Data line cutting equipment capable of preventing notch flaws
The cutting knife driven by the fixing frame and hydraulic rod combines the material conveying assembly and cleaning assembly to solve the defects in the data wire cutting, achieving a high-quality and efficient cutting process.
Patent Information
- Application Number
- CN202510469849.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-07-25
AI Technical Summary
In the prior art, cutting defects are easily caused by the shaking and bending of the wire during cutting of the data wire, which affects the production quality.
The wire is fixed with a fixing frame and an electric telescopic rod, combined with a hydraulic rod-driven cutting knife for cutting, and the degree of automation is improved through the material conveying assembly and cleaning assembly to ensure cutting accuracy and quality.
Effectively reduce cutting defects, improve wire cutting quality and production efficiency, and extend the service life of the tool.
Smart Images

Figure CN120362370A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cutting equipment, and specifically to a data cable wire cutting equipment for preventing incision defects. Background Art
[0002] As a core connection tool for modern electronic devices, data cables are widely used in daily life and industrial production. They are mainly used for data transmission and power transmission between devices. For example, charging and file synchronization of smartphones, tablets, and laptops. In the field of smart home, data cables connect devices such as cameras and smart speakers to achieve stable communication. In addition, monitoring instruments and imaging systems of medical devices rely on high-precision data cables to ensure signal stability. With the popularization of Type-C interfaces, data cables also support high-definition video transmission and fast charging, becoming a key component of multi-functional integration. Their durability and compatibility continue to improve, further promoting the development of technologies such as the Internet of Things and 5G.
[0003] When producing data cables, it is necessary to cut the wire to a corresponding length before processing and production. In the prior art, when cutting the wire, due to the shaking of the wire and the bending of the wire itself, defects are likely to occur at the cutting section, affecting the subsequent production of data cables. Summary of the Invention
[0004] The purpose of the present invention is to provide a data cable wire cutting equipment for preventing incision defects to solve the problems raised in the prior art.
[0005] To achieve the above purpose, the present invention provides the following technical solutions: The data cable wire cutting equipment for preventing incision defects includes a base. A cutting frame is installed on the base. A hydraulic rod is installed on the cutting frame. A cutting knife is installed at the lower end of the hydraulic rod. Two fixed frames are installed on the base. The two fixed frames are symmetric about the cutting knife. Two electric telescopic rods are symmetrically installed in each of the two fixed frames. A fixed semi-ring is installed at the end of the electric telescopic rod. A feeding component is arranged on the base.
[0006] As a preferred technical solution, the cutting knife can be divided into a cutting edge and a grinding surface. The cross-section of the cutting edge is an isosceles triangle. Both sides of the cutting knife are grinding surfaces. Grinding protrusions are integrally formed on the grinding surfaces.
[0007] As a preferred technical solution, the feeding component includes a motor mounting frame, a servo motor, a connecting column, a motor gear, a feeding wheel, and a feeding driving gear;
[0008] A motor mounting bracket is installed on the base, a servo motor is installed on the motor mounting bracket, a connecting column is installed on the output shaft of the servo motor, a motor gear is installed on the connecting column, two feeding wheels are symmetrically installed on the base, the two feeding wheels are rotatably installed on the base, a feeding drive gear is installed on the feeding wheel, the two feeding drive gears are meshed with each other, and one feeding drive gear close to the servo motor is also meshed with the motor gear.
[0009] As a preferred technical solution, the feeding assembly further includes a support frame, a receiving semi-ring and balls;
[0010] Support frames are installed on one sides of the two fixed frames away from the servo motor, a receiving semi-ring is installed on the support frame, and a plurality of balls are rotatably installed on the receiving semi-ring.
[0011] As a preferred technical solution, a cleaning assembly and a material receiving assembly are arranged on the base, and the cleaning assembly and the material receiving assembly are both driven by the feeding assembly.
