High-precision reinforcing steel sheet mounting and cutting device for cable

By designing a high-precision reinforced steel sheet installation and cutting device, the coordinated work of various components in the cable production process is achieved, the problems of the existing devices in terms of accuracy, efficiency and installation quality are solved, and the production efficiency and quality of the cable are improved.

CN120395458AInactive Publication Date: 2025-08-01JIANGSU ZHENGTAI ELECTRIC CABLE
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Patent Information

Application Number
CN202510754445.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-06
Publication Date
2025-08-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing cable reinforced steel sheet installation and cutting devices have shortcomings in accuracy, efficiency, cleaning effect, coordination and installation quality, making it difficult to achieve high-precision installation and cutting, which affects the production efficiency and quality of the cable.

Method used

A high-precision reinforced steel sheet installation and cutting device including transmission, support, movement, rotation, cleaning, adhesion and cutting is designed. Through gear transmission and hydraulic system, the synchronous work of each component is achieved, ensuring the synchronization and accuracy of cleaning, adhesion, installation and cutting.

Benefits of technology

It improves the efficiency and quality of cable production, ensures the firm connection between the steel sheet and the cable, reduces lags and quality problems in the production process, and extends the service life of the cable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the field of cable processing equipment, and discloses a cable high-precision reinforcing steel sheet mounting and cutting device which comprises a box body, a transmission device fixedly arranged on one side of the box body, a supporting device fixedly arranged on one side of the box body, a steel coil movably arranged on the surface of the supporting device, a moving device fixedly arranged at one end of the box body, and a rotating device fixedly arranged at the other end of the box body. A cleaning device is arranged on the inner wall of the box body, an adhesion device is fixedly arranged at one end of the cleaning device, a cutting device is fixedly arranged above the box body, a collecting box is fixedly arranged on one side of the inner wall of the box body, and a cable is placed on the surface of a rotating device; the invention aims to provide the mounting and cutting device for the high-precision reinforcing steel sheet for the cable, the problems of an existing device in the aspects of precision, efficiency, cleaning effect, collaboration, mounting quality and the like are solved, high-precision mounting and cutting of the cable reinforcing steel sheet are achieved, and the production quality and efficiency of the cable are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of cable processing equipment, and particularly to a high-precision reinforcing steel sheet installation and cutting device for cables. Background Art

[0002] With the rapid development of China's power industry and communication industry, as a key infrastructure for power transmission and information transfer, the performance and quality of cables are directly related to the stable operation of the entire system. In a complex usage environment, cables need to withstand various mechanical stresses, external impacts, and environmental factors. Therefore, it is particularly important to improve the mechanical strength and durability of cables. To enhance the mechanical properties of cables, installing reinforcing steel sheets on the cable surface is an effective method widely used.

[0003] However, at present, there are still many problems to be solved urgently in the installation and cutting technology of cable reinforcing steel sheets in China, which seriously restricts the high-quality development of the cable industry; During the cable production process, extremely high requirements are placed on the installation size and cutting accuracy of the reinforcing steel sheets. Due to the lack of advanced positioning and control technologies, existing installation and cutting devices are difficult to achieve high-precision cutting and accurate installation of the steel sheets; The collaborative working ability among the components of traditional cable reinforcing steel sheet installation and cutting devices is poor, and high-efficiency automated production cannot be achieved; The coordination among the components of existing devices is poor, and it is impossible to synchronously adjust the cleaning and installation frequencies according to the rotation and movement speeds of the cables, which easily leads to problems such as jamming and incoordination during the production process. This not only affects the production efficiency but also reduces the quality stability of the products; During the installation of the steel sheets, it is difficult for existing devices to ensure good adhesion and laying neatness between the steel sheets and the cables. Problems such as uneven application of adhesives and insecure welding are relatively common, resulting in insufficient connection strength between the steel sheets and the cables, and easily causing phenomena such as bulging and edge warping. These installation quality problems not only affect the appearance of the cables but also reduce the mechanical properties and service life of the cables, increasing the maintenance cost and replacement frequency of the cables.

[0004] In summary, developing a high-efficiency and precision high-precision reinforcing steel sheet installation and cutting device for cables has become an urgent need for the development of China's cable industry. The present invention aims to solve the above problems in the existing technology, improve the installation and cutting accuracy and efficiency of cable reinforcing steel sheets, enhance the quality and performance of cables, meet the requirements of China's power and communication industries for high-quality cables, and proposes a high-precision reinforcing steel sheet installation and cutting device for cables. Summary of the Invention

[0005] The present invention aims to provide a high-precision installation and cutting device for reinforcing steel sheets used in cables, solve the problems of existing devices in terms of precision, efficiency, cleaning effect, coordination, and installation quality, realize the high-precision installation and cutting of cable reinforcing steel sheets, and improve the production quality and efficiency of cables.

