A cable stripping device for cable production

By designing a cable stripping device for cable production, the outer insulation layer and the inner insulation layer of the cable can be effectively distinguished and recycled, solving the problem of resource waste in the existing technology, simplifying the process and improving production efficiency, while realizing the recycling of water resources.

CN119626681BActive Publication Date: 2025-10-10KUNMING UNIV OF SCI & TECH

Patent Information

Application Number
CN202411778287.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-10
Estimated Expiration
2044-12-05

AI Technical Summary

Technical Problem

Existing cable stripping devices used in cable production cannot effectively distinguish and process the outer and inner insulation layers of cables when stripping them, resulting in a waste of resources and requiring additional equipment for secondary stripping, which increases the work process.

Method used

A cable stripping device for cable production is designed, which includes a feeding mechanism, a primary stripping mechanism and a secondary stripping mechanism. The outer insulation layer and the inner insulation layer are separated by the cooperation of the conductor roller and the stripping roller. The dust and stains on the surface of the cable are cleaned by the combination of the cleaning cylinder and the nozzle. The annular baffle and the filter screen are used to realize the recycling of water resources.

Benefits of technology

It realizes the effective separation and recycling of the outer insulation layer and the inner insulation layer of the cable, reduces resource waste, simplifies the process, improves production efficiency, and reduces waste through the recycling of water resources.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119626681B_ABST
    Figure CN119626681B_ABST
Patent Text Reader

Abstract

The application discloses a cable stripping device for cable production and relates to the technical field of cable production.The technical scheme points of the cable stripping device for cable production include a treatment box, a support rod fixedly connected to the bottom of the treatment box, four corners of the support rod located at the bottom of the treatment box, a feeding mechanism, the feeding mechanism arranged on the side wall of the treatment box, the feeding mechanism including feeding rollers symmetrically arranged upwards and downwards, a cleaning unit arranged on one side of the feeding roller, a primary stripping mechanism arranged on the inner side wall of the treatment box, and the primary stripping mechanism located on one side of the cleaning unit.The cable outer insulation layer and the inner insulation layer can be distinguished and stripped, and the cable outer insulation layer and the inner insulation layer can be distinguished and collected, so that the inner insulation layer material and the outer insulation layer material can be recycled in the production process of the cable, and resource waste is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of cable production, and more particularly to a cable stripping device for cable production. Background Art

[0002] Cables are widely used in daily life. At the same time, due to a long time and other factors, a lot of unusable scrap cables are generated. Since scrap cables contain metal inside, they are often stripped and recycled. With the strengthening of people's environmental awareness, waste recycling and reuse has become a way for many companies to reduce industrial pollution and reduce production costs. The plastic insulation layer of scrap cables and the conductive copper wire wrapped in them have great recycling value. It is often necessary to strip the scrap cables and recycle them, stripping the metal conductors inside the scrap cables, and then melting the stripped metal conductors for reproduction, thereby saving resources.

[0003] Then, after the existing cable stripping device for cable production has stripped the outer insulation layer of the cable, it is necessary to move the conductor wrapped with the inner insulation layer to an additional device for stripping again, thereby increasing the cable stripping work procedure. At the same time, since the outer insulation layer and the inner insulation layer of the cable are made of different materials, when the existing cable stripping device for cable production strips the outer insulation layer and the inner insulation layer of the cable, the stripped outer insulation layer and the inner insulation layer are piled together without being distinguished, making it difficult to reuse the stripped outer insulation layer and the inner insulation in the production of the cable, thereby causing a waste of resources. Summary of the Invention

[0004] In view of the deficiencies in the prior art, the present invention aims to provide a cable stripping device for cable production.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] A cable stripping device for cable production includes a processing box, the bottom of which is fixedly connected to support rods, the support rods being located at the four corners of the bottom of the processing box, and further includes:

[0007] A feeding mechanism, the feeding mechanism being arranged on the side wall of the processing box, the feeding mechanism comprising feeding rollers symmetrically arranged up and down, and a cleaning unit being arranged on one side of the feeding roller;

[0008] The first peeling mechanism is arranged on the inner side wall of the processing box, is located on one side of the cleaning unit, and comprises first peeling rollers arranged symmetrically upward and downward, which are rotationally connected to the inner side wall of the processing box. One side of the first peeling roller is provided with a first wire guide unit, and the end of the first wire guide unit is provided with a first winding roller located on the lower side of the first wire guide unit.

[0009] The second peeling mechanism is arranged on one side of the first wire guide unit, and comprises wire rollers arranged symmetrically upward and downward, which are rotationally connected to the inner side wall of the processing box. One side of the wire roller is provided with a second peeling roller, which is rotationally connected to the inner side wall of the processing box. One side of the second peeling roller is provided with a second wire guide unit, and the lower side of the second wire guide unit is provided with a second winding roller.

[0010] The conductor winding roller is located at the end of the second wire guide unit, and is rotationally connected to the outer side wall of the processing box.

[0011] The driving mechanism is arranged on the outer side wall of the processing box, and is used for driving the feeding mechanism, the first peeling mechanism, the second peeling mechanism and the conductor winding roller 9 to rotate.

[0012] Preferably, the side wall of the processing box is provided with a feeding port, and the feeding roller is rotationally connected to the side wall of the feeding port.

[0013] Preferably, the cleaning unit comprises:

[0014] The cleaning cylinder is arranged obliquely, and the inner annular wall of the cleaning cylinder is fixedly connected with an annular baffle. One side of the annular baffle is provided with an annular pipeline, and the inner annular wall of the annular pipeline is fixedly connected with at least two spray heads.

[0015] The cleaning mechanism comprises a connecting plate rotationally connected to the inner wall of the cleaning cylinder, and the side wall of the connecting plate is fixedly connected with at least two crushing teeth.

[0016] The water tank is fixedly connected to the bottom of the processing box, and the bottom of the water tank is fixedly connected with a water pump. The water outlet end of the water pump is fixedly connected with a connecting pipeline, and the upper end of the connecting pipeline is in communication with the annular pipeline.

[0017] A filter box, the filter box is fixedly connected to the side wall of the treatment box, and the filter box is connected to the water tank. The bottom of the filter box is fixedly connected to a filter screen, the bottom of the filter box is fixedly connected to a return pipe, one end of the return pipe is connected to the water tank, the upper surface of the water tank is fixedly connected to a support plate, and the cleaning cylinder is fixedly connected to the support plate in an inclined manner.

[0018] Preferably, a transmission roller is provided on one side of the cleaning cylinder, and the transmission roller, the feed roller and the first peeling roller are all provided with two symmetrically arranged first annular grooves, and the two upper and lower adjacent first annular grooves cooperate with each other;

[0019] The outer sleeve of the transmission roller is provided with a wiping cotton, the inner side wall of the processing box is fixedly connected with a connecting rod, and two balls are fixedly connected to the connecting rod, and the balls are matched with the first annular groove.