[0012] As a preferred technical solution, the cleaning assembly includes a cleaning box, a transmission ring, a cleaning rod, a cleaning drive gear, a cleaning transmission gear, a cleaning driven gear, a cleaning transmission rod, a sewage fan and a sewage channel;
[0013] The base is installed with a cleaning box, a transmission ring is rotatably installed on one side of the cleaning box close to the feeding wheel, a cleaning driven gear is installed at one end of the transmission ring close to the feeding wheel, a cleaning transmission rod is rotatably installed on the cleaning box, a cleaning transmission gear is installed on the cleaning transmission rod, the cleaning transmission gear is meshed with the cleaning driven gear, a cleaning drive gear is further installed on the cleaning transmission rod, the cleaning drive gear is meshed with one feeding drive gear, a plurality of cleaning rods are installed at one end of the transmission ring away from the feeding wheel, the plurality of cleaning rods are arranged in a circumferential manner, a sewage fan is installed above the cleaning box, and a sewage channel is opened on the base, and the sewage channel is communicated with the lower end of the cleaning box.
[0014] As a preferred technical solution, the material receiving assembly includes a transmission mounting bracket, a material receiving transmission rod, a material receiving transmission gear, a transmission belt, a material receiving drive gear, and a material receiving wheel;
[0015] Transmission mounting brackets are symmetrically installed on the base, a material receiving transmission rod is rotatably installed on the transmission mounting bracket, the material receiving transmission rod is connected with the connecting column through a transmission belt, a material receiving transmission gear is installed on the material receiving transmission rod, two material receiving wheels are symmetrically installed on the base, the material receiving wheel and the feeding wheel are respectively located on both sides of the cutting frame, a material receiving drive gear is installed on the material receiving wheel, and one material receiving drive gear close to the material receiving transmission rod is meshed with the material receiving transmission gear.
[0016] As a preferred technical solution, the material receiving assembly further includes side baffles, end baffles, a material receiving channel, and rollers;
[0017] On one side of the base close to the material receiving wheel, a material receiving channel is provided. On both sides above the material receiving channel, side baffles are installed, and the two side baffles are connected by end baffles. The material receiving channel is an inclined plane, and a plurality of rollers are rotatably installed on the inclined plane.
[0018] As a preferred technical solution, the electric telescopic rod is electrically connected to both the servo motor and the hydraulic rod, and the sewage fan is electrically connected to the servo motor.
[0019] Compared with the prior art, the beneficial effects of the present invention are:
[0020] 1. Fix the wire on both sides of the cutting section before cutting, reduce the cutting defects caused by wire shaking during cutting, and improve the cutting quality of the wire.
[0021] 2. By setting the feeding assembly and the material receiving assembly, automatic feeding and discharging can be realized, improving the production quality and production efficiency.
[0022] 3. By setting the cleaning assembly, the surface impurities of the wire before cutting can be cleaned. While ensuring the normal transportation of the wire, it prevents impurities from affecting the cutting of the cutting tool, ensuring the cutting quality and extending the service life of the tool. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 is the first - perspective structural schematic diagram of the present invention;
[0024] Figure 2 is the second - perspective structural schematic diagram of the present invention;
[0025] Figure 3 is the third - perspective structural schematic diagram of the present invention;
[0026] Figure 4 is the fourth - perspective structural schematic diagram of the present invention;
[0027] Figure 5 is the first sectional structural schematic diagram of the present invention;
[0028] Figure 6 is the second sectional structural schematic diagram of the present invention;
[0029] Figure 7 is the present invention Figure 5 the enlarged structural schematic diagram at A in;
[0030] Figure 8 is the present invention Figure 5 the enlarged structural schematic diagram at B in.