[0006] To achieve the above object, the present invention provides the following technical solutions: The technical solution provided by the present invention is: a high-precision installation and cutting device for reinforcing steel sheets used in cables, including a box body, a transmission device fixedly arranged on one side of the box body, a support device fixedly arranged on one side of the box body, a steel coil movably arranged on the surface of the support device, a moving device fixedly arranged at one end of the box body, a rotating device fixedly arranged at the other end of the box body, a cleaning device arranged on the inner wall of the box body, an adhesion device fixedly arranged at one end of the cleaning device, a cutting device fixedly arranged above the box body, a collection box fixedly arranged on one side of the inner wall of the box body, and a cable placed on the surface of the rotating device; The transmission device includes a transmission motor fixedly installed on one side of the box body, a first transmission bevel gear adaptively arranged at the output end of the transmission motor, a second transmission bevel gear meshed with one side of the first transmission bevel gear, a first transmission gear connected by a shaft to the second transmission bevel gear, a third transmission bevel gear fixedly arranged on one side of the first transmission gear, a transmission belt adaptively arranged on the surface of the first transmission gear, a second transmission gear adaptively arranged at the other end of the transmission belt, a transmission box arranged on one side of the second transmission gear, and a fourth transmission bevel gear fixedly arranged on one side of the second transmission gear.

[0007] Furthermore, the support device includes a support frame fixedly installed on one side of the box body, a support rod fixedly arranged on one side of the support frame, and a steel coil placed on the surface of the support rod.

[0008] Furthermore, the moving device includes a moving box fixedly installed at one end of the box body, and moving rollers symmetrically arranged on the inner wall of the moving box, and the moving rollers are in contact with the surface of the cable.

[0009] Furthermore, the rotating device includes a first rotating bevel gear installed in the transmission box, the first rotating bevel gear meshed with the fourth transmission bevel gear, a first rotating rod fixedly arranged on one side of the axis of the first rotating bevel gear, a first rotating gear fixedly arranged at one end of the first rotating rod, a rotating belt adaptively arranged on the surface of the first rotating gear, a second rotating gear adaptively arranged at the other end of the rotating belt, a second rotating rod fixedly arranged on one side of the second rotating gear, and a rotating roller fixedly arranged on the surface of the second rotating rod; The rotating device further includes driven rollers symmetrically installed at one end of the box body.

[0010] Furthermore, the cleaning device includes a cleaning plate movably and snap-fitted on the inner wall of the box body, a cleaning bevel gear arranged on one side of the cleaning plate, the cleaning bevel gear meshed with the third transmission bevel gear, a plurality of cleaning scrapers evenly arranged on one side of the cleaning plate, the cleaning scrapers in contact with the surface of the cable, and a cleaning cylinder fixedly arranged at the other end of the cleaning plate, and the cleaning cylinder is movably and adaptively arranged with the inner wall of the cable.

[0011] Furthermore, the cutting device includes a cutting plate fixedly installed on one side of the inner wall of the box. An active shaft is provided inside the cutting plate. A cutting gear is fixedly provided on one side of the active shaft. A cutting motor is adaptively provided on one side of the cutting gear. A driven gear is meshed below the cutting gear. A driven shaft is fixedly provided on one side of the driven gear. The cutting device further includes a hydraulic rod fixedly installed above the inner wall of the box. A welding box is fixedly provided below the hydraulic rod. A welding torch is fixedly provided inside the welding box. Cutting blades are symmetrically provided on both sides of the outer wall of the welding box. The cutting device further includes a cutting support plate fixedly installed on the inner wall of the box. A cutting groove is formed on the surface of the cutting support plate. The cutting groove is movably adapted to the cutting blade. A collecting arc plate is fixedly provided on one side of the cutting support plate.

[0012] Furthermore, the adhesion device includes an adhesion box fixedly installed on the inner wall of the box. An adhesion ring is fixedly provided at one end of the adhesion box. An adhesion groove is formed inside the adhesion ring. A plurality of adhesion holes are formed above the adhesion groove.

