Communication cable peeling device
By designing a communication cable peeling device, using the combination of sleeve assembly, skin breaking assembly and cutting assembly, the problems of low peeling efficiency and high manpower consumption in the prior art communication cable ends are solved, and automatic peeling is achieved, improving efficiency and reducing manpower consumption.
Patent Information
- Application Number
- CN202421330110.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-11
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-11
AI Technical Summary
The peeling operation at the end of the existing communication cable mainly relies on manual operations, which are inefficient and have high labor consumption.
A communication cable peeling device is designed, including a sleeve assembly, a skin breaking assembly and a cutting assembly. The sleeve assembly is used for cable insertion. The skin breaking assembly is driven by the feed cylinder to cut the skin along the length of the cable, and the cutting assembly rotates along the circumference of the sleeve assembly to cut the cut skin.
Automatic peeling operation at the end of the cable is realized, which improves peeling efficiency and reduces manpower consumption.
Smart Images

Figure CN222868422U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cable connection, in particular to a communication cable peeling device. Background Art
[0002] When connecting communication cables, a layer of outer sheath at the end of the cable needs to be removed. The peeling operation of the existing communication cable ends is mostly done manually by on-site installation workers, which requires a high level of technical skills of the operators. As a result, the efficiency of peeling the communication cable ends is low and the manpower consumption is high. Utility Model Content
[0003] The main purpose of the utility model is to provide a communication cable peeling device, which aims to realize the automatic peeling operation of the end part of the cable body, improve the peeling efficiency and reduce the manpower consumption.
[0004] In order to achieve the above-mentioned purpose, the communication cable peeling device proposed by the utility model comprises:
[0005] A sleeve assembly, both ends of which are connected through the sleeve assembly, and the sleeve assembly has a first end for inserting a cable body;
[0006] A skin-breaking component is provided in the sleeve component, the skin-breaking component comprises a skin-breaking disc and a feeding cylinder capable of driving the skin-breaking disc to move inside the sleeve component, and when the cable body is drawn out from the sleeve component, the skin-breaking disc is used to cut the surface of the cable body along the length direction of the cable body;
[0007] A cutting assembly is arranged at the first end of the sleeve assembly, and the cutting assembly rotates circumferentially along the sleeve assembly to cut off the skin of the cable body.
[0008] In one embodiment, there are multiple skin-breaking components, and the multiple skin-breaking components are distributed at intervals along the circumference of the sleeve assembly. When the skin-breaking component cuts the surface of the cable body along the length direction of the cable body, the multiple skin-breaking disks clamp the cable body along the circumference of the cable body.
[0009] In one embodiment, the communication cable peeling device also includes a positioning assembly, the sleeve assembly has a second end facing away from the first end, the positioning assembly is arranged at the second end of the sleeve assembly, and when the cable body is inserted into the sleeve assembly, the positioning assembly clamps the cable body, and is used to tighten the cable body when the cable body is pulled out of the sleeve assembly.
[0010] In one embodiment, the skin breaking assembly further includes a plug-in cylinder, a bracket, and a skin breaking disk driving component. The plug-in cylinder is plugged and fixed to the inner wall of the sleeve assembly, the feed cylinder is provided at the end of the plug-in cylinder away from the sleeve assembly, and the bracket is provided at the end of the plug-in cylinder facing the inside of the sleeve assembly. The skin breaking disk is installed on the bracket, and the bracket is provided with a skin breaking disk driving component for driving the skin breaking disk to rotate, and the rotation axis of the skin breaking disk is arranged perpendicular to the length direction of the cable body.
[0011] In one embodiment, a receiving groove is formed on the inner wall of the sleeve assembly, and the bracket, the skin breaking disk driving member and the skin breaking disk are arranged in the receiving groove.
[0012] In one embodiment, the skin breaking assembly further comprises a limiting slider disposed on the bracket, and the limiting slider is slidably engaged with the inner wall of the accommodating groove to guide the movement of the skin breaking plate.