[0031] In the figure: 1, base; 2, cutting frame; 3, hydraulic rod; 4, cutting knife; 5, fixed frame; 6, electric telescopic rod; 7, fixed semi-ring; 8, cutting edge; 9, grinding surface; 10, grinding protrusion;
[0032] 11, feeding component; 1101, motor mounting frame; 1102, servo motor; 1103, connecting column; 1104, motor gear; 1105, feeding wheel; 1106, feeding drive gear; 1107, support frame; 1108, receiving semi-ring; 1109, ball;
[0033] 12, cleaning component; 1201, cleaning box; 1202, transmission ring; 1203, cleaning rod; 1204, cleaning drive gear; 1205, cleaning transmission gear; 1206, cleaning driven gear; 1207, cleaning transmission rod; 1208, sewage fan; 1209, sewage channel;
[0034] 13, material collecting component; 1301, transmission mounting frame; 1302, material collecting transmission rod; 1303, material collecting transmission gear; 1304, transmission belt; 1305, material collecting drive gear; 1306, material collecting wheel; 1307, side baffle; 1308, end baffle; 1309, material collecting channel; 1310, roller. Detailed implementation mode
[0035] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0036] Embodiment: As Figures 1-7 shown, the present invention provides a technical solution for a data cable wire cutting device to prevent incision defects, which is characterized in that: the data cable wire cutting device to prevent incision defects includes a base 1, a cutting frame 2 is installed on the base 1, a hydraulic rod 3 is installed on the cutting frame 2, a cutting knife 4 is installed at the lower end of the hydraulic rod 3, two fixed frames 5 are installed on the base 1, the two fixed frames 5 are symmetric about the cutting knife 4, two electric telescopic rods 6 are symmetrically installed in each of the two fixed frames 5, a fixed semi-ring 7 is installed at the end of the electric telescopic rod 6, and a feeding component 11 is arranged on the base 1.
[0037] After the data cable wire is transported to the cutting position under the cutting frame 2 by the feeding assembly 11, it stops. Then, the electric telescopic rod 6 is controlled to extend. The extension of the electric telescopic rod 6 drives the fixed half-ring 7 to extend synchronously. The two fixed half-rings 7 fix the wire from both sides. The wires on both sides of the cutting knife 4 are fixed. Subsequently, when the hydraulic rod 3 is controlled to extend rapidly, it drives the cutting knife 4 to cut the wire. By synchronously fixing the wires on both sides of the cutting surface at a close distance, the cutting defects caused by the wire shaking during cutting can be reduced, and the cutting quality of the wire can be improved.
[0038] The cutting knife 4 can be divided into a cutting edge 8 and a grinding surface 9. The cross-section of the cutting edge 8 is an isosceles triangle. Both sides of the cutting knife 4 are grinding surfaces 9, and grinding protrusions 10 are integrally formed on the grinding surfaces 9.
[0039] When cutting the wire, the cutting knife 4 needs to completely pass through the wire to ensure that the wire is completely cut off. At this time, the cross-section of the wire is in contact with the grinding surface 9, and the cross-section of the wire is ground. When the cutting knife 4 returns to its original position after cutting, the grinding surface 9 and the cross-section have a relative displacement again for secondary grinding. Grinding the cross-section generated by wire cutting can effectively eliminate the deformation of the wire caused by cutting, ensure the neatness of the cross-section, and further reduce the defects of the wire caused by cutting.
[0040] As Figures 1-5 shown, the feeding assembly 11 includes a motor mounting frame 1101, a servo motor 1102, a connecting column 1103, a motor gear 1104, a feeding wheel 1105, and a feeding drive gear 1106;
[0041] The motor mounting frame 1101 is mounted on the base 1. The servo motor 1102 is mounted on the motor mounting frame 1101. A connecting column 1103 is mounted on the output shaft of the servo motor 1102. A motor gear 1104 is mounted on the connecting column 1103. Two feeding wheels 1105 are symmetrically mounted on the base 1. The two feeding wheels 1105 are rotatably mounted on the base 1. A feeding drive gear 1106 is mounted on the feeding wheel 1105. The two feeding drive gears 1106 are meshed with each other. One feeding drive gear 1106 close to the servo motor 1102 is also meshed with the motor gear 1104.
[0042] When wire cutting is required, the servo motor 1102 is started to drive the motor gear 1104 to rotate through the connecting column 1103. The motor gear 1104 drives the two feeding drive gears 1106 to rotate through gear meshing. The feeding drive gears 1106 drive the feeding wheels 1105 to rotate synchronously. The wire passes through the middle of the two feeding wheels 1105, and the wire is clamped by the two feeding wheels 1105 to complete the feeding of the wire. This feeding method can straighten the bent wire, reduce the friction between the subsequent wire and the equipment, ensure the accuracy of the cutting position, improve the accuracy of the cutting length and protect the wire.
