Equipment production line system for semi-automatic cutting of cable material

By designing an integrated cable equipment production line system, the existing cable cutting equipment lacks in accuracy, stability and adaptability are solved, and efficient, precise cutting and automated transportation of cables are achieved.

CN119927099AInactive Publication Date: 2025-05-06YANGZHOU RONGSHENG CABLE MATERIAL CO LTD
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Patent Information

Application Number
CN202411904391.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-05-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing cable cutting equipment has shortcomings in cutting accuracy, stability and adaptability, and traditional transportation methods are difficult to adapt to cables of different diameters and materials.

Method used

An integrated equipment production line system is designed, including cable feeding units, transportation units, cutting units and testing systems. Through technical means such as gearbox, rotary shaft, telescopic cutting structure and limiting components, the automatic feeding, transportation, cutting and testing of cables is realized.

Benefits of technology

It improves the accuracy and efficiency of cable cutting, reduces labor intensity, enhances the stability and adaptability of equipment, and realizes flexible cutting of cables of different diameters and materials.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention relates to the technical field of cable processing, in particular to a cable material semi-automatic cutting equipment production line system which comprises a cutting equipment system body, the cutting equipment system body comprises a cable feeding unit, and the cable feeding unit is provided with a cable conveying unit in a matched mode. The cable feeding unit is used for introducing cable materials, a cable cutting unit is arranged between the cable feeding unit and the cable conveying structure, a detection system is further arranged outside the cutting equipment system body, and the cable feeding unit, the cable conveying unit, the detection system and the cable conveying unit are integrally arranged on a control system. According to the system, through the integrated design, automatic feeding, conveying, cutting and detecting of cable materials are achieved, the cutting precision and efficiency are improved, and the labor intensity is reduced.
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Description

Technical Field

[0001] The invention relates to the field of technical cable processing, and in particular to an equipment production line system for semi-automatic cutting of cable materials. Background Art

[0002] As an important carrier of modern power transmission and signal transmission, the quality and length of cables are crucial to the stability of the power system and the efficiency of signal transmission. In the production process of cables, cutting is an indispensable part, which requires precision, efficiency and the ability to adapt to cables of different specifications and materials. However, traditional cable cutting methods often rely on manual operations, which is not only inefficient, but also difficult to ensure cutting accuracy and poses safety risks.

[0003] With the continuous development of industrial automation, semi-automatic or fully automatic cable cutting equipment has gradually emerged. These devices have realized the automation and intelligence of cable cutting by integrating mechanics, electronics, sensing technology and control technology. However, the existing semi-automatic cable cutting equipment still has deficiencies in functionality and adaptability. For example, the cutting accuracy of some equipment is limited by the design of the mechanical structure, making it difficult to meet the requirements of high-precision cutting; other equipment lacks a complete detection system and control system, resulting in insufficient stability and reliability during the cutting process.

[0004] In addition, the cables need to be effectively transported and positioned during the cutting process to ensure the accuracy and continuity of the cutting. Traditional transportation methods often use simple rollers or belts, which are difficult to adapt to cables of different diameters and materials, and are prone to deviation or jamming during transportation, affecting cutting efficiency and quality.

[0005] Therefore, developing an equipment production line system for semi-automatic cutting of cable materials has become an urgent problem to be solved in the cable production industry. Summary of the invention

[0006] In order to solve some problems existing in the above-mentioned prior art, the present invention provides an equipment production line system for semi-automatic cutting of cable materials. Through integrated design, the system realizes the automatic feeding, transportation, cutting and detection of cable materials, improves the cutting accuracy and efficiency, and reduces labor intensity.

[0007] To achieve the above-mentioned purpose, the present invention provides an equipment production line system for semi-automatic cutting of cable materials, including a cutting equipment system body, the cutting equipment system body including a cable feeding unit, the cable feeding unit being provided with a cable transport unit, the cable feeding unit being used to introduce cable materials, a cable cutting unit being provided between the cable feeding unit and the cable transport structure, the cutting equipment system body being further provided with a detection system, the cable feeding unit, the cable transport unit, the detection system and the cable transport unit being integrated on a control system.