[0020] Preferably, an outer gear ring is rotatably connected to the inner ring wall of the cleaning cylinder, a plurality of connecting plates are provided, and the plurality of connecting plates are fixedly connected to the side wall of the outer gear ring and distributed in an annular shape, a rotating rod is rotatably connected to the side wall of the support plate, and a gear is fixedly connected to the end of the rotating rod;

[0021] An arc-shaped through hole is formed on the top of the cleaning cylinder, and the lower end of the gear passes through the arc-shaped through hole and meshes with the outer gear ring;

[0022] The top of the processing box is fixedly connected to a first driving motor, the output shaft of the first driving motor and the rotating rod are both fixedly connected to first sprockets, and a first chain is sleeved between two adjacent first sprockets.

[0023] Preferably, the longitudinal section of the annular baffle is triangular, and the inclined surface of the annular baffle is arranged opposite to the feed roller. A discharge pipe is provided on one side of the vertical end of the annular baffle, and the lower end of the discharge pipe passes through the bottom of the cleaning cylinder and is connected to the filter box.

[0024] Preferably, the first wire unit includes:

[0025] A wire box, the wire box is located on one side of the first peeling roller, a fixing plate is horizontally fixedly connected to the inner side wall of the processing box, and the wire box is fixedly connected to the fixing plate;

[0026] A first branching plate, wherein the first branching plate is fixedly connected to the bottom of the wire box and is located in the middle of the wire box;

[0027] There are two second breakout boards, which are symmetrically arranged with respect to the first breakout board, and the length of the second breakout boards is smaller than the length of the first breakout board;

[0028] A guide plate is fixedly connected to the outer side wall of the wire box.

[0029] Preferably, the conductor roller and the second stripping roller are both provided with a plurality of second annular grooves, two upper and lower adjacent second annular grooves cooperate with each other, and the second annular grooves on the conductor roller and the second stripping roller are distributed on both sides of the second branching plate, and the second annular grooves cooperate with the conductor box;

[0030] The second peeling roller and the first peeling roller are both provided with an annular peeling knife, and the annular peeling knife is located in the first annular groove and the second annular groove, and the two adjacent annular peeling knives cooperate with each other.

[0031] Preferably, the second wire unit includes:

[0032] an arc-shaped wire plate, one end of which passes through the side wall of the processing box and extends to the outside of the processing box;

[0033] A fixing rod, the end of which is fixedly connected to the inner wall of the processing box;

[0034] Separation plates, the separation plates are rotatably connected to the fixed rod, and the separation plates are at least two groups, each group consists of two separation plates, and the two separation plates cooperate with each other;

[0035] A heater, the heater being fixedly connected to the inner wall of the processing box and cooperating with the arc-shaped wire board, and the heater being located just above the filter box;

[0036] a rotating plate rotatably connected to the inner wall of the processing box;

[0037] A liquid storage box, the liquid storage box is fixedly connected to the upper surface of the rotating plate and is located directly below the heater;

[0038] The servo motor is fixedly connected to the outer side wall of the processing box, and the output shaft of the servo motor passes through the side wall of the processing box and is fixedly connected to the rotating plate.

[0039] Preferably, the driving mechanism comprises:

[0040] a second drive motor fixedly connected to an outer side wall of the processing box;

[0041] The second sprocket, the feed roller, the transmission roller, the first stripping roller, the first winding roller, the conductor roller, the second stripping roller, the second winding roller and the conductor winding roller are all fixedly connected to a rotating shaft, and the second sprocket is respectively fixedly connected to the output shaft of the second drive motor and the end of the rotating shaft;

[0042] A second chain is sleeved on two adjacent second sprockets.

[0043] Compared with the prior art, the present invention has the following beneficial effects:

[0044] 1. In the present invention, water in the water tank is transported to the annular pipe through the connecting pipe by a water pump, and is sprayed on the surface of the cable through the nozzle, thereby washing away the dust on the surface of the cable, and at the same time making the stains attached to the surface of the cable absorb water and become moist. The first drive motor is working, and the output shaft on the first drive motor drives the rotating rod to rotate through the cooperation of the first sprocket and the first chain. During the rotation of the rotating rod, the connecting plate is driven to rotate through the engagement of the gear and the outer gear ring. The connecting plate drives the crushing teeth to rotate, and the crushing teeth rub against the outer surface of the outer insulation layer of the cable during the rotation, thereby achieving brushing of the cable, and the nozzle located on the other side of the connecting plate sprays water to the cable, thereby cleaning the concrete blocks adhered to the surface of the cable again, thereby ensuring that the outer insulation layer of the cable is clean and tidy.

[0045] 2. In the present invention, the water stains on the surface of the cable are blocked by the annular baffle and flow downward to the bottom of the cleaning cylinder through the vertical surface of the annular baffle, and are discharged into the filter box through the discharge pipe. When the flushing water passes through the filter screen, the filter screen filters the particulate matter in the water and flows downward into the water tank, thereby realizing the recycling of the flushing water, facilitating the recycling of water resources, and reducing the waste of water resources.

[0046] 3. In the present invention, the conductor roller enters the second annular groove on the second stripping roller, and the second stripping roller drives the annular stripping knife to rotate. The annular stripping knife cuts the inner insulating layer wrapped on the surface of the conductor, so that the inner insulating layer on the surface of the conductor is separated from the conductor, and contacts the conductor winding roller through the second conductor unit. During the rotation of the conductor winding roller, the conductor winding roller rewinds the conductor metal stripped from the cable, thereby realizing the recovery of the conductor metal and facilitating the production and manufacturing of the cable. During the process of the inner insulating layer after stripping sliding down through the second conductor unit, the inner insulating layer contacts the second winding roller. At the same time, the staff can apply glue on the second winding roller to facilitate the inner insulating layer to adhere to the second winding roller. During the rotation of the second winding roller, the second winding roller recycles the peeled inner insulating layer, which not only realizes the separation and peeling of the outer insulating layer and the inner insulating layer of the cable, but also, since the outer insulating layer and the inner insulating layer of some cables are made of different materials, the outer insulating layer and the inner insulating layer of the cable are separated and collected, which is convenient for the recycling of the inner insulating layer material and the outer insulating layer material in the production process of the cable, thereby reducing the waste of resources. BRIEF DESCRIPTION OF THE DRAWINGS

[0047] Figure 1The present invention provides a schematic diagram of the overall structure of a cable stripping device for cable production;

[0048] Figure 2 The present invention provides a schematic diagram of the internal structure of a cable stripping device for cable production;

[0049] Figure 3 This is a schematic diagram of the internal connection structure between a cleaning cylinder and a water tank in a cable stripping device for cable production proposed by the present invention;

[0050] Figure 4 The present invention provides a schematic diagram of the internal structure of a cable stripping device for cable production;

[0051] Figure 5 A cross-sectional view of a transmission roller in a cable stripping device for cable production is provided in the present invention;

[0052] Figure 6 The present invention provides a schematic diagram of the internal structure of a wire box in a cable stripping device for cable production;

[0053] Figure 7 A cross-sectional view of a first stripping roller in a cable stripping device for cable production provided by the present invention;

[0054] Figure 8 A cross-sectional view of a second stripping roller in a cable stripping device for cable production provided by the present invention;

[0055] Figure 9 The present invention proposes a cable stripping device for cable production in the arc-shaped conductor plate and the connection structure of the fixed rod schematic;

[0056] Figure 10 The present invention provides a schematic diagram of the internal structure of a filter box in a cable stripping device for cable production.

