Skin cutting device for high-definition data connecting line

The high-definition data cable sheath cutting device driven by a servo motor solves the accuracy and efficiency problems of traditional manual cutting, achieving efficient and safe cutting results and adapting to the needs of cables of different diameters and materials.

CN223493357UActive Publication Date: 2025-10-31DONGGUAN XINZE ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202423139487.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-10-31
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Traditional manual cutting of data cable sheaths suffers from problems such as low precision, difficulty in adapting to different diameters and materials, low efficiency, cumbersome operation, and high safety risks.

Method used

The high-definition data cable sheath cutting device, driven by a servo motor, combines a precise structural design of the mounting base, clamps, and cutting components with safety protection measures to achieve efficient and accurate cutting.

Benefits of technology

It improves cutting precision and efficiency, reduces the risk of damage to the core wire, adapts to connecting wires of different diameters, and enhances production efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of cutting devices, and particularly relates to a high-definition data connecting line sheath cutting device which comprises an installation base, a stand column fixedly connected to the bottom of the installation base, a flange plate fixedly connected to the bottom of the stand column, a triangular block installed above the installation base, and a base rotationally connected to the top of the triangular block. The base is fixedly connected with a servo motor, the output end of the servo motor is fixedly connected with a driving disc, and the driving disc is in transmission connection with a belt. Through the precise structural design, such as cooperation of the mounting seat, the clamp and the cutting part, cutting precision is guaranteed, core wires are effectively prevented from being damaged, product quality is improved, efficient cutting is achieved through servo motor driving, production efficiency is improved, safety protection measures such as a protective cover and a protective shell are taken, operation risks are reduced, the whole device is easy and convenient to operate, and production cost is reduced. The device can adapt to connecting wires with different diameters, and is widely applied to the fields of electronic equipment production and maintenance.
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Description

Technical Field

[0001] This utility model relates to the field of cutting device technology, specifically a high-definition data cable sheath cutting device. Background Technology

[0002] With the rapid development of electronic information technology, high-definition data cables are being used more and more widely. In fields such as electronic equipment manufacturing, repair, and data transmission, the requirements for the quality and performance of high-definition data cables are also increasing. This urgently necessitates a device capable of efficiently and accurately cutting the outer sheath of data cables to meet these cutting needs.

[0003] Traditional data cable sheath cutting is typically done manually. This method has the following significant drawbacks:

[0004] Manual cutting makes it difficult to guarantee precision and consistency. Due to human factors, the depth and position of the cut can easily deviate, potentially damaging the internal core wires and affecting the performance and quality of the data cable.

[0005] For connecting wires of different diameters and materials, it is difficult to achieve accurate matching by hand cutting, which can easily lead to problems such as uneven cutting, excessive or insufficient outer sheath residue.

[0006] Manual cutting is slow, especially when processing data cables in batches, consuming a significant amount of time and manpower. Operators need to cut each cable individually, a tedious and inefficient process. For example, on electronic equipment production lines, traditional manual cutting methods severely impact production schedules and cannot meet the demands of large-scale production.

[0007] Manual cutting can also easily lead to operator fatigue, further reducing work efficiency. Utility Model Content

[0008] (a) Technical problems to be solved

[0009] To address the shortcomings of existing technologies, this utility model provides a high-definition data cable sheath cutting device, which solves the problems mentioned in the background art.

[0010] (II) Technical Solution

[0011] To achieve the above objectives, this utility model specifically adopts the following technical solution:

[0012] A high-definition data cable sheath cutting device includes a mounting base, a column fixedly connected to the bottom of the mounting base, a flange fixedly connected to the bottom of the column, a triangular block mounted on the top of the mounting base, a base rotatably connected to the top of the triangular block, a servo motor fixedly connected to the base, a drive plate fixedly connected to the output end of the servo motor, a belt drivingly connected to the drive plate, an auxiliary plate drivingly connected to one end of the belt, a drive shaft fixedly connected to the center of the auxiliary plate, a cutting blade bolted to one end of the drive shaft, a threaded seat fixedly connected to the mounting base, a manual screw threaded into the threaded seat, a movable clamp rotatably connected to one end of the manual screw, a fixed clamp fixedly connected to the mounting base at the corresponding position of the movable clamp, a corresponding cutting groove provided on the mounting base at the corresponding position of the cutting blade, and a handrail fixedly connected to the base.