[0008] As a further improvement of the present invention, in order to provide a stable feeding environment for the cable and provide power support for the rotation and feeding of the cable, the cable feeding unit includes a fixed support seat, a protective shell is provided on the outside of the fixed support seat, a reinforcing plate is provided on the bottom of the fixed support seat, a rotating shaft mounting seat is provided on one side of the fixed support seat, and a gear box is provided on the other end of the fixed support seat.

[0009] As a further improvement of the present invention, in order to achieve smooth rotation of the cable drum, ensure continuous and uniform feeding of the cable, and provide a stable foundation for the subsequent cutting process, a rotating shaft is arranged on the gear box and the rotating shaft mounting seat, and power gears for driving the rotating shaft to rotate and linkage gears connected to the power gear are respectively arranged at both ends of the interior of the gear box, and the linkage gear is connected to an external motor, and a drum for storing the cable is also arranged on the rotating shaft.

[0010] As a further improvement of the present invention, in order to achieve precise cutting of cables, ensure the stability of cables during the cutting process, and improve the cutting accuracy, the cable cutting unit includes a cutting support seat, a cutting support disk is arranged above the cutting support seat, a fixed circular chassis is arranged at the center of the cutting support disk, a telescopic cutting structure is arranged on one side of the fixed circular chassis, a rotating chassis is rotatably arranged on the fixed circular chassis, a limiting assembly is arranged in conjunction with the rotating chassis, and a supporting cylinder is arranged at the center of the rotating chassis.

[0011] As a further improvement of the present invention, in order to achieve flexibility and efficiency in the cutting process, and at the same time adjust the cutting position and force according to the diameter and cutting requirements of different cables, so as to improve the adaptability and accuracy of cutting, the telescopic cutting structure is fixedly arranged on a fixed circular chassis, and the telescopic cutting structure is provided with multiple groups, and the telescopic cutting structure includes a cutting mounting base arranged on the fixed circular chassis, and a cutting fastening sleeve is cooperatedly arranged in the cutting mounting base, and a first cutting telescopic tube is sleeved inside the cutting fastening sleeve, and the other end of the first cutting telescopic tube is connected with a combined sleeve, and a second cutting telescopic tube is arranged in the combined sleeve, and the second cutting telescopic tube is connected with a cutting connecting tube, and a cutting drill bit and a motor mounting seat are respectively arranged at both ends of the cutting connecting tube, and the motor mounting seat is equipped with a cutting motor.

[0012] As a further improvement of the present invention, in order to ensure the position stability of the cable during the cutting process and prevent the cable from shifting or shaking during the cutting process, thereby further improving the cutting accuracy, a limit assembly is arranged around the supporting cylinder, and the limit assembly includes a limit base arranged on the rotating chassis, a limit rotating shaft is arranged at the middle position of the limit base, a limit reset spring is arranged at one end of the limit base close to the center of the rotating chassis, the limit reset spring and the limit rotating shaft are cooperated to form a limit pressure block, and a V-shaped limit slot is arranged at one end of the limit base away from the center of the rotating chassis, and a strip weight block is arranged on the limit pressure block above the limit slot.

[0013] As a further improvement of the present invention, in order to achieve accurate downward pressure and fixation of the cable, ensure that the cable remains stable during the cutting process and avoid cutting errors caused by cable shaking, a downward pressure assembly is provided on the top of the support cylinder, and the downward pressure assembly includes a downward pressure support plate, the downward pressure support plate is arranged on the top of the support cylinder, a downward pressure cross beam is arranged on the downward pressure support plate, two ends of the downward pressure cross beam are connected with a downward pressure vertical rod, the downward pressure vertical rod is arranged on the cutting support plate, and a downward pressure base is arranged in the middle section of the downward pressure cross beam, and the downward pressure base is rotatably provided with a downward pressure support shaft, a downward pressure cylinder is obliquely arranged on the top of the downward pressure support shaft, a downward pressure support block is arranged on the downward pressure support shaft, and a downward pressure connecting rod is provided on the downward pressure support block, and the downward pressure connecting rod is cooperated with a downward pressure block, one end of the downward pressure block is movably hinged with the downward pressure cylinder, and the other end is movably hinged with the downward pressure connecting rod, and the downward pressure cylinder pushes the downward pressure block downward to realize the downward pressure of the downward pressure block.

