] To achieve the above object, the present invention provides the following technical solution: A high-speed wire winding device for wire and cable processing, including an isosceles trapezoidal pedestal, a rectangular pedestal and a cable winding cylinder. The rectangular pedestal is fixedly installed in the middle of one side of the isosceles trapezoidal pedestal. The cable winding cylinder is located on the surface of the rectangular pedestal. A vertical plate is fixedly installed on one side of the top of the rectangular pedestal. A reciprocating wire guiding mechanism is installed on the upper part of the vertical plate and is located directly above the cable winding cylinder. The lower part of the reciprocating wire guiding mechanism is in contact with the surface of the middle part of the cable winding cylinder. A convex groove is provided in the middle of the top of the isosceles trapezoidal pedestal. A groove communicating with the convex groove is provided in the middle of the top of the rectangular pedestal. A support plate is fixedly installed in the middle of the top of the convex groove. Rotating winding rollers are rotatably installed on both sides of the top of the groove. The cable winding cylinder is located between the surfaces of the two rotating winding rollers. A movable seat that can move horizontally is installed at the bottom of the groove. Two support lifting plates that can be adjusted up and down are installed on the top of the movable seat. The support lifting plates are located below the cable winding cylinder. A lifting adjustment mechanism connected to the two support lifting plates is installed on the top of the movable seat.

[0004] Preferably, a first gear is fixedly installed on one side of one of the rotating winding rollers. A first motor is installed at one end of the rectangular pedestal. The output end of the first motor extends into the groove and is fixedly connected to a second gear. The output end of the second gear is meshed with the first gear.

[0005] Preferably, the reciprocating wire mechanism includes two mounting plates fixedly installed on the upper part of one side of the vertical plate. Between one ends of the opposite sides of the two mounting plates, two slide bars are fixedly installed. A first moving block is slidably installed between the surfaces of the two slide bars. A perforation is formed in the middle of the first moving block.

[0006] Preferably, a T-shaped plug rod is movably inserted into the middle of the perforation. The bottom of the T-shaped plug rod is fixedly connected to an n-shaped thin plate. A cross plate is fixedly installed on the lower part of the T-shaped plug rod. A connecting rod is fixedly connected between the top of the cross plate and the T-shaped plug rod. Two cable clamping guide wheels are rotatably connected to the bottom of the cross plate. The n-shaped thin plate is located exactly in the middle of the two cable clamping guide wheels.

[0007] Preferably, a threaded rod is rotatably connected between the lower parts of the convex groove and the concave groove. The movable seat is threadedly connected to the surface of the threaded rod. Two rollers located at the bottom of the concave groove are installed on both sides of the movable seat. A second motor is installed at one end of the rectangular pedestal. The output end of the second motor is fixedly connected to one end of the threaded rod.

[0008] Preferably, the lifting and adjusting mechanism includes two pairs of fixing blocks. The two pairs of fixing blocks are fixedly installed on the top of the movable seat. Two supporting and lifting plates are respectively located directly above the two pairs of fixing blocks. The top of each fixing block is rotatably connected to a first rotating arm. The tops of the two first rotating arms below the supporting and lifting plate are respectively rotatably connected to the bottom of the supporting and lifting plate. Two second moving blocks are provided on the top of the movable seat. The two ends of each of the two second moving blocks are rotatably connected to a second rotating arm. The tops of the four second rotating arms are respectively rotatably connected to the four first rotating arms.

[0009] Preferably, a concave long groove parallel to the two supporting and lifting plates is formed in the middle of the top of the movable seat. A threaded shaft is rotatably connected inside the concave long groove. A moving strip located inside the concave long groove is threadedly connected to the surface of the threaded shaft. The two second moving blocks are fixedly connected to the top of the moving strip. Ball bearings that are in rolling contact with the top of the movable seat are installed at the bottoms of the two second moving blocks.

[0010] Preferably, one end of the threaded shaft extends outside one end of the movable seat and is fixedly connected to a first bevel gear. A rotating rod is rotatably connected to one end of the movable seat. A second bevel gear is fixedly connected to one end of the rotating rod. The second bevel gear is meshed with the first bevel gear. A third gear is fixedly connected to the other end of the rotating rod. A first rack is fixedly installed on one side of the lower part of the concave groove. A second rack is fixedly installed on one side of the lower part of the convex groove. The third gear is located between the first rack and the second rack. The third gear and the first rack are arranged vertically and offset.