[0013] In one embodiment, the second end of the sleeve assembly is provided with a plurality of circumferentially spaced paving grooves, the positioning assembly has a plurality of paving grooves respectively arranged at the paving grooves, the positioning assembly includes a positioning cylinder, a clamping member and a sensing element, the positioning cylinder is fixed in the paving groove, the positioning cylinder drives the clamping member to be connected, the clamping member has a clamping surface facing the axis of the sleeve assembly, and the positioning cylinder drives the clamping member to move toward or away from the cable body to clamp or release the cable body.
[0014] In one embodiment, the positioning element further includes a sensing element for detecting an end of a cable body, and when the sensing element detects the end of the cable body, the positioning element clamps the end of the cable body.
[0015] In one embodiment, the cutting assembly includes an annular seat, a cutting disc, a cutting disc driving member, a guide base and an arc-shaped positioning block. The annular seat is rotatably mounted on the first end of the sleeve assembly. The cutting disc and the arc-shaped positioning block are arranged on the annular seat and are arranged opposite to each other. The cutting disc driving member drives the cutting disc to be connected. The cutting disc driving member is slidably arranged on the annular seat to approach or move away from the arc-shaped positioning block. When the cable body is pulled out of the sleeve assembly, the arc-shaped positioning block adheres to one side of the cable body, and the cutting disc moves toward the other side of the cable body to cut off the scratched skin of the cable body.
[0016] In one embodiment, the cutting assembly further includes a plurality of rollers, which are spaced apart and distributed on a side of the arc-shaped positioning block facing the cable body, and are rotatably mounted on the arc-shaped positioning block. When the arc-shaped positioning block positions the cable body, the rollers are attached to the outer circumference of the cable body and can roll on the outer circumference of the cable body.
[0017] The technical solution of the utility model is to provide a sleeve assembly for inserting the cable body, and to provide a skin-breaking assembly on the sleeve assembly. When the cable body inserted in the sleeve assembly is pulled out, the skin-breaking disk is driven by the feed cylinder to move toward the cable body. When the cable body is pulled out, the skin of the cable body is scratched along the pulling-out direction, and a cutting assembly is provided at the first end of the sleeve assembly. When the cable body is pulled out, the scratched skin of the cable body is cut off. When the cable is pulled out, the scratched skin is cut off and separated from the cable body, thereby realizing automatic skin peeling of the end portion of the cable body. Compared with manual skin peeling, the skin peeling efficiency of the cable body can be increased and the manpower consumption can be reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying creative work.
[0019] Figure 1 A schematic structural diagram of an embodiment of a communication cable peeling device provided by the utility model;
[0020] Figure 2 An exploded schematic diagram of the communication cable peeling device provided by the utility model;
[0021] Figure 3 A schematic diagram of the structure of a cutting assembly of a communication cable peeling device provided by the utility model;
[0022] Figure 4 A schematic diagram of the structure of a peeling assembly of a communication cable peeling device provided by the utility model;
[0023] Figure 5 A partial cross-sectional view of the communication cable peeling device provided by the utility model;
[0024] Figure 6 for Figure 5 A local enlarged view at point A;
[0025] Figure 7 The utility model is a cross-sectional schematic diagram of a communication cable peeling device.
[0026] Description of Figure Numbers:
[0027] 100. Communication cable peeling device; 10. Sleeve assembly; 11. First sleeve; 12. Second sleeve; 121. Give way groove; 13. Third sleeve; 131. Accommodation groove; 20. Peeling assembly; 21. Plug-in sleeve; 22. Feed cylinder; 23. Bracket; 24. Peeling disk drive; 25. Peeling disk; 26. Limiting slider; 30. Positioning assembly; 31. Positioning cylinder; 32. Clamping member; 33. Sensing element; 40. Cutting assembly; 41. Cutting disk; 42. Cutting disk drive; 43. Guide base; 45. Arc-shaped positioning block; 46. Roller; 44. Ring seat; 441. Guide groove; 200. Cable body.
[0028] The realization of the purpose, functional features and advantages of the utility model will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION
[0029] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0030] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back...), the directional indications are only used to explain the relative position relationship, movement status, etc. between the components in a certain specific posture. If the specific posture changes, the directional indications will also change accordingly.
[0031] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the utility model, the descriptions of "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of technical features indicated. Therefore, the features limited to "first" and "second" may explicitly or implicitly include at least one of the features. In addition, if "and / or" or "and / or" appears in the full text, its meaning includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or solutions that satisfy both A and B. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by the utility model.