[0014] As a further improvement of the present invention, in order to enhance the stability and flexibility of the cutting telescopic tube, ensure that the cutting telescopic tube remains stable during the telescopic process, and avoid cutting errors caused by shaking or offset, the cutting fastening sleeve is cooperated with a sliding groove, the first cutting telescopic tube is provided with a fixed protrusion, a limiting protrusion is provided on one side of the fixed protrusion, the combined sleeve and the first cutting telescopic tube are cooperated with a limiting plate, the two sides of the limiting plate are fixed on the combined sleeve and the first cutting telescopic tube, a telescopic limiting groove is provided under the cutting mounting base, and the cutting mounting base is cooperated with the limiting plate.

[0015] As a further improvement of the present invention, in order to realize the automated transportation of cables, ensure that the cables can move smoothly and continuously before and after cutting, improve production efficiency, reduce manual intervention, and ensure the stability and reliability of cable transportation, the cable transportation unit includes a cable transportation base, a cable transportation platform is arranged on the cable transportation base, rollers are respectively arranged on both sides of the cable transportation platform, the rollers on both sides are cooperated with transportation belts, the rollers are cooperated with a transmission assembly, one end of the transmission assembly is connected to the roller, and the other end is provided with a feeding motor.

[0016] When the present invention is working, ensure that the fixed support seat, protective shell, reinforcement plate, shaft mounting seat and gear box and other components are firmly installed without looseness or damage. Prepare the cable to be cut and ensure that it meets the specifications and requirements of the equipment. Turn on the power of the equipment and ensure that the motor and other electrical components are in standby state. Install the drum for storing the cable on the rotating shaft. After the cable drum is installed, start the motor through the control panel or remote control. The motor will start to rotate and drive the power gear in the gear box through the linkage gear. The rotation of the power gear will drive the rotating shaft connected to it to start rotating. Since the cable drum is installed on the rotating shaft, the drum will also rotate accordingly. As the drum rotates, the cable will be gradually pulled out and fed into the subsequent production line process. The feeding speed can be controlled by adjusting the speed of the motor.

[0017] During the cable feeding process, the operator should closely monitor the cable feeding to ensure that the cable enters the subsequent process smoothly and continuously. If the cable feeding speed is found to be too fast or too slow, the feeding speed can be adjusted accordingly by adjusting the speed of the motor.

[0018] The cable is fed into the cutting unit through the cable feeding unit, ensuring that the end of the cable is aligned with the limit assembly, and the cable is continuously fed into the limit assembly. When the rotating chassis starts to rotate, the limit base and all components on it rotate accordingly, and the cable gradually approaches the V-shaped limit slot. When an external object contacts the limit slot, due to the V-shaped design of the slot, the object will be gradually guided and stuck into the slot.

[0019] When the pressing action needs to be performed, first confirm the limit assembly that needs to be pressed down, rotate the pressing support shaft to the corresponding position, the pressing cylinder is activated and starts to work, the piston of the pressing cylinder moves, generates thrust, and the pressing block is connected to the pressing support block through the pressing connecting rod, ensuring the stability and accuracy of the pressing movement. As the pressing block descends, it presses tightly on the cable material, providing the necessary pressure for the cutting operation.

[0020] As the lower pressure block descends, the lower pressure block contacts the limiting pressure block. Under the action of pressure, one end of the limiting pressure block presses downward. As the limiting pressure block continues to descend, the strip weight on the limiting pressure block presses and limits the cable material, further enhancing the stability of the limiting assembly and ensuring that the cable material will not shift during the cutting process.

[0021] After the limiting and pressing operation is completed, the cable material needs to be cut. The cutting motor on the motor mounting seat is started through the control system or manual operation. The cutting motor starts to run to provide power for the cutting process. According to the specific cutting depth and position requirements, the telescopic length of the first cutting telescopic tube and the second cutting telescopic tube is adjusted through the control mechanism so that the cutting drill bit can accurately reach the target position. During the telescopic process, the cutting fastening sleeve and the combined sleeve play the role of supporting and guiding the cutting telescopic tube to ensure that the telescopic process is smooth and accurate. During the cutting process, the limiting protrusion and the limiting plate jointly limit the movement of the first cutting telescopic tube to ensure the stability and accuracy of the cutting process. In this process, the cooperation between the sliding notch and the fixed protrusion and the cooperation between the limiting plate and the telescopic limiting notch jointly ensure the accurate positioning of the cutting drill bit. When the cutting drill bit reaches the predetermined position and starts to rotate, the cutting drill bit will cut the target object. After the cutting is completed, the cutting telescopic tube is retracted to the initial position through the control mechanism. In this process, the cooperation between the sliding notch and the fixed protrusion, and the cooperation between the limiting plate and the telescopic limiting notch come into play again, ensuring that the first cutting telescopic tube and the second cutting telescopic tube can be retracted smoothly.

