A wire splitting device for wire and cable processing

By designing a wire and cable sorting device with a cutting blade, a collection box, and a guide plate, the problem of protective sheaths falling or splattering after cutting is solved, realizing automatic collection of protective sheaths and efficient sorting operations, reducing the burden on workers.

CN224287871UActive Publication Date: 2026-05-26NANJING JIANGLING WIRE & CABLE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NANJING JIANGLING WIRE & CABLE CO LTD
Filing Date
2025-05-22
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

When cutting existing wires and cables, the protective sheaths fall off or scatter directly after being cut, increasing the cleaning burden on workers and affecting processing efficiency.

Method used

A line separating device is designed, comprising a first cutting blade, a second cutting blade, a collection box, and a guide plate. The cutting blade is moved by a movable seat, pushing the protective outer skin into the collection box. The guide plate guides the collection, realizing the automatic collection of the protective outer skin. The cutting efficiency is improved by a hydraulic pump and a transmission mechanism.

Benefits of technology

It enables the automatic collection of protective sheaths, reduces the cleaning burden on workers, and improves the processing efficiency of wire and cable sorting operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a wire and cable splitting device for wire and cable processing, relating to the field of wire and cable processing technology. It includes a main body, a base, a pressure block, and a movable seat. The base corresponds to the pressure block. A limiting seat is installed at one end of the movable seat. A first cutting blade is symmetrically installed inside the movable seat, and a second cutting blade is movably installed inside the movable seat. A collection box is opened at one end of the main body, and a guide plate is provided at the upper end of the collection box, with the guide plate inclined. This utility model, by configuring the first cutting blade, the second cutting blade, the collection box, and the guide plate, allows the two sets of first cutting blades to push the cut wire and cable protective sheaths to shift during movement. The detached wires and cables fall into the collection box, which collects the protective sheaths. Simultaneously, the second cutting blades perform the wire and cable splitting operation, reducing the workload of workers and improving the processing efficiency of wire and cable splitting.
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Description

Technical Field

[0001] This utility model relates to the field of wire and cable processing technology, specifically to a wire splitting device for wire and cable processing. Background Technology

[0002] Wires and cables are conductive or signal transmission wire products used for power transmission, signal transmission, and many other purposes. They consist of a core wire, insulation sheath, separation layer, and protective outer sheath. As an important part of modern social infrastructure, wires and cables play a vital role in daily life and industrial production.

[0003] The processing of wires and cables includes everything from the treatment of conductor materials and the formation of insulation layers to the completion of the overall cable structure. Each step requires strict control to ensure that the electrical and mechanical properties of the cable meet the standards and to ensure the quality and safety of the final product.

[0004] In existing technology, when splitting wires and cables, the protective sheath at the ends of the wires and cables is first stripped off, and then the ends of the wires and cables are cut and split. However, the separated protective sheath will fall directly to the bottom of the splitting equipment or splash to the outside of the splitting equipment. After a long period of splitting wires and cables, the workers need to clean up the fallen and splashed protective sheath, which increases the workload of the workers. Utility Model Content

[0005] Therefore, the purpose of this utility model is to provide a wire splitting device for wire and cable processing to solve the technical problems mentioned above in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a wire splitting device for wire and cable processing, comprising a device body, a base, a pressure block, and a movable seat, wherein the base is mounted on the upper end of the device body, the pressure block is movably mounted on the upper end of the device body, and the movable seat is movably mounted on the upper end of the device body;

[0007] The base corresponds to the pressure block. A limit seat is installed at one end of the movable seat. First shrink cylinders are symmetrically installed inside the movable seat. Both sets of first shrink cylinders are movably connected to the pressure block. First telescopic columns are movably installed on the inner walls of both sets of first shrink cylinders. The outer walls of the two sets of first telescopic columns are threadedly connected to the inner walls of the two sets of first shrink cylinders. A first cutting blade is installed at one end of each set of first telescopic columns.

