High-efficiency electrical cable stripping device and stripping process

By designing an efficient electrical cable peeling device that freely assembles the clamping strip assembly and toothed column structure, the problems of synchronous peeling of cables of different sizes and continuous peeling of cables of medium and short lengths are solved, and efficient and continuous cable peeling operations are achieved.

CN120280837AActive Publication Date: 2025-07-08HUNAN INSTITUTE OF ENGINEERING
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Patent Information

Application Number
CN202510766618.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2025-07-08
Estimated Expiration
2045-06-10

AI Technical Summary

Technical Problem

It is difficult for the prior art to perform synchronous peeling operations on multiple cables of different sizes at the same time, and it is also difficult to perform batch continuous peeling operations on medium and short-length cables that cannot be pulled by winding rollers.

Method used

An efficient electrical cable peeling device is designed, adopting freely assembled and adjustable number of clamping strip assembly and tooth column structure, combined with multiple blades, to achieve support limit and continuous peeling of cables of different diameter models, pushing the cable forward through the rotation of the tooth column, and using a motor to drive the blade to cut the cable skin.

Benefits of technology

It realizes a single-simultaneous batch peeling operation of multiple sizes of cables, without the need for winding rollers, and has a wide range of application, which improves skin peeling efficiency and economical effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a high-efficiency electrical cable stripping device and a stripping process applied to the field of cable processing, cables of different diameter models can be supported and limited in a single stripping process by arranging clamping strip assemblies which are freely assembled and adjustable in number, meanwhile, blades with the same number as the cable models and types are selected, and the stripping efficiency is improved. According to the cable stripping device, the tooth-shaped column is installed according to the heights of cable cores of cables of different models, the horizontal plane where the cutting edge of the blade is located is close to the upper end of the cable core of the cable of the corresponding model, in the stripping process, all the cables of different models are pushed to advance through rotation of the tooth-shaped column, the cables are automatically cut by the blade, and the cable skin is divided into two parts. According to the cable stripping device, synchronous batch stripping operation can be carried out on cables of various sizes at a time, a winding roller does not need to be arranged, continuous stripping operation can be carried out on the multiple cables of different lengths, and the cable stripping device has the economic effects and the practical effects of being wide in application range and high in efficiency.
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Description

Technical Field

[0001] The invention relates to the field of cable processing, and in particular to a high-efficiency electrical cable stripping device and a stripping process. Background Art

[0002] As people's living standards improve, the use of cables is increasing. With the replacement of cables, the amount of scrapped cables is also increasing. The purpose of recycling waste cables is mainly to obtain the metal wires in the waste cables. Therefore, it is necessary to separate the wires from the skin of the waste cables.

[0003] To solve the above problems, the specification of Chinese patent CN105281258B discloses a cable stripper, including a main half-tube and a secondary half-tube locked into a sleeve by a locking device, a power gear that is pressed and matched with the outer skin of the cable and a motor that drives the power gear to rotate are installed in the power cavity of the sleeve, a switch that controls the on and off of the motor power supply is provided on the outer wall of the sleeve, the cross-section of the blade cavity of the sleeve is a regular polygon, and the number of sides of the polygon is a positive integer multiple of four, a knife handle is slidably inserted in the blade cavity, a blade that can cut the cable longitudinally is fixed at the inner end of the knife handle, a positioning device for axially positioning the knife handle is screwed on the outer section of the blade cavity, and a connecting ring is fixed at the end of the sleeve, which can perform both axial longitudinal cutting and transverse circumferential cutting and stripping, can start stripping from any part of the cable, can strip the cable in a pipe, can adjust the stripping depth, and can automatically strip, and the operation saves time and effort.

[0004] For example, the specification of Chinese patent CN222355845U discloses a stripping device for power cables. Through the cooperation of a shell, a screw rod, an adjusting rod, a vertical rod, a limit plate, a rectangular block, a first motor, a material guide roller, a bracket, a box, a stepping motor, a gear, a toothed plate, a connecting frame, a rectangular rod, a second motor, a stripping knife and a sliding rod, the problem that the existing stripping device can only strip one cable at a time during use, cannot process materials in batches, and is inconvenient to strip cables of different sizes, resulting in low work efficiency and failure to meet use requirements.