[0032] The outer skin of the cable generally includes an insulating layer, a shielding layer, a sheath layer and an outer skin layer. When the cable is peeled for wiring, it is generally necessary to remove the insulating layer and the sheath layer, and retain the shielding layer and the outer skin layer, so as to ensure that the electrical and mechanical properties of the cable are not affected.
[0033] When connecting communication cables, a layer of outer sheath at the end of the cable needs to be removed. The peeling operation of the existing communication cable ends is mostly done manually by on-site installation workers, which requires a high level of technical skills of the operators. As a result, the efficiency of peeling the communication cable ends is low and the manpower consumption is high.
[0034] The utility model provides a communication cable peeling device 100.
[0035] See also Figures 1 to 7 In one embodiment of the utility model, the communication cable peeling device 100 includes a sleeve assembly 10, a skin-breaking assembly 20 and a cutting assembly 40; both ends of the sleeve assembly 10 are connected through, the sleeve assembly 10 has a first end for inserting the cable body 200, the skin-breaking assembly 20 is arranged in the sleeve assembly 10, the skin-breaking assembly 20 includes a skin-breaking disk 25 and a feed cylinder 22 that can drive the skin-breaking disk 25 to move inside the sleeve assembly 10, when the cable body 200 is pulled out of the sleeve assembly 10, the skin-breaking disk 25 is used to cut the skin of the cable body 200 along the length direction of the cable body 200, the cutting assembly 40 is arranged at the first end of the sleeve assembly 10, and the cutting assembly 40 rotates circumferentially along the sleeve assembly 10 to cut off the skin of the cable body 200.
[0036] The technical solution of the present invention is to provide a sleeve assembly 10 for inserting a cable body 200, and to provide a skin-breaking assembly 20 on the sleeve assembly 10. When the cable body 200 inserted in the sleeve assembly 10 is pulled out, the skin-breaking disk 25 is driven by the feed cylinder 22 to move toward the cable body 200. When the cable body 200 is pulled out, the skin of the cable body 200 is scratched along the pulling-out direction, and a cutting assembly 40 is provided at the first end of the sleeve assembly 10. When the cable body 200 is pulled out, the scratched skin of the cable body 200 is cut off. When the cable is pulled out, the scratched skin is cut off to achieve separation from the cable body 200, thereby achieving automatic skin peeling of the cable body 200 at the end position. Compared with manual skin peeling, the skin peeling efficiency of the cable body 200 can be increased and manpower consumption can be reduced.
[0037] See also Figure 1 As shown, in an embodiment of the utility model, there are multiple skin-breaking components 20, and the multiple skin-breaking components 20 are distributed at intervals along the circumference of the sleeve assembly 10. When the skin-breaking component 20 cuts the surface of the cable body 200 along the length direction of the cable body 200, the multiple skin-breaking disks 25 clamp the cable body 200 along the circumference of the cable body 200.
[0038] Specifically, when multiple skin-breaking components 20 are provided, the outer skin of multiple parts of the outer circumference of the cable can be scratched along the length direction of the cable body 200, so that the outer skin of the cable body 200 that needs to be peeled is divided into multiple sections. When the outer skin of the cable body 200 is scratched and the sleeve component 10 is pulled out, the outer skin of the cable body 200 divided into multiple sections can be more easily cut by the cutting component 40; at the same time, the multiple skin-breaking components 20 can cooperate with each other to clamp the cable body 200. In the process of pulling out the cable body 200, the cable body 200 is tightened, so that the skin-breaking component 20 can be easier to break the cable skin.
[0039] See also Figure 2 As shown, in an embodiment of the utility model, the communication cable peeling device also includes a positioning assembly 30, the sleeve assembly 10 has a second end away from the first end, and the positioning assembly 30 is arranged at the second end of the sleeve assembly 10. When the cable body 200 is inserted into the sleeve assembly 10, the positioning assembly 30 clamps the cable body 200, and is used to tighten the cable body 200 when the cable body 200 is pulled out of the sleeve assembly 10.