[0022] Before starting the cable transport unit, first check whether the cable transport base, cable transport platform, rollers, transport belts, transmission components and feed motors are intact, and ensure that there are no loose or damaged parts. The operator places the cut cables on the cable transport platform to ensure that the cables lie stably on the transport belts without slipping or getting stuck. When the cable transport task is completed, turn off the feed motor and stop the cable transport.

[0023] The beneficial effects of the present invention are: Improve cutting accuracy and efficiency: Through the integrated cable feeding unit, cable transport unit, cable cutting unit and detection system, the present invention realizes semi-automatic cutting of cable materials. The coordinated work between the units not only improves the cutting accuracy, but also significantly improves the production efficiency and reduces the error and labor intensity of manual operation.

[0024] Enhanced equipment stability and durability: The cable feeding unit adopts a fixed support seat, protective shell, reinforcement plate and other structural designs to ensure the stability of the feeding process. At the same time, the setting of the rotating shaft, power gear and linkage gear on the gear box and the shaft mounting seat enables the cable drum to rotate smoothly, further enhancing the durability and reliability of the equipment.

[0025] Flexible and diverse cutting functions: The telescopic cutting structure in the cable cutting unit can flexibly cut cables of different diameters and materials through the fitting and extension of multiple sets of cutting tubes. In addition, the design of the limiter and press-down components ensures the positioning and compression of the cables during the cutting process, improving the accuracy and stability of cutting.

[0026] Intelligent control and management: The entire equipment production line system is integrated into the control system, realizing intelligent control and management of each unit. This not only simplifies the operation process, but also improves the automation level of the equipment, making production more efficient and convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to facilitate the understanding of those skilled in the art, the present invention is further described below with reference to the accompanying drawings: Figure 1 It is a structural diagram of the present invention.

[0028] Figure 2 This is the structural diagram of the cable feeding unit.

[0029] Figure 3 This is the internal structure diagram of the cable feeding unit.

[0030] Figure 4 This is a structural diagram of the cable cutting unit.

[0031] Figure 5 This is a side view of the cable cutting unit.

[0032] Figure 6 This is a structural diagram of the telescopic cutting structure.

[0033] Figure 7 It is a side view of the telescopic cutting structure.

[0034] Figure 8 This is a structural diagram of the limit assembly.

[0035] Fig. 9This is the internal structure diagram of the limit component.

[0036] Fig.10 This is a structural diagram of the press-down component.

[0037] Fig.11 This is a structural diagram of the cable transport unit.

[0038] Among them, 1 cable feeding unit, 101 fixed support seat, 102 protective shell (102), 103 reinforcement plate, 104 shaft mounting seat, 105 gear box, 106 rotating shaft (106), 107 power gear, 108 linkage gear, 109 roller, 2 cable transportation unit, 201 cable transportation base, 202 cable transportation platform, 203 roller, 204 transportation belt, 205 transmission assembly, 206 feeding motor, 3 cable cutting unit, 301 cutting support seat, 302 cutting support plate, 303 fixed circular chassis, 304 rotating chassis, 305 supporting cylinder, 4 telescopic cutting structure, 401 cutting mounting base, 402 cutting fastening sleeve, 403 1. Cutting telescopic tube, 404 combined sleeve, 405 second cutting telescopic tube, 406 cutting connecting tube, 407 cutting drill bit, 408 motor mounting seat, 409 cutting motor, 5 limiting components, 501 limiting base, 502 limiting rotating shaft, 503 limiting reset spring, 504 limiting pressure block, 505 limiting slot, 506 bar weight, 6 pressing components, 601 pressing support plate, 602 pressing beam, 603 pressing vertical rod, 604 pressing base, 605 pressing support shaft, 606 pressing cylinder, 607 pressing support block, 608 pressing connecting rod, 609 pressing block, 7 sliding notch, 8 fixed protrusion, 9 limiting protrusion, 10 limiting plate, 11 telescopic limiting notch. DETAILED DESCRIPTION

[0039] In order to enable those skilled in the art to better understand the technical solution in this application, Figure 1-11 The present invention is further described. The following examples are only used to more clearly illustrate the technical solution of the present invention, and are not intended to limit the protection scope of the present invention.