[0057] 1. Processing box; 2. Support rod; 3. Feed roller; 4. First peeling roller; 5. First winding roller; 6. Conductor roller; 7. Second peeling roller; 8. Second winding roller; 9. Conductor winding roller; 10. Feed port; 11. Cleaning cylinder; 12. Annular baffle; 13. Annular pipe; 14. Nozzle; 15. Connecting plate; 16. Crushing teeth; 17. Water tank; 18. Water pump; 19. Connecting pipe; 20. Filter box; 21. Filter screen; 22. Support plate; 23. Transport roller; 24. First annular groove; 25. Wiping cotton; 26. Connecting rod; 27. Ball; 28. Outer gear ring; 29. ​​Rotation Rod; 30, gear; 31, arc-shaped through hole; 32, first drive motor; 33, first sprocket; 34, first chain; 35, discharge pipe; 36, wire box; 37, fixed plate; 38, first branching plate; 39, second branching plate; 40, guide plate; 41, second annular groove; 42, annular stripping knife; 43, arc-shaped wire plate; 44, fixed rod; 45, separation plate; 46, second drive motor; 47, second sprocket; 48, rotating shaft; 49, second chain; 50, baffle; 51, heater; 52, liquid storage box; 53, return pipe; 54, rotating plate; 55, servo motor. DETAILED DESCRIPTION

[0058] Reference Figures 1 to 10 .

[0059] Example 1 further illustrates a cable stripping device for cable production proposed by the present invention.

[0060] A cable stripping device for cable production includes a processing box 1, the bottom of which is fixedly connected to a support rod 2, the support rod 2 being located at the four corners of the bottom of the processing box 1, and a feeding mechanism arranged on the side wall of the processing box 1. The feeding mechanism includes feed rollers 3 symmetrically arranged up and down, and a cleaning unit is provided on one side of the feed roller 3.

[0061] A first-level stripping mechanism, the first-level stripping mechanism is arranged on the inner wall of the processing box 1, the first-level stripping mechanism is located on one side of the cleaning unit, the first-level stripping mechanism includes a first stripping roller 4 symmetrically arranged up and down, the first stripping roller 4 is rotatably connected to the inner wall of the processing box 1, a first wire unit is provided on one side of the first stripping roller 4, and a first winding roller 5 is provided at the end of the first wire unit. The first winding roller 5 is located on the lower side of the first wire unit, and a rectangular through hole is provided at the bottom of the processing box 1. When the first stripping roller 4 strips the outer insulation layer of the cable, the filling material filled in the outer insulation layer of the cable slides down to the bottom of the processing box 1 through the rectangular through hole, thereby facilitating the separation of the outer insulation layer of the cable and the filling material in the outer insulation layer, which is not only convenient for winding and recycling the outer insulation layer, but also convenient for the staff to process the filling material in the outer insulation layer.

[0062] A secondary stripping mechanism is provided on one side of the first conductor unit. The secondary stripping mechanism includes a conductor roller 6 symmetrically arranged above and below. The conductor roller 6 is rotatably connected to the inner wall of the processing box 1. A second stripping roller 7 is provided on one side of the conductor roller 6. The second stripping roller 7 is rotatably connected to the inner wall of the processing box 1. A second conductor unit is provided on one side of the second stripping roller 7. A second winding roller 8 is provided on the lower side of the second conductor unit. The secondary stripping mechanism facilitates cutting and stripping the internal insulation layer of the cable, thereby separating the internal insulation layer from the conductor in the cable, thereby realizing the separation of the conductor and the internal insulation layer, and the second winding roller 8 can rewind the stripped internal insulation layer.

[0063] The conductor winding roller 9 is located at the end of the second wire unit and is rotatably connected to the outer wall of the processing box 1. The conductor winding roller 9 is convenient for winding and recycling the stripped conductor.

[0064] The driving mechanism is arranged on the outer side wall of the processing box 1, and is used to drive the feeding mechanism, the primary stripping mechanism, the secondary stripping mechanism and the conductor winding roller 9 to rotate.

[0065] A feed port 10 is provided on the side wall of the processing box 1 , and a feed roller 3 is rotatably connected to the side wall of the feed port 10 .

[0066] The cleaning unit includes a cleaning cylinder 11, which is arranged at an angle. An annular baffle 12 is fixedly connected to the inner ring wall of the cleaning cylinder 11. An annular pipe 13 is arranged on one side of the annular baffle 12. At least two nozzles 14 are fixedly connected to the inner ring wall of the annular pipe 13.

[0067] The cleaning mechanism includes a connecting plate 15, which is rotatably connected to the inner wall of the cleaning cylinder 11. At least two crushing teeth 16 are fixedly connected to the side wall of the connecting plate 15. There are two annular pipes 13, and the two annular pipes 13 are distributed on both sides of the connecting plate 15. The annular pipe 13 and the nozzle 14 near the upper port of the cleaning cylinder 11 are used to flush the stains on the surface of the cable after being brushed by the cleaning mechanism, thereby ensuring that the cable that needs to be stripped is clean and tidy.

[0068] Water tank 17, water tank 17 is fixedly connected to the bottom of treatment box 1, and a water pump 18 is fixedly connected to the bottom of water tank 17, and the water delivery end of water pump 18 is fixedly connected to connecting pipe 19, and the upper end of connecting pipe 19 is connected to annular pipe 13, and the wires on water pump 18 are electrically connected to electrical equipment in the prior art such as battery, power socket, etc., and water pump 18 is used to transport water in water tank 17 to two annular pipes 13, and spray it on the surface of cable that needs to be stripped through nozzle 14, so as to wash away the dust attached to the outer insulation layer of cable, thereby ensuring the cleanliness of outer insulation layer of cable.

[0069] The filter box 20 is fixedly connected to the side wall of the treatment box 1, and the filter box 20 is connected to the water tank 17. The bottom of the filter box 20 is fixedly connected with a filter screen 21. The bottom of the filter box 20 is fixedly connected with a return pipe 53. One end of the return pipe 53 is connected to the water tank 17. The upper surface of the water tank 17 is fixedly connected with a support plate 22. The cleaning cylinder 11 is fixedly connected to the support plate 22 in an inclined manner. The filter screen 21 is used to filter the particulate matter in the water, thereby reducing The particles in the refluxed water facilitate the recycling of water, and the filtered water flows back to the water tank 17 through the reflux pipe 53, thereby realizing the recycling of water and reducing the waste of water resources. A drainage hole is provided on the side wall of the water tank 17, and a piston is threadedly connected to the drainage hole to facilitate the discharge of water in the water tank 17, thereby facilitating the replacement of the water in the water tank 17. The water inlet end of the water pump 18 is fixedly connected to a first filter screen, and the aperture value of the mesh holes on the first filter screen is smaller than the aperture value of the mesh holes on the filter screen 21.