[0005] Although the existing cable stripping device can strip cables of different sizes, it can only strip cables of the same model at a time, that is, cables of different sizes need to be stripped in batches, and it is difficult to perform synchronous stripping operations on multiple cables of different sizes at the same time. In addition, for short and medium length cables that are not long enough to be pulled by a winding roller, it is difficult to perform continuous batch stripping operations during the stripping process. Summary of the invention

[0006] In view of the above-mentioned prior art, the technical problem to be solved by the present invention is that it is difficult for the prior art to simultaneously perform synchronous peeling operations on multiple cables of different sizes, and it is also difficult to perform batch continuous peeling operations on medium and short length cables that cannot be tractioned by a winding roller.

[0007] To solve the above problems, the present invention provides an efficient electrical cable peeling device, including a base. A front seat frame and a rear seat frame are fixedly connected to the upper end of the base. A plurality of clip assemblies for supporting the cable are connected between the front seat frame and the rear seat frame. A first sliding hole and a second sliding hole are respectively formed on the front seat frame and the rear seat frame. The clip assembly includes a clamping plate and a stud fixedly connected to the upper ends of a pair of clamping plates. A pair of studs are respectively slidably connected inside the first sliding hole and the second sliding hole. Both the front seat frame and the rear seat frame are connected to the stud through a first fastener. The inner top surface of the front seat frame is connected with a blade, and the blade is connected to the front seat frame through a second fastener. The blade is located above the clamping plate. The cable is located between adjacent clamping plates. A motor is also fixedly connected to the upper end of the base. The output end of the motor is fixedly connected with a mounting shaft, and a toothed column is fixedly connected to the outer end of the mounting shaft. The toothed column is located between the front seat frame and the rear seat frame and above the clamping plate.

[0008] As a further supplement to the present application, the toothed column includes a cylinder and a plurality of uniformly distributed tapered plates fixedly connected to the outer end of the cylinder. The cylinder is fixedly sleeved on the outer end of the mounting shaft.

[0009] As a further supplement to the present application, a third sliding hole is also formed on the front seat frame. A pair of mounting holes are formed on the blade. The second fastener includes a bolt, a second nut and a gasket. The bolt sequentially penetrates through the mounting hole and the third sliding hole from bottom to top. The second nut is connected to the outer end of the bolt and fits against the upper end surface of the front seat frame. The gasket is sleeved on the outer end of the bolt and is located between the blade and the inner top surface of the front seat frame.

[0010] As a further supplement to the present application, the first fastener includes a pair of first nuts connected to the outer ends of the studs, and the pair of first nuts are respectively located on the upper and lower sides of the front seat frame.

[0011] As a further supplement to the present application, a cushion plate is provided on the upper side of the base, and the cushion plate is located below the clip assembly. A plurality of dispersedly arranged electric push rods are fixedly connected inside the base. The telescopic end of the electric push rod movably penetrates through the base upward and is fixedly connected to the lower end of the cushion plate.

[0012] As another improvement of the present application, a groove is formed on the upper end of the clamping plate. A plurality of uniformly distributed overflow holes are formed on a pair of side walls of the groove. Absorbent cotton is fixedly connected to the rounded corner position of the upper end edge of the clamping plate. The absorbent cotton covers the outside of the hole opening of the overflow hole far from the groove. A mesh is fixedly connected inside the absorbent cotton.

[0013] As a further improved supplement of the present application, a pressing plate is provided inside the groove. A compression spring is fixedly connected between the lower end of the pressing plate and the inner bottom surface of the groove. A waterproof cloth is fixedly connected between the side end of the pressing plate and the inner wall of the groove.

[0014] As a further improved supplement of the present application, the connection position of the waterproof cloth and the groove is located on the lower side of the overflow hole. Lubricating oil located above the pressing plate is contained inside the groove.