[0008] The movable seat has a second retractable cylinder movably installed inside, and a second telescopic column is movably installed on the inner wall of the second retractable cylinder. The outer wall of the second telescopic column is threadedly connected to the outer wall of the second retractable cylinder, and a second cutting blade is installed at one end of the second telescopic column.

[0009] The main body of the device has a collection box at one end, and a guide plate is provided at the upper end of the collection box, and the guide plate is inclined.

[0010] By adopting the above technical solution, the problem of collecting the protective sheath of wires and cables after cutting is solved. After the two sets of first cutting blades cut the protective sheath of the wires and cables, the moving seat moves, driving the two sets of first cutting blades and the second cutting blade to move as well. During the movement of the two sets of first cutting blades, the cut protective sheath of the wires and cables is pushed to move, so that the cut protective sheath of the wires and cables gradually falls off from one end of the wires and cables. The guide plate guides the detached protective sheath of the wires and cables, so that the detached wires and cables fall into the collection box. The collection box collects the protective sheath of the wires and cables. At the same time, the second cutting blade performs the cutting and splitting operation of the wires and cables, reducing the workload of the workers and improving the processing efficiency of the wire and cable splitting operation.

[0011] The present invention is further configured such that a hydraulic pump is provided inside the main body of the equipment, a hydraulic rod is installed at the output end of the hydraulic pump, and one end of the hydraulic rod is connected to the pressure block. Grooves are provided at opposite ends of the base and the pressure block, and multiple sets of rubber strips are provided in the groove at the end of the pressure block. A fixing column is installed at the bottom end of the pressure block.

[0012] Preferably, the hydraulic pump is started, which drives the hydraulic rod to move downward, thereby driving the pressure block to move downward, and then driving the fixed column to move downward.

[0013] The present invention is further configured such that a movable cylinder is movably installed inside the base, and the inner wall of the movable cylinder is threadedly connected to the outer wall of the fixed column. A movable bevel gear is installed at one end of the movable cylinder. A transmission shaft is movably installed inside the base, and a transmission bevel gear is installed at one end of the transmission shaft. The movable bevel gear and the transmission bevel gear are meshed and connected.

[0014] Preferably, the fixed column moves into the interior of the movable cylinder, and the outer wall of the fixed column is threadedly connected to the inner wall of the movable cylinder. Therefore, the movable cylinder rotates, thereby driving the movable bevel gear to rotate. The movable bevel gear meshes with the transmission bevel gear, and the transmission bevel gear rotates, thereby driving the transmission shaft to rotate.

[0015] The present invention is further configured such that a connecting cylinder is movably installed inside the main body of the equipment, and a synchronous belt is provided between the connecting cylinder and the transmission shaft. A movable column is movably installed inside the connecting cylinder, and the inner wall of the connecting cylinder is threadedly connected to the outer wall of the movable column. A first toothed plate is installed at one end of the movable column, and a reserved hole is opened on one side of the movable seat, and the inner wall of the reserved hole is movably connected to the outer wall of the first toothed plate.

[0016] Preferably, the drive shaft rotates and is connected to the connecting cylinder by a synchronous belt. The connecting cylinder rotates and is threadedly connected to the outer wall of the movable column. One end of the first toothed plate cooperates with the inner wall of the reserved hole to limit the movable column. Therefore, the movable column moves into the connecting cylinder, thereby driving the first toothed plate to move into the connecting cylinder.

[0017] The present invention is further configured such that a movable shaft is movably installed inside the movable seat, and the movable shaft is connected to the two sets of first shrink cylinders by a synchronous belt. A movable gear is installed at one end of the movable shaft extending into the reserved hole, and the movable gear meshes with the first toothed plate.

[0018] Preferably, the first toothed plate is displaced and meshes with the movable gear, which rotates, thereby driving the movable shaft to rotate. The two ends of the movable shaft are connected to two sets of first shrink cylinders via synchronous belts, and the two sets of first shrink cylinders rotate.