[0040] like Figure 1-11 The equipment production line system shown in the figure is used for semi-automatic cutting of cable materials, including a cutting equipment system body, the cutting equipment system body includes a cable feeding unit 1, the cable feeding unit 1 is equipped with a cable transport unit 2, the cable feeding unit 1 is used to introduce cable materials, a cable cutting unit 3 is arranged between the cable feeding unit 1 and the cable transport structure, the cutting equipment system body is also externally provided with a detection system, the cable feeding unit 1, the cable transport unit 2, the detection system and the cable transport unit 2 are integrated on the control system.

[0041] The cable feeding unit 1 includes a fixed support seat 101, a protective shell 102 is arranged outside the fixed support seat 101, a reinforcing plate 103 is arranged at the bottom of the fixed support seat 101, a rotating shaft mounting seat 104 is arranged on one side of the fixed support seat 101, and a gear box 105 is arranged at the other end of the fixed support seat 101.

[0042] A rotating shaft 106 is provided on the gear box 105 and the rotating shaft mounting seat 104. Power gears 107 for driving the rotating shaft 106 to rotate and a linkage gear 108 connected to the power gear 107 are provided at both ends of the gear box 105. The linkage gear 108 is connected to an external motor. A roller 109 for storing cables is also provided on the rotating shaft 106.

[0043] The cable cutting unit 3 includes a cutting support seat 301, a cutting support disk 302 is arranged above the cutting support seat 301, a fixed circular chassis 303 is arranged at the center of the cutting support disk 302, a telescopic cutting structure 4 is arranged on one side of the fixed circular chassis 303, a rotating chassis 304 is rotatably arranged on the fixed circular chassis 303, a limiting component 5 is arranged in conjunction with the rotating chassis 304, and a supporting cylinder 305 is arranged at the center of the rotating chassis 304.

[0044] The telescopic cutting structure 4 is fixedly arranged on the fixed circular chassis 303, and the telescopic cutting structure 4 is provided with multiple groups. The telescopic cutting structure 4 includes a cutting mounting base 401 arranged on the fixed circular chassis 303, and a cutting fastening sleeve 402 is arranged in the cutting mounting base 401. A first cutting telescopic tube 403 is sleeved inside the cutting fastening sleeve 402, and the other end of the first cutting telescopic tube 403 is connected with a combined sleeve 404, and a second cutting telescopic tube 405 is arranged in the combined sleeve 404. The second cutting telescopic tube 405 is connected with a cutting connecting tube 406, and a cutting drill bit 407 and a motor mounting seat 408 are respectively arranged at both ends of the cutting connecting tube 406, and the motor mounting seat 408 is equipped with a cutting motor 409.

[0045] A limit assembly 5 is arranged around the supporting cylinder 305, and the limit assembly 5 includes a limit base 501 arranged on the rotating chassis 304, a limit rotating shaft 502 is arranged at the middle position of the limit base 501, a limit reset spring 503 is arranged at one end of the limit base 501 close to the center of the rotating chassis 304, the limit reset spring 503 and the limit rotating shaft 502 are cooperated to form a limit pressure block 504, and a V-shaped limit groove 505 is arranged at one end of the limit base 501 away from the center of the rotating chassis 304, and a strip weight block 506 is arranged on the limit pressure block 504 above the limit groove 505.