[0015] An efficient electrical cable stripping process uses an efficient electrical cable stripping device and includes the following steps: S1. Batch processing of cables of the same model: S1-1. Insert multiple cables one by one between multiple clip assemblies until the end of the cable is located below the toothed column. The cables and the clip assemblies are spaced apart, and the clip assemblies support the cables. S1-2. Start the electric push rod to push the backing plate upward. The backing plate pushes the clip assemblies and the cables upward until the upper end of the cable abuts against the lower end of the toothed column. Then, turn off the electric push rod, and the positions of the backing plate and the clip assemblies remain stable. S1-3. Select a blade and fix it to the inner top surface of the front seat frame through the second fastener. The cutting edge of the blade faces the side of the toothed column, and the horizontal plane where the cutting edge is located is above the cable core of the cable. S1-4. Add lubricating oil to the inside of the groove. Start the motor, and the rotation of the toothed column pushes the cable forward. After the cable reaches the position of the blade, it starts to be cut by the blade. As the cable continues to move, the cable is split into two, realizing continuous batch stripping. S2. Batch processing of cables of multiple models: S2-1. Assume that there are n types of cable models. Perform step S1-1 and keep the cables of the same model adjacent to each other. S2-2. Move the clip assemblies upward so that the upper ends of the cables of different models all abut against the lower end of the toothed column. Fix the clip assemblies to the front seat frame and the rear seat frame through the first fastener. S2-3. Select n blades and correspond them to the cables of different models one by one. Fix the blades in the same way as in step S1-3. S2-4. Perform step S1-4 to realize the continuous batch stripping process of cables of multiple models.

[0016] In summary, by setting up a clip component that can be freely assembled and has an adjustable number, the present application can support and limit cables with different diameter models in a single peeling process. At the same time, blades with the same number as the types of cable models are selected and installed according to the core heights of different model cables, so that the horizontal plane where the blade edges are located approaches the upper end of the core of the corresponding model cable. During the peeling process, through the rotation of the toothed column, all cables of different models are pushed forward, so that they are automatically cut by the blades, and the cable skin is divided into two. Compared with the prior art, the present application can not only perform synchronous batch peeling operations on multiple sizes of cables at one time, but also does not need to set up a winding roller. For multiple cables with different lengths, continuous peeling operations can be achieved, which has the economic effects and practical effects of a wide application range and high efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a three-dimensional Figure 1 ; Figure 2 is a three-dimensional Figure 2 ; Figure 3 is a three-dimensional Figure 3 ; Figure 4 is an exploded three-dimensional view of the first and second embodiments of the present application; Figure 5 is a front structural schematic Figure 1 ; Figure 6 is a front structural schematic Figure 2 ; Figure 7 is a three-dimensional Figure 4 ; Figure 8 is a front structural schematic Figure 3 ; Figure 9 is a front structural schematic Figure 4 ; Figure 10 is a front structural schematic diagram of the second embodiment of the present application; Figure 11 is a front structural schematic Figure 1 ; Figure 12 is a front structural schematic Figure 2 .

[0018] Description of reference numerals in the figure: 1 Base, 2 Motor, 3 Mounting shaft, 4 Toothed column, 41 Cylinder, 42 Conical plate, 5 Front seat frame, 501 First sliding hole, 502 Third sliding hole, 6 Rear seat frame, 601 Second sliding hole, 7 Clip assembly, 71 Clip plate, 7101 Groove, 7102 Overflow hole, 72 Stud, 73 Oil-absorbing cotton, 74 Mesh, 75 Compression spring, 76 Pressure plate, 77 Waterproof cloth, 78 Lubricating oil, 8 Blade, 9 Pad, 10 Electric push rod, 11 Bolt, 12 Gasket. Specific implementation manners

[0019] The following describes two implementation manners of the present application in detail with reference to the accompanying drawings.