[0040] In the above embodiment, the cable body 200 is inserted into the sleeve assembly 10 from the first end. When the cable body 200 is inserted to the second end, the end of the cable body 200 can be positioned by the positioning assembly 30, and the other end of the cable body 200 can be pulled to straighten the cable body 200. Before the cable body 200 is broken, the cable body 200 is in a stretched state. When in the stretched state, the cable body 200 is more easily broken by the skin-breaking assembly 20, and the depth of the skin breaking of each part of the cable body 200 can be more accurate, thereby preventing the skin-breaking assembly 20 from damaging the shielding layer and the outer skin layer of the cable body 200 when the cable body 200 is slid out.
[0041] See also Figure 4 , Figure 5 , Figure 6 As shown, in an embodiment of the utility model, the skin breaking assembly 20 also includes a plug-in cylinder 21, a bracket 23, and a skin breaking disk driving component 24. The plug-in cylinder 21 is plugged and fixed to the inner wall of the sleeve assembly 10, and a feed cylinder 22 is provided at the end of the plug-in cylinder 21 away from the sleeve assembly 10. A bracket 23 is provided at the end of the plug-in cylinder 21 facing the inside of the sleeve assembly 10. A skin breaking disk 25 is installed on the bracket 23. The bracket 23 is provided with a skin breaking disk driving component 24 for driving the skin breaking disk 25 to rotate, and the rotation axis of the skin breaking disk 25 is arranged perpendicular to the length direction of the cable body 200.
[0042] Specifically, the skin breaking disk driving member 24 can adopt a motor, and the motor is connected to the skin breaking disk 25 through a transmission assembly to drive the skin breaking disk 25 to rotate. When the skin breaking operation is performed, the support 23 is driven by the feed cylinder 22 to move toward the inside of the sleeve assembly 10, and the skin breaking disk 25 is driven to rotate by the skin breaking disk driving member 24. When the skin breaking disk 25 fits the skin of the cable body 200, the skin breaking disk 25 is quickly inserted into the skin of the cable body 200 through the rotation, so that the skin of the cable body 200 is easier to be scratched.
[0043] Of course, in other embodiments, the skin-breaking disc driving member 24 may not be provided, and the skin-breaking disc 25 may be directly driven by the feeding cylinder 22 to feed and press the skin of the cable body 200 to cut an opening in the skin of the cable body 200. When the cable body 200 is pulled, the skin-breaking disc 25 may slide open at the opening along the length direction of the cable body 200. In order to ensure that the skin-breaking disc 25 can more easily cut the skin of the cable, it is preferred in the present application to provide a skin-breaking disc driving member 24 to drive the skin-breaking disc 25 to rotate.
[0044] See also Figure 6 As shown, in the embodiment of the present invention, a receiving groove 131 is formed on the inner wall of the sleeve assembly 10 , and the bracket 23 , the skin breaking disk driving member 24 and the skin breaking disk 25 are disposed in the receiving groove 131 .
[0045] In the present application, when the skin-breaking disc 25 is in a non-cutting skin-breaking state, for example, when inserting a cable into the sleeve assembly 10, in order to ensure that the skin-breaking disc 25 does not affect the insertion of the cable, the skin-breaking disc 25 needs to be in a stored state.
[0046] To this end, a receiving groove 131 is provided on the inner wall of the sleeve assembly 10. When the skin-breaking disc 25 is in a non-cutting skin-breaking state, the skin-breaking disc 25 is driven by the feed cylinder 22 and stored in the receiving groove 131. Only when the skin-breaking disc 25 needs to break the skin of the cable body 200, the skin-breaking disc 25 is driven by the feed cylinder 22 to extend out of the receiving groove 131. Alternatively, when the cable body 200 is inserted into the sleeve assembly 10, the skin-breaking disc 25 is located in the receiving groove 131. In other cases, the skin-breaking disc 25 is in a state of extending out of the receiving groove 131. This is not limited here.
[0047] See also Figure 4 As shown, in the embodiment of the present utility model, the skin breaking component 20 further includes a limiting slider 26 disposed on the bracket 23 , and the limiting slider 26 slidably cooperates with the inner wall of the accommodating groove 131 to guide the movement of the skin breaking plate 25 .