[0043] The feeding component 11 further includes a support frame 1107, a receiving semi-ring 1108 and balls 1109;
[0044] A support frame 1107 is installed on one side of each of the two fixed frames 5 away from the servo motor 1102. A receiving semi-ring 1108 is installed on the support frame 1107, and a number of balls 1109 are rotatably installed on the receiving semi-ring 1108.
[0045] Before the wire enters the cutting position, it will pass through the receiving semi-ring 1108. At this time, the balls 1109 can ensure that the height of the wire is the same as that of the fixed semi-ring 7, and avoid the friction between the wire and the edge of the fixed frame 5, which can reduce the friction loss of the wire.
[0046] A cleaning component 12 and a material collecting component 13 are arranged on the base 1, and the cleaning component 12 and the material collecting component 13 are both driven by the feeding component 11.
[0047] As Figures 1-8 shown, the cleaning component 12 includes a cleaning box 1201, a transmission ring 1202, a cleaning rod 1203, a cleaning drive gear 1204, a cleaning transmission gear 1205, a cleaning driven gear 1206, a cleaning transmission rod 1207, a sewage fan 1208 and a sewage channel 1209;
[0048] The base 1 is equipped with a cleaning box 1201. A transmission ring 1202 is rotatably installed on one side of the cleaning box 1201 close to the material conveying wheel 1105. A cleaning driven gear 1206 is installed at one end of the transmission ring 1202 close to the material conveying wheel 1105. A cleaning transmission rod 1207 is rotatably installed on the cleaning box 1201. A cleaning transmission gear 1205 is installed on the cleaning transmission rod 1207. The cleaning transmission gear 1205 meshes with the cleaning driven gear 1206. A cleaning driving gear 1204 is also installed on the cleaning transmission rod 1207. The cleaning driving gear 1204 meshes with a material conveying driving gear 1106. A plurality of cleaning rods 1203 are installed at one end of the transmission ring 1202 away from the material conveying wheel 1105. The plurality of cleaning rods 1203 are arranged in a circular pattern. A sewage fan 1208 is installed above the cleaning box 1201. A sewage discharge channel 1209 is formed on the base 1. The sewage discharge channel 1209 is communicated with the lower end of the cleaning box 1201.
[0049] When the servo motor 1102 drives the material conveying driving gear 1106 to rotate, the material conveying driving gear 1106 drives the cleaning driving gear 1204 to rotate due to gear meshing. The cleaning driving gear 1204 drives the cleaning transmission gear 1205 to rotate synchronously through the cleaning transmission rod 1207. The cleaning transmission gear 1205 drives the cleaning driven gear 1206 to rotate. When the cleaning driven gear 1206 rotates, it drives the cleaning rod 1203 through the transmission ring 1202 to remove impurities on the surface of the passing wire. At the same time, the sewage fan 1208 blows out the removed impurities from the sewage discharge channel 1209, preventing impurities from affecting the cutting of the cutting tool 4 while ensuring the normal transportation of the wire, ensuring the cutting quality and extending the service life of the tool.
[0050] As Figures 1-5 shown, the material receiving assembly 13 includes a transmission mounting frame 1301, a material receiving transmission rod 1302, a material receiving transmission gear 1303, a transmission belt 1304, a material receiving driving gear 1305, and a material receiving wheel 1306;
[0051] The transmission mounting frames 1301 are symmetrically installed on the base 1. The material receiving transmission rod 1302 is rotatably installed on the transmission mounting frame 1301. The material receiving transmission rod 1302 is connected to the connecting column 1103 through the transmission belt 1304. A material receiving transmission gear is installed on the material receiving transmission rod 1302. Two material receiving wheels 1306 are symmetrically installed on the base 1. The material receiving wheel 1306 and the material conveying wheel 1105 are respectively located on both sides of the cutting frame 2. A material receiving driving gear 1305 is installed on the material receiving wheel 1306. One material receiving driving gear 1305 close to the material receiving transmission rod 1302 meshes with the material receiving transmission gear 1303.