[0046] The top of the support cylinder 305 is provided with a pressing assembly 6, and the pressing assembly 6 includes a pressing support plate 601, and the pressing support plate 601 is provided with a pressing beam 602 on the pressing support plate 601, and both ends of the pressing beam 602 are connected with pressing vertical rods 603, and the pressing vertical rod 603 is provided on the cutting support plate 302, and the middle section of the pressing beam 602 is provided with a pressing base 604, and the pressing base 604 is rotatably provided with a pressing beam 602. A pressing support shaft 605 is provided with a pressing cylinder 606 obliquely on the top of the pressing support shaft 605, a pressing support block 607 is provided on the pressing support shaft 605, a pressing connecting rod 608 is provided on the pressing support block 607, a pressing connecting rod 608 is provided on the pressing support block 609, one end of the pressing block 609 is movably hinged to the pressing cylinder 606, and the other end is movably hinged to the pressing connecting rod 608, and the pressing cylinder 606 pushes the pressing block 609 downward to press the pressing block 609 downward.

[0047] The cutting and fastening sleeve 402 is provided with a sliding groove 7, the first cutting telescopic tube is provided with a fixed protrusion 8, a limiting protrusion 9 is provided on one side of the fixed protrusion 8, the combined sleeve 404 and the first cutting telescopic tube 403 are provided with a limiting plate 10, the two sides of the limiting plate 10 are fixed on the combined sleeve 404 and the first cutting telescopic tube 403, a telescopic limiting groove 11 is provided below the cutting mounting base 401, and the cutting mounting base 401 is provided with the limiting plate 10.

[0048] The cable transport unit 2 includes a cable transport base 201, a cable transport platform 202 is arranged on the cable transport base 201, rollers 203 are arranged on both sides of the cable transport platform 202, the rollers 203 on both sides are cooperated with transport belts 204, the rollers 203 are cooperated with a transmission assembly 205, one end of the transmission assembly 205 is connected to the roller 203, and the other end is provided with a feeding motor 206.

[0049] When the present invention is working, ensure that the fixed support seat 101, the protective shell 102, the reinforcing plate 103, the rotating shaft mounting seat 104 and the gear box 105 are all firmly installed without looseness or damage. Prepare the cable to be cut and ensure that it meets the specifications and requirements of the equipment. Turn on the power of the equipment and ensure that the motor and other electrical components are in standby mode. Install the drum 109 for storing the cable on the rotating shaft 106. After the cable drum 109 is installed, start the motor through the control panel or the remote control. The motor will start to rotate and drive the power gear 107 in the gear box 105 through the linkage gear 108. The rotation of the power gear 107 will drive the rotating shaft 106 connected thereto to start rotating. Since the cable drum 109 is installed on the rotating shaft 106, the drum 109 will also rotate accordingly. As the drum 109 rotates, the cable will be gradually pulled out and sent into the subsequent production line process. The feeding speed can be controlled by adjusting the speed of the motor.

[0050] During the cable feeding process, the operator should closely monitor the cable feeding to ensure that the cable enters the subsequent process smoothly and continuously. If the cable feeding speed is found to be too fast or too slow, the feeding speed can be adjusted accordingly by adjusting the speed of the motor.

[0051] The cable is fed into the cutting unit through the cable feeding unit 1, ensuring that the end of the cable is aligned with the limiting component 5, and the cable is continuously fed into the limiting component 5. When the rotating chassis 304 starts to rotate, the limiting base 501 and all the components thereon rotate accordingly, and the cable gradually approaches the V-shaped limiting groove 505. When an external object contacts the limiting groove 505, due to the V-shaped design of the groove, the object will be gradually guided and stuck into the groove.

[0052] When the pressing action needs to be performed, first confirm the limit assembly 5 that needs to be pressed down, the pressing support shaft 605 rotates to the corresponding position, the pressing cylinder 606 is activated and starts to work, the piston of the pressing cylinder 606 moves, generates thrust, and the pressing block 609 is connected to the pressing support block 607 through the pressing connecting rod 608, ensuring the stability and accuracy of the pressing movement. As the pressing block 609 descends, it presses tightly on the cable material, providing the necessary pressure for the cutting operation.

[0053] As the lower pressing block 609 descends, the lower pressing block 609 contacts the limiting pressing block 504. Under the action of pressure, one end of the limiting pressing block 504 is pressed downward toward the limiting pressing block 504. As the limiting pressing block 504 continues to descend, the strip weight 506 on the limiting pressing block 504 presses and limits the cable material, further enhancing the stability of the limiting assembly 5 and ensuring that the cable material will not shift during the cutting process.