[0013] Furthermore, the flange is provided with mounting holes, through which bolts are inserted to fix it to the ground.

[0014] Furthermore, the drive disc, belt, and auxiliary disc are covered by a protective cover, which is fixedly connected to the base.

[0015] Furthermore, the drive shaft is encased in a bearing housing for transmission, and the bearing housing is fixedly mounted on the base.

[0016] Furthermore, the base is asymmetrically arranged on the triangular block, with the servo motor end being heavier, and the base resting on the pad block, causing the base to tilt.

[0017] Furthermore, the cutting blade is provided with a protective shell, which is mounted on the base.

[0018] Furthermore, a limiting rod is fixedly connected to the lower part of the movable clamp, and the limiting rod is linearly slidably connected in a slide rail opened on the mounting base.

[0019] (III) Beneficial Effects

[0020] Compared with the prior art, this utility model provides a high-definition data cable sheath cutting device, which has the following beneficial effects:

[0021] This utility model, through precise structural design, such as the coordinated use of the mounting base, clamps, and cutting components, ensures cutting accuracy, effectively avoids damage to the core wire, and improves product quality. Servo motor drive enables efficient cutting, improving production efficiency. Safety protection measures, such as protective covers and shells, reduce operational risks. The overall device is easy to operate and can adapt to connecting wires of different diameters, making it widely applicable in fields such as electronic equipment production and maintenance. Attached Figure Description

[0022] Figure 1This is a three-dimensional structural diagram of the present invention;

[0023] Figure 2 This is a side view of the structure of this utility model;

[0024] Figure 3 This is a top view of the structure of this utility model.

[0025] In the diagram: 1. Mounting base; 2. Column; 3. Flange; 4. Triangular block; 5. Base; 6. Servo motor; 7. Drive plate; 8. Belt; 9. Auxiliary plate; 10. Protective cover; 11. Drive shaft; 12. Bearing housing; 13. Cutting blade; 14. Protective shell; 15. Threaded seat; 16. Manual screw; 17. Moving clamp; 18. Slide rail; 19. Fixing clamp; 20. Cutting groove; 21. Handrail. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] Example

[0028] like Figure 1-3 As shown, an embodiment of the present invention provides a high-definition data cable sheath cutting device, including a mounting base 1;

[0029] Mounting base 1 is the basic mounting platform for the entire device, used to support and fix other components, providing a stable support structure for the entire cutting device and ensuring that each component maintains a stable relative position during operation.

[0030] The column 2 connects the mounting base 1 and the flange 3, increasing the height of the device and making the cutting device more ergonomic during operation, making it easier for operators to operate, and also helping to fix the device in a suitable working position.

[0031] The flange 3 has mounting holes at the bottom. Bolts are used to fix it to the ground through the mounting holes, which ensures that the entire device is firmly installed on the workbench and prevents the device from moving or shaking during the cutting process, thus ensuring the accuracy and stability of the cutting.

[0032] Triangular block 4 serves as the mounting base for base 5. Its top is rotatably connected to base 5, providing a support point for the rotation of base 5, so that the cutting blade 13 can be adjusted to a suitable cutting angle to adapt to different cutting needs.

[0033] The base 5 is asymmetrically positioned on the triangular block 4 and the servo motor 6 is relatively heavy. It sits on the pad in an inclined state. This design makes it convenient for the operator to observe the cutting process and operate the handle 21. At the same time, under the action of gravity, the cutting blade 13 can maintain a certain initial cutting angle, which is beneficial to the cutting operation.