[0020] The first implementation manner: The present invention provides an efficient electrical cable stripping device. Please refer to Figure 1 and Figure 2 , which includes a base 1. A front seat frame 5 and a rear seat frame 6 are fixedly connected to the upper end of the base 1. A plurality of clip assemblies 7 for supporting the cable are connected between the front seat frame 5 and the rear seat frame 6. Combining Figure 3 and Figure 5 as shown, adjacent pairs of clip assemblies 7 are respectively located below the left and right sides of a single cable, jointly supporting the cable. Rounded corners are provided at the upper edges on both sides of the clip assembly 7, making its contact with the outer end of the cable in a line contact state, reducing the friction between the two, and facilitating the movement of the cable between a pair of clip assemblies 7 for continuous stripping operation; Combining Figure 2 and Figure 4 , a first sliding hole 501 and a second sliding hole 601 are respectively opened on the front seat frame 5 and the rear seat frame 6. The clip assembly 7 includes a clip plate 71 and a stud 72 fixedly connected to the upper ends of a pair of clip plates 71. The cable is located between adjacent clip plates 71. A pair of studs 72 are respectively slidably connected to the inside of the first sliding hole 501 and the second sliding hole 601. Both the front seat frame 5 and the rear seat frame 6 are connected to the stud 72 through a first fastener. As Figure 5 shown, the first fastener includes a pair of first nuts threadedly connected to the outer ends of the stud 72, and the pair of first nuts are respectively located on the upper and lower sides of the front seat frame 5. By respectively tightening the pair of first nuts at the upper and lower ends of the front seat frame 5, the position of the clip assembly 7 is fixed, enabling the clip assembly 7 to stably support the cable and not easily move up and down; A plurality of clamping strip assemblies 7 can move along the length directions of the front seat frame 5 and the rear seat frame 6 to adjust the spacing between the plurality of clamping strip assemblies 7, facilitating the support of cables with different diameters. Moreover, according to different cable diameters, the number of clamping strip assemblies 7 can be correspondingly increased or decreased on the front seat frame 5. For example, when the cable diameter is small, a larger number of cables and clamping strip assemblies 7 can be arranged inside the front seat frame 5 to achieve simultaneous peeling of a larger number of cables at one time, improving the peeling efficiency. When the cable diameter is large, since it occupies a larger space, the number of cables peeled at one time will be correspondingly reduced. At this time, the redundant clamping strip assemblies 7 can be removed from under the front seat frame 5 and the rear seat frame 6.

[0021] Combined with Figure 1 、 Figure 4 and Figure 6 As shown, a blade 8 is connected to the inner top surface of the front seat frame 5. The blade 8 is connected to the front seat frame 5 through a second fastener. The blade 8 is located above the clamping plate 71. A third sliding hole 502 is also formed in the front seat frame 5. A pair of mounting holes are formed in the blade 8. The second fastener includes a bolt 11, a second nut, and a gasket 12. The bolt 11 sequentially penetrates through the mounting hole and the third sliding hole 502 from bottom to top. The second nut is connected to the outer end of the bolt 11 and fits with the upper end surface of the front seat frame 5. The gasket 12 is sleeved on the outer end of the bolt 11 and is located between the blade 8 and the inner top surface of the front seat frame 5. As Figure 6 shown, since there are various diameters of cables, when peeling cables with different diameters, there are slight differences in the installation height of the blade 8. At this time, an appropriate number of thin gaskets 12 can be selected and filled between the blade 8 and the inner top surface of the front seat frame 5. Subsequently, through the cooperation of the bolt 11 and the second nut, the position of the blade 8 is fixed. The setting of the gasket 12 can make the position of the blade 8 more stable. Moreover, the cutting edge height of the fixed blade 8 should be located above the cable core and approach the upper end of the cable core. In this way, when the end of the cable reaches the blade 8, the blade 8 can cut the cable surface layer, splitting the whole cable into two parts, and effectively exposing part of the cable core, facilitating the subsequent removal of the cable core from the remaining surface layer to achieve effective peeling of the cable. And, compared with the way of linearly cutting the cable surface layer in the prior art, this way can expose more cable cores and effectively destroy the integrity of the surface layer, facilitating the subsequent removal of the cable core.

[0022] Please refer to Figure 3 and Figure 4, a motor 2 is also fixedly connected to the upper end of the base 1. The output end of the motor 2 is fixedly connected to a mounting shaft 3. The outer end of the mounting shaft 3 is fixedly connected to a toothed column 4. The toothed column 4 is located between the front seat frame 5 and the rear seat frame 6 and above the clamping plate 71. The toothed column 4 includes a cylinder 41 and a plurality of uniformly distributed tapered plates 42 fixedly connected to the outer end of the cylinder 41. The cylinder 41 is fixedly sleeved on the outer end of the mounting shaft 3. The cross-section of the toothed column 4 approaches a gear structure. When the upper end of the cable abuts against the lower end of the toothed column 4, since the surface layer of the cable is a flexible structure, when the toothed column 4 rotates, the tapered plates 42 will squeeze the surface layer of the cable, and the surface position in contact with the tapered plates 42 presents a slightly sunken state (such as Figure 2 the position indicated by Q in