[0054] After the limiting and pressing operation is completed, the cable material needs to be cut. The cutting motor 409 on the motor mounting seat 408 is started through the control system or manual operation. The cutting motor 409 starts to run to provide power for the cutting process. According to the specific cutting depth and position requirements, the telescopic length of the first cutting telescopic tube 403 and the second cutting telescopic tube 405 is adjusted through the control mechanism so that the cutting drill bit 407 can accurately reach the target position. During the telescopic process, the cutting fastening sleeve 402 and the combined sleeve 404 play the role of supporting and guiding the cutting telescopic tube to ensure a smooth and accurate telescopic process. During the cutting process, the limiting protrusion 9 and the limiting plate 10 jointly limit the movement of the first cutting telescopic tube 403 to ensure the stability and accuracy of the cutting process. In this process, the cooperation between the sliding notch 7 and the fixed protrusion 8 and the cooperation between the limiting plate 10 and the telescopic limiting notch 11 jointly ensure the accurate positioning of the cutting drill bit 407. When the cutting drill bit 407 reaches the predetermined position and starts to rotate, the cutting drill bit 407 will cut the target object. After the cutting is completed, the cutting telescopic tube is retracted to the initial position through the control mechanism. In this process, the cooperation between the sliding notch 7 and the fixed protrusion 8 and the cooperation between the limit plate 10 and the telescopic limit notch 11 play a role again, ensuring that the first cutting telescopic tube 403 and the second cutting telescopic tube 405 can be retracted smoothly.

[0055] Before starting the cable transport unit 2, first check whether the cable transport base 201, cable transport platform 202, roller 203, transport belt 204, transmission assembly 205 and feed motor 206 are intact, and ensure that there are no loose or damaged parts. The operator places the cut cables on the cable transport platform 202 to ensure that the cables lie stably on the transport belt 204 without slipping or getting stuck. When the cable transport task is completed, turn off the feed motor 206 to stop the transportation of the cables.

[0056] The present invention is not limited to the above-mentioned embodiments. On the basis of the technical solution disclosed in the present invention, technicians in this field can make some substitutions and deformations to some technical features therein according to the disclosed technical content without creative labor, and these substitutions and deformations are all within the protection scope of the present invention.

Claims

1. A production line system for semi-automatic cutting of cable materials, comprising a cutting equipment system body, characterized in that: The cutting equipment system body comprises a cable feeding unit (1), the cable feeding unit (1) being provided in cooperation with a cable transport unit (2), the cable feeding unit (1) being used for introducing cable materials, a cable cutting unit (3) being provided between the cable feeding unit (1) and the cable transport structure, the cutting equipment system body being further provided with a detection system, the cable feeding unit (1), the cable transport unit (2), the detection system and the cable transport unit (2) being integrated on a control system.

2. The equipment production line system for semi-automatic cutting of cable materials according to claim 1 is characterized in that: The cable feeding unit (1) comprises a fixed support seat (101), a protective shell (102) is arranged outside the fixed support seat (101), a reinforcing plate (103) is arranged at the bottom of the fixed support seat (101), a rotating shaft mounting seat (104) is arranged on one side of the fixed support seat (101), and a gear box (105) is arranged at the other end of the fixed support seat (101).

3. The equipment production line system for semi-automatic cutting of cable materials according to claim 2 is characterized in that: A rotating shaft (106) is arranged on the gear box (105) and the rotating shaft mounting seat (104); power gears (107) for driving the rotating shaft (106) to rotate are arranged at both ends of the gear box (105); and a linkage gear (108) is connected to the power gear (107); the linkage gear (108) is connected to an external motor; and a roller (109) for storing cables is also arranged on the rotating shaft (106).

4. The equipment production line system for semi-automatic cutting of cable materials according to claim 1 is characterized in that: The cable cutting unit (3) comprises a cutting support seat (301), a cutting support disc (302) is arranged above the cutting support seat (301), a fixed circular chassis (303) is arranged at the center of the cutting support disc (302), a telescopic cutting structure (4) is arranged on one side of the fixed circular chassis (303), a rotating chassis (304) is rotatably arranged on the fixed circular chassis (303), a limiting assembly (5) is arranged in cooperation with the rotating chassis (304), and a supporting cylinder (305) is arranged at the center of the rotating chassis (304).