[0011] Preferably, a concave arc groove matching the cable winding cylinder is formed on the top of the support plate. A right-angled triangular reinforcing plate is fixedly connected between the bottom of the support plate and the upper part of one end of the convex groove.

[0012] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0013] 1. During operation, by providing an isosceles trapezoidal pedestal, a rectangular pedestal, a groove, a cable winding cylinder, a vertical plate, a reciprocating wire guiding mechanism, a convex groove, a supporting plate, a concave arc groove, a right-angled triangular reinforcing plate, a winding rotating roller, a movable seat, a supporting lifting plate, and a lifting and adjusting mechanism, the high-speed wire winding device of the present invention has a reciprocating wire winding and guiding structure and a cable cylinder disassembly and assembly structure. Moreover, the structure of the high-speed wire winding device of the present invention is designed simply, and its use and operation are convenient and fast. The adjustment and winding are stable and reliable, and the performance thereof can meet the use requirements of wire and cable winding processing;

[0014] 2. The reciprocating wire winding and guiding structure of the high-speed wire winding device of the present invention can stably and effectively ensure the uniformity of wire and cable winding, so that the wound wire and cable will not have problems such as accumulation, looseness, and large spacing, thereby effectively ensuring the quality of wire and cable winding processing;

[0015] 3. The cable cylinder disassembly and assembly structure of the high-speed wire winding device of the present invention can effectively improve the speed and efficiency of cylinder disassembly and assembly, and greatly facilitate the winding processing of the cylinder. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention, and do not constitute a limitation to the present invention.

[0017] In the drawings:

[0018] Figure 1 is a schematic structural diagram of the high-speed wire winding device for wire and cable processing of the present invention;

[0019] Figure 2 is of the present invention Figure 1 sectional structural diagram;

[0020] Figure 3 is of the present invention Figure 2 partial structural schematic Figure 1 ;

[0021] Figure 4 is of the present invention Figure 3 partial sectional structural diagram;

[0022] Figure 5 is of the present invention Figure 3 partial side view structural diagram;

[0023] Figure 6 is of the present invention Figure 2 partial structural schematic Figure 2 ;

[0024] Figure 7 is of the present invention Figure 2Schematic diagram of the local structure Figure 3 ;

[0025] In the figure: 1. Isosceles trapezoidal pedestal; 2. Rectangular pedestal; 201. Groove; 3. Cable winding cylinder; 4. Vertical plate; 5. Reciprocating wire guiding mechanism; 6. Convex groove; 7. Support plate; 701. Concave arc groove; 702. Right-angled triangle reinforcement plate; 8. Winding rotating roller; 9. Movable seat; 10. Support and lifting plate; 11. First gear; 12. First motor; 13. Second gear; 14. Mounting plate; 15. Slide bar; 16. First moving block; 17. Perforation; 18. T-shaped insertion rod; 19. N-shaped thin plate; 20. Horizontal plate; 21. Connecting rod; 22. Cable clamping and guiding wheel; 23. Threaded rod; 24. Roller; 25. Second motor; 26. Fixed block; 27. First rotating arm; 28. Second moving block; 29. Second rotating arm; 30. Concave long groove; 31. Threaded shaft; 32. Moving strip; 33. Ball; 34. First bevel gear; 35. Rotating rod; 36. Second bevel gear; 37. Third gear; 38. First rack; 39. Second rack. Specific implementation mode

[0026] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. 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 creative efforts shall fall within the protection scope of the present invention.

[0027] Embodiment 1, given by Figures 1 to 7 This invention includes an isosceles trapezoidal pedestal 1, a rectangular pedestal 2 and a cable winding cylinder 3. The rectangular pedestal 2 is fixedly installed in the middle of one side of the isosceles trapezoidal pedestal 1. The cable winding cylinder 3 is located on the surface of the rectangular pedestal 2. A vertical plate 4 is fixedly installed on one side of the top of the rectangular pedestal 2. A reciprocating wire guiding mechanism 5 is installed on the upper part of the vertical plate 4 and is located directly above the cable winding cylinder 3, and the lower part of the reciprocating wire guiding mechanism 5 is in contact with the surface of the middle part of the cable winding cylinder 3.

