Peeling device for data line processing
By designing an automatic clamping stripping device for data cable processing, the safety issues caused by the hand-held nature of traditional devices are solved, and a safe and efficient data cable stripping process is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YICHUN JIMMY TECHNOLOGY CO LTD
- Filing Date
- 2025-06-09
- Publication Date
- 2026-05-19
AI Technical Summary
Traditional data cable stripping devices require workers to hold the data cables by hand, which increases the risk of hand injury and reduces the safety of the device.
A peeling device comprising a peeling frame, a drive unit, a shearing blade, and a positioning component was designed. Through the linkage of the clamping block and the linkage bar, the data cable is automatically clamped, avoiding manual hand operation.
This eliminates the need for handheld data cables for positioning, reducing the risk of workers being accidentally injured by the shears and improving the safety and stability of the operation.
Smart Images

Figure CN224264575U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of data cable processing technology, and in particular relates to a stripping device for data cable processing. Background Technology
[0002] In the development of electronic devices, data cables play an increasingly important role. Data cables are not only used to transmit data, but also to transmit power. Therefore, their reliability and durability are key factors in product design. In the manufacturing process, stripping the outer insulation layer of the data cable is an important step to ensure that the connection and performance of the internal wires are not affected by external materials. Existing stripping methods mainly rely on manual operation or simple mechanical devices. With the development of automation technology, a variety of automated stripping equipment has appeared on the market. These automated stripping equipment have reduced the tedious stripping steps, greatly improved production efficiency, and reduced labor costs.
[0003] Existing data cable stripping devices require manual placement of the data cable between two cutting blades, followed by the use of an electric push rod to peel off the insulation layer. However, this method requires workers to hold the data cable while performing the operation, which poses a risk of injury from the cutting blades and compromises the safety of the device during use.
[0004] In other words, traditional data cable stripping devices require workers to hold the data cable by hand, which can cause the device to accidentally injure the worker's hand, thus reducing the safety of the device during use. Utility Model Content
[0005] This invention addresses the safety issue of traditional data cable stripping devices in the prior art, which require workers to hold the data cable by hand, potentially causing injury to the worker's hand and reducing the safety of the device during use. The following technical solution is proposed:
[0006] A stripping device for data cable processing, comprising:
[0007] The data cable stripping rack is used to hold the data cables that need to be processed.
[0008] A first driving component is connected to the peeling frame and is inserted through the peeling frame;
[0009] A shearing blade, connected to the stripping frame, is used to cut off the insulation layer of the data cable;
[0010] The positioning component includes a mounting base, a second driving component, a clamping block, a first linkage bar, a first linkage component, and a second linkage bar. The mounting base is connected to the peeling machine frame and sleeved on the second driving component. One of the clamping blocks is connected to the second driving component, and the clamping block is connected to the first linkage bar. The first linkage bar is connected to the first linkage component, and the first linkage component is connected to the second linkage bar. The second linkage bar is connected to the other clamping block. The two clamping blocks move towards each other under the driving action of the first driving component.
[0011] As a preferred embodiment of the above technical solution, one of the clamping blocks is provided with a connecting rod, the connecting rod is provided with a second linkage component, the second linkage component is connected with a third linkage bar, the third linkage bar is connected to the peeling frame, and the clamping block moves horizontally through the third linkage bar and the second linkage component.
[0012] As a preferred embodiment of the above technical solution, both the first linkage bar and the second linkage bar are embedded inside the shearing blade, with the second linkage bar located above the first linkage bar. Both the first linkage bar and the second linkage bar are provided with protrusions, which are in contact with the shearing blade to enable the first linkage bar and the second linkage bar to move horizontally.
[0013] As a preferred embodiment of the above technical solution, two shearing blades are provided, one of which is connected to the peeling frame and the other is connected to the drive unit, and the two shearing blades are vertically aligned.
[0014] As a preferred embodiment of the above technical solution, a collection box is provided on the peeling frame, which is located below the clamping block and is used to collect the removed insulation layer.
[0015] As a preferred embodiment of the above technical solution, the linkage bar three is provided with a positioning plate, which is located on both sides of the linkage bar three. When the linkage component two moves, the positioning plate guides the linkage component two.