[0070] A transmission roller 23 is provided on one side of the cleaning cylinder 11. Two symmetrically arranged first annular grooves 24 are provided on the transmission roller 23, the feed roller 3 and the first stripping roller 4, and the upper and lower adjacent first annular grooves 24 cooperate with each other. The outer side walls of the upper and lower adjacent first annular grooves 24 contact with each other to form a circular through hole, and the diameter of the circular through hole is equal to the diameter of the cable, so that the cable can be transported to the inside of the processing box 1 through the rotation of the upper and lower feed rollers 3 and the transmission roller 23, so as to facilitate the first stripping roller 4 to cut the outer insulation layer of the cable.

[0071] The outer sleeve of the transmission roller 23 is provided with a wiping cotton 25, and a connecting rod 26 is fixedly connected to the inner wall of the processing box 1. Two balls 27 are fixedly connected to the connecting rod 26. The balls 27 cooperate with the first annular groove 24. The connecting rod 26 is hollow, and a plurality of drainage holes are provided on the circumferential wall of the balls 27. When the cleaned cable comes into contact with the wiping cotton 25, the wiping cotton 25 absorbs the moisture remaining on the surface of the cable. During the rotation of the transmission roller 23, the balls 27 push the wiping cotton 25, thereby squeezing out the moisture in the wiping cotton 25, thereby ensuring the water absorption effect of the wiping cotton 25.

[0072] An outer gear ring 28 is rotatably connected to the inner ring wall of the cleaning cylinder 11, and there are multiple connecting plates 15, and the multiple connecting plates 15 are fixedly connected to the side wall of the outer gear ring 28 and distributed in a ring shape. A rotating rod 29 is rotatably connected to the side wall of the support plate 22, and a gear 30 is fixedly connected to the end of the rotating rod 29, wherein the connecting plate 15 is located on the side wall of the outer gear ring 28 close to the feed roller 3.

[0073] Since some cables are installed inside the wall, some concrete blocks will condense and adhere to the outer surface of the cable during the removal of the cables inside the wall. Since the dried concrete blocks are difficult to clean, when the outer surface of the cable is recycled, the concrete blocks adhered to the cable surface need to be manually cleaned, which not only increases the difficulty of the workers in recycling the cable surface and cable conductors, but also consumes manpower.

[0074] Therefore, in the process of the feed roller 3 conveying the cable to one side of the outer gear ring 28, when the concrete blocks adhered to the outer surface of the cable come into contact with the side wall of the outer gear ring 28, since the concrete blocks have a certain thickness, the side wall of the outer gear ring 28 blocks the concrete blocks, causing the cable to be unable to continue to move to the other side of the outer gear ring 28. Since the outer gear ring 28 drives the crushing teeth 16 to rotate, the crushing teeth 16 generate friction with the concrete adhered to the surface of the cable, so that the tip of the crushing teeth 16 crushes the concrete blocks adhered to the surface of the cable, thereby cleaning the concrete blocks adhered to the surface of the cable. The diameter of the inner ring wall of the outer gear ring 28 is equal to the diameter of the circumferential wall of the cable, and the tip of the crushing teeth 16 is flush with the inner ring wall of the outer gear ring 28, which makes it easier for the crushing teeth 16 to contact and generate friction with the concrete blocks adhered to the surface of the cable, thereby crushing the concrete blocks adhered to the surface of the cable.

[0075] An arc-shaped through hole 31 is formed at the top of the cleaning cylinder 11 , and the lower end of the gear 30 passes through the arc-shaped through hole 31 and meshes with the outer gear ring 28 .

[0076] A first drive motor 32 is fixedly connected to the top of the processing box 1. The output shaft of the first drive motor 32 and the rotating rod 29 are fixedly connected to the first sprocket 33. A first chain 34 is sleeved between two adjacent first sprockets 33. The output shaft on the first drive motor 32 drives the rotating rod 29 to rotate through the cooperation of the first sprocket 33 and the first chain 34, and drives the gear 30 to rotate. The connecting plate 15 is then driven to rotate through the engagement of the gear 30 with the outer gear ring 28, and the crushing teeth 16 are driven to rotate at the same time. The crushing teeth 16 rub against the concrete adhered to the surface of the outer insulation layer of the cable and clean the concrete, thereby further ensuring the cleanliness of the surface of the outer insulation layer of the cable, and facilitating the recycling of the outer insulation layer of the cable.

[0077] The longitudinal section of the annular baffle 12 is triangular, and the inclined surface of the annular baffle 12 is arranged opposite to the feed roller 3. A discharge pipe 35 is provided on one side of the vertical end of the annular baffle 12. The lower end of the discharge pipe 35 passes through the bottom of the cleaning cylinder 11 and extends to the upper side of the filter screen 21. Since the inclined surface of the annular baffle 12 is arranged opposite to the feed roller 3, when the feed roller 3 conveys the cable into the cleaning cylinder 11, the cable moves toward the inside of the cleaning cylinder 11 through the inclined surface of the annular baffle 12, so that the end of the cable passes through the annular baffle 12, the annular pipe 13, and the cleaning mechanism and moves between the two transmission rollers 23, thereby realizing the transmission of the cable. The nozzle 14 sprays water on the cable, and the cleaning mechanism cleans the concrete condensed on the outer surface of the outer insulation layer of the cable, thereby reducing stains attached to the surface of the outer insulation layer of the cable.

[0078] The first wire unit includes a wire box 36, which is located on one side of the first stripping roller 4. A fixing plate 37 is horizontally fixedly connected to the inner wall of the processing box 1. The wire box 36 is fixedly connected to the fixing plate 37. The height of the wire box 36 close to the port of the first stripping roller 4 is greater than the height of the other port, and the ends of the two side walls of the wire box 36 are inclined. After the first stripping roller 4 cuts the insulation layer of the outer layer of the cable, when the cable enters the wire box 36, the outer insulation layer of the cable is separated from the internal conductor and the inner insulation layer attached to the outer surface of the conductor by the restriction of the inclined surfaces of the two side walls of the wire box 36, and the filler filled in the outer insulation layer of the cable falls down to the bottom of the processing box 1 through the gap between the first stripping roller 4 and the wire box 36, thereby realizing the stripping of the outer insulation layer of the cable.

[0079] The first branching plate 38 is fixedly connected to the bottom of the wire box 36, and the first branching plate 38 is located in the middle of the wire box 36. The end of the first branching plate 38 close to the first stripping roller 4 is triangular, and the small end of the triangle is arranged opposite to the first stripping roller 4. As the cable gradually moves toward the inside of the wire box 36, the height of the wire box 36 gradually decreases, while the width gradually increases, and the height of the inner wall of the end of the wire box 36 close to the wire roller 6 is equal to the conductor diameter plus the thickness of the inner insulation layer outside the conductor. When the cable that has stripped the outer insulation layer passes through the first branching plate 38, due to the reduction in the height of the wire box 36, multiple conductors inside the cable are horizontally distributed, and the first branching plate 38 separates the multiple strands of conductors with inner insulation layers in the cable to both sides, thereby facilitating the re-stripping of the inner insulation layer outside the conductor.