[0023] Please refer to Figure 4 , Figure 7 and Figure 8 , a cushion plate 9 is provided on the upper side of the base 1, and the cushion plate 9 is located below the clamping strip assembly 7. A plurality of dispersedly arranged electric push rods 10 are fixedly connected inside the base 1. The telescopic end of the electric push rod 10 movably penetrates upward through the base 1 and is fixedly connected to the lower end of the cushion plate 9. When performing peeling operations on multiple cables of the same diameter at one time, the cushion plate 9 and the electric push rods 10 can be used instead of the second fastener to synchronously fix the plurality of clamping strip assemblies 7 (see step S1-2 below for details), which can improve the installation efficiency of the cables. Of course, if the cushion plate 9 and the electric push rods 10 are damaged or malfunction, the first fastener can also be used to fix the clamping strip assembly 7 (as shown in Figure 9 ); when performing peeling operations on multiple cables of two or more diameter sizes at one time, such as the thick cable M and the thin cable N shown in Figure 3 and Figure 5 , it is not advisable to use the cushion plate 9 and the electric push rods 10. The first fastener can be directly used to fix the clamping strip assembly 7 (that is, step S2-2 below. For the specific fixing method, please refer to the above text). In this way, the plurality of clamping strip assemblies 7 can be fixed at different height positions respectively, which is convenient for supporting cables of different diameters and making the upper ends of all cables abut against the lower end of the toothed column 4, thereby facilitating the synchronous continuous peeling operation of cables of multiple diameters.

[0024] An efficient electrical cable peeling process uses an efficient electrical cable peeling device and includes the following steps: S1. Batch processing of cables of the same model: S1-1. Insert multiple cables one by one between the plurality of clamping strip assemblies 7 until the ends of the cables are located below the toothed column 4. The cables and the clamping strip assemblies 7 are arranged at intervals, and the clamping strip assemblies 7 support the cables; S1-2. Start the electric push rod 10 to push the backing plate 9 upward. The backing plate 9 pushes the clamping strip assembly 7 and the cable upward until the upper end of the cable abuts against the lower end of the toothed column 4. Then, turn off the electric push rod 10, and the positions of the backing plate 9 and the clamping strip assembly 7 remain stable. S1-3. Select a blade 8 and fix it to the inner top surface of the front seat frame 5 through the second fastener. The cutting edge of the blade 8 faces the side of the toothed column 4, and the horizontal plane where the cutting edge is located is above the cable core of the cable. S1-4. Start the motor 2. The rotation of the toothed column 4 pushes the cable forward. After the cable reaches the position of the blade 8, it starts to be cut by the blade 8. As the cable continues to move, the cable is split into two, realizing continuous batch peeling. S2. Batch processing of multi-type cables: S2-1. Assume that there are n types of cables. Perform step S1-1 and keep the cables of the same type distributed adjacently. As shown in Figure 3 and Figure 5 shown, cables with different diameters should not be mixed with each other, which is convenient for the installation of multiple blades 8 in the subsequent step S2-3. S2-2. Move the clamping strip assembly 7 upward so that the upper ends of cables of different types all abut against the lower end of the toothed column 4. Fix the clamping strip assembly 7 to the front seat frame 5 and the rear seat frame 6 through the first fastener. S2-3. Select n blades 8, correspond them to cables of different types one by one, and fix the blades 8 in the same way as in step S1-3. As shown in Figure 6 shown, since the heights of the cable cores of cables with different diameters are not the same, multiple blades 8 need to be selected and installed respectively for the cable cores of different types of cables, so that the horizontal plane where the cutting edge of the blade 8 is located approaches the upper end of the cable core of the corresponding type of cable, which is convenient for fully cutting the cable surface. And the length of the blade 8 should correspond to the range size of the area where the corresponding type of cable is located. On the one hand, the blade 8 can cut all cables of this type, and on the other hand, the blade 8 is not easy to extend to the area where other types of cables are located. S2-4. Perform step S1-4 to realize the continuous batch peeling process of multi-type cables.