[0028] In the middle of the top of the isosceles trapezoidal pedestal 1, a convex groove 6 is provided. In the middle of the top of the rectangular pedestal 2, a groove 201 communicating with the convex groove 6 is provided. In the middle of the top of the convex groove 6, a support plate 7 is fixedly installed. On both sides of the top of the groove 201, winding rollers 8 are rotatably installed. The cable winding cylinder 3 is located between the surfaces of the two winding rollers 8. At the bottom of the groove 201, a movable seat 9 that can move horizontally is installed. On the top of the movable seat 9, two support lifting plates 10 that can be adjusted in height are installed. The support lifting plates 10 are located below the cable winding cylinder 3, and the lengths of the two support lifting plates 10 are both 1.3 times the distance between the two ends of the cable winding cylinder 3. The support plate 7 is located between the two support lifting plates 10. On the top of the movable seat 9, a lifting adjustment mechanism connected to the two support lifting plates 10 is installed.

[0029] On the top of both support lifting plates 10, arc-shaped surfaces matching the surface of the cable winding cylinder 3 are provided. Inside the arc-shaped surfaces, rubber pads for increasing friction are installed. Through the arc-shaped surfaces and the rubber pads, the cable winding cylinder 3 can be effectively lifted and supported. On the surfaces of the two winding rollers 8, rubber sleeves for increasing friction are installed. Through the rubber sleeves, the cable winding cylinder 3 located between the two winding rollers 8 can rotate stably and effectively to wind the cable.

[0030] On the top of the support plate 7, a concave arc groove 701 matching the cable winding cylinder 3 is provided. Between the bottom of the support plate 7 and the upper part of one end of the convex groove 6, a right-angled triangular reinforcing plate 702 is fixedly connected, so that the cable winding cylinder 3 can be effectively placed, and the cable winding cylinder 3 can be disassembled and assembled conveniently in position.

[0031] Place the cable winding cylinder 3 into the inside of the concave arc groove 701, so that the support lifting plates 10 can support, move and place stably and effectively. At the same time, through the isosceles trapezoidal pedestal 1, the cable winding cylinder 3 can be moved conveniently, and the cable winding cylinder 3 can be disassembled and assembled effectively.

[0032] Embodiment 2: On the basis of Embodiment 1, on one side of one of the winding rollers 8, a first gear 11 is fixedly installed. At one end of the rectangular pedestal 2, a first motor 12 is installed. The rotation speed of the first motor 12 can be effectively adjusted to meet the requirements of high-speed winding. The output end of the first motor 12 extends into the inside of the groove 201 and is fixedly connected with a second gear 13. The output end of the second gear 13 is meshed with the first gear 11, so that the winding roller 8 can be effectively adjusted, and the two winding rollers 8 drive the cable winding cylinder 3 to rotate to perform the winding operation of the cable.

[0033] The reciprocating wire mechanism 5 includes two mounting plates 14 fixedly installed on the upper part of one side of the vertical plate 4. Between one ends of the opposite sides of the two mounting plates 14, two sliding rods 15 are fixedly installed. A first moving block 16 is slidably installed between the surfaces of the two sliding rods 15. A through hole 17 is formed in the middle of the first moving block 16, so that horizontal movement adjustment can be effectively carried out. A T-shaped plug rod 18 is movably inserted into the middle of the through hole 17. The bottom of the T-shaped plug rod 18 is fixedly connected to an n-shaped thin plate 19. The middle of the n-shaped thin plate 19 matches the diameter of the cable to facilitate the passage of the cable. A cross plate 20 is fixedly installed at the lower part of the T-shaped plug rod 18. A connecting rod 21 is fixedly connected between the top of the cross plate 20 and the T-shaped plug rod 18. Two cable clamping guide wheels 22 are rotatably connected to the bottom of the cross plate 20. The n-shaped thin plate 19 is located exactly in the middle of the two cable clamping guide wheels 22. The middle parts of the two cable clamping guide wheels 22 are concave circular arcs. The cable can pass through between the two concave circular arcs, so that the reciprocating movement and transmission of the cable can be effectively carried out;

[0034] Place the cable winding cylinder 3 between the two winding rollers 8. Then pass the cable through between the two cable clamping guide wheels 22 and through the middle of the n-shaped thin plate 19. Then connect one end of the wire to one end of the surface of the middle part of the cable winding cylinder 3. At the same time, make one side of the n-shaped thin plate 19 contact with one side surface of the middle part of the cable winding cylinder 3;

