Full-automatic multifunctional computer wire-stripping machine
Through the combined design of the motor and transmission mechanism, the problem of uneven winding of the plastic outer skin and metal core in the computer wire stripper is solved, and automatic uniform winding is achieved, and subsequent processing is simplified.
Patent Information
- Application Number
- CN202422005209.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-19
AI Technical Summary
After the existing computer wire stripping machine is stripped, the plastic skin and metal core are difficult to wind evenly and easily wrap, resulting in complicated subsequent processing.
The combination design of motor B, motor C, reel A, reel B, transmission sleeve, threaded rod, sleeve A, sleeve B and transmission rod is adopted to collect and retract the plastic outer skin and metal core after the cable is stripped.
It realizes uniform rolling of plastic skin and metal core, simplifies the subsequent processing process, and improves the degree of automation of the equipment.
Smart Images

Figure CN223052653U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of computer wire stripping machines, in particular to a full-automatic multi-functional computer wire stripping machine. Background Art
[0002] A computer wire stripping machine is a machine that strips the plastic sheath wrapped around wires and other objects from the metal core. Due to different wire diameters, materials, and compositions, there are different suitable models: short and thin wire type, large square type, ribbon cable type, and sheathed wire type, etc. The computer wire stripping machine can automatically adjust the length according to the material, wire diameter, length, and shape of the workpiece to be processed, and automatically stop when there is no wire or a knot occurs.
[0003] However, when the existing computer wire stripping machine is in use, it usually uses a cutter body to strip the wire. After the wire is stripped, the plastic outer skin and the metal core are stacked on one side of the computer wire stripping machine. However, when the stack is too high, the plastic outer skin and the metal core after wire stripping cannot be well transported, and at the same time, the plastic outer skin and the metal core are prone to entanglement, making the subsequent processing of the plastic outer skin and the metal core more complicated. Therefore, a full-automatic multi-functional computer wire stripping machine is set up. Summary of the Utility Model
[0004] The main purpose of the utility model is to provide a full-automatic multi-functional computer wire stripping machine. By setting motor B, motor C, winding rod A, winding rod B, transmission sleeve, threaded rod, sleeve rod A, sleeve rod B, and transmission rod, the utility model solves the problem that when the existing computer wire stripping machine is in use, it is inconvenient to evenly wind the plastic outer skin and the metal core after wire stripping of the wire separately.
[0005] The technical solution adopted by the utility model to solve its technical problems is a full-automatic multi-functional computer wire stripping machine, including a computer wire stripping machine main body and a support plate. On one side of the computer wire stripping machine main body, there is a mounting frame bolted with a fixed motor A. Inside the support plate, there is a blade rotatably connected for wire stripping treatment of the wire. Outside the mounting frame, there is a fixing plate welded to fix the connecting frame. Inside the connecting frame, there is a motor C screwed to drive the winding rod A to rotate. Outside the winding rod A, there is a transmission belt sleeved to drive the transmission rod to rotate. On one side of the transmission rod, there is a winding rod B screwed to collect the plastic outer skin after wire stripping of the wire. On one side of the mounting frame, there is a motor B screwed to drive the threaded rod to rotate. The threaded rod is externally threaded with a transmission sleeve, and on one side of the transmission sleeve, there is a sleeve rod A welded to limit the plastic outer skin after wire stripping of the wire. Outside the sleeve rod A, there is a sleeve rod B welded to limit the metal core after wire stripping of the wire.
[0006] By adopting the above technical solution, first pass the cable to be stripped through the fixing frame, then pass the cable through the connection, and then the blade in the support plate strips the cable. Subsequently, the plastic outer skin and the metal core after cable stripping are respectively passed through the sleeve rod B and the sleeve rod A. Then, fix the plastic outer skin outside the winding rod B and fix the metal core outside the winding rod A. Then, the motor C in the connecting frame drives the winding rod A to rotate. Then, the transmission belt outside the winding rod A makes the transmission rod rotate. Subsequently, the transmission rod drives the winding rod B to rotate, so that the metal core is wound outside the winding rod A and the plastic outer skin is wound outside the winding rod B. At the same time, the motor B on the mounting frame drives the threaded rod to rotate. Subsequently, the transmission sleeve outside the threaded rod drives the sleeve rod A and the sleeve rod B to move. The sleeve rod A drives the plastic outer skin to move, and the sleeve rod B drives the metal core to move, thus facilitating the uniform winding of the plastic outer skin and the metal core after cable stripping outside the winding rod B and the winding rod A respectively.