[0016] The beneficial effects of this utility model are as follows:
[0017] (1) The two clamping blocks are driven by the second drive to clamp the data cable, so that the staff does not need to hold the data cable to position it, thereby reducing the need for the staff to clean up the data cable for cutting, thus avoiding the problem of the staff's hands being accidentally injured by the shearing knife.
[0018] (2) During the movement of the clamping block, the linkage is connected to the linkage bar three through the linkage part two, which makes the movement of the clamping block more stable, thereby avoiding the problem of offset when the clamping block moves, thus improving the stability when the clamping block moves. Attached Figure Description
[0019] Figure 1 The diagram shown is a structural schematic of a data cable stripping device according to Embodiment 1;
[0020] Figure 2 The diagram shown is a schematic diagram of the back structure of a stripping device for data cable processing in Embodiment 1;
[0021] Figure 3 The diagram shown is a structural schematic of the clamping block in Embodiment 1;
[0022] Figure 4 What is shown is Figure 3 A schematic diagram of the structure of region A in the middle;
[0023] Figure 5 The diagram shown is a structural schematic of the linkage component 1 in Embodiment 1.
[0024] In the diagram: 1. Peeling machine frame; 2. Drive component one; 3. Shearing blade; 4. Mounting base; 5. Drive component two; 6. Clamping block; 7. Linkage bar one; 8. Linkage component one; 9. Linkage bar two; 10. Connecting rod; 11. Linkage component two; 12. Linkage bar three; 13. Collection box; 14. Positioning plate. Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.
[0026] Example 1: This utility model provides a stripping device for data cable processing, such as... Figures 1 to 5As shown, the device includes: a stripping frame 1, a drive component 2, a shearing blade 3, and a positioning assembly. The stripping frame 1 is used to hold the data cable to be processed. The drive component 2 is connected to the stripping frame 1 and is inserted into the stripping frame 1. Both the drive component 2 and the drive component 3 are electric push rods. The shearing blade 3 is connected to the stripping frame 1 and is used to cut off the insulation layer of the data cable. The positioning assembly includes a mounting base 4, a drive component 5, a clamping block 6, a linkage bar 7, a linkage component 8, and a linkage bar 9. The mounting base 4 is connected to the stripping frame 1 and is sleeved on the drive component 5. There are two clamping blocks 6, and a square groove is provided at the center of each clamping block 6. One clamping block 6 is connected to the drive component 5 and the clamping block 6 is connected to the linkage bar 7. The linkage bar 7, the linkage bar 9, and the linkage bar 12 are all racks. The linkage bar 7 is connected to the linkage component 8. The linkage component 8 and the linkage component 11 are both gears. The linkage component 8 is connected to the linkage... Moving bar 2 9 and linkage bar 2 9 are connected to another clamping block 6. The two clamping blocks 6 are aligned horizontally and move to opposite sides under the driving action of drive component 1 2. Linkage bar 2 9 and linkage bar 1 7 are both fixedly connected to an L-shaped plate at one end. Linkage bar 2 9 and linkage bar 1 7 are both fixedly connected to the clamping block 6 through the L-shaped plate. Linkage bar 1 7 and linkage bar 2 9 are both embedded inside the shearing blade 3. Linkage bar 2 9 is located above linkage bar 1 7. Linkage bar 1 7 and linkage bar 2 9 are both provided with protrusions. The surface of the shearing blade 3 is provided with a groove of the same size as the protrusion, and the protrusion and the inner wall of the groove are in contact with each other to make linkage bar 1 7 and linkage bar 2 9 move horizontally. There are two shearing blades 3. Each shearing blade 3 is provided with an arc-shaped groove in the middle position. The arc-shaped groove and the square groove are aligned horizontally. One shearing blade 3 is connected to the peeling frame 1, and the other shearing blade 3 is connected to drive component 1 2. The two shearing blades 3 are vertically aligned.
[0027] The driving component 2 5 drives the two clamping blocks 6 to clamp the data cable, so that the staff does not need to hold the data cable to position it by hand. This reduces the process of the staff needing to clean up the data cable before cutting, and avoids the problem of the staff's hands being accidentally injured by the shearing blade 3.