[0019] The present invention is further configured such that two sets of sliding grooves are provided on the outer wall of the main body of the equipment, and a drive shaft is movably installed inside each of the two sets of sliding grooves, and the two sets of drive shafts are connected by a synchronous belt. A drive motor is installed inside the main body of the equipment, and one set of drive shafts is connected to the output end of the drive motor.

[0020] Preferably, the drive motor is started, which drives a set of drive shafts to rotate. The two sets of drive shafts are connected by a synchronous belt, and the two sets of drive shafts rotate.

[0021] The present invention is further configured such that the outer wall of the movable seat is provided with two sets of sliders, the outer walls of the two sets of sliders are respectively movably connected to the inner walls of the two sets of slide grooves, and the inner walls of the two sets of sliders are respectively threadedly connected to the outer walls of the two sets of drive shafts.

[0022] Preferably, the two sets of drive shafts rotate, and the outer walls of the two sets of drive shafts are threadedly connected to the inner walls of the two sets of sliders. The two sets of sliders move inside the two sets of slide grooves, thereby driving the moving seat and the limiting seat to move.

[0023] The present invention is further configured such that a reserved groove is provided on the outer wall of the movable seat, an input shaft is movably installed inside the movable seat, an input gear is installed at one end of the input shaft extending into the reserved groove, and a second toothed plate is installed on the outer wall of the main body of the device, and the second toothed plate is meshed with the input gear.

[0024] Preferably, the movable seat and the limiting seat are displaced, thereby driving the input gear to be displaced. The input gear meshes with the second gear plate, and the input gear rotates, thereby driving the input shaft to rotate.

[0025] The present invention is further configured such that a speed-changing gearbox is provided inside the main body of the equipment, and the input end of the speed-changing gearbox is connected to one end of the input shaft, and an output shaft is installed at the output end of the speed-changing gearbox, and a synchronous belt is provided between the output shaft and the second shrinking cylinder.

[0026] Preferably, the input shaft rotates, transmitting kinetic energy to the inside of the gearbox, which increases the rotational speed, causing the output shaft to rotate. The output shaft is connected to the second shrinking cylinder via a synchronous belt, causing the second shrinking cylinder to rotate.

[0027] The present invention is further configured such that a limiting hole is provided at one end of the movable seat, the limiting hole corresponds to the second cutting blade, and the inner wall of the limiting hole is movably connected to the outer wall of one end of the second cutting blade.

[0028] Preferably, the second cutting blade moves downward, and one end of the second cutting blade passes through one end of the wire and cable and enters the limiting hole. During the movement of the second cutting blade, the limiting hole cooperates with one end of the second cutting blade to improve the stability of the second cutting blade during the movement.

[0029] In summary, the present invention has the following main advantages:

[0030] This invention solves the problem of collecting the protective sheath of cut wires and cables by incorporating a first cutting blade, a second cutting blade, a collection box, and a guide plate. After the two sets of first cutting blades cut the protective sheath, the movable seat shifts, causing the two sets of first and second cutting blades to move as well. During this movement, the first cutting blades push the cut protective sheath, causing it to gradually detach from one end of the wire or cable. The guide plate guides the detached sheath, allowing it to fall into the collection box, which collects the sheath. Simultaneously, the second cutting blade performs the wire and cable splitting operation, reducing the workload of workers and improving the processing efficiency of wire and cable splitting. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the main body of the device in this utility model;

[0032] Figure 2 This is a schematic diagram of the groove in this utility model;

[0033] Figure 3 for Figure 2 Enlarged view of point A;

[0034] Figure 4 This is a schematic diagram of the base in this utility model;

[0035] Figure 5 This is a schematic diagram of the hydraulic pump in this utility model;

[0036] Figure 6 This is a schematic diagram of the pressing block in this utility model;

[0037] Figure 7 This is a schematic diagram of the movable cylinder in this utility model;

[0038] Figure 8 This is an exploded view of the linkage cylinder in this utility model;

[0039] Figure 9 This is a schematic diagram of the movable seat in this utility model;

[0040] Figure 10 This is a schematic diagram of the limiting hole in this utility model;

[0041] Figure 11 This is a schematic diagram of the internal structure of the movable seat in this utility model.