[0034] The servo motor 6 serves as the power source, providing power for the rotation of the cutting blade 13. Its output speed and torque can be precisely controlled, thereby achieving stable and accurate cutting action and ensuring cutting quality and efficiency.

[0035] The active disk 7 is fixedly connected to the output end of the servo motor 6 and rotates together with the servo motor 6. It transmits power to the auxiliary disk 9 through the belt 8, which plays the role of transmitting torque and changing the transmission direction, so that the cutting blade 13 can perform rotary cutting in a suitable position and direction.

[0036] The belt 8 connects the driving disc 7 and the auxiliary disc 9, transmitting the power of the driving disc 7 to the auxiliary disc 9 to achieve long-distance transmission. At the same time, the belt 8 transmission structure is simple and easy to maintain.

[0037] The auxiliary disk 9 is fixedly connected to the drive shaft 11 at its center. Driven by the belt 8, it rotates and transmits power to the drive shaft 11, thereby driving the cutting blade 13 to rotate. It works in conjunction with the drive disk 7 to achieve stable rotation of the cutting blade 13.

[0038] The protective cover 10 covers the drive disc 7, belt 8 and auxiliary disc 9, providing safety protection and preventing operators from coming into contact with high-speed rotating parts during operation, thus avoiding injury. It also prevents foreign objects from entering the transmission components and affecting their normal operation.

[0039] One end of the drive shaft 11 is fixedly connected to the auxiliary disk 9, and the other end is fitted with the cutting blade 13 by the mounting plate bolts. Driven by the auxiliary disk 9, the drive shaft 11 rotates and transmits power to the cutting blade 13, causing the cutting blade 13 to rotate at high speed to perform cutting operations. The drive shaft 11 is also enclosed by the bearing housing 12 to ensure the smoothness and accuracy of the rotation of the drive shaft 11.

[0040] The bearing housing 12 is fixedly installed on the base 5, enclosing the drive shaft 11, providing support and positioning for the drive shaft 11, reducing the frictional resistance of the drive shaft 11 during rotation, and enabling the drive shaft 11 to rotate smoothly and steadily, thereby improving the rotational stability and cutting accuracy of the cutting blade 13.

[0041] The cutting blade 13 is bolted to a mounting plate at one end of the drive shaft 11 and rotates at high speed under the drive of the drive shaft 11, directly cutting the outer sheath of the data connection cable. Its sharp cutting edge can quickly and effectively remove the outer sheath, and by changing the cutting blade 13 of different specifications, it can adapt to the cutting needs of outer sheaths of different materials and thicknesses.

[0042] The protective shell 14 is installed on the base 5 and covers the cutting blade 13. It protects the cutting blade 13 and prevents the debris generated during the cutting process from flying and injuring people. At the same time, it can also protect the cutting blade 13 from external collisions and damage to a certain extent and extend the service life of the cutting blade 13.

[0043] The threaded seat 15 is fixedly connected to the mounting base 1 and threadedly connected to the manual screw 16, providing a mounting base and guiding the threaded movement of the manual screw 16. The linear movement of the manual screw 16 is achieved through the threaded engagement, thereby driving the movable clamp 17 to move and realize the clamping operation of data connection cables of different diameters.

[0044] The manual screw 16 is threaded into the threaded seat 15, and one end is rotatably connected to the movable clamp 17. By rotating the manual screw 16, it can make linear movement in the threaded seat 15, thereby pushing or pulling the movable clamp 17 closer to or away from the fixed clamp 19, realizing the clamping or loosening operation of the data connection cable. This makes it convenient for operators to fix connection cables of different sizes and ensures that the connection cable will not move during the cutting process.

[0045] The movable clamp 17 is rotatably connected to one end of the manual screw 16, and a limit rod is fixedly connected below it. Under the push of the manual screw 16, it slides linearly along the slide rail 18 and cooperates with the fixed clamp 19 to clamp the data connection cable. Its inner side is usually provided with anti-slip texture or rubber pad to increase the friction with the connection cable, prevent the connection cable from slipping during the cutting process, and ensure the accuracy of the cutting.