[0013] The beneficial effects of this technical solution are as follows: (1) The transmission device provides power for the cleaning device and the rotating device. Through a clever gear transmission design, the cleaning device can rotate in the opposite direction according to the operation of the rotating device. This design realizes the synchronous adjustment of the cleaning frequency and the cable rotation speed, avoiding the low efficiency problem caused by the asynchronous cleaning and rotation in traditional equipment. For example, when the cable rotates at a high speed, the cleaning device can correspondingly increase the cleaning frequency to ensure that the impurities on the surface and inner wall of the cable are removed in time, greatly improving the cleaning efficiency.

[0014] (2) The collaborative working ability between components is significantly enhanced. The moving device, rotating device, cleaning device, adhesion device, cutting device, etc. can cooperate closely to form an efficient production line. During the movement and rotation of the cable, operations such as cleaning, adhesion, installation, and cutting are completed synchronously, reducing manual intervention and equipment downtime, and improving the overall production efficiency.

[0015] (3) The cutting device uses an advanced cutting motor to drive the rotation of the active shaft and the driven shaft. With the precise design of the hydraulic rod and the cutting groove, it can achieve high-precision cutting and welding of the reinforcing steel sheet. The cutting blade is accurately clamped in the cutting groove under the action of the hydraulic rod, ensuring the accuracy of the steel sheet cutting size. At the same time, the welding torch can accurately weld the steel sheet on the surface of the cable to ensure a firm connection, improving the overall quality and reliability of the cable.

[0016] (4) Through the unique design of the adhesion holes and adhesion grooves, the adhesion device can evenly apply the adhesive on the contact surface between the cable and the steel sheet. The distribution and size of the adhesion holes are carefully designed to ensure that the adhesive drips onto the cable surface with an appropriate flow rate and coverage. The excess adhesive converges in the adhesion grooves, avoiding waste and uneven adhesion problems. This uniform adhesive application method increases the connection strength between the steel sheet and the cable and reduces the risk of the steel sheet falling off. Due to the effective adhesion of the adhesive, a large amount of welding is not required for the steel sheets laid in the middle, reducing stress concentration at the welding points and potential quality hazards. At the same time, the adhesive can fill the tiny gaps between the steel sheet and the cable, integrating the steel sheet and the cable into a whole, further improving the mechanical properties and durability of the cable.

[0017] (5) The cleaning scraper and cleaning cylinder of the cleaning device can thoroughly clean the cable surface. The cleaning scraper rotates on the cable surface, effectively removing impurities such as dust and oil stains. Thoroughly cleaning the impurities on the cable surface can reduce the corrosion and wear of the cable and the steel sheet, extending the service life of the cable. At the same time, a clean surface is also conducive to the adhesion and functioning of the adhesive, further enhancing the connection stability between the steel sheet and the cable and reducing the failure rate of the cable during use. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is one of the structural schematic diagrams of a high-precision reinforcing steel sheet installation and cutting device for cables proposed by the present invention; Figure 2 is another structural schematic diagram of a high-precision reinforcing steel sheet installation and cutting device for cables proposed by the present invention; Figure 3 is the sectional structural schematic diagram of a high-precision reinforcing steel sheet installation and cutting device for cables proposed by the present invention; Figure 4 is one of the internal disassembled structural schematic diagrams of a high-precision reinforcing steel sheet installation and cutting device for cables proposed by the present invention; Figure 5 is another internal disassembled structural schematic diagram of a high-precision reinforcing steel sheet installation and cutting device for cables proposed by the present invention; Figure 6 is the third internal disassembled structural schematic diagram of a high-precision reinforcing steel sheet installation and cutting device for cables proposed by the present invention; Figure 7 is Figure 6 the enlarged schematic diagram of the structure at A in Figure 8 is the partial structural schematic diagram of the adhesion device of a high-precision reinforcing steel sheet installation and cutting device for cables proposed by the present invention; Figure 9Schematic diagram of the structure of a high-precision reinforcing steel sheet installation and cutting device for cables proposed by the present invention.