[0048] Specifically, by arranging a limit slider 26 on the bracket 23, the skin-breaking disc 25 can be accurately guided in and out during the process of sliding in and out, so that the skin-breaking disc 25 will not deviate from the predetermined track, and the skin-breaking disc 25 is prevented from shaking during the process of breaking the skin of the cable body 200. During the process of pulling out the cable, the cut of the cable skin is more neat.
[0049] See also Figure 2 In an embodiment of the utility model, a plurality of circumferentially spaced-apart paving grooves 121 are provided at the second end of the sleeve assembly 10, a plurality of positioning components 30 are respectively arranged at the paving grooves 121, the positioning component 30 comprises a positioning cylinder 31, a clamping member 32 and a sensing element 33, the positioning cylinder 31 is fixed in the paving groove 121, the positioning cylinder 31 drives the connecting clamping member 32, the clamping member 32 has a clamping surface facing the axis of the sleeve assembly 10, the positioning cylinder 31 drives the clamping member 32 to move toward or away from the cable body 200 to clamp or release the cable body 200.
[0050] In the above embodiment, the positioning assembly 30 is accommodated in the clearance groove 121, so that the lower end of the sleeve assembly 10 forms a plurality of supporting feet, through which the sleeve assembly 10 can be placed on a plane. Specifically, when the bottom end of the cable body 200 is inserted into the second end of the sleeve assembly 10, the clamping members 32 connected thereto are driven simultaneously by the plurality of positioning cylinders 31, so that the clamping surfaces of the plurality of clamping members 32 abut against the outer periphery of the cable body 200, thereby achieving the clamping and fixing of the bottom end of the cable body 200.
[0051] In the embodiment of the present utility model, the positioning element 33 further includes a sensing element 33 for detecting the end of the cable body 200 . When the sensing element 33 detects the end of the cable body 200 , the positioning element 33 clamps the end of the cable body 200 .
[0052] Specifically, the sensing element 33 can be set as one of a photoelectric sensor and an ultrasonic proximity sensor. When the sensing element 33 is set, the sensing element 33 can be linked with the positioning cylinder 31. By connecting the sensing element and the positioning cylinder 31 to a control module, when the sensing element senses that the end of the cable body 200 is inserted, the sensing element transmits the insertion signal to the control module, and the control module controls the positioning cylinder 31 to start, thereby clamping the end of the cable body 200.
[0053] In the present application, a delay module can also be set up, and the delay module is respectively connected to the feed cylinder 22 and the skin breaking disk drive 24. When the positioning cylinder 31 is started, the control module controls the feed cylinder 22 to start, sends out the skin breaking disk 25, and rotates the skin breaking disk 25 to break the cable. After the feed cylinder 22 and the skin breaking disk drive 24 work for a specified period of time, the delay module sends a start time signal to the control module, and the control module controls the positioning cylinder 31 to reset.
[0054] See also Figure 1 , Figure 3 As shown, in an embodiment of the utility model, the cutting assembly 40 includes an annular seat 44, a cutting disc 41, a cutting disc driving member 42, a guide base 43 and an arc-shaped positioning block 45. The annular seat 44 is rotatably mounted on the first end of the sleeve assembly 10. The cutting disc 41 and the arc-shaped positioning block 45 are arranged on the annular seat 44 and are arranged opposite to each other. The cutting disc driving member 42 drives the connected cutting disc 41. The cutting disc driving member 42 is slidably arranged on the annular seat 44 to approach or move away from the arc-shaped positioning block 45. When the cable body 200 is pulled out of the sleeve assembly 10, the arc-shaped positioning block 45 adheres to one side of the cable body 200, and the cutting disc 41 moves toward the other side of the cable body 200 to cut off the scratched skin of the cable body 200.
[0055] Specifically, a guide base 43 is provided at the bottom of the cutting disk driving member 42, and a guide groove 441 is provided on the top surface of the annular seat 44. The guide base 43 can be slidably arranged in the guide groove 441 to approach or move away from the arc-shaped positioning block 45. At the same time, the arc-shaped positioning block 45 has an inner arc surface facing the cable body 200, and the cutting disk 41 is arranged toward the inner arc surface. The cutting disk 41 can be driven by the cutting disk driving member 42 to realize rotational cutting, and the cutting disk 41 can move toward or away from the inner arc surface of the arc-shaped positioning block 45. When the cable body 200 with the cut skin is pulled out of the sleeve assembly 10, the cut skin of the cable body 200 can be cut off, so as to realize the separation of the cable skin and the cable body 200.