[0042] Explanation of reference numerals in the attached figures:

[0043] 1. Main body of the equipment; 2. Base; 3. Hydraulic pump; 4. Hydraulic rod; 5. Pressure block; 6. Fixed column; 7. Movable cylinder; 8. Movable bevel gear; 9. Drive shaft; 10. Drive bevel gear; 11. Linkage cylinder; 12. Movable column; 13. First toothed plate; 14. Second toothed plate; 15. Slide groove; 16. Drive motor; 17. Drive shaft; 18. Moving seat; 19. Slider; 20. Reserved slot; 21. Reserved hole; 22. Limiting hole; 23. Limiting seat; 24. Movable shaft; 25. Movable gear; 26. First retraction cylinder; 27. First telescopic column; 28. First cutting blade; 29. ​​Gearbox; 30. Input shaft; 31. Input gear; 32. Output shaft; 33. Second retraction cylinder; 34. Second telescopic column; 35. Second cutting blade; 36. Collection box; 37. Guide plate. Detailed Implementation

[0044] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0045] The embodiments of this utility model will be described below based on its overall structure.

[0046] A wire splitting device for wire and cable processing, such as Figure 1 - Figure 11As shown, it includes a main body 1, a base 2, a pressure block 5, and a movable seat 18. The base 2 is installed on the upper end of the main body 1, the pressure block 5 is movably installed on the upper end of the main body 1, and the movable seat 18 is movably installed on the upper end of the main body 1.

[0047] The base 2 corresponds to the pressure block 5. The pressure block 5 and the base 2 cooperate to press and fix one end of the wire and cable. The movable seat 18 is equipped with a limit seat 23 at one end. The movable seat 18 is symmetrically equipped with first shrink cylinders 26. Both sets of first shrink cylinders 26 are movably connected to the pressure block 5. The inner walls of both sets of first shrink cylinders 26 are movably equipped with first telescopic columns 27. The outer walls of both sets of first telescopic columns 27 are threadedly connected to the inner walls of the two sets of first shrink cylinders 26. One end of both sets of first telescopic columns 27 is equipped with a first cutting blade 28. The two sets of first cutting blades 28 move towards the wire and cable. Then, the two sets of first cutting blades 28 cooperate to circumferentially cut the protective outer sheath of the wire and cable.

[0048] The movable seat 18 is movably installed with a second retractable cylinder 33. The inner wall of the second retractable cylinder 33 is movably installed with a second telescopic column 34, and the outer wall of the second telescopic column 34 is threadedly connected to the outer wall of the second retractable cylinder 33. A second cutting blade 35 is installed at one end of the second telescopic column 34. One end of the second cutting blade 35 passes through one end of the wire and cable. When the movable seat 18 and the limiting seat 23 are displaced, the second cutting blade 35 cuts and separates the wire and cable.

[0049] The main body 1 of the equipment has a collection box 36 at one end. The upper end of the collection box 36 is provided with a guide plate 37, which is inclined. During the movement of the two sets of first cutting blades 28, the cut wire and cable protective sheath is pushed to move, so that the cut wire and cable protective sheath gradually falls off from one end of the wire and cable. The guide plate 37 guides the fallen wire and cable protective sheath, so that the fallen wire and cable falls into the collection box 36.