[0007] Specifically, a driving roller for conveying the cable is fixed by screws on one side of the motor A, and an electric telescopic rod for driving the support plate to move is fixed by screws inside the mounting frame.
[0008] By adopting the above technical solution, when the cable enters the mounting frame, the electric telescopic rod in the mounting frame drives the support plate to move, so that the blade in the support plate is in close contact with the cable, thus facilitating the adjustment of the position of the blade according to requirements. Subsequently, the motor A outside the mounting frame drives the driving roller to rotate, thus facilitating the conveying process of the cable.
[0009] Specifically, convex grains for increasing the friction force on the cable are arranged on the outer side of the driving roller.
[0010] By adopting the above technical solution, when the cable moves through the driving roller in the mounting frame, the convex grains outside the driving roller come into contact with the surface of the cable, thereby increasing the friction force of the driving roller on the cable and facilitating the conveying process of the cable.
[0011] Specifically, the power output end of the motor A is connected to the power input end of the driving roller, the power output end of the motor B is connected to the power input end of the threaded rod, and the power output end of the motor C is connected to the power input end of the winding rod A.
[0012] By adopting the above technical solution, when the driving roller needs to be driven to rotate, the motor A converts the received electric energy into mechanical energy, and the motor A drives the driving roller to rotate. When the threaded rod needs to be driven to rotate, the motor B converts the received electric energy into mechanical energy, and the motor B drives the threaded rod to rotate. When the winding rod A needs to be driven to rotate, the motor C converts the received electric energy into mechanical energy, and the motor C drives the winding rod A to rotate.
[0013] Specifically, a fixing frame for rotating the conveying roller is connected by screws on the outer side of the main body of the computer cable stripper.
[0014] By adopting the above technical solution, when the wire and cable needs to be stripped, the wire and cable to be stripped is placed on the conveying roller inside the fixing frame. Multiple groups of conveying rollers are arranged inside the fixing frame, so as to facilitate the conveying process of the wire and cable to be stripped.
[0015] Specifically, the input ends of the motor A, the electric telescopic rod, the motor B and the motor C are all electrically connected to the output end of the external power supply.
[0016] By adopting the above technical solution, by connecting the external power supply, the electrical equipment works normally.
[0017] The beneficial effects of the present utility model:
[0018] For the fully automatic multi-functional computer wire stripper of the present utility model, the wire and cable to be stripped is passed through the fixing frame, and then the wire and cable is passed through the connection. Then, the blade in the support plate strips the wire and cable. Subsequently, the plastic outer skin and the metal core after stripping the wire and cable respectively pass through the sleeve rod B and the sleeve rod A. Then, the plastic outer skin is fixed outside the winding rod B, and the metal core is fixed outside the winding rod A. Then, the motor C in the connecting frame drives the winding rod A to rotate. Then, the transmission belt outside the winding rod A makes the transmission rod rotate. Subsequently, the transmission rod drives the winding rod B to rotate, so that the metal core is wound outside the winding rod A, and the plastic outer skin is wound outside the winding rod B. At the same time, the motor B on the mounting frame drives the threaded rod to rotate. Then, the transmission sleeve outside the threaded rod drives the sleeve rod A and the sleeve rod B to move. The sleeve rod A drives the plastic outer skin to move, and the sleeve rod B drives the metal core to move, so as to facilitate the uniform winding of the plastic outer skin and the metal core after stripping the wire and cable outside the winding rod B and the winding rod A respectively. Description of the Drawings