[0025] The second implementation mode: Based on the first implementation mode, the following structure is added in this implementation mode: Please refer to Figure 4 Figure 10 and Figure 11, a groove 7101 is formed at the upper end of the splint 71. A plurality of uniformly distributed overflow holes 7102 are formed in a pair of side walls of the groove 7101. An oil-absorbing cotton 73 is fixedly connected to the rounded corner position at the upper end edge of the splint 71. The oil-absorbing cotton 73 covers the outer side of the orifice of the overflow hole 7102 away from the groove 7101. A mesh sheet 74 is fixedly connected inside the oil-absorbing cotton 73, that is, the mesh sheet 74 is embedded inside the oil-absorbing cotton 73. A pressing plate 76 is arranged inside the groove 7101. A compression spring 75 is fixedly connected between the lower end of the pressing plate 76 and the inner bottom surface of the groove 7101. A waterproof cloth 77 is fixedly connected between the side end of the pressing plate 76 and the inner wall of the groove 7101. The connection position of the waterproof cloth 77 and the groove 7101 is located below the overflow hole 7102. Lubricating oil 78 is placed inside the groove 7101 above the pressing plate 76. The pressing plate 76, the waterproof cloth 77 and the inner wall of the groove 7101 can form an open accommodating space for containing the lubricating oil 78. The pressing plate 76 can move up and down through the connection of the compression spring 75.

[0026] Through the setting of the above structure, before performing steps S1-4 and S2-4 in this embodiment, a sufficient amount of lubricating oil 78 can be added to the groove 7101, as Figure 12 shown. During this process, as the content of the added lubricating oil 78 increases, affected by its gravity, the pressing plate 76 will move downward, squeezing the compression spring 75, so as to leave more space for the addition of the lubricating oil 78. When the liquid level of the lubricating oil 78 exceeds the overflow hole 7102 but has not reached the upper end surface of the splint 71, stop adding the lubricating oil 78; at this time, the lubricating oil 78 will be absorbed by the oil-absorbing cotton 73 through the overflow hole 7102, and then penetrate to the surface of the cable in contact with the oil-absorbing cotton 73. In this way, during the movement of the cable, the friction between the cable and the splint 71 can be effectively reduced, so that the cable can move forward more smoothly under the rotation and pushing of the tooth-shaped column 4, realizing continuous peeling operation. The mesh sheet 74 shapes the oil-absorbing cotton 73, so that the oil-absorbing cotton 73 is not easily deformed excessively due to the extrusion of the cable, and it is not easy to cause excessive overflow of the lubricating oil 78; In addition, during the use of the cable, as the lubricating oil 78 continues to decrease, the gravity on the pressing plate 76 decreases. Under the restoration of the elastic force of the compression spring 75, the pressing plate 76 gradually moves upward again, so as to push the lubricating oil 78 at the bottom upward, so that the lubricating oil 78 fully enters the overflow hole 7102 and is absorbed by the oil-absorbing cotton 73. Supplementary note: Before the formal implementation, those skilled in the art can select a compression spring 75 with a suitable elastic coefficient for installation tests, so that the movement of the compression spring 75 and the pressing plate 76 meets the above requirements.

[0027] Combined with the current actual requirements, the above-mentioned implementation method adopted in this application, the protection scope is not limited to this. Within the knowledge scope of those skilled in the art, various changes made without departing from the concept of this application still fall within the protection scope of the present invention.

Claims

1. An efficient electrical cable stripping device, comprising a base (1), characterized in that: A front seat frame (5) and a rear seat frame (6) are fixedly connected to the upper end of the base (1). A plurality of clip assemblies (7) for supporting cables are connected between the front seat frame (5) and the rear seat frame (6). A first sliding hole (501) and a second sliding hole (601) are respectively formed in the front seat frame (5) and the rear seat frame (6). The clip assembly (7) includes a clamping plate (71) and a stud (72) fixedly connected to the upper ends of a pair of clamping plates (71). The pair of studs (72) are respectively slidably connected to the inside of the first sliding hole (501) and the second sliding hole (601). Both the front seat frame (5) and the rear seat frame (6) are connected to the stud (72) through first fasteners. A blade (8) is connected to the inner top surface of the front seat frame (5). The blade (8) is connected to the front seat frame (5) through a second fastener. The blade (8) is located above the clamping plate (71). The cable is located between adjacent clamping plates (71). A motor (2) is also fixedly connected to the upper end of the base (1). An output shaft of the motor (2) is fixedly connected to a mounting shaft (3). A toothed column (4) is fixedly connected to the outer end of the mounting shaft (3). The toothed column (4) is located between the front seat frame (5) and the rear seat frame (6) and above the clamping plate (71).

2. The highly efficient electrical cable stripping device according to claim 1, characterized in that: The toothed column (4) includes a cylinder (41) and a plurality of uniformly distributed conical plates (42) fixedly connected to the outer end of the cylinder (41). The cylinder (41) is fixedly sleeved on the outer end of the mounting shaft (3).