[0050] Please see Figure 4 - Figure 6 The main body 1 of the equipment is equipped with a hydraulic pump 3. A hydraulic rod 4 is installed at the output end of the hydraulic pump 3, and one end of the hydraulic rod 4 is connected to the pressure block 5. The base 2 and the pressure block 5 are both provided with grooves at opposite ends, and the groove at the end of the pressure block 5 is provided with multiple sets of rubber strips. A fixed column 6 is installed at the bottom end of the pressure block 5. When the hydraulic pump 3 is started, it drives the hydraulic rod 4 to move downward, thereby driving the pressure block 5 to move downward, and then driving the fixed column 6 to move downward.

[0051] Please see Figure 5 - Figure 7A movable cylinder 7 is movably installed inside the base 2, and the inner wall of the movable cylinder 7 is threadedly connected to the outer wall of the fixed column 6. A movable bevel gear 8 is installed at one end of the movable cylinder 7. A drive shaft 9 is movably installed inside the base 2, and a drive bevel gear 10 is installed at one end of the drive shaft 9. The movable bevel gear 8 and the drive bevel gear 10 are meshed and connected. When the fixed column 6 moves into the movable cylinder 7, the outer wall of the fixed column 6 is threadedly connected to the inner wall of the movable cylinder 7. Therefore, the movable cylinder 7 rotates, thereby driving the movable bevel gear 8 to rotate. The movable bevel gear 8 and the drive bevel gear 10 are meshed and connected. The drive bevel gear 10 rotates, thereby driving the drive shaft 9 to rotate.

[0052] Please see Figure 4 - Figure 9 The main body 1 of the equipment has a connecting cylinder 11 movably installed inside, and the connecting cylinder 11 is connected to the drive shaft 9 by a synchronous belt. The connecting cylinder 11 has a movable column 12 movably installed inside, and the inner wall of the connecting cylinder 11 is threadedly connected to the outer wall of the movable column 12. A first toothed plate 13 is installed at one end of the movable column 12. A reserved hole 21 is opened on one side of the movable seat 18, and the inner wall of the reserved hole 21 is movably connected to the outer wall of the first toothed plate 13. When the drive shaft 9 rotates, the drive shaft 9 is connected to the connecting cylinder 11 by a synchronous belt. When the connecting cylinder 11 rotates, the inner wall of the connecting cylinder 11 is threadedly connected to the outer wall of the movable column 12, and one end of the first toothed plate 13 cooperates with the inner wall of the reserved hole 21 to limit the movable column 12. Therefore, the movable column 12 moves into the connecting cylinder 11, thereby driving the first toothed plate 13 to move into the connecting cylinder 11.

[0053] Please see Figure 9 - Figure 11 The movable base 18 has a movable shaft 24 installed inside, and the movable shaft 24 is connected to the two sets of first shrink cylinders 26 by a synchronous belt. The movable shaft 24 extends into the reserved hole 21 and a movable gear 25 is installed at one end. The movable gear 25 is meshed with the first toothed plate 13. The first toothed plate 13 moves and meshes with the movable gear 25. The movable gear 25 rotates, thereby driving the movable shaft 24 to rotate. The two ends of the movable shaft 24 are connected to the two sets of first shrink cylinders 26 by a synchronous belt, and the two sets of first shrink cylinders 26 rotate.

[0054] Please see Figure 1 - Figure 9 The outer wall of the main body 1 of the equipment has two sets of sliding grooves 15. A drive shaft 17 is movably installed inside each set of sliding grooves 15, and the two sets of drive shafts 17 are connected by a synchronous belt. A drive motor 16 is installed inside the main body 1 of the equipment, and one set of drive shafts 17 is connected to the output end of the drive motor 16. When the drive motor 16 starts, it drives one set of drive shafts 17 to rotate. The two sets of drive shafts 17 are connected by a synchronous belt, and the two sets of drive shafts 17 rotate.