[0019] The names of the corresponding reference signs in the drawings are: 1, box body; 2, transmission device; 3, support device; 4, steel coil; 5, moving device; 6, rotating device; 7, cleaning device; 8, cutting device; 9, collection box; 10, adhesion device; 11, cable; 201, transmission motor; 202, first transmission bevel gear; 203, second transmission bevel gear; 204, first transmission gear; 205, third transmission bevel gear; 206, transmission belt; 207, second transmission gear; 208, transmission box; 209, fourth transmission bevel gear; 301, support frame; 302, support rod; 501, moving box; 502, moving roller; 601, first rotating bevel gear; 602, first rotating rod; 603, first rotating gear; 604, rotating belt; 605, second rotating gear; 606, second rotating rod; 607, rotating roller; 608, driven roller; 701, cleaning plate; 702, cleaning bevel gear; 703, cleaning scraper; 704, cleaning cylinder; 801, cutting plate; 802, driving shaft; 803, cutting gear; 804, cutting motor; 805, driven gear; 806, driven shaft; 807, collection arc plate; 808, hydraulic rod; 809, welding box; 810, welding torch; 811, cutting blade; 812, cutting support plate; 813, cutting groove; 1001, adhesion box; 1002, adhesion ring; 1003, adhesion groove; 1004, adhesion hole. Specific embodiments

[0020] 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.