[0080] The second branching plate 39, there are two second branching plates 39 and they are symmetrically arranged about the first branching plate 38. The length of the second branching plate 39 is smaller than the length of the first branching plate 38. The second branching plate 39 is triangular at one end close to the first stripping roller 4, and the small end of the triangle is arranged opposite to the first stripping roller 4. When the cable passes through the second branching plate 39, the second branching plate 39 separates the cable with the outer insulation layer stripped off again, thereby dividing the multiple cable conductors. As the cable moves, the single-strand cable conductors divided into multiple strands move to the second stripping roller 7 via the conductor roller 6, and the inner insulation layer attached to the surface of the conductor is cut by the second stripping roller 7, thereby realizing the stripping of the cable.

[0081] The guide plate 40 is fixedly connected to the outer wall of the wire box 36. A baffle 50 is vertically provided at one end of the guide plate 40 close to the wire roller 6. The baffle 50 is fixedly connected to the end of the wire box 36. When the outer insulation layer of the stripped cable wire contacts the baffle 50, the outer insulation layer of the cable wire slides downward through the side wall of the baffle 50 and contacts the first winding roller 5, thereby facilitating the first winding roller 5 to wind up the stripped outer insulation layer of the cable wire.

[0082] Both the conductor roller 6 and the second stripping roller 7 are provided with a plurality of second annular grooves 41, and the upper and lower adjacent second annular grooves 41 cooperate with each other, and the second annular grooves 41 on the conductor roller 6 and the second stripping roller 7 are distributed on both sides of the second distribution plate 39, and the second annular grooves 41 cooperate with the conductor box 36, and the side walls of the upper and lower second annular grooves 41 contact each other to form a circular through hole, and the diameter value of the circular through hole is equal to the sum of the diameter value of the cable conductor and the thickness value of its outer and inner insulation layers, so as to facilitate the conductor roller 6 and the second stripping roller 7 to transport the conductor toward the guide plate 40.

[0083] The second stripping roller 7 and the first stripping roller 4 are both provided with an annular stripping knife 42, which is located in the first annular groove 24 and the second annular groove 41, and the two adjacent annular stripping knives 42 cooperate with each other. The distance between the outer ring wall and the inner ring wall of the annular stripping knife 42 on the first stripping roller 4 is greater than the thickness of the outer insulation layer of the cable, which is convenient for cutting the outer insulation layer of the cable and the filler inside the outer insulation layer, thereby facilitating the stripping of the outer insulation layer of the cable from the conductor of the cable.

[0084] The distance between the outer ring wall and the inner ring wall of the annular stripping knife 42 on the second stripping roller 7 is equal to the thickness of the inner insulating layer wrapped around the outside of the cable conductor, which facilitates the cutting of the inner insulating layer wrapped around the outside of the conductor in the cable, thereby facilitating the stripping of the inner insulating layer wrapped around the conductor in the cable.

[0085] Working principle: The feed roller 3, the transmission roller 23, the first stripping roller 4, the first winding roller 5, the wire roller 6, the second stripping roller 7, the second winding roller 8 and the conductor winding roller 9 are driven by the driving mechanism to rotate, so that the upper and lower feed rollers 3, the transmission roller 23, the first stripping roller 4, the first winding roller 5, the wire roller 6, the second stripping roller 7, the second winding roller 8 and the conductor winding roller 9 rotate toward each other. The staff places the end of the cable to be stripped in the first annular groove 24 between the upper and lower feed rollers 3, and the two feed rollers 3 rotate toward each other, so that the feed rollers 3 convey the cable to the inside of the processing box 1.

[0086] When the cable passes through the cleaning drum 11 and enters between the two conveying rollers 23, the water pump 18 and the first drive motor 32 are started at this time. The water pump 18 transports the water in the water tank 17 to the annular pipe 13 through the connecting pipe 19, and sprays it on the surface of the cable through the nozzle 14, thereby washing away the dust on the surface of the cable and making the stains attached to the surface of the cable absorb water and become moist. The first drive motor 32 is working, and the output shaft on the first drive motor 32 drives the rotating rod 29 to rotate through the cooperation of the first sprocket 33 and the first chain 34. During the rotation of the rotating rod 29, the gear 30 and the outer gear ring 28 are engaged to drive the connecting plate 15 to rotate. The connecting plate 15 drives the crushing teeth 16 to rotate, and the crushing teeth 16 rub against the outer surface of the outer insulation layer of the cable during the rotation, thereby cleaning the insulation layer on the surface of the cable. The nozzle 14 located on the other side of the connecting plate 15 sprays water to the cable, thereby flushing the brushed cable again, thereby ensuring that the outer insulation layer of the cable is clean and tidy.

[0087] During the flushing process of the cable, since the lower surface of the cable is in contact with the annular baffle 12, during the flushing process of the cable, the water stains on the surface of the cable flow downward along the cable. In the process of passing through the annular baffle 12, the water stains on the surface of the cable flow downward through the vertical surface of the annular baffle 12 to the bottom of the cleaning cylinder 11, and are discharged into the filter box 20 through the discharge pipe 35. When the flushing water passes through the filter screen 21, the filter screen 21 filters the particulate matter in the water and flows downward into the water tank 17, thereby realizing the recycling of the flushing water, facilitating the recycling of water resources, and reducing the waste of water resources.

[0088] When the flushed cable line enters the first annular groove 24 on the upper and lower transmission rollers 23, the flushed cable line is in contact with the wiping cotton 25, and the wiping cotton 25 wipes the moisture remaining on the surface of the cable line, and the wiped moisture stays in the wiping cotton 25. In the process of the transmission roller 23 rotating and conveying the cable line toward the first stripping roller 4, the transmission roller 23 drives the wiping cotton 25 to rotate. When the wiping cotton 25 contacts the connecting rod 26 and the ball 27, the connecting rod 26 and the ball 27 squeeze the wiping cotton 25 to squeeze out the residual moisture in the wiping cotton 25, and the squeezed moisture enters the connecting rod 26 through the through hole on the ball 27, wherein a drainage hole is provided at the bottom of the connecting rod 26. The moisture collected in the connecting rod 26 flows downward through the drainage hole into the filter box 20, and is filtered by the filter screen 21 and then flows back to the water tank 17, which not only reduces the water stains remaining on the surface of the cable line, but also facilitates the recycling of the water stains remaining on the cable line.

[0089] When the cable enters the first annular groove 24 on the first stripping roller 4, the first stripping roller 4 drives the annular stripping knife 42 to rotate during the rotation, and the annular stripping knife 42 cuts the outer insulation layer of the cable and the filler inside the outer insulation layer during the rotation, so that the top and bottom of the outer insulation layer of the cable are broken, and when the cable enters the wire box 36, the side wall of the wire box 36 blocks the outer insulation layer of the cable, and the conductor on the cable and the inner insulation layer wrapped around it enter the interior of the wire box 36, and the cable skin is broken. The torn outer insulating layer moves toward one side of the wire box 36 along the outer wall of the wire box 36 and the guide plate 40. When the peeled outer insulating layer of the cable contacts the baffle 50, the peeled outer insulating layer of the cable slides downward along the side wall of the baffle 50 and contacts the first winding roller 5, so that personnel can apply glue on the first winding roller 5. When the peeled outer insulating layer of the cable contacts the first winding roller 5, the outer insulating layer of the cable adheres to the first winding roller 5. As the first winding roller 5 rotates, the outer insulating layer of the cable is wound up.