[0056] Of course, since the cable is cylindrical, the cut skin of the cable is divided into multiple strips and distributed around the cable. When cutting the cut skin of the cable, multiple cut skins need to be cut off. To this end, the annular seat 44 can be rotated so that the cutting disk 41 can rotate along the circumference of the cable, so that the cutting disk 41 can cut off each skin.
[0057] In an embodiment of the utility model, the cutting assembly 40 also includes a plurality of rollers 46, which are spaced apart on a side of the arc-shaped positioning block 45 facing the cable body 200, and the plurality of rollers 46 are rotatably mounted on the arc-shaped positioning block 45. When the arc-shaped positioning block 45 positions the cable body 200, the rollers 46 are attached to the outer periphery of the cable body 200 and can roll on the outer periphery of the cable body 200.
[0058] Specifically, by setting the roller 46, the annular seat 44 can be rotated at the first end of the sleeve assembly 10, so that when the arc positioning block 45 rotates around the outer circumference of the cable body 200, the contact friction between the arc positioning block 45 and the cable body 200 is reduced, making the rotation of the annular seat 44 smoother.
[0059] In an embodiment of the utility model, the sleeve assembly 10 includes a first sleeve 11, a second sleeve 12 and a third sleeve 13. Threaded connecting plugs are provided at both ends of the second sleeve 12. The inner wall surfaces of the first sleeve 11 and the third sleeve 13 facing one end of the second sleeve 12 are provided with threaded grooves. The threaded grooves are used to connect the threaded plugs so that the first sleeve 11, the second sleeve 12 and the third sleeve 13 can be connected to each other to form the sleeve assembly 10.
[0060] The first sleeve 11, the second sleeve 12 and the third sleeve 13 have equal inner diameters. When the first sleeve 11, the second sleeve 12 and the third sleeve 13 are connected to form the sleeve assembly 10, the inner walls of the first sleeve 11, the second sleeve 12 and the third sleeve 13 are connected in sequence to form an uninterrupted inner wall surface.
[0061] The cutting assembly 40 is disposed at one end of the first sleeve 11 away from the second sleeve 12 , the skin breaking assembly 20 is disposed at the first sleeve 11 , and the positioning assembly 30 is disposed at one end of the third sleeve 13 away from the second sleeve 12 .
[0062] When the cable body 200 is inserted into the sleeve assembly 10, the end of the cable body 200 that needs to be peeled is first inserted into the sleeve assembly 10 and clamped and positioned by the positioning assembly 30. At this time, when the cable body 200 is pulled upward, multiple skin-breaking assemblies 20 work simultaneously to cut the skin of the cable body 200, and at the same time, multiple skin-breaking assemblies 20 can clamp the cable body 200. At this time, the positioning assembly 30 releases the bottom end of the cable body 200, and the cable body 200 continues to be pulled out of the sleeve assembly 10. When the cable body 200 is pulled, it is cut by the skin-breaking assembly 20 along the length direction. The length of the skin of the cable body 200 cut is the straight-line distance from the skin-breaking assembly 20 to the positioning assembly 30.
[0063] Therefore, by replacing the second sleeve 12 of different lengths, the linear distance between the skin-breaking component 20 and the positioning component 30 can be changed, thereby achieving the adjustment of the skin-peeling length at the end of the communication cable.
[0064] The above are only exemplary embodiments of the present invention, and are not intended to limit the patent scope of the present invention. All equivalent structural changes made using the contents of the present invention specification and drawings under the technical concept of the present invention, or direct / indirect applications in other related technical fields are included in the patent protection scope of the present invention.