[0055] Please see Figure 1 - Figure 10 The outer wall of the movable seat 18 is provided with two sets of sliders 19. The outer walls of the two sets of sliders 19 are movably connected to the inner walls of the two sets of slide grooves 15, and the inner walls of the two sets of sliders 19 are threadedly connected to the outer walls of the two sets of drive shafts 17. The two sets of drive shafts 17 rotate, and the outer walls of the two sets of drive shafts 17 are threadedly connected to the inner walls of the two sets of sliders 19. The two sets of sliders 19 move inside the two sets of slide grooves 15, thereby driving the movable seat 18 and the limiting seat 23 to move.

[0056] Please see Figure 9 - Figure 11 The outer wall of the movable seat 18 is provided with a reserved groove 20. An input shaft 30 is movably installed inside the movable seat 18. An input gear 31 is installed at one end of the input shaft 30 that extends into the reserved groove 20. A second toothed plate 14 is installed on the outer wall of the main body 1, and the second toothed plate 14 is meshed with the input gear 31. The movable seat 18 and the limiting seat 23 are displaced, thereby driving the input gear 31 to be displaced. The input gear 31 is meshed with the second toothed plate 14, and the input gear 31 rotates, thereby driving the input shaft 30 to rotate.

[0057] Please see Figure 9 - Figure 11 The main body 1 of the equipment is equipped with a speed change gearbox 29. The input end of the speed change gearbox 29 is connected to one end of the input shaft 30. The output end of the speed change gearbox 29 is equipped with an output shaft 32. The output shaft 32 is connected to the second shrinking cylinder 33 by a synchronous belt. When the input shaft 30 rotates, the input shaft 30 transmits kinetic energy to the inside of the speed change gearbox 29. The speed change gearbox 29 increases the speed, which drives the output shaft 32 to rotate. The output shaft 32 is connected to the second shrinking cylinder 33 by a synchronous belt, and the second shrinking cylinder 33 rotates.

[0058] Please see Figure 9 - Figure 11 A limiting hole 22 is provided at one end of the movable base 18. The limiting hole 22 corresponds to the second cutting blade 35, and the inner wall of the limiting hole 22 is movably connected to the outer wall of one end of the second cutting blade 35. The second cutting blade 35 moves downward, and one end of the second cutting blade 35 passes through one end of the wire and cable and enters the interior of the limiting hole 22. During the movement of the second cutting blade 35, the limiting hole 22 cooperates with one end of the second cutting blade 35 to improve the stability of the second cutting blade 35 during the movement.

[0059] The working principle of this utility model is as follows: When the staff uses this equipment to perform wire and cable separation operations, the staff places one end of the wire and cable in the groove at the upper end of the base 2 and the limiting seat 23 respectively. Then the staff starts the hydraulic pump 3, which drives the hydraulic rod 4 to move downward, thereby driving the pressure block 5 to move downward, and then driving the fixed column 6 to move downward. The fixed column 6 moves into the movable cylinder 7, and the pressure block 5 cooperates with the base 2 to press and fix one end of the wire and cable.

[0060] When the fixed column 6 enters the movable cylinder 7, the outer wall of the fixed column 6 is threadedly connected to the inner wall of the movable cylinder 7, so the movable cylinder 7 rotates, thereby driving the movable bevel gear 8 to rotate. The movable bevel gear 8 meshes with the transmission bevel gear 10, and the transmission bevel gear 10 rotates, thereby driving the transmission shaft 9 to rotate. The transmission shaft 9 is connected to the connecting cylinder 11 through a synchronous belt, and the connecting cylinder 11 rotates. The inner wall of the connecting cylinder 11 is threadedly connected to the outer wall of the movable column 12, and one end of the first toothed plate 13 cooperates with the inner wall of the reserved hole 21 to limit the movable column 12. Therefore, the movable column 12 moves into the connecting cylinder 11, thereby driving the first toothed plate 13 to move into the connecting cylinder 11.