[0028] In use, the operator first reverses the start of drive unit 2, causing it to move one of the shearing blades 3 upwards. At this point, the two shearing blades 3 separate. The operator then places the data cable inside the arc-shaped groove and activates drive unit 5. Drive unit 5 moves one of the clamping blocks 6, which in turn moves linkage bar 7 via an L-shaped plate. Linkage bar 7 then rotates linkage unit 8, which in turn moves linkage bar 9. Linkage bar 9, via the L-shaped plate, moves the other clamping block 6 in the opposite direction. At this point, the two clamping blocks 6 move towards their opposite ends. When the two clamping blocks 6 come into contact, the data cable is secured by the square groove. This makes the data cable more stable during the stripping process. Then, the staff activates the first drive component 2, which drives one of the cutting blades 3. When the two cutting blades 3 move down to be in contact, they stop moving down. At this point, the data cable to be cut is located in the middle of the two cutting blades 3. Then, the staff pulls the entire data cable out between the two cutting blades 3, thus completing the data cable stripping process. The second drive component 5 drives the two clamping blocks 6 to clamp the data cable, so that the staff does not need to hold the data cable to position it. This reduces the need for the staff to clean up the data cable before cutting, thus avoiding the problem of the staff's hands being accidentally injured by the cutting blades 3.
[0029] Specifically, drive component 2 is fixedly connected to the top of peeling frame 1, one shearing blade 3 is fixedly connected to the bottom of peeling frame 1, and the other shearing blade 3 is fixedly connected to the output end of drive component 2. Mounting base 4 is fixedly connected to the bottom edge of peeling frame 1. Mounting base 4 is sleeved and connected to the outer surface of drive component 2 5. One clamping block 6 is fixedly connected to the output end of drive component 2 5. Linkage bar 7 is fixedly connected to one end face of clamping block 6. Linkage component 8 is engaged with the surface of linkage bar 7. Linkage component 8 is rotatably connected to the inside of shearing blade 3. Linkage bar 9 is engaged with the surface of linkage bar 8. Linkage bar 7 and linkage bar 9 are both slidably connected to the inside of shearing blade 3. Another clamping block 6 is fixedly connected to one end face of linkage bar 9.
[0030] To achieve more stable movement of the two clamping blocks 6 in the above example, the following solution is proposed: Figures 3 to 5As shown, one of the clamping blocks 6 is equipped with a connecting rod 10, and the connecting rod 10 is equipped with a second linkage component 11. The connecting rod 10 is rectangular and has a groove at its bottom end. The second linkage component 11 is rotatably connected to the inside of the groove. The second linkage component 11 is connected to a third linkage bar 12, which is connected to the peeling frame 1. The clamping block 6 moves horizontally through the third linkage bar 12 and the second linkage component 11. The peeling frame 1 is equipped with a collection box 13, and the bottom end of the collection box 13 is equipped with a limit block. The bottom end of the peeling frame 1 has a limit groove, and the limit block is slidably connected to the limit groove. The collection box 13 is located below the clamping block 6 and is used to collect the cut insulation layer. The third linkage bar 12 is equipped with a positioning plate 14. There are two positioning plates 14, which are located on both sides of the third linkage bar 12. When the second linkage component 11 moves, the positioning plate 14 guides the second linkage component 11.
[0031] During the movement of clamping block 6, the cooperation of linkage component 2 11 and linkage bar 3 12 makes the movement of clamping block 6 more stable, thereby avoiding the problem of offset during the movement of clamping block 6 and improving the stability of clamping block 6 during movement.
[0032] When in use, the clamping block 6 moves, which drives the connecting rod 10 to move. The connecting rod 10 drives the linkage part 2 11 to move. During the movement of the linkage part 2 11, it rotates on the surface of the linkage bar 3 12. Through the cooperation of the linkage part 2 11 and the linkage bar 3 12, the movement of the clamping block 6 is more stable, thereby avoiding the problem of the clamping block 6 shifting during movement and improving the stability of the clamping block 6 during movement.
[0033] Specifically, a connecting rod 10 is fixedly connected to the bottom end of the clamping block 6, and a second linkage component 11 is rotatably connected to the bottom end of the connecting rod 10. A third linkage bar 12 is engaged with the surface of the second linkage component 11. The third linkage bar 12 is fixedly connected to the bottom end of the peeling machine frame 1. A collection box 13 is slidably connected inside the peeling machine frame 1. The collection box 13 is located below the two clamping blocks 6. Positioning plates 14 are fixedly connected to both sides of the linkage bar 12.