[0046] The slide rail 18 is provided on the mounting base 1 and is linearly slidably connected to the limiting rod below the movable clamp 17. It provides guidance for the linear movement of the movable clamp 17, ensuring that the movable clamp 17 can move smoothly and accurately during clamping and releasing, maintaining its relative positional relationship with the fixed clamp 19, thereby stably clamping connecting lines of different diameters.

[0047] The fixed clamp 19 is fixedly connected to the mounting base 1 and is set opposite to the movable clamp 17. When the movable clamp 17 moves to the appropriate position, the two clamp together to clamp the data connection line, fix the connection line at the cutting position, keep it stable during the cutting process, and ensure the accuracy and safety of the cutting.

[0048] The cutting groove 20 is set on the mounting base 1 at the position corresponding to the cutting blade 13, providing cutting space for the cutting blade 13 so that the cutting blade 13 can smoothly cut into the outer skin during the cutting process, while avoiding cutting the mounting base 1 itself, protecting the device structure. Furthermore, the size and shape of the cutting groove 20 are adapted to the cutting blade 13, which helps to improve the cutting quality.

[0049] The handrail 21 is fixedly connected to the base 5, making it convenient for the operator to hold during operation. By pushing or pulling the handrail 21, the tilt angle of the base 5 can be adjusted, thereby changing the cutting angle of the cutting blade 13. This allows the operator to control the cutting process more flexibly and adapt to different cutting needs, while also helping to maintain body balance and stability during operation.

[0050] The working principle of this high-definition data cable sheath cutting device is as follows: First, the device is fixed to the ground or workbench with bolts through the mounting holes on the flange 3 to ensure stability. The data cable whose sheath needs to be cut is placed between the movable clamp 17 and the fixed clamp 19 on the mounting base 1. The manual screw 16 is rotated, causing it to rotate in the threaded seat 15 and push the movable clamp 17 to slide linearly along the slide rail 18. Guided by the limit rod, the movable clamp 17 approaches the fixed clamp 19, thus clamping the data cable. Next, the servo motor 6 is started, driving the active disk 7 to rotate. The active disk 7, through the belt 8, drives the auxiliary disk 9 to rotate. The auxiliary disk 9 drives the transmission shaft 11 to rotate stably under the support of the bearing seat 12, thereby causing the cutting blade 13 mounted on one end of the transmission shaft 11 to rotate at high speed. The operator holds the handle 21 and adjusts the tilt angle of the base 5 on the triangular block 4 according to the cutting requirements, aligning the cutting blade 13 with the outer sheath of the data cable. The cutting blade 13 cuts into the sheath during rotation, cutting along the cutting groove 20 to remove the sheath. During the cutting process, the protective cover 10 protects the operator from injury by the transmission components, and the protective shell 14 prevents cutting debris from flying. After cutting, the servo motor 6 is stopped, the manual screw 16 is rotated in the opposite direction to release the moving clamp 17, and the cut data cable is removed.

[0051] like Figure 1 As shown, in some embodiments, the flange 3 is provided with mounting holes, and bolts pass through the mounting holes to fix it to the ground; the mounting holes provide connection points for the bolts, and after the bolts pass through the mounting holes, they are tightly fixed to the ground, ensuring the stability of the entire cutting device during operation.

[0052] like Figure 2 As shown, in some embodiments, the active disk 7, belt 8, and auxiliary disk 9 are covered by a protective cover 10, which is fixedly connected to the base 5. During the operation of the cutting device, the active disk 7 rotates at high speed with the servo motor 6, the belt 8 is also in a high-speed transmission state, and the auxiliary disk 9 rotates accordingly. If these components are not protected by the protective cover 10, operators are very likely to be injured by accidental contact during operation. For example, clothing, fingers, etc. may be caught in the rotating parts, causing serious personal injury.