[0061] When the first toothed plate 13 is displaced, it meshes with the movable gear 25, which rotates, thereby driving the movable shaft 24 to rotate. The two ends of the movable shaft 24 are connected to the two sets of first shrink cylinders 26 via synchronous belts. The two sets of first shrink cylinders 26 rotate, and the inner walls of the two sets of first shrink cylinders 26 are threadedly connected to the outer walls of the two sets of first telescopic columns 27. The two sets of first telescopic columns 27 move towards the outer ends of the two sets of first shrink cylinders 26, thereby driving the two sets of first cutting blades 28 to move towards the direction of the wire and cable. Then, the two sets of first cutting blades 28 cooperate to circumferentially cut the protective outer sheath of the wire and cable.

[0062] After the protective sheath of the wire and cable is circumferentially cut, the drive motor 16 starts and drives a set of drive shafts 17 to rotate. The two sets of drive shafts 17 are connected by a synchronous belt. The outer walls of the two sets of drive shafts 17 are threadedly connected to the inner walls of the two sets of sliders 19 respectively. The two sets of sliders 19 are displaced inside the two sets of slide grooves 15 respectively, thereby driving the moving seat 18 and the limiting seat 23 to move, and then driving the input gear 31 to move.

[0063] When the input gear 31 is displaced, it meshes with the second gear plate 14 and rotates, thereby driving the input shaft 30 to rotate. The input shaft 30 transmits kinetic energy to the inside of the transmission gearbox 29, which increases the speed and drives the output shaft 32 to rotate. The output shaft 32 is connected to the second shrinking cylinder 33 by a synchronous belt. The second shrinking cylinder 33 rotates, and the inner wall of the second shrinking cylinder 33 is threadedly connected to the outer wall of the second telescopic column 34. The second telescopic column 34 moves downward, thereby driving the second cutting blade 35 to move downward. One end of the second cutting blade 35 passes through one end of the wire and cable and enters the inside of the limiting hole 22.

[0064] When the moving seat 18 and the limiting seat 23 are displaced, they drive the two sets of first cutting blades 28 and second cutting blades 35 to move. During the movement of the two sets of first cutting blades 28, they push the cut wire and cable protective sheath to move, so that the cut wire and cable protective sheath gradually falls off from one end of the wire and cable. The guide plate 37 guides the fallen wire and cable protective sheath, so that the fallen wire and cable falls into the collection box 36. At the same time, the second cutting blade 35 performs cutting and splitting operations on the wire and cable.

[0065] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not intended to limit the invention. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the present invention, provided that such modifications, substitutions, and variations are within the scope of the claims of the present invention and are protected by patent law.

Claims

1. A wire splitting device for wire and cable processing, comprising a main body (1), a base (2), a pressure block (5), and a movable base (18), characterized in that: The upper end of the main body (1) of the equipment is equipped with a base (2), a pressure block (5) is movably installed on the upper end of the main body (1), and a movable seat (18) is movably installed on the upper end of the main body (1). The base (2) corresponds to the pressure block (5). A limit seat (23) is installed at one end of the movable seat (18). The first shrink cylinder (26) is symmetrically installed inside the movable seat (18). Both sets of first shrink cylinders (26) are movably connected to the pressure block (5). The inner walls of both sets of first shrink cylinders (26) are movably installed with first telescopic columns (27). The outer walls of both sets of first telescopic columns (27) are threadedly connected to the inner walls of the two sets of first shrink cylinders (26). A first cutting blade (28) is installed at one end of both sets of first telescopic columns (27). The movable seat (18) is movably installed with a second shrink cylinder (33), and a second telescopic column (34) is movably installed on the inner wall of the second shrink cylinder (33). The outer wall of the second telescopic column (34) is threadedly connected to the outer wall of the second shrink cylinder (33). A second cutting blade (35) is installed at one end of the second telescopic column (34). The main body (1) of the equipment has a collection box (36) at one end, and a guide plate (37) is provided at the upper end of the collection box (36), and the guide plate (37) is inclined.