[0021] The specific implementation process is as follows: Embodiment 1: Please refer to Figures 1-9, a technical solution provided by the present invention: a high-precision reinforcing steel sheet installation and cutting device for cables, including a box body 1. The box body 1 serves as the support and installation foundation for the entire device, providing a stable installation space for other components. There is a transmission device 2 on one side of the box body 1, which provides power for the entire device. The transmission device 2 includes a transmission motor 201 fixedly installed on one side of the box body 1. The output shaft of the transmission motor 201 is tightly fitted with the central hole of the first transmission bevel gear 202 by means of key connection to ensure stable power transmission. The first transmission bevel gear 202 meshes with the second transmission bevel gear 203, and the power transmission and direction change are achieved through the frictional force between the tooth surfaces. The second transmission bevel gear 203 is rigidly connected to the first transmission gear 204 by a shaft. The shaft and the second transmission bevel gear 203 and the first transmission gear 204 are connected by interference fit or key connection to ensure their synchronous rotation. There is a third transmission bevel gear 205 on one side of the first transmission gear 204, and the two are fixedly connected by a shaft to ensure the consistency of rotation. The outer circumferential surface of the first transmission gear 204 is fitted with a transmission belt 206. The inner surface of the transmission belt 206 is closely attached to the outer circumferential surface of the first transmission gear 204, and the power is transmitted by using the frictional force. The other end of the transmission belt 206 is connected to the second transmission gear 207, and the second transmission gear 207 is also driven to rotate by the frictional force. There is a transmission box 208 on one side of the second transmission gear 207. The transmission box 208 provides protection and support for components such as the second transmission gear 207. Its internal part is connected to the shaft of the second transmission gear 207 through a bearing to reduce the friction during rotation. The second transmission gear 207 is fixed to the fourth transmission bevel gear 209 by means of key connection to achieve power transmission. The function of the transmission device 2 is to transmit the power of the transmission motor 201 to the cleaning device 7 and the rotating device 6 so that they can work together. There is a support device 3 on the other side of the box body 1. The support device 3 is composed of a support frame 301 fixed on one side of the box body 1 and a support rod 302 fixed on one side of the support frame 301. The support frame 301 is firmly connected to the box body 1 by bolts or welding to provide stable support for the entire support device 3. The support rod 302 is fixed on the support frame 301 by welding or threaded connection, and a steel coil 4 is placed on its surface. The diameter and length of the support rod 302 are designed according to the size of the steel coil 4 to ensure that the steel coil 4 can be placed stably on it and rotate freely. The function of the support device 3 is to provide stable support for the steel coil 4 so that it can rotate smoothly and release the reinforcing steel sheet. There is a steel coil 4 placed on the support device 3 for storing the reinforcing steel sheet to be installed. There is a moving device 5 installed at one end of the box body 1. The moving device 5 includes a moving box 501 fixed at one end of the box body 1. The moving box 501 is tightly connected to the box body 1 by bolts to ensure the stability of the structure. Moving rollers 502 are symmetrically arranged on the inner wall of the moving box 501. The shafts of the moving rollers 502 are installed on the inner wall of the moving box 501 through bearings and can rotate flexibly. The surface of the moving rollers 502 is in close contact with the surface of the cable 11.The clamping and forward and backward movement of the cable 11 are achieved through frictional force. The function of the moving device 5 is to accurately move the cable 11 as needed so that it is in a suitable position within the device for subsequent cleaning, adhesion, installation, cutting and other operations, and is used to clamp and move the cable 11. The other end is provided with a rotating device 6. The rotating device 6 includes a first rotating bevel gear 601 installed in the transmission box 208. The first rotating bevel gear 601 is matched with the bearing in the transmission box 208 through a shaft to achieve flexible rotation. The first rotating bevel gear 601 meshes with the fourth transmission bevel gear 209, and the power is transmitted through the frictional force between the tooth surfaces. The axis of the first rotating bevel gear 601 is fixed to the first rotating rod 602 by key connection to ensure synchronous rotation. One end of the first rotating rod 602 is fixed to the first rotating gear 603 by key connection. A rotating belt 604 is adapted to the outer circumferential surface of the first rotating gear 603. The inner surface of the rotating belt 604 is closely attached to the outer circumferential surface of the first rotating gear 603, and the power is transmitted using frictional force. The other end of the rotating belt 604 is connected to the second rotating gear 605 to drive the second rotating gear 605 to rotate. The second rotating gear 605 is fixed to the second rotating rod 606 by key connection. A rotating roller 607 is fixed to the surface of the second rotating rod 606 by key connection or interference fit. In addition, driven rollers 608 are symmetrically installed at one end of the box body 1. The shafts of the driven rollers 608 are installed on the box body 1 through bearings and can rotate freely. The function of the rotating device 6 is to rotate the cable 11 within the device, facilitating operations such as cleaning, adhesion, and installation of reinforcing steel sheets at different positions of the cable 11, and is used to support and rotate the cable 11. A cleaning device 7 is provided on the inner wall of the box body 1 for cleaning impurities on the surface of the cable 11. The cleaning device 7 includes a cleaning plate 701 movably clamped and installed on the inner wall of the box body 1. The cleaning plate 701 is movably clamped at a specific position on the inner wall of the box body 1 through the cooperation of a slot and a block, which not only ensures its flexible rotation but also limits its movement within a certain range. A cleaning bevel gear 702 is provided on one side of the cleaning plate 701. The cleaning bevel gear 702 is fixed to the shaft of the cleaning plate 701 by key connection, and the two rotate synchronously. The cleaning bevel gear 702 meshes with the third transmission bevel gear 205, and the power is transmitted through the frictional force between the tooth surfaces. A number of cleaning scrapers 703 are evenly distributed on one side of the cleaning plate 701. The cleaning scrapers 703 are fixed to the cleaning plate 701 by bolts or welding, and their surfaces are in close contact with the surface of the cable 11. The other end of the cleaning plate 701 is fixed to a cleaning cylinder 704 by welding or threaded connection. The inner diameter of the cleaning cylinder 704 is adapted to the outer diameter of the cable 11, enabling the cable 11 to freely slide on the inner wall of the cleaning cylinder 704. The function of the cleaning device 7 is to thoroughly clean the surface of the cable 11 under the drive of the transmission device 2, remove impurities, and provide a good foundation for subsequent adhesion and installation of steel sheets. One end of the cleaning device 7 is connected to an adhesion device 10 for adhering the reinforcing steel sheet to the cable 11.The adhesion device 10 includes an adhesion box 1001 fixed to the inner wall of the box body 1. The adhesion box 1001 is tightly connected to the box body 1 by bolts. One end of the adhesion box 1001 is connected to an adhesion ring 1002 by welding or threading. An adhesion groove 1003 is provided on the inner wall of the adhesion ring 1002, and several adhesion holes 1004 are provided above the adhesion groove 1003. An adhesive is contained in the adhesion box 1001, and the adhesive drips onto the surface of the cable 11 through the adhesion holes 1004. The excess adhesive converges in the adhesion groove 1003 to prevent waste. The function of the adhesion device 10 is to evenly apply the adhesive to the contact surfaces of the cable 11 and the steel sheet when they pass by, so as to achieve the adhesion between the steel sheet and the cable 11. A cutting device 8 is fixed above the box body 1. The cutting device 8 includes a cutting plate 801 fixed to one side of the inner wall of the box body 。