[0090] When the multi-strand conductors inside the cable with the outer insulation removed pass through the wire box 36, the wire box 36 distinguishes and individually separates the multi-strand conductors through the first branching plate 38 and the second branching plate 39 inside it, and the separated conductors pass through the wire box 36 and enter the second annular groove 41 on the second stripping roller 7 through the wire roller 6. At this time, during the rotation of the second stripping roller 7, the second stripping roller 7 drives the annular stripping knife 42 to rotate. During the rotation of the annular stripping knife 42, the annular stripping knife 42 cuts the inner insulation layer wrapped around the surface of the conductor, so that the inner insulation layer on the surface of the conductor is separated from the conductor, and contacts the conductor winding roller 9 through the second wire unit. During the rotation of the conductor winding roller 9, the conductor winding roller 9 winds up the conductor metal stripped from the cable, thereby achieving conductor The recycling of metals facilitates the production and manufacturing of cables. In the process of the inner insulation layer after stripping sliding down through the second conductor unit, the inner insulation layer contacts the second winding roller 8. At the same time, the staff can apply glue on the second winding roller 8 to facilitate the inner insulation layer to adhere to the second winding roller 8. In the process of the second winding roller 8 rotating, the second winding roller 8 recycles the inner insulation layer that has been stripped off, which not only realizes the separation and stripping of the outer insulation layer and the inner insulation layer of the cable, but also, since the outer insulation layer and the inner insulation of some cables are made of different materials, the outer insulation layer and the inner insulation layer of the cable are separated and collected, which facilitates the recycling of the inner insulation layer material and the outer insulation layer material during the production of the cable, thereby reducing the waste of resources. Example

[0091] The following technical features are added based on Example 1:

[0092] A cable stripping device for cable production, the second wire unit includes an arc-shaped wire plate 43, one end of which passes through the side wall of the processing box 1 and extends to the outside of the processing box 1. There are multiple arc-shaped wire plates 43, and multiple arc-shaped wire plates 43 are fixedly connected to the side wall of the processing box 1. Multiple circular through holes are opened on the side wall of the processing box 1. The arc-shaped wire plates 43 pass through and are fixedly connected to the side walls of the circular through holes, so that the arc-shaped wire plates 43 can guide the stripped conductors on the cable out of the processing box 1, thereby facilitating the winding and recycling of the stripped cable conductors.

[0093] The fixing rod 44 has an end portion fixedly connected to the inner wall of the processing box 1 .

[0094] The separation plate 45 is rotatably connected to the fixed rod 44. The separation plates 45 are at least two groups, each group consisting of two separation plates 45, and the two separation plates 45 cooperate with each other. The number of groups of separation plates 45 is consistent with the number of arc-shaped wire plates 43, and the two separation plates 45 on each group of separation plates 45 are symmetrically arranged about the arc-shaped wire plates 43, wherein the upper surface of the separation plate 45 is fixedly connected with a rotating shaft, and the rotating shaft is rotatably connected to the fixed rod 44. A torsion spring is sleeved on the rotating shaft, one end of the torsion spring is fixed to the fixed rod 44, and the other end is fixedly connected to the separation plate 45. The rotational force causes the separation plate 45 to be in an inclined state, that is, one end of the two separation plates 45 approaches each other, and the other end moves away from each other, and the end faces of the two separation plates 45 that are close to each other are inclined. When the conductor passes through the separation plate 45, the separation blocks the inner insulating layer after the conductor surface is cut, thereby realizing the separation of the inner insulating layer wrapped on the conductor.

[0095] The heater 51 is fixedly connected to the inner wall of the processing box 1 and cooperates with the arc-shaped wire board 43. The heater 51 is located directly above the filter box 20.

[0096] Since the cable will age during use, the inner insulation layer of some cables will adhere to the conductor and be difficult to peel off. Therefore, when the conductor with the inner insulation layer peeled off passes through the heater 51, the heater 51 heats the conductor, and the part of the inner insulation layer adhered to the conductor melts during the heating process, thereby cleaning the insulation layer adhered to the conductor.

[0097] The rotating plate 54 is rotatably connected to the inner wall of the processing box 1 .

[0098] The liquid storage box 52 is fixedly connected to the upper surface of the rotating plate 54 and is located directly below the heater 51. The liquid storage box 52 is made of a thermal insulation material. When the melted insulation layer drips down into the liquid storage box 52, the liquid storage box 52 performs thermal insulation treatment on the molten inner insulation layer, so that the molten inner insulation layer remains in a liquid state. A notch is provided on the arc-shaped conductor plate 43, and the position of the notch corresponds to the position of the heater 51, so that the inner insulation adhered to the conductor can flow down through the notch into the liquid storage box 52 after melting, thereby facilitating the collection of the melted inner insulation layer.

[0099] The servo motor 55 is fixedly connected to the outer side wall of the processing box 1, and the output shaft of the servo motor 55 penetrates the side wall of the processing box 1 and is fixedly connected with the rotating plate 54. When the inside of the mesh of the filter screen 21 is blocked by the particles, the particles contained in the inside of the filter screen 21 need to be cleaned. The servo motor 55 can drive the rotating plate 54 to rotate forward and backward at regular time. During the rotation of the main shaft of the servo motor 55, the rotating plate 54 and the liquid storage box 52 are driven to rotate. When the rotating plate 54 rotates 180°, the opening of the liquid storage box 52 faces downward, so that the molten inner insulation layer collected in the liquid storage box 52 flows downward to the filter screen 21. Because part of the water and particles will remain on the surface of the filter screen 21 during the filtration of the particles in the water, and part of the particles will enter the mesh on the filter screen 21, when the molten inner insulation layer contacts with the filter screen 21, the water remaining on the filter screen 21 will reduce the temperature of the molten inner insulation layer, causing the molten inner insulation layer to cool and form a soft plastic. During the cooling and forming of the molten inner insulation layer, the particles on the surface of the filter screen 21 and the particles in the mesh of the filter screen 21 adhere to the formed soft plastic. Because the inner insulation layer of the cable is mostly made of PVC, PE and other materials, the cooled and formed inner insulation layer of the cable has a certain flexibility. At this time, the staff takes out the formed inner insulation layer of the cable. Because the particles on the surface of the filter screen 21 and in the mesh of the filter screen 21 adhere to the inner insulation layer, the particles on the surface of the filter screen 21 and in the mesh of the filter screen 21 can be cleaned by the molten inner insulation layer, preventing the filter screen 21 from being blocked. The material of the filter screen 21 is a high-temperature resistant material, such as a high-temperature alloy material.