[0052] When the servo motor 1102 operates, the connecting column 1103 drives the material receiving transmission rod 1302 to rotate synchronously through the transmission belt 1304. The material receiving transmission rod 1302 drives the material receiving driving gear 1305 to rotate through the material receiving transmission gear 1303. The material receiving driving gear 1305 drives the material receiving wheel 1306 to continue to convey the cut wire forward. When the material conveying assembly 11 operates, the cut wire can be output in time, avoiding the retention of the wire, improving the automation of the equipment, and improving the production efficiency.
[0053] The material receiving assembly 13 further includes side baffles 1307, end baffles 1308, a material receiving channel 1309, and rollers 1310;
[0054] On one side of the base 1 close to the material receiving wheel 1306, a material receiving channel 1309 is provided. On both sides above the material receiving channel 1309, side baffles 1307 are installed. The two side baffles 1307 are connected by an end baffle 1308. The material receiving channel 1309 is an inclined plane, and a number of rollers 1310 are rotatably installed on the inclined plane.
[0055] After the material receiving wheel 1306 conveys the cut wire out, it will fall into the material receiving channel 1309 and slide down along the material receiving channel 1309, which is convenient for workers to collect. When the wire is output from the material receiving wheel 1306, it has a certain initial velocity. The end baffle 1308 and the side baffle 1307 can make the wire fall into the material receiving channel 1309 to ensure the safety of workers.
[0056] The electric telescopic rod 6 is electrically connected to both the servo motor 1102 and the hydraulic rod 3, and the sewage fan 1208 is electrically connected to the servo motor 1102.
[0057] During cutting, the servo motor 1102 is controlled to operate regularly. When the servo motor 1102 operates, the material conveying assembly 11 and the material receiving assembly 13 convey the wire. Different operating times are set according to different length requirements. When the servo motor 1102 stops operating, the servo motor 1102 sends an electrical signal to control the electric telescopic rod 6 to extend and fix the wire. After the fixing is completed, the electric telescopic rod 6 sends an electrical signal to control the hydraulic rod 3 to drive the cutting knife 4 to cut the wire. The reasonable electrical connection ensures the normal and orderly operation of the equipment. By improving the automation, the production efficiency and production quality can be improved.
[0058] The working principle of the present invention:
[0059] After the data cable wire is transported to the cutting position below the cutting frame 2 by the material feeding component 11, it stops. Then, the electric telescopic rod 6 is controlled to extend. The extension of the electric telescopic rod 6 drives the fixed semi-ring 7 to extend synchronously. The two fixed semi-rings 7 fix the wire from both sides. The wires on both sides of the cutting knife 4 are fixed. Subsequently, when the hydraulic rod 3 is controlled to extend rapidly, it drives the cutting knife 4 to cut the wire. By synchronously fixing the wires on both sides of the cutting surface at a close distance, the cutting defects caused by the shaking of the wire during cutting can be reduced, and the cutting quality of the wire can be improved.
[0060] When cutting the wire, the cutting knife 4 needs to completely pass through the wire to ensure that the wire is completely cut off. At this time, the cross-section of the wire contacts the grinding surface 9, and the cross-section of the wire is ground. When the cutting knife 4 returns to its original position after cutting, the grinding surface 9 moves relative to the cross-section again for secondary grinding. Grinding the cross-section generated by wire cutting can effectively eliminate the deformation of the wire caused by cutting, ensure the neatness of the cross-section, and further reduce the defects of the wire caused by cutting.
[0061] When wire cutting is required, the servo motor 1102 is started to drive the motor gear 1104 to rotate through the connecting column 1103. The motor gear 1104 drives the two material feeding drive gears 1106 to rotate through gear meshing. The material feeding drive gears 1106 drive the material feeding wheels 1105 to rotate synchronously. The wire passes through the middle of the two material feeding wheels 1105. The wire is clamped by the two material feeding wheels 1105 to complete the transportation of the wire. This transportation method can straighten the bent wire, reduce the friction between the subsequent wire and the equipment, and at the same time ensure the accuracy of the cutting position, improve the accuracy of the cutting length, and protect the wire.
[0062] Before the wire enters the cutting position, it will pass through the receiving semi-ring 1108. At this time, the ball 1109 can ensure that the height of the wire is the same as that of the fixed semi-ring 7 and avoid the friction between the wire and the edge of the fixed frame 5, which can reduce the friction loss of the wire.