The cutting plate 801 is tightly connected to the box body 1 by bolts to ensure the structural stability. A driving shaft 802 is provided on the inner wall of the cutting plate 801. The driving shaft 802 is installed on the inner wall of the cutting plate 801 through a bearing and can rotate flexibly. One side of the driving shaft 802 is fixed to a cutting gear 803 by key connection. The central hole of the cutting gear 803 is in close fit with the driving shaft 802. The other side of the cutting gear 803 is connected to the output shaft of a cutting motor 804 through a coupling to achieve power transmission. The cutting gear 803 meshes with a driven gear 805 below it, and the driven gear 805 is driven to rotate by the frictional force between the tooth surfaces. One side of the driven gear 805 is fixed to a driven shaft 806 by key connection. The driven shaft 806 is installed on the inner wall of the cutting plate 801 through a bearing. A hydraulic rod 808 is fixed above the inner wall of the box body 1 by bolts. The end of the piston rod of the hydraulic rod 808 is connected to a welding box 809 by bolts and can drive the welding box 809 to move up and down. A welding torch 810 is fixed in the welding box 809 by bolts or clamps. Cutting blades 811 are symmetrically arranged on both sides of the outer wall of the welding box 809 by bolts. A cutting support plate 812 is also fixed to the inner wall of the box body 1 by bolts. A cutting groove 813 is provided on the surface of the cutting support plate 812. The width and depth of the cutting groove 813 are adapted to the cutting blades 811, enabling the cutting blades 811 to be smoothly embedded in it. A collecting arc plate 807 is fixed to one side of the cutting support plate 812. The collecting arc plate 807 is used to collect the steel coil 4 material after cutting and make it fall into the collecting box 9. The function of the cutting device 8 is to drive the driving shaft 802 and the driven shaft 806 to rotate under the drive of the cutting motor 804 to achieve the movement and positioning of the steel sheet. Under the action of the hydraulic rod 808, the cutting blades 811 can accurately cut the steel sheet, and the welding torch 810 can weld the connection between the steel sheet and the cable 11, which is used to cut the reinforcing steel sheet. A collecting box 9 is provided on one side of the inner wall of the box body 1 for collecting the impurities cleaned up; Place the cable 11 to be processed on the rotating rollers 607 and the driven rollers 608 of the rotating device 6, ensuring that the cable 11 is placed stably and in full contact with the rotating rollers 607 and the driven rollers 608 so as to smoothly achieve rotation subsequently. Then, slowly push one end of the cable 11 into the moving device 5 to place the cable 11 between the moving rollers 502. The moving rollers 502 are in close contact with the surface of the cable 11, preparing for the subsequent moving operation. Place the steel coil 4 storing the reinforcing steel sheets on the support rod 302 of the support device 3, ensuring that the steel coil 4 can rotate freely on the support rod 302. Introduce one end of the steel sheet on the steel coil 4 into the device so that it can smoothly enter the subsequent processing process; The operator uses the control device to start the drive motor 201. The drive motor 201 starts to operate, and its output shaft drives the first drive bevel gear 202 key-connected thereto to rotate synchronously. The first drive bevel gear 202 meshes with the second drive bevel gear 203, and through the frictional force between the tooth surfaces, the power is transmitted to the second drive bevel gear 203 to make it start to rotate. Since the second drive bevel gear 203 is rigidly connected to the first drive gear 204 by a shaft, the first drive gear 204 also rotates accordingly; The rotation of the first drive gear 204 drives the third drive bevel gear 205 fixedly connected thereto to rotate on the one hand, and on the other hand, transmits the power to the second drive gear 207 through the drive belt 206 to make the second drive gear 207 rotate. The second drive gear 207 drives the fourth drive bevel gear 209 key-connected thereto to rotate; The fourth drive bevel gear 209 meshes with the first rotating bevel gear 601 to transmit the power to the first rotating bevel gear 601, making it start to rotate under the bearing support in the transmission case 208. The first rotating bevel gear 601 drives the first rotating rod 602 key-connected thereto to rotate. The first rotating rod 602 drives the first rotating gear 603 to rotate. The first rotating gear 603 drives the second rotating gear 605 to rotate through the rotating belt 604. The second rotating gear 605 drives the second rotating rod 606 to rotate, and finally makes the rotating roller 607 fixed on the second rotating rod 606 rotate. Under the combined action of the rotating roller 607 and the driven roller 608, the cable 11 starts to rotate in the device; Meanwhile, the third drive bevel gear 205 meshes with the cleaning bevel gear 702 to transmit power to the cleaning bevel gear 702, causing the cleaning bevel gear 702 to drive the cleaning plate 701 key-connected thereto to rotate. The cleaning scraper 703 on the cleaning plate 701 rotates on the surface of the cable 11 as the cleaning plate 701 rotates to remove impurities on the surface of the cable 11. Since the power of both the cleaning device 7 and the rotating device 6 comes from the transmission device 2, and the power transmission direction between the cleaning bevel gear 702 and the rotating device 6 enables the cleaning device 7 to rotate in the opposite direction according to the operation of the rotating device 6, the cleaning frequency is synchronously adjusted with the rotation speed of the cable 11, greatly improving the cleaning efficiency; As the cable 11 rotates and moves, when the cable 11 moves to the adhesion ring 1002 of the adhesion device 10, the adhesive in the adhesion box 1001 drips onto the surface of the cable 11 through the adhesion holes 1004 under the action of gravity, and the excess adhesive will converge in the adhesion groove 1003 to avoid waste; The operator uses the control device to start the cutting motor 804. The output shaft of the cutting motor 804 drives the cutting gear 803 to rotate through a coupling. The cutting gear 803 meshes with the driven gear 805 to drive the driven gear 805 to rotate. The cutting gear 803 and the driven gear 805 respectively drive the driving shaft 802 and the driven shaft 806 key-connected thereto to rotate, and the rotation of the driving shaft 802 and the driven shaft 806 propels one end of the steel coil 4 to move; When one end of the steel coil 4 moves below the welding torch 810, the control device controls the piston rod of the hydraulic rod 808 to extend, driving the welding box 809 to move downward. The welding box 809 pushes the steel coil 4 to make it contact the surface of the cable 11. At this time, the welding torch 810 contacts the surface of the steel coil 4. The control device operates the welding torch 810 to weld one end of the steel coil 4 to the surface of the cable 11. At the same time, the control device controls the cutting blade 811 to move downward together with the welding box 809, so that the cutting blade 811 is stuck in the cutting groove 813 of the cutting support plate 812 to complete the cutting of the excess material at one end of the steel coil 4; Since the cable 11 is always in a rotating and advancing state through the rotating device 6 and the moving device 5, the rotation of the cable 11 drives the welded steel coil 4 to rotate, so that the steel coil 4 is evenly laid on the surface of the cable 11. In this process, the steel sheets laid in the middle are adhered to the surface of the cable 11 by the adhesive applied by the adhesion device 10, reducing the number of welds and increasing the connection strength between the steel sheets and the cable 11 at the same time; When the installation of the steel sheets on the entire cable 11 is completed, the control device is used to control the piston rod of the hydraulic rod 808 to retract, driving the welding box 809 and the cutting blade 811 to move upward. At the same time, the cutting blade 811 on the other side cuts the steel coil 4 again to disconnect it from the unused steel sheets behind; During the rotation and advancement of the cable 11 after the installation of the steel strips, the cable 11 passes through a conical cylinder. During the process of passing through the conical cylinder, due to the special shape of the conical cylinder, a certain pressure can be exerted on the steel strips, increasing the adhesion between the steel strips and the cable 11 through the adhesive, and at the same time adjusting the neatness of the laid steel strips to prevent problems such as bulging of the steel strips; After all the cutting work of the reinforcing steel strips of the cable 11 is completed, the operator uses the control device to turn off equipment such as the drive motor 201, the cutting motor 804, and the hydraulic rod 808, stops the operation of the device, carefully takes out the cable 11 with the installed reinforcing steel strips from the device, and performs subsequent quality inspection and packaging work.