3. An efficient electrical cable stripping device according to claim 1, characterized in that: A third sliding hole (502) is further formed in the front seat frame (5). A pair of mounting holes are formed in the blade (8). The second fastener includes a bolt (11), a second nut, and a gasket (12). The bolt (11) sequentially penetrates through the mounting hole and the third sliding hole (502) from bottom to top. The second nut is connected to the outer end of the bolt (11) and abuts against the upper end surface of the front seat frame (5). The gasket (12) is sleeved on the outer end of the bolt (11) and is located between the blade (8) and the inner top surface of the front seat frame (5).

4. An efficient electrical cable stripping device according to claim 1, characterized in that: The first fastener includes a pair of first nuts connected to the outer ends of the studs (72), and the pair of first nuts are respectively located on the upper and lower sides of the front seat frame (5).

5. The highly efficient electrical cable stripping device according to claim 1, wherein: A cushion plate (9) is provided on the upper side of the base (1), and the cushion plate (9) is located below the clip assembly (7). A plurality of dispersedly arranged electric push rods (10) are fixedly connected to the inside of the base (1). The telescopic end of the electric push rod (10) movably penetrates through the base (1) upward and is fixedly connected to the lower end of the cushion plate (9).

6. The efficient electrical cable stripping device according to claim 5, wherein: A groove (7101) is formed in the upper end of the clamping plate (71). A plurality of uniformly distributed overflow holes (7102) are formed in a pair of side walls of the groove (7101). An oil-absorbing cotton (73) is fixedly connected to the rounded corner position of the upper end edge of the clamping plate (71). The oil-absorbing cotton (73) covers the outside of the orifice of the overflow hole (7102) far from the groove (7101). A mesh piece (74) is fixedly connected to the inside of the oil-absorbing cotton (73).

7. The high-efficiency electrical cable stripping device according to claim 6, wherein: Inside the groove (7101), there is a pressing plate (76). A compression spring (75) is fixedly connected between the lower end of the pressing plate (76) and the inner bottom surface of the groove (7101). A waterproof cloth (77) is fixedly connected between the side end of the pressing plate (76) and the inner wall of the groove (7101).

8. The efficient electrical cable stripping device according to claim 7, characterized in that: The connection position of the waterproof cloth (77) and the groove (7101) is located below the overflow hole (7102). Lubricating oil (78) located above the pressing plate (76) is placed inside the groove (7101).

9. An efficient electrical cable stripping process, characterized in that: Using the high-efficiency electrical cable stripping device as described in claim 8, it includes the following steps: S1. Batch processing of cables of the same model: S1-1. Insert multiple cables one by one between multiple clamping strip assemblies (7) until the end of the cable is located below the toothed column (4). The cables and the clamping strip assemblies (7) are distributed at intervals, and the clamping strip assemblies (7) support the cables. S1-2. Start the electric push rod (10) to push the backing plate (9) upward. The backing plate (9) pushes the clamping strip assemblies (7) and the cables upward until the upper end of the cable abuts against the lower end of the toothed column (4). Then, turn off the electric push rod (10), and the positions of the backing plate (9) and the clamping strip assemblies (7) remain stable. S1-3. Select a blade (8) and fix it to the inner top surface of the front seat frame (5) through a second fastener. The cutting edge of the blade (8) faces the side of the toothed column (4), and the horizontal plane where the cutting edge is located is above the cable core of the cable. S1-4. Pour lubricating oil (78) into the groove (7101). Start the motor (2). The rotation of the toothed column (4) pushes the cable forward. After the cable reaches the position of the blade (8), it starts to be cut by the blade. As the cable continues to move, the cable is split into two, realizing continuous batch stripping. S2. Batch processing of cables of multiple models: S2-1. Assume: There are n types of cable models. Perform step S1-1 and keep the cables of the same model adjacent to each other. S2-2. Move the clamping strip assemblies (7) upward so that the upper ends of different types of cables all abut against the lower end of the toothed column (4). Fix the clamping strip assemblies (7) to the front seat frame (5) and the rear seat frame (6) through a first fastener. S2-3. Select n blades (8), correspond them to different types of cables one by one, and fix the blades (8) in the same way as in step S1-3. S2-4. Perform step S1-4 to realize the continuous batch stripping process of cables of multiple models.

Citation Information

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