[0035] Then start the first motor 12 to make the second gear 13 rotate and drive the first gear 11 to rotate. The rotation of the first gear 11 will drive one of the winding rollers 8 to rotate. The rotation of one of the winding rollers 8 will drive the cable winding cylinder 3 to rotate through the other rotatable winding roller 8. The rotation of the cable winding cylinder 3 will wind the cable, and make the cable pass through between the two cable clamping guide wheels 22 and through the middle of the n-shaped thin plate 19;

[0036] As the cable winding cylinder 3 winds the cable and the n-shaped thin plate 19 contacts the spiral cable, the spiral cable will squeeze the n-shaped thin plate 19, causing the n-shaped thin plate 19 to move horizontally on the surface of the cable winding cylinder 3. The horizontal movement of the n-shaped thin plate 19 will drive the first moving block 16 to move horizontally on the surfaces of the two sliding rods 15, so that the cable can be stably, tightly and evenly wound on the surface of the cable winding cylinder 3;

[0037] When a layer of cable is wound on the surface of the cable winding cylinder 3, the cable will automatically wind the second layer on the other end of the middle surface of the cable winding cylinder 3, pushing the n-shaped thin plate 19 upward. The upward movement of the n-shaped thin plate 19 will drive the T-shaped insertion rod 18 to move upward in the middle of the through hole 17. At this time, the other side of the n-shaped thin plate 19 contacts the other side surface of the middle part of the cable winding cylinder 3. Then, with the winding of the second layer of cable on the surface of the cable winding cylinder 3 and the extrusion of the wound cable on the cable, the n-shaped thin plate 19 will move back to move the cable, enabling the cable to be stably, tightly and evenly wound on the surface of the cable winding cylinder 3 for the second layer of winding;

[0038] Through the reciprocating movement of the above steps, the cable can be stably, evenly and tightly wound on the surface of the cable winding cylinder 3, effectively ensuring the quality of the cable winding.

[0039] Embodiment 3: On the basis of Embodiment 1, a threaded rod 23 is rotatably connected between the lower parts of the convex groove 6 and the groove 201. The movable seat 9 is threadedly connected to the surface of the threaded rod 23, and two rollers 24 located at the bottom of the groove 201 are installed on both sides of the movable seat 9. One end of the rectangular pedestal 2 is provided with a second motor 25, and the output end of the second motor 25 is fixedly connected to one end of the threaded rod 23, so that the movable seat 9 can move horizontally stably and effectively.

[0040] The lifting and adjusting mechanism includes two pairs of fixing blocks 26. The two pairs of fixing blocks 26 are fixedly installed on the top of the movable seat 9. The two support and lifting plates 10 are respectively located directly above the two pairs of fixing blocks 26. The top of each fixing block 26 is rotatably connected to a first rotating arm 27. The tops of the two first rotating arms 27 under the support and lifting plate 10 are rotatably connected to the bottom of the support and lifting plate 10. The top of the movable seat 9 is provided with two second moving blocks 28. The two ends of each second moving block 28 are rotatably connected to a second rotating arm 29. The tops of the four second rotating arms 29 are respectively rotatably connected to the four first rotating arms 27, so that the support and lifting plate 10 can be effectively installed. A concave long groove 30 parallel to the two support and lifting plates 10 is opened in the middle of the top of the movable seat 9. A threaded shaft 31 is rotatably connected inside the concave long groove 30. A moving strip 32 located inside the concave long groove 30 is threadedly connected to the surface of the threaded shaft 31. The two second moving blocks 28 are fixedly connected to the top of the moving strip 32, and balls 33 that are in rolling contact with the top of the movable seat 9 are installed at the bottoms of the two second moving blocks 28.