[0022] The above are only embodiments of the present invention. Specific technical solutions or common knowledge such as characteristics known in the solution are not described in detail herein. It should be pointed out that for those skilled in the art, without departing from the technical solution of the present invention, several deformations and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the implementation effect of the present invention and the practicality of the patent. The protection scope required by this application should be based on the content of its claims, and the specific implementation manners and the like recorded in the specification can be used to explain the content of the claims.

Claims

1. A high-precision reinforcing steel sheet installation and cutting device for cables, comprising a box body (1), characterized in that: On one side of the box body (1), a transmission device (2) is fixedly arranged. On one side of the box body (1), a support device (3) is fixedly arranged. A steel coil (4) is movably arranged on the surface of the support device (3). On one end of the box body (1), a moving device (5) is fixedly arranged. On the other end of the box body (1), a rotating device (6) is fixedly arranged. A cleaning device (7) is arranged on the inner wall of the box body (1). One end of the cleaning device (7) is fixedly provided with an adhesion device (10). Above the box body (1), a cutting device (8) is fixedly arranged. On one side of the inner wall of the box body (1), a collection box (9) is fixedly arranged. A cable (11) is placed on the surface of the rotating device (6); The transmission device (2) includes a transmission motor (201) fixedly installed on one side of the box body (1). The output end of the transmission motor (201) is adaptively provided with a first transmission bevel gear (202). A second transmission bevel gear (203) is meshed on one side of the first transmission bevel gear (202). The second transmission bevel gear (203) is connected with a first transmission gear (204) through a shaft. A third transmission bevel gear (205) is fixedly arranged on one side of the first transmission gear (204). A transmission belt (206) is adaptively arranged on the surface of the first transmission gear (204). The other end of the transmission belt (206) is adaptively provided with a second transmission gear (207). A transmission box (208) is arranged on one side of the second transmission gear (207). A fourth transmission bevel gear (209) is fixedly arranged on one side of the second transmission gear (207).