[0063] When the servo motor 1102 drives the material feeding drive gear 1106 to rotate, the material feeding drive gear 1106 drives the cleaning drive gear 1204 to rotate due to gear meshing. The cleaning drive gear 1204 drives the cleaning transmission gear 1205 to rotate synchronously through the cleaning transmission rod 1207. The cleaning transmission gear 1205 drives the cleaning driven gear 1206 to rotate. When the cleaning driven gear 1206 rotates, it drives the cleaning rod 1203 to remove impurities from the surface of the passing wire through the transmission ring 1202. At the same time, the sewage fan 1208 blows the removed impurities out through the sewage channel 1209. While ensuring the normal transportation of the wire, it prevents impurities from affecting the cutting of the cutting knife 4, ensures the cutting quality, and extends the service life of the cutting tool.
[0064] When the servo motor 1102 operates, the connecting column 1103 drives the material receiving transmission rod 1302 to rotate synchronously through the transmission belt 1304. The material receiving transmission rod 1302 drives the material receiving driving gear 1305 to rotate through the material receiving transmission gear 1303. The material receiving driving gear 1305 drives the material receiving wheel 1306 to continue to convey the cut wire forward. When the material conveying assembly 11 operates, the cut wire can be output in time, avoiding the retention of the wire, improving the automation of the equipment, and increasing the production efficiency.
[0065] After the material receiving wheel 1306 conveys the cut wire out, it will fall into the material receiving channel 1309 and slide down along the material receiving channel 1309, which is convenient for workers to collect. The wire has a certain initial velocity when it is output from the material receiving wheel 1306. The end baffle 1308 and the side baffle 1307 can make the wire fall into the material receiving channel 1309, ensuring the safety of workers.
[0066] During cutting, the servo motor 1102 is controlled to operate regularly. When the servo motor 1102 operates, the material conveying assembly 11 and the material receiving assembly 13 convey the wire. Different operating times are set according to different length requirements. When the servo motor 1102 stops operating, the servo motor 1102 sends an electrical signal to control the electric telescopic rod 6 to extend and fix the wire. After the fixing is completed, the electric telescopic rod 6 sends an electrical signal to control the hydraulic rod 3 to drive the cutting knife 4 to cut the wire. The reasonable electrical connection ensures the normal and orderly operation of the equipment. By improving the automation, the production efficiency and production quality can be increased.
[0067] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. A data cable wire cutting device for preventing incision defects, characterized in that: The data cable wire cutting device for preventing incision defects includes a base (1), a cutting frame (2) is installed on the base (1), a hydraulic rod (3) is installed on the cutting frame (2), a cutting knife (4) is installed at the lower end of the hydraulic rod (3), two fixing frames (5) are installed on the base (1), the two fixing frames (5) are symmetric about the cutting knife (4), two electric telescopic rods (6) are symmetrically installed in each of the two fixing frames (5), a fixed semi-ring (7) is installed at the end of the electric telescopic rod (6), and a feeding assembly (11) is arranged on the base (1).
2. The data cable wire cutting device for preventing incision defects according to claim 1, characterized in that: The cutting knife (4) can be divided into a cutting edge (8) and a grinding surface (9), the cross-section of the cutting edge (8) is an isosceles triangle, both sides of the cutting knife (4) are grinding surfaces (9), and grinding protrusions (10) are integrally formed on the grinding surface (9).
3. A data cable wire cutting device for preventing incision defects according to claim 1, characterized in that: The feeding assembly (11) includes a motor mounting frame (1101), a servo motor (1102), a connecting column (1103), a motor gear (1104), a feeding wheel (1105) and a feeding drive gear (1106); A motor mounting frame (1101) is installed on the base (1), a servo motor (1102) is installed on the motor mounting frame (1101), a connecting column (1103) is installed on the output shaft of the servo motor (1102), a motor gear (1104) is installed on the connecting column (1103), two feeding wheels (1105) are symmetrically installed on the base (1), the two feeding wheels (1105) are rotatably installed on the base (1), a feeding drive gear (1106) is installed on the feeding wheel (1105), the two feeding drive gears (1106) are meshed with each other, and a feeding drive gear (1106) close to the servo motor (1102) is also meshed with the motor gear (1104).