2. The wire splitting device for wire and cable processing according to claim 1, characterized in that: The main body (1) of the equipment is equipped with a hydraulic pump (3), and a hydraulic rod (4) is installed at the output end of the hydraulic pump (3). One end of the hydraulic rod (4) is connected to the pressure block (5). The base (2) and the pressure block (5) are provided with grooves at opposite ends. The groove at the end of the pressure block (5) is provided with multiple sets of rubber strips. A fixing column (6) is installed at the bottom end of the pressure block (5).

3. A wire splitting device for wire and cable processing according to claim 2, characterized in that: The base (2) has a movable cylinder (7) inside, and the inner wall of the movable cylinder (7) is threaded to the outer wall of the fixed column (6). A movable bevel gear (8) is installed at one end of the movable cylinder (7). A drive shaft (9) is installed inside the base (2). A drive bevel gear (10) is installed at one end of the drive shaft (9), and the movable bevel gear (8) and the drive bevel gear (10) are meshed and connected.

4. A wire splitting device for wire and cable processing according to claim 3, characterized in that: The main body (1) of the equipment is equipped with a connecting cylinder (11) which is movably installed inside. The connecting cylinder (11) is connected to the transmission shaft (9) by a synchronous belt. The connecting cylinder (11) is equipped with a movable column (12) which is movably installed inside. The inner wall of the connecting cylinder (11) is threadedly connected to the outer wall of the movable column (12). A first toothed plate (13) is installed at one end of the movable column (12). A reserved hole (21) is opened on one side of the movable seat (18), and the inner wall of the reserved hole (21) is movably connected to the outer wall of the first toothed plate (13).

5. A wire splitting device for wire and cable processing according to claim 4, characterized in that: The movable seat (18) is movably installed with a movable shaft (24), and the movable shaft (24) is connected to the two sets of first shrink cylinders (26) by a synchronous belt. The movable shaft (24) extends to the inside of the reserved hole (21) and a movable gear (25) is installed at one end. The movable gear (25) meshes with the first toothed plate (13).

6. A wire splitting device for wire and cable processing according to claim 1, characterized in that: The outer wall of the main body (1) of the equipment is provided with two sets of sliding grooves (15), and a drive shaft (17) is movably installed inside the two sets of sliding grooves (15). The two sets of drive shafts (17) are connected by a synchronous belt. A drive motor (16) is installed inside the main body (1), and one set of drive shafts (17) is connected to the output end of the drive motor (16).

7. A wire splitting device for wire and cable processing according to claim 6, characterized in that: The outer wall of the movable seat (18) is provided with two sets of sliders (19). The outer walls of the two sets of sliders (19) are movably connected to the inner walls of the two sets of slide grooves (15), and the inner walls of the two sets of sliders (19) are threadedly connected to the outer walls of the two sets of drive shafts (17).

8. A wire splitting device for wire and cable processing according to claim 1, characterized in that: The outer wall of the movable seat (18) is provided with a reserved groove (20), and an input shaft (30) is movably installed inside the movable seat (18). The input shaft (30) extends into the reserved groove (20) and an input gear (31) is installed at one end. The outer wall of the main body (1) of the equipment is provided with a second toothed plate (14), and the second toothed plate (14) is meshed with the input gear (31).

9. A wire splitting device for wire and cable processing according to claim 8, characterized in that: The main body (1) of the equipment is provided with a speed change gearbox (29), and the input end of the speed change gearbox (29) is connected to one end of the input shaft (30). The output end of the speed change gearbox (29) is equipped with an output shaft (32), and the output shaft (32) is connected to the second shrinking cylinder (33) by a synchronous belt.

10. A wire splitting device for wire and cable processing according to claim 9, characterized in that: The movable seat (18) has a limiting hole (22) at one end, which corresponds to the second cutting blade (35), and the inner wall of the limiting hole (22) is movably connected to the outer wall of one end of the second cutting blade (35).