2. The high-precision reinforcing steel sheet installation and cutting device for cables according to claim 1, characterized in that: The support device (3) includes a support frame (301) fixedly installed on one side of the box body (1). A support rod (302) is fixedly arranged on one side of the support frame (301). A steel coil (4) is placed on the surface of the support rod (302).

3. The high-precision reinforcing steel sheet installation and cutting device for cables according to claim 1, characterized in that: The moving device (5) includes a moving box (501) fixedly installed on one end of the box body (1). Moving rollers (502) are symmetrically arranged on the inner wall of the moving box (501). The moving rollers (502) are in contact with the surface of the cable (11).

4. The high-precision reinforcing steel sheet installation and cutting device for cables according to claim 1, characterized in that: The rotating device (6) includes a first rotating bevel gear (601) installed in the transmission box (208). The first rotating bevel gear (601) is meshed with the fourth transmission bevel gear (204). On one side of the axis of the first rotating bevel gear (601), a first rotating rod (602) is fixedly arranged. One end of the first rotating rod (602) is fixedly provided with a first rotating gear (603). A rotating belt (604) is adaptively arranged on the surface of the first rotating gear (603). The other end of the rotating belt (604) is adaptively provided with a second rotating gear (605). A second rotating rod (606) is fixedly arranged on one side of the second rotating gear (605). A rotating roller (607) is fixedly arranged on the surface of the second rotating rod (606); The rotating device (6) further includes driven rollers (608) symmetrically installed at one end of the box body (1).

5. The high-precision reinforcing steel sheet installation and cutting device for cables according to claim 1, characterized in that: The cleaning device (7) includes a cleaning plate (701) movably clamped and installed on the inner wall of the box body (1). One side of the cleaning plate (701) is provided with a cleaning bevel gear (702), which meshes with the third driving bevel gear (205). A number of cleaning scrapers (703) are evenly arranged on one side of the cleaning plate (701), and the cleaning scrapers (703) are in contact with the surface of the cable (11). The other end of the cleaning plate (701) is fixedly provided with a cleaning cylinder (704), and the cleaning cylinder (704) is movably adapted to the inner wall of the cable (11).

6. The high-precision reinforcing steel sheet installation and cutting device for cables according to claim 1, characterized in that: The cutting device (8) includes a cutting plate (801) fixedly installed on one side of the inner wall of the box body (1). A driving shaft (802) is arranged inside the cutting plate (801). One side of the driving shaft (802) is fixedly provided with a cutting gear (803). A cutting motor (804) is adapted to one side of the cutting gear (803). A driven gear (805) is meshed below the cutting gear (803), and one side of the driven gear (805) is fixedly provided with a driven shaft (806); The cutting device (7) further includes a hydraulic rod (808) fixedly installed above the inner wall of the box body (1). A welding box (809) is fixedly arranged below the hydraulic rod (808). A welding torch (810) is fixedly installed inside the welding box (809). Cutting blades (811) are symmetrically arranged on both sides of the outer wall of the welding box (809); The cutting device (7) further includes a cutting support plate (812) fixedly installed on the inner wall of the box body (1). A cutting groove (813) is formed on the surface of the cutting support plate (812), and the cutting groove (813) is movably adapted to the cutting blade (811). A collecting arc plate (807) is fixedly arranged on one side of the cutting support plate (812).

7. A high-precision reinforcing steel sheet installation and cutting device for cables according to claim 1, characterized in that: The adhesion device (10) includes an adhesion box (1001) fixedly installed on the inner wall of the box body (1). One end of the adhesion box (1001) is fixedly provided with an adhesion ring (1002). An adhesion groove (1003) is formed on the inner wall of the adhesion ring (1002), and a number of adhesion holes (1004) are formed above the adhesion groove (1003).