[0100] Because the melt slurry flowing to the surface of the filter screen 21 is in a flowing state, the melt slurry flows and spreads on the surface of the filter screen 21, and at the same time, the melt slurry flows into the mesh holes of the filter screen 21. Because the filter box 20 contains water, the filter screen 21 is located inside the water, that is, the water cools and solidifies the melt slurry on the surface of the filter screen 21 and in the mesh holes of the filter screen 21 to form soft plastic. In addition, the water in the filter box 20 can be supplemented to accelerate the cooling and solidification of the melt slurry on the surface of the filter screen 21 and in the mesh holes of the filter screen 21 to form soft plastic, thereby preventing the melt slurry from falling through the mesh holes of the filter screen 21 to the inside bottom of the filter box 20 when the melt slurry has not solidified to form soft plastic. If a small amount of melt slurry falls through the mesh holes of the filter screen 21 to the inside bottom of the filter box 20, the present application has a square opening in the side wall of the filter box 20, and a baffle is arranged at the square opening. When the baffle is located inside the square opening, the baffle and the square opening are in a sealed state, and the baffle is detachably connected by bolts. When the molten inner insulating layer enters the bottom of the filter box 20 through the mesh holes of the filter screen 21 and cools to form soft plastic, the baffle is removed by the worker, so that the worker can easily take out the soft plastic stored in the bottom of the filter box 20, that is, the soft plastic on the inside bottom of the filter box 20 is cleaned. In addition, the filter box 20 is made of transparent material, so that whether there is soft plastic on the inside bottom of the filter box 20 can be observed. The inlet of the return pipe 53 is provided with a second filter screen, and the mesh hole diameter of the second filter screen is smaller than that of the filter screen 21, so as to block the particles at the bottom of the filter box 20.

[0101] The driving mechanism includes second driving motors 46 fixedly connected to the outer side wall of the processing box 1. The second driving motors 46 are two, and the two second driving motors 46 are distributed above and below. The second driving motor 46 located on the upper side is used to drive the rotation of the shaft 48 on the upper side of the first stripping mechanism and the second stripping mechanism and the shaft 48 on the upper side of the feeding roller 3.

[0102] The second driving motor 46 located on the lower side is used to drive the rotation of the shaft 48 on the upper side of the first stripping mechanism and the second stripping mechanism and the shaft 48 on the lower side of the feeding roller 3, the first winding roller 5, the second winding roller 8, and the conductor winding roller 9, so that the upper and lower feeding rollers 3, the transmission roller 23, the first stripping roller 4, the wire roller 6, the second stripping roller 7 rotate towards each other, so that the cable line needing stripping treatment can be transported to the inside of the processing box 1, and the multiple insulating layers on the cable line can be distinguished and stripped.

[0103] Second sprockets 47 are fixedly connected to the ends of the output shafts of the second driving motors 46 and the shafts 48.

[0104] The second chain 49 is sleeved on two adjacent second sprockets 47 .

[0105] Working principle: When the cable needs to be stripped, the two second drive motors 46 are started, and the output shaft on the second drive motor 46 drives the second sprocket 47 to rotate, and the cooperation of the second sprocket 47 and the second chain 49 drives the rotating shaft 48 to rotate, thereby driving the feed roller 3, the transmission roller 23, the first stripping roller 4, the wire roller 6, and the second stripping roller 7 to rotate in the opposite direction, and the conductor winding roller 9, the first winding roller 5, and the second winding roller 8 to rotate, so that the feed roller 3 transports the cable to the inside of the processing box 1, thereby facilitating multi-stage stripping of the cable. When the stripped conductor passes through the arc-shaped wire plate 43, as the wire roller 6 pushes the conductor and the inner insulating layer wrapped around it toward the second stripping roller 7, the cut inner insulating layer The conductor slides to the outside of the processing box 1 through the arc-shaped wire plate 43. When the conductor passes through the separation plate 45, the separation plate 45 blocks the cut inner insulation layer, and the blocked inner insulation layer slides along the inclined surface of the separation plate 45 to both sides of the arc-shaped wire plate 43 and slides downward, thereby realizing the stripping of the cut inner insulation from the conductor, and the conductor slides out of the processing box 1 through the arc-shaped wire plate 43 and contacts the conductor winding roller 9. The conductor winding roller 9 winds up the stripped conductor, thereby facilitating the collection and production of the recycled conductor, and the stripped inner insulation layer slides downward and contacts the second winding roller 8. The second winding roller 8 winds up the inner insulation layer during the rotation process, thereby realizing the differentiated recycling of the inner insulation layer and the outer insulation layer on the cable.

[0106] The wire on the heater 51 is electrically connected to the power supply in the prior art. When the stripped cable conductor passes through the heater 51, the heater 51 is turned on and heats the conductor, causing the inner insulating layer adhered to the conductor to melt. The melted inner insulating layer flows downward through the notch on the arc-shaped wire plate 43 into the liquid reservoir box 52. Since the liquid reservoir box 52 has heat preservation performance, the inner insulating layer in the liquid reservoir box 52 is always in a molten state. In the process of rotating the output shaft of the servo motor 55, the rotating shaft is driven. The movable plate 54 and the liquid storage box 52 rotate. When the open end of the liquid storage box 52 faces downward, the melt in the liquid storage box 52 flows downward to the filter screen 21, and absorbs some particles on the surface of the filter screen 21 and in the mesh of the filter screen 21 during the process of cooling and forming on the filter screen 21. After the melt is formed into a sheet or block, it is necessary to take out the formed sheet or block, and at the same time take out the particles adhering to the block and the sheet, thereby cleaning the particles on the filter screen 21 and avoiding clogging of the mesh of the filter screen 21.

[0107] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiment. All technical solutions based on the concept of the present invention are within the scope of protection of the present invention. It should be noted that for those skilled in the art, various improvements and modifications that do not depart from the principles of the present invention should be considered as within the scope of protection of the present invention.