[0041] One end of the threaded shaft 31 extends outside one end of the movable seat 9 and is fixedly connected to a first bevel gear 34. One end of the movable seat 9 is rotatably connected to a rotating rod 35. One end of the rotating rod 35 is fixedly connected to a second bevel gear 36. The second bevel gear 36 is meshed with the first bevel gear 34. The other end of the rotating rod 35 is fixedly connected to a third gear 37. One side of the lower part of the groove 201 is fixedly installed with a first rack 38. One side of the lower part of the convex groove 6 is fixedly installed with a second rack 39. The third gear 37 is located between the first rack 38 and the second rack 39, and the third gear 37 and the first rack 38 are arranged vertically offset, so as to effectively carry out adjustment;

[0042] After the cable winding cylinder 3 finishes winding the cable, the threaded rod 23 is rotated by starting the second motor 25. The rotation of the threaded rod 23 causes the movable seat 9 to move from the inside of the groove 201 towards the inside of the convex groove 6 through the rolling of the rollers 24. The movement of the movable seat 9 drives the two support lifting plates 10 and the third gear 37 to move;

[0043] The movement of the third gear 37 first contacts the first rack 38 and rolls at the bottom of the first rack 38 to drive the rotating rod 35 to rotate clockwise. The rotation of the rotating rod 35 drives the second bevel gear 36 to drive the first bevel gear 34 to drive the threaded shaft 31 to rotate. The rotation of the threaded shaft 31 causes the moving strip 32 to move and drives the two second moving blocks 28 to move. The rotation of the two second moving blocks 28 pushes the four first rotating arms 27 to rotate through the four second rotating arms 29 to lift the two support lifting plates 10. The upward movement of the two support lifting plates 10 contacts the cable winding cylinder 3 to lift and support it. At this time, the third gear 37 is separated from the first rack 38, and at the same time, the cable winding cylinder 3 is separated from the two winding rollers 8 and moves along with the movable seat 9;

[0044] When the movable seat 9 moves into the convex groove 6 and the cable winding cylinder 3 moves above the support plate 7, the movement of the third gear 37 will contact the second rack 39 and roll. At this time, the third gear 37 will drive the rotating rod 35 to rotate counterclockwise, and finally the two support lifting plates 10 will move downward and move into the convex groove 6, and the cable winding cylinder 3 will be placed on the top of the support plate 7; At this time, the disassembly of the cable winding cylinder 3 is completed;

[0045] The installation of the cable winding cylinder 3 only needs to perform the opposite operation of the installation and disassembly steps. The disassembly and assembly operation of the entire cable winding cylinder 3 is simple, convenient, stable and reliable.

[0046] This high-speed winding device has a reciprocating wire winding structure and a cable cylinder disassembly and assembly structure. The reciprocating wire winding structure can stably and effectively ensure the uniformity of cable winding, so that the wound cable will not have problems such as accumulation, looseness, and large spacing, thus effectively ensuring the quality of cable winding processing. The cable cylinder disassembly and assembly structure can effectively improve the speed and efficiency of cylinder disassembly and assembly, greatly facilitating the winding processing of the cylinder. Moreover, the structure of this high-speed winding device is simply designed, convenient to use and operate, stable and reliable in adjustment and winding, and its performance can meet the usage requirements of cable winding processing.

[0047] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.

[0048] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A high-speed wire winding device for wire and cable processing, comprising an isosceles trapezoidal pedestal (1), a rectangular pedestal (2) and a cable winding cylinder (3), characterized in that: The rectangular pedestal (2) is fixedly installed in the middle of one side of the isosceles trapezoidal pedestal (1). The cable winding cylinder (3) is located on the surface of the rectangular pedestal (2). One side of the top of the rectangular pedestal (2) is fixedly installed with a vertical plate (4). The upper part of the vertical plate (4) is installed with a reciprocating wire guiding mechanism (5) directly above the cable winding cylinder (3), and the lower part of the reciprocating wire guiding mechanism (5) is in contact with the surface of the middle part of the cable winding cylinder (3). In the middle of the top of the isosceles trapezoidal pedestal (1), a convex groove (6) is provided. In the middle of the top of the rectangular pedestal (2), a groove (201) communicating with the convex groove (6) is provided. In the middle of the top of the convex groove (6), a support plate (7) is fixedly installed. On both sides of the top of the groove (201), winding rollers (8) are rotatably installed. The cable winding cylinder (3) is located between the surfaces of the two winding rollers (8). At the bottom of the groove (201), a movable seat (9) that can move horizontally is installed. On the top of the movable seat (9), two support lifting plates (10) that can be adjusted in height are installed. The support lifting plates (10) are located below the cable winding cylinder (3). On the top of the movable seat (9), a lifting adjustment mechanism connected to the two support lifting plates (10) is installed. The reciprocating wire guiding mechanism (5) includes two mounting plates (14) fixedly installed on the upper part of one side of the vertical plate (4). Between the ends of the opposite sides of the two mounting plates (14), two sliding rods (15) are fixedly installed. A first moving block (16) is slidably installed between the surfaces of the two sliding rods (15). A through hole (17) is provided in the middle of the first moving block (16). A T-shaped plug rod (18) is movably inserted into the middle of the through hole (17). The bottom of the T-shaped plug rod (18) is fixedly connected to an n-shaped thin plate (19). The lower part of the T-shaped plug rod (18) is fixedly installed with a cross plate (20). A connecting rod (21) is fixedly connected between the top of the cross plate (20) and the T-shaped plug rod (18). The bottom of the cross plate (20) is rotatably connected to two cable clamping guide wheels (22). The n-shaped thin plate (19) is located exactly in the middle of the two cable clamping guide wheels (22).