Claims
1. A communication cable peeling device, characterized in that: include: A sleeve assembly, both ends of which are connected through the sleeve assembly, and the sleeve assembly has a first end for inserting a cable body; A skin-breaking component is provided in the sleeve component, the skin-breaking component comprises a skin-breaking disc and a feeding cylinder capable of driving the skin-breaking disc to move inside the sleeve component, and when the cable body is drawn out from the sleeve component, the skin-breaking disc is used to cut the surface of the cable body along the length direction of the cable body; A cutting assembly is arranged at the first end of the sleeve assembly, and the cutting assembly rotates circumferentially along the sleeve assembly to cut off the skin of the cable body.
2. The communication cable peeling device according to claim 1, characterized in that: There are multiple skin-breaking components, which are spaced apart along the circumference of the sleeve component. When the skin-breaking components cut the surface of the cable body along the length direction of the cable body, the multiple skin-breaking discs clamp the cable body along the circumference of the cable body.
3. The communication cable peeling device according to claim 2, characterized in that: The communication cable peeling device also includes a positioning assembly, the sleeve assembly has a second end away from the first end, the positioning assembly is arranged at the second end of the sleeve assembly, when the cable body is inserted into the sleeve assembly, the positioning assembly clamps the cable body, when the cable body is pulled out of the sleeve assembly, the positioning assembly is used to tighten the cable body.
4. The communication cable peeling device according to claim 2, characterized in that: The skin breaking assembly also includes a plug-in cylinder, a bracket, and a skin breaking disk driving component. The plug-in cylinder is plugged and fixed to the inner wall of the sleeve assembly, the feeding cylinder is provided at the end of the plug-in cylinder away from the sleeve assembly, and the bracket is provided at the end of the plug-in cylinder facing the inside of the sleeve assembly. The skin breaking disk is installed on the bracket, and the bracket is provided with a skin breaking disk driving component for driving the skin breaking disk to rotate, and the rotation axis of the skin breaking disk is arranged perpendicular to the length direction of the cable body.
5. The communication cable peeling device according to claim 4, characterized in that: An accommodating groove is provided on the inner wall of the sleeve assembly, and the bracket, the skin breaking disk driving component and the skin breaking disk are arranged in the accommodating groove.
6. The communication cable peeling device according to claim 5, characterized in that: The skin-breaking component further comprises a limiting slider disposed on the bracket, wherein the limiting slider is slidably matched with the inner wall of the accommodating groove to guide the movement of the skin-breaking plate.
7. The communication cable peeling device according to claim 3, characterized in that: The second end of the sleeve assembly is provided with a plurality of circumferentially spaced paving grooves, the positioning assembly has a plurality of paving grooves respectively arranged therein, the positioning assembly comprises a positioning cylinder, a clamping member and a sensing element, the positioning cylinder is fixed in the paving groove, the positioning cylinder drives the clamping member to be connected, the clamping member has a clamping surface facing the axis of the sleeve assembly, the positioning cylinder drives the clamping member to move toward or away from the cable body to clamp or release the cable body.
8. The communication cable peeling device according to claim 7, characterized in that: The positioning assembly further includes a sensing element for detecting an end of a cable body. When the sensing element detects the end of the cable body, the positioning assembly clamps the end of the cable body.
9. The communication cable peeling device according to any one of claims 1 to 8, characterized in that: The cutting assembly includes an annular seat, a cutting disc, a cutting disc driving member, a guide base and an arc-shaped positioning block. The annular seat is rotatably mounted on the first end of the sleeve assembly. The cutting disc and the arc-shaped positioning block are arranged on the annular seat and are arranged opposite to each other. The cutting disc driving member drives the connection with the cutting disc. The cutting disc driving member is slidably arranged on the annular seat to approach or move away from the arc-shaped positioning block. When the cable body is pulled out of the sleeve assembly, the arc-shaped positioning block fits one side of the cable body, and the cutting disc moves toward the other side of the cable body to cut off the scratched skin of the cable body.
10. The communication cable peeling device according to claim 9, characterized in that: The cutting assembly also includes a plurality of rollers, which are spaced apart and distributed on a side of the arc-shaped positioning block facing the cable body. The plurality of rollers are rotatably mounted on the arc-shaped positioning block. When the arc-shaped positioning block positions the cable body, the rollers fit against the outer circumference of the cable body and can roll on the outer circumference of the cable body.