[0019] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0020] Figure 1 It is a schematic diagram of the overall structure of the fully automatic multi-functional computer wire stripper of the present utility model;
[0021] Figure 2 It is a schematic diagram of the internal structure of the connecting frame of the fully automatic multi-functional computer wire stripper of the present utility model;
[0022] In the figure: 1. Main body of the computer wire stripper; 2. Conveying roller; 3. Fixing frame; 4. Mounting frame; 5. Convex particles; 6. Motor A; 7. Sleeve rod A; 8. Motor B; 9. Electric telescopic rod; 10. Support plate; 11. Blade; 12. Driving roller; 13. Sleeve rod B; 14. Threaded rod; 15. Connecting frame; 16. Transmission sleeve; 17. Winding rod A; 18. Winding rod B; 19. Motor C; 20. Transmission belt; 21. Transmission rod; 22. Fixed plate. Specific Embodiments
[0023] In order to make the technical means, creative features, achieved objectives and functions realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0024] In order to evenly wind the plastic outer skin and the metal core after the wire stripping of the cable around the outside of the winding rod B18 and the winding rod A17 respectively, as an embodiment of the present utility model, as Figure 1 , Figure 2 shown, the full-automatic multifunctional computer wire stripper described in the present utility model includes a computer wire stripper main body 1 and a support plate 10. One side of the computer wire stripper main body 1 is bolted with a mounting frame 4 for fixing a motor A6. The inside of the support plate 10 is rotatably connected with a blade 11 for wire stripping treatment of the cable. The outside of the mounting frame 4 is welded with a fixing plate 22 for fixing a connecting frame 15. Inside the connecting frame 15, a motor C19 for driving the winding rod A17 to rotate is screwed and fixed. The outside of the winding rod A17 is sleeved with a transmission belt 20 for driving a transmission rod 21 to rotate. One side of the transmission rod 21 is screwed and fixed with a winding rod B18 for collecting the plastic outer skin after the wire stripping of the cable. One side of the mounting frame 4 is screwed and fixed with a motor B8 for driving a threaded rod 14 to rotate. The outside of the threaded rod 14 is threadedly connected with a transmission sleeve 16, and one side of the transmission sleeve 16 is welded with a sleeve rod A7 for limiting the plastic outer skin after the wire stripping of the cable. The outside of the sleeve rod A7 is welded with a sleeve rod B13 for limiting and processing the metal core after the wire stripping of the cable.
[0025] When in use, first pass the cable to be wire stripped through the fixing frame 3, then pass the cable through the connection. Then, the blade 11 inside the support plate 10 performs wire stripping treatment on the cable. Subsequently, pass the plastic outer skin and the metal core after the wire stripping of the cable through the sleeve rod B13 and the sleeve rod A7 respectively. Then, fix the plastic outer skin on the outside of the winding rod B18 and fix the metal core on the outside of the winding rod A17. Then, the motor C19 inside the connecting frame 15 drives the winding rod A17 to rotate. Then, the transmission belt 20 outside the winding rod A17 makes the transmission rod 21 rotate. Subsequently, the transmission rod 21 drives the winding rod B18 to rotate, so that the metal core is wound around the outside of the winding rod A17 and the plastic outer skin is wound around the outside of the winding rod B18. At the same time, the motor B8 on the mounting frame 4 drives the threaded rod 14 to rotate. Subsequently, the transmission sleeve 16 outside the threaded rod 14 drives the sleeve rod A7 and the sleeve rod B13 to move. The sleeve rod A7 drives the plastic outer skin to move, and the sleeve rod B13 drives the metal core to move, thereby facilitating the uniform winding of the plastic outer skin and the metal core after the wire stripping of the cable around the outside of the winding rod B18 and the winding rod A17 respectively.
[0026] In order to adjust the position of the blade 11 according to requirements, by way of example, as Figure 1 shown, the present utility model further includes that a driving roller 12 for conveying the cable is screwed and fixed on one side of the motor A6. Inside the mounting frame 4, an electric telescopic rod 9 for driving the support plate 10 to move is screwed and fixed.