2. The high-speed wire winding device for wire and cable processing according to claim 1, characterized in that: One side of one of the winding rollers (8) is fixedly installed with a first gear (11). One end of the rectangular pedestal (2) is installed with a first motor (12). The output end of the first motor (12) extends into the interior of the groove (201) and is fixedly connected to a second gear (13). The output end of the second gear (13) is meshed with the first gear (11).

3. The high-speed wire winding device for wire and cable processing according to claim 1, characterized in that: A threaded rod (23) is rotatably connected between the lower parts of the convex groove (6) and the groove (201). The movable seat (9) is threadedly connected to the surface of the threaded rod (23). On both sides of the movable seat (9), two rollers (24) located at the bottom of the groove (201) are installed. One end of the rectangular pedestal (2) is installed with a second motor (25). The output end of the second motor (25) is fixedly connected to one end of the threaded rod (23).

4. The high-speed wire winding device for wire and cable processing according to claim 3, characterized in that: The lifting and adjusting mechanism includes two pairs of fixed blocks (26), the two pairs of fixed blocks (26) are fixedly installed on the top of the movable seat (9), two support and lifting plates (10) are respectively located directly above the two pairs of fixed blocks (26), and the top of each fixed block (26) is rotatably connected with a first rotating arm (27). The tops of the two first rotating arms (27) below the support and lifting plate (10) are rotatably connected to the bottom of the support and lifting plate (10). Two second moving blocks (28) are arranged on the top of the movable seat (9), and both ends of the two second moving blocks (28) are rotatably connected with second rotating arms (29). The tops of the four second rotating arms (29) are respectively rotatably connected with the four first rotating arms (27).

5. The high-speed wire winding device for wire and cable processing according to claim 4, characterized in that: A concave long groove (30) parallel to the two support and lifting plates (10) is formed in the middle of the top of the movable seat (9). A threaded shaft (31) is rotatably connected inside the concave long groove (30). A moving strip (32) located inside the concave long groove (30) is threadedly connected to the surface of the threaded shaft (31). The two second moving blocks (28) are fixedly connected to the top of the moving strip (32), and ball bearings (33) that are in rolling contact with the top of the movable seat (9) are installed at the bottom of the two second moving blocks (28).

6. The high-speed wire winding device for wire and cable processing according to claim 5, wherein: One end of the threaded shaft (31) extends outside one end of the movable seat (9) and is fixedly connected with a first bevel gear (34). A rotating rod (35) is rotatably connected to one end of the movable seat (9). A second bevel gear (36) is fixedly connected to one end of the rotating rod (35). The second bevel gear (36) is meshed and connected with the first bevel gear (34). A third gear (37) is fixedly connected to the other end of the rotating rod (35). A first rack (38) is fixedly installed on one side of the lower part of the groove (201). A second rack (39) is fixedly installed on one side of the lower part of the convex groove (6). The third gear (37) is located between the first rack (38) and the second rack (39), and the third gear (37) and the first rack (38) are arranged vertically and offset.

7. The high-speed wire winding device for wire and cable processing according to claim 1, characterized in that: A concave arc groove (701) matching the cable winding cylinder (3) is formed in the top of the support plate (7). A right-angled triangular reinforcing plate (702) is fixedly connected between the bottom of the support plate (7) and the upper part of one end of the convex groove (6).

Citation Information

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