Claims

1. A cable stripping device for cable production, comprising a processing box (1), wherein the bottom of the processing box (1) is fixedly connected to a support rod (2), and the support rod (2) is located at the four corners of the bottom of the processing box (1), characterized in that: Also includes: A feeding mechanism, the feeding mechanism being arranged on a side wall of the processing box (1), the feeding mechanism comprising a feeding roller (3) symmetrically arranged up and down, and a cleaning unit being arranged on one side of the feeding roller (3); A first-level peeling mechanism, the first-level peeling mechanism is arranged on the inner wall of the processing box (1), the first-level peeling mechanism is located on one side of the cleaning unit, the first-level peeling mechanism includes a first peeling roller (4) symmetrically arranged above and below, the first peeling roller (4) is rotatably connected to the inner wall of the processing box (1), a first wire unit is arranged on one side of the first peeling roller (4), and a first winding roller (5) is arranged at the end of the first wire unit, and the first winding roller (5) is located on the lower side of the first wire unit; A secondary stripping mechanism, the secondary stripping mechanism is arranged on one side of the first wire unit, the secondary stripping mechanism includes a wire roller (6) symmetrically arranged above and below, the wire roller (6) is rotatably connected to the inner side wall of the processing box (1), a second stripping roller (7) is arranged on one side of the wire roller (6), the second stripping roller (7) is rotatably connected to the inner side wall of the processing box (1), a second wire unit is arranged on one side of the second stripping roller (7), and a second winding roller (8) is arranged on the lower side of the second wire unit; A conductor winding roller (9), the conductor winding roller (9) being located at the end of the second conductor unit, and the conductor winding roller (9) being rotatably connected to the outer side wall of the processing box (1); A driving mechanism, the driving mechanism being arranged on the outer side wall of the processing box (1), and the driving mechanism being used to drive the feeding mechanism, the primary stripping mechanism, the secondary stripping mechanism, and the conductor winding roller (9) to rotate; The first wire unit includes: A wire box (36), the wire box (36) is located on one side of the first peeling roller (4), a fixing plate (37) is horizontally fixedly connected to the inner side wall of the processing box (1), and the wire box (36) is fixedly connected to the fixing plate (37); A first branching plate (38), the first branching plate (38) being fixedly connected to the bottom of the wire box (36), and the first branching plate (38) being located in the middle of the wire box (36); a second branching board (39), wherein the second branching boards (39) are two and are symmetrically arranged with respect to the first branching board (38), and the length of the second branching boards (39) is less than the length of the first branching board (38); A guide plate (40), wherein the guide plate (40) is fixedly connected to the outer side wall of the wire box (36); The second wire unit includes: An arc-shaped wire plate (43), one end of which penetrates the side wall of the processing box (1) and extends to the outside of the processing box (1); A fixing rod (44), the end of which is fixedly connected to the inner wall of the processing box (1); Separation plates (45), the separation plates (45) are rotatably connected to the fixing rod (44), the separation plates (45) are at least two groups, each group is two separation plates (45), and the two separation plates (45) cooperate with each other; A heater (51), the heater (51) is fixedly connected to the inner wall of the processing box (1), and the heater (51) is matched with the arc-shaped wire plate (43), and the heater (51) is located directly above the filter box (20); a rotating plate (54), the rotating plate (54) being rotatably connected to the inner wall of the processing box (1); a liquid storage box (52), wherein the liquid storage box (52) is fixedly connected to the upper surface of the rotating plate (54), and the liquid storage box (52) is located directly below the heater (51); A servo motor (55) is fixedly connected to the outer wall of the processing box (1), and an output shaft of the servo motor (55) passes through the side wall of the processing box (1) and is fixedly connected to the rotating plate (54).

2. A cable stripping device for cable production according to claim 1, characterized in that: A feed opening (10) is provided on the side wall of the processing box (1), and the feed roller (3) is rotatably connected to the side wall of the feed opening (10).

3. A cable stripping device for cable production according to claim 2, characterized in that: The cleaning unit comprises: A cleaning cylinder (11), the cleaning cylinder (11) is arranged at an angle, an annular baffle (12) is fixedly connected to the inner annular wall of the cleaning cylinder (11), an annular pipe (13) is provided on one side of the annular baffle (12), and at least two nozzles (14) are fixedly connected to the inner annular wall of the annular pipe (13); A cleaning mechanism, the cleaning mechanism comprising a connecting plate (15), the connecting plate (15) being rotatably connected to the inner wall of the cleaning cylinder (11), and at least two crushing teeth (16) being fixedly connected to the side wall of the connecting plate (15); A water tank (17), the water tank (17) is fixedly connected to the bottom of the treatment tank (1), a water pump (18) is fixedly connected to the bottom of the water tank (17), a water delivery end of the water pump (18) is fixedly connected to a connecting pipe (19), and the upper end of the connecting pipe (19) is connected to the annular pipe (13); A filter box (20), the filter box (20) is fixedly connected to the side wall of the treatment box (1), and the filter box (20) is connected to the water tank (17), the bottom of the filter box (20) is fixedly connected to a filter screen (21), the bottom of the filter box (20) is fixedly connected to a return pipe (53), one end of the return pipe (53) is connected to the water tank (17), the upper surface of the water tank (17) is fixedly connected to a support plate (22), and the cleaning cylinder (11) is fixedly connected to the support plate (22) in an inclined manner.

4. A cable stripping device for cable production according to claim 3, characterized in that: A transmission roller (23) is provided on one side of the cleaning cylinder (11), and two symmetrically arranged first annular grooves (24) are provided on the transmission roller (23), the feed roller (3), and the first peeling roller (4), and the two upper and lower adjacent first annular grooves (24) cooperate with each other; The outer sleeve of the transmission roller (23) is provided with a wiping cotton (25), and a connecting rod (26) is fixedly connected to the inner side wall of the processing box (1). Two balls (27) are fixedly connected to the connecting rod (26), and the balls (27) are matched with the first annular groove (24).

5. A cable stripping device for cable production according to claim 4, characterized in that: An outer gear ring (28) is rotatably connected to the inner ring wall of the cleaning cylinder (11), a plurality of connecting plates (15) are fixedly connected to the side wall of the outer gear ring (28) and are distributed in an annular shape, a rotating rod (29) is rotatably connected to the side wall of the support plate (22), and a gear (30) is fixedly connected to the end of the rotating rod (29); An arc-shaped through hole (31) is formed on the top of the cleaning cylinder (11), and the lower end of the gear (30) passes through the arc-shaped through hole (31) and meshes with the outer gear ring (28); A first drive motor (32) is fixedly connected to the top of the processing box (1); a first sprocket (33) is fixedly connected to the output shaft of the first drive motor (32) and the rotating rod (29); and a first chain (34) is sleeved between two adjacent first sprockets (33).

6. A cable stripping device for cable production according to claim 5, characterized in that: The longitudinal section of the annular baffle (12) is triangular, and the inclined surface of the annular baffle (12) is arranged opposite to the feed roller (3). A discharge pipe (35) is provided on one side of the vertical end of the annular baffle (12), and the lower end of the discharge pipe (35) passes through the bottom of the cleaning cylinder (11) and is connected to the filter box (20).

7. A cable stripping device for cable production according to claim 6, characterized in that: The conductor roller (6) and the second stripping roller (7) are both provided with a plurality of second annular grooves (41), two upper and lower adjacent second annular grooves (41) cooperate with each other, and the second annular grooves (41) on the conductor roller (6) and the second stripping roller (7) are distributed on both sides of the second wire distribution plate (39), and the second annular grooves (41) cooperate with the conductor box (36); The second peeling roller (7) and the first peeling roller (4) are both provided with an annular peeling knife (42), and the annular peeling knife (42) is located in the first annular groove (24) and the second annular groove (41), and the two adjacent annular peeling knives (42) cooperate with each other.

8. A cable stripping device for cable production according to claim 7, characterized in that: The driving mechanism comprises: a second drive motor (46), the second drive motor (46) being fixedly connected to the outer side wall of the processing box (1); A second sprocket (47), the feed roller (3), the transmission roller (23), the first peeling roller (4), the first winding roller (5), the conductor roller (6), the second peeling roller (7), the second winding roller (8) and the conductor winding roller (9) are all fixedly connected to a rotating shaft (48), and the second sprocket (47) is respectively fixedly connected to the output shaft of the second drive motor (46) and the end of the rotating shaft (48); A second chain (49), wherein the second chain (49) is sleeved on two adjacent second sprockets (47).

Citation Information

Patent Citations

  • Cable stripping device

    CN115832971A

  • Recovery unit is cut apart to cable sheath

    CN208722649U

Cited By

  • Cable peeling and cutting device and cable peeling processing box

    CN121261265A