[0027] During use, after the cable enters the mounting frame 4, the electric telescopic rod 9 in the mounting frame 4 drives the support plate 10 to move, so that the blade 11 in the support plate 10 is in close contact with the cable, thereby facilitating the adjustment of the position of the blade 11 according to needs, and then the motor A6 outside the mounting frame 4 drives the driving roller 12 to rotate, thereby facilitating the transportation and processing of the cable.
[0028] In order to transport the cable, for example, Figure 1 As shown, the utility model also includes that the outer side of the driving roller 12 is provided with protrusions 5 for increasing the friction force on the cable.
[0029] When in use, when the cable moves through the driving roller 12 in the mounting frame 4, the protrusions 5 on the outside of the driving roller 12 come into contact with the surface of the cable, thereby increasing the friction force of the driving roller 12 on the cable, making it easier to transport the cable.
[0030] In order to drive the driving roller 12, the threaded rod 14 and the winding rod A17 to rotate, for example, Figure 1 , Figure 2 As shown, the utility model also includes that the power output end of the motor A6 is connected to the power input end of the driving roller 12, the power output end of the motor B8 is connected to the power input end of the threaded rod 14, and the power output end of the motor C19 is connected to the power input end of the winding rod A17.
[0031] When in use, when the driving roller 12 is to be driven to rotate, the motor A6 converts the received electrical energy into mechanical energy, and the motor A6 drives the driving roller 12 to rotate; when the threaded rod 14 is to be driven to rotate, the motor B8 converts the received electrical energy into mechanical energy, and the motor B8 drives the threaded rod 14 to rotate; when the winding rod A17 is to be driven to rotate, the motor C19 converts the received electrical energy into mechanical energy, and the motor C19 drives the winding rod A17 to rotate.
[0032] In order to carry out the conveying process of the cable that needs to be stripped, for example, Figure 1 As shown, the utility model also includes that the outer side of the computer wire stripping machine body 1 is screwed with a fixing frame 3 for rotating the conveying roller 2.
[0033] During use, when the cable needs to be stripped, the cable to be stripped is placed on the conveying roller 2 in the fixed frame 3. Multiple groups of conveying rollers 2 are arranged inside the fixed frame 3, so as to facilitate the conveying of the cable to be stripped.
[0034] In order to use the electrical equipment to work normally, for example, Figure 1 , Figure 2 As shown, the utility model also includes that the input ends of the motor A6, the electric telescopic rod 9, the motor B8 and the motor C19 are all electrically connected to the output end of the external power supply.
[0035] During use, by connecting to an external power supply, the electrical device operates normally.
[0036] When this utility model is in use, first pass the cable to be stripped through the fixing frame 3, then pass the cable through the connection, and then the blade 11 inside the support plate 10 performs wire stripping on the cable. Subsequently, the plastic outer skin and metal core after wire stripping of the cable pass through the sleeve rod B13 and sleeve rod A7 respectively, then fix the plastic outer skin outside the winding rod B18, fix the metal core outside the winding rod A17, and then the motor C19 inside the connecting frame 15 drives the winding rod A17 to rotate. Then, the drive belt 20 outside the winding rod A17 makes the drive rod 21 rotate. Subsequently, the drive rod 21 drives the winding rod B18 to rotate, so that the metal core is wound outside the winding rod A17, and the plastic outer skin is wound outside the winding rod B18. At the same time, the motor B8 on the mounting frame 4 drives the threaded rod 14 to rotate. Subsequently, the drive sleeve 16 outside the threaded rod 14 drives the sleeve rod A7 and sleeve rod B13 to move. The sleeve rod A7 drives the plastic outer skin to move, and the sleeve rod B13 drives the metal core to move, thereby facilitating the uniform winding of the plastic outer skin and metal core after wire stripping of the cable outside the winding rod B18 and winding rod A17 respectively;
[0037] After the cable enters the mounting frame 4, the electric telescopic rod 9 inside the mounting frame 4 drives the support plate 10 to move, making the blade 11 inside the support plate 10 in close contact with the cable, thereby facilitating the adjustment of the position of the blade 11 according to requirements. Subsequently, the motor A6 outside the mounting frame 4 drives the driving roller 12 to rotate, thereby facilitating the conveying process of the cable;