[0034] Working Principle: When using this device, the operator first reverses the start of drive component 2, causing one of the shearing blades 3 to move upwards. At this point, the two shearing blades 3 separate. The operator then places the data cable inside the arc-shaped groove and activates drive component 5. Drive component 5 moves one of the clamping blocks 6, which in turn moves linkage bar 7 via an L-shaped plate. Linkage bar 7 then rotates linkage component 8, which in turn moves linkage bar 9. Linkage bar 9, via the L-shaped plate, causes the other clamping block 6 to move in the opposite direction. The other clamping block 6 moves connecting rod 10, which in turn moves linkage component 11. During its movement, linkage component 11 rotates on the surface of linkage bar 12. The cooperation between linkage component 11 and linkage bar 12 makes the movement of clamping block 6 more stable. At this point, the two clamping blocks... 6. Move to opposite ends respectively. When the two clamping blocks 6 are in contact, the data cable is fixed by the square groove, making the data cable more stable during the stripping process. Then, the operator starts the drive unit 2. At this time, the drive unit 2 drives one of the cutting blades 3. When the two cutting blades 3 move down to be in contact, they stop moving down. At this time, the data cable to be cut is located in the middle of the two cutting blades 3. Then, the operator pulls the entire data cable out between the two cutting blades 3. The remaining insulation layer of the data cable falls into the collection box 13 for collection, thus completing the data cable stripping process. The drive unit 2 5 drives the two clamping blocks 6 to clamp the data cable, so that the operator does not need to hold the data cable to position it. This reduces the need for the operator to collect the data cable for cutting, thus avoiding the problem of the operator's hand being accidentally injured by the cutting blades 3.
[0035] The above embodiments are only used to illustrate the technical solution of this utility model, and are not intended to limit it.
Claims
1. A stripping device for data cable processing, characterized in that, include: A stripping frame (1) is used to hold the data cables that need to be processed; Drive component 1 (2) is connected to the peeling frame (1), and the drive component 1 (2) is inserted through the peeling frame (1); A shearing blade (3), connected to the stripping frame (1), is used to cut off the insulation layer of the data cable; The positioning component includes a mounting base (4), a second driving component (5), a clamping block (6), a first linkage bar (7), a first linkage component (8), and a second linkage bar (9). The mounting base (4) is connected to the peeling frame (1). The mounting base (4) is sleeved on the second driving component (5). One of the clamping blocks (6) is connected to the second driving component (5). The clamping block (6) is connected to the first linkage bar (7). The first linkage bar (7) is connected to the first linkage component (8). The first linkage component (8) is connected to the second linkage bar (9). The second linkage bar (9) is connected to the other clamping block (6). The two clamping blocks (6) move towards each other under the driving action of the first driving component (2).
2. The stripping device for data cable processing according to claim 1, characterized in that, One of the clamping blocks (6) is provided with a connecting rod (10), and the connecting rod (10) is provided with a second linkage component (11). The second linkage component (11) is connected with a third linkage bar (12), and the third linkage bar (12) is connected to the peeling machine frame (1). The clamping block (6) moves horizontally through the third linkage bar (12) and the second linkage component (11).
3. The stripping device for data cable processing according to claim 1, characterized in that, Both the first linkage bar (7) and the second linkage bar (9) are embedded inside the shearing blade (3). The second linkage bar (9) is located above the first linkage bar (7). Both the first linkage bar (7) and the second linkage bar (9) are provided with protrusions, and the protrusions are in contact with the shearing blade (3) to make the first linkage bar (7) and the second linkage bar (9) move in a horizontal direction.
4. The stripping device for data cable processing according to claim 1, characterized in that, The shearing blade (3) is configured as two, one of which is connected to the peeling frame (1) and the other is connected to the drive unit (2), and the two shearing blades (3) are vertically aligned.
5. The stripping device for data cable processing according to claim 1, characterized in that, A collection box (13) is provided on the peeling frame (1), which is located below the clamping block (6) and is used to collect the cut insulation layer.
6. The stripping device for data cable processing according to claim 2, characterized in that, The linkage bar three (12) is provided with a positioning plate (14), which is located on both sides of the linkage bar three (12). When the linkage component two (11) moves, the positioning plate (14) guides the linkage component two (11).