[0053] like Figure 3As shown, in some embodiments, the drive shaft 11 is wrapped by a bearing seat 12 for transmission, and the bearing seat 12 is fixedly mounted on the base 5; the bearing seat 12 provides stable support and precise positioning for the drive shaft 11.

[0054] like Figure 2 As shown, in some embodiments, the base 5 is asymmetrically arranged on the triangular block 4, the servo motor 6 end is heavier, and the base 5 sits on the pad, making the base 5 tilted; the tilted base 5 makes it easier and more convenient for the operator to hold the handle 21 to adjust the cutting angle, and can control the cutting action more flexibly to adapt to different cutting needs.

[0055] like Figure 2 As shown, in some embodiments, the cutting blade 13 is provided with a protective shell 14, which is mounted on the base 5. During the cutting process, the cutting blade 13 rotates at high speed, generating a large amount of cutting debris. The protective shell 14 can effectively prevent these debris from flying in all directions, avoiding injury from the debris and protecting the safety of the operator.

[0056] like Figure 1 As shown, in some embodiments, a limiting rod is fixedly connected to the lower part of the movable clamp 17, and the limiting rod is linearly slidably connected in the slide rail 18 opened on the mounting base 1; when the manual screw 16 is rotated to adjust the position of the movable clamp 17 to clamp or loosen the data connection cable, the limiting rod slides in the slide rail 18, providing precise guidance for the linear movement of the movable clamp 17.

[0057] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A high-definition data cable sheath cutting device, comprising a mounting base (1), a column (2) fixedly connected to the bottom of the mounting base (1), and a flange (3) fixedly connected to the bottom of the column (2), characterized in that: A triangular block (4) is mounted above the mounting base (1). A base (5) is rotatably connected to the top of the triangular block (4). A servo motor (6) is fixedly connected to the base (5). An active disk (7) is fixedly connected to the output end of the servo motor (6). A belt (8) is driven through the active disk (7). An auxiliary disk (9) is driven through one end of the belt (8). A drive shaft (11) is fixedly connected to the center of the auxiliary disk (9). A mounting plate bolt is installed at one end of the drive shaft (11). There is a cutting blade (13), a threaded seat (15) is fixedly connected to the mounting base (1), a manual screw (16) is threadedly connected to the threaded seat (15), a movable clamp (17) is rotatably connected to one end of the manual screw (16), a fixed clamp (19) is fixedly connected to the mounting base (1) at the corresponding position of the movable clamp (17), a corresponding cutting groove (20) is provided on the mounting base (1) at the corresponding position of the cutting blade (13), and a handrail (21) is fixedly connected to the base (5).

2. The high-definition data cable sheath cutting device according to claim 1, characterized in that: The flange (3) is provided with mounting holes, and bolts are used to fix it to the ground through the mounting holes.

3. The high-definition data cable sheath cutting device according to claim 1, characterized in that: The active disc (7), belt (8) and auxiliary disc (9) are covered by a protective cover (10), which is fixedly connected to the base (5).

4. The high-definition data cable sheath cutting device according to claim 1, characterized in that: The drive shaft (11) is wrapped and driven by the bearing seat (12), which is fixedly installed on the base (5).

5. The high-definition data cable sheath cutting device according to claim 1, characterized in that: The base (5) is asymmetrically arranged on the triangular block (4), the servo motor (6) end is heavier, and the base (5) sits on the pad, causing the base (5) to tilt.

6. The high-definition data cable sheath cutting device according to claim 1, characterized in that: The cutting blade (13) is provided with a protective shell (14), which is mounted on the base (5).

7. The high-definition data cable sheath cutting device according to claim 1, characterized in that: A limiting rod is fixedly connected to the lower part of the movable clamp (17), and the limiting rod is linearly slidably connected in the slide (18) opened on the mounting base (1).