[0038] When the cable moves through the driving roller 12 inside the mounting frame 4, the convex particles 5 outside the driving roller 12 come into contact with the surface of the cable, thereby increasing the friction between the driving roller 12 and the cable and facilitating the conveying process of the cable;
[0039] When the driving roller 12 needs to be driven to rotate, the motor A6 converts the received electrical energy into mechanical energy, and the motor A6 drives the driving roller 12 to rotate. When the threaded rod 14 needs to be driven to rotate, the motor B8 converts the received electrical energy into mechanical energy, and the motor B8 drives the threaded rod 14 to rotate. When the winding rod A17 needs to be driven to rotate, the motor C19 converts the received electrical energy into mechanical energy, and the motor C19 drives the winding rod A17 to rotate;
[0040] When wire stripping of the cable is required, place the cable to be stripped on the conveying roller 2 inside the fixing frame 3. Multiple groups of conveying rollers 2 are arranged inside the fixing frame 3, thereby facilitating the conveying process of the cable to be stripped.
[0041] The above has shown and described the basic principles, main features, and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. The above-described embodiments and descriptions in the specification only illustrate the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all these changes and improvements fall within the scope of protection required by the present utility model. The scope of protection required by the present utility model is defined by the appended claims and their equivalents.
Claims
1. Fully automatic multifunctional computer wire stripping machine, characterized by: The computer wire stripping machine comprises a main body (1) and a support plate (10), wherein a mounting frame (4) for fixing a motor A (6) is bolted to one side of the main body (1), a blade (11) for stripping cables is rotatably connected to the inner side of the support plate (10), a fixing plate (22) for fixing a connecting frame (15) is welded to the outer side of the mounting frame (4), a motor C (19) for driving a rolling rod A (17) to rotate is fixed to the inner side of the connecting frame (15), and a driving rod (21) for driving a rolling rod A (17) to rotate is sleeved on the outer side of the rolling rod A (17). A transmission belt (20), a winding rod B (18) for collecting the plastic sheath of the cable after stripping is screwed to one side of the transmission rod (21), a motor B (8) for driving the threaded rod (14) to rotate is screwed to one side of the mounting frame (4), a transmission sleeve (16) is threadedly connected to the outer side of the threaded rod (14), and a sleeve rod A (7) for limiting the plastic sheath of the cable after stripping is welded to one side of the transmission sleeve (16), and a sleeve rod B (13) for limiting the metal core of the cable after stripping is welded to the outer side of the sleeve rod A (7).
2. The fully automatic multifunctional computer wire stripping machine according to claim 1 is characterized in that: A driving roller (12) for conveying cables is screwed to one side of the motor A (6), and an electric telescopic rod (9) for driving the support plate (10) to move is screwed to the inner side of the mounting frame (4).
3. The fully automatic multifunctional computer wire stripping machine according to claim 2 is characterized in that: The outer side of the driving roller (12) is provided with convex particles (5) for increasing the friction force on the cable.
4. The fully automatic multifunctional computer wire stripping machine according to claim 1 is characterized in that: The power output end of the motor A (6) is connected to the power input end of the driving roller (12), the power output end of the motor B (8) is connected to the power input end of the threaded rod (14), and the power output end of the motor C (19) is connected to the power input end of the winding rod A (17).
5. The fully automatic multifunctional computer wire stripping machine according to claim 1 is characterized in that: The outer side of the computer wire stripping machine body (1) is screw-connected to a fixing frame (3) for rotating the conveying roller (2).
6. The fully automatic multifunctional computer wire stripping machine according to claim 1, characterized in that: The input ends of the motor A (6), the electric telescopic rod (9), the motor B (8) and the motor C (19) are all electrically connected to the output end of the external power supply.