5. The equipment production line system for semi-automatic cutting of cable materials according to claim 4 is characterized in that: The telescopic cutting structure (4) is fixedly arranged on a fixed circular chassis (303), and the telescopic cutting structure (4) is provided with a plurality of groups. The telescopic cutting structure (4) comprises a cutting mounting base (401) arranged on the fixed circular chassis (303), a cutting fastening sleeve (402) being provided in cooperation with the cutting mounting base (401), a first cutting telescopic tube (403) being sleeved in the interior of the cutting fastening sleeve (402), a combined sleeve (404) being provided at the other end of the first cutting telescopic tube (403), a second cutting telescopic tube (405) being provided in the combined sleeve (404), a cutting connecting tube (406) being provided in connection with the second cutting telescopic tube (405), a cutting drill bit (407) and a motor mounting seat (408) being provided at both ends of the cutting connecting tube (406), and a cutting motor (409) being provided at the motor mounting seat (408).

6. The equipment production line system for semi-automatic cutting of cable materials according to claim 4 is characterized in that: A limit assembly (5) is arranged around the supporting cylinder (305), the limit assembly (5) comprising a limit base (501) arranged on the rotating chassis (304), a limit rotation axis (502) arranged at the middle position of the limit base (501), a limit return spring (503) arranged at one end of the limit base (501) close to the center of the rotating chassis (304), a limit pressure block (504) is arranged in cooperation with the limit return spring (503) and the limit rotation axis (502), a V-shaped limit slot (505) is arranged at one end of the limit base (501) away from the center of the rotating chassis (304), and a strip weight block (506) is arranged on the limit pressure block (504) above the limit slot (505).

7. The equipment production line system for semi-automatic cutting of cable materials according to claim 4 is characterized in that: A pressing assembly (6) is arranged on the top of the supporting cylinder (305), and the pressing assembly (6) comprises a pressing support plate (601), the pressing support plate (601) is arranged on the top of the supporting cylinder (305), a pressing crossbeam (602) is arranged on the pressing support plate (601), both ends of the pressing crossbeam (602) are connected with pressing vertical rods (603), the pressing vertical rods (603) are arranged on the cutting supporting plate (302), a pressing base (604) is arranged in the middle section of the pressing crossbeam (602), and the pressing base (604) is rotatably provided with a pressing crossbeam (602). A pressing support shaft (605), a pressing cylinder (606) is obliquely arranged on the top of the pressing support shaft (605), a pressing support block (607) is arranged on the pressing support shaft (605), a pressing connecting rod (608) is arranged on the pressing support block (607), a pressing connecting rod (608) is arranged in cooperation with a pressing block (609), one end of the pressing block (609) is movably hinged to the pressing cylinder (606), and the other end is movably hinged to the pressing connecting rod (608), and the pressing cylinder (606) pushes the pressing block (609) downward to realize the pressing of the pressing block (609).

8. The equipment production line system for semi-automatic cutting of cable materials according to claim 5 is characterized in that: The cutting and fastening sleeve (402) is provided with a sliding notch (7), the first cutting telescopic tube (403) is provided with a fixing protrusion (8), a limiting protrusion (9) is provided on one side of the fixing protrusion (8), the combined sleeve (404) and the first cutting telescopic tube (403) are provided with a limiting plate (10), both sides of the limiting plate (10) are fixed on the combined sleeve (404) and the first cutting telescopic tube (403), a telescopic limiting notch (11) is provided below the cutting installation base (401), and the cutting installation base (401) and the limiting plate (10) are provided in cooperation.

9. The equipment production line system for semi-automatic cutting of cable materials according to claim 1 is characterized in that: The cable transport unit (2) comprises a cable transport base (201), a cable transport platform (202) being arranged on the cable transport base (201), rollers (203) being arranged on both sides of the cable transport platform (202), transport belts (204) being arranged in cooperation with the rollers (203) on both sides, a transmission assembly (205) being arranged in cooperation with the rollers (203), one end of the transmission assembly (205) being connected to the rollers (203), and a feeding motor (206) being arranged at the other end.