4. A data cable wire cutting device for preventing incision defects according to claim 3, characterized in that: The feeding assembly (11) further includes a support frame (1107), a receiving semi-ring (1108) and a ball (1109); Support frames (1107) are installed on one side of the two fixing frames (5) away from the servo motor (1102), a receiving semi-ring (1108) is installed on the support frame (1107), and a number of balls (1109) are rotatably installed on the receiving semi-ring (1108).
5. The data cable wire cutting device for preventing incision defects according to claim 3, characterized in that: A cleaning assembly (12) and a material collecting assembly (13) are arranged on the base (1), and both the cleaning assembly (12) and the material collecting assembly (13) are driven by the feeding assembly (11).
6. The data cable wire cutting device for preventing incision defects according to claim 5, characterized in that: The cleaning assembly (12) includes a cleaning box (1201), a transmission ring (1202), a cleaning rod (1203), a cleaning drive gear (1204), a cleaning transmission gear (1205), a cleaning driven gear (1206), a cleaning transmission rod (1207), a sewage fan (1208) and a sewage channel (1209); The base (1) is installed with a cleaning box (1201). On one side of the cleaning box (1201) close to the feeding wheel (1105), a transmission ring (1202) is rotatably installed. On one end of the transmission ring (1202) close to the feeding wheel (1105), a cleaning driven gear (1206) is installed. On the cleaning box (1201), a cleaning transmission rod (1207) is rotatably installed. On the cleaning transmission rod (1207), a cleaning transmission gear (1205) is installed. The cleaning transmission gear (1205) meshes with the cleaning driven gear (1206). On the cleaning transmission rod (1207), a cleaning driving gear (1204) is also installed. The cleaning driving gear (1204) meshes with a feeding driving gear (1106). On the end of the transmission ring (1202) away from the feeding wheel (1105), a plurality of cleaning rods (1203) are installed. The plurality of cleaning rods (1203) are arranged in a circular pattern. Above the cleaning box (1201), a sewage fan (1208) is installed. On the base (1), a sewage channel (1209) is opened. The sewage channel (1209) is communicated with the lower end of the cleaning box (1201).
7. A data cable wire cutting device for preventing incision defects according to claim 5, characterized in that: The material receiving assembly (13) includes a transmission mounting frame (1301), a material receiving transmission rod (1302), a material receiving transmission gear (1303), a transmission belt (1304), a material receiving driving gear (1305), and a material receiving wheel (1306); On the base (1), transmission mounting frames (1301) are symmetrically installed. On the transmission mounting frames (1301), a material receiving transmission rod (1302) is rotatably installed. The material receiving transmission rod (1302) is connected to the connecting column (1103) through a transmission belt (1304). On the material receiving transmission rod (1302), a material receiving transmission gear is installed. On the base (1), two material receiving wheels (1306) are symmetrically installed. The material receiving wheels (1306) and the feeding wheels (1105) are respectively located on both sides of the cutting frame (2). On the material receiving wheels (1306), material receiving driving gears (1305) are installed. One material receiving driving gear (1305) close to the material receiving transmission rod (1302) meshes with the material receiving transmission gear (1303).
8. A data cable wire cutting device for preventing incision defects according to claim 7, characterized in that: The material receiving assembly (13) further includes side baffles (1307), end baffles (1308), a material receiving channel (1309), and rollers (1310); On the base (1), on one side close to the material receiving wheels (1306), a material receiving channel (1309) is opened. On both sides above the material receiving channel (1309), side baffles (1307) are installed. The two side baffles (1307) are connected by an end baffle (1308). The material receiving channel (1309) is an inclined plane, and a plurality of rollers (1310) are rotatably installed on the inclined plane.
9. The data cable wire cutting device for preventing incision defects according to claim 8, characterized in that: The electric telescopic rod (6) is electrically connected to both the servo motor (1102) and the hydraulic rod (3). The sewage fan (1208) is electrically connected to the servo motor (1102).