Automatic cable outer sheath longitudinal cutting tool

By designing an automated cable sheath longitudinal cutting tool, the problem of precise stripping that existing devices cannot achieve was solved, enabling high-precision cutting and adaptability to multiple specifications, and reducing the risk of workplace injuries.

CN223729325UActive Publication Date: 2025-12-26HUNAN CHANGCABLE INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202423093345.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-12-26
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

Existing cable aluminum sheath longitudinal cutting devices are difficult to achieve precise cutting length.

Method used

An automated cable outer sheath longitudinal cutting tool was designed, including a clamping mechanism, a support mechanism, and a cutting machine. The clamping mechanism is equipped with scale marks, the support mechanism can adjust the cutting depth, and the cutting machine has a saw blade. Precise cutting is achieved through automated and semi-automated operation.

Benefits of technology

It improves cutting accuracy, reduces workplace accidents, enhances product reliability and consistency, and adapts to the stripping needs of cables of various sizes and types.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic cable outer sheath longitudinal cutting tool, which belongs to the field of cable outer sheath stripping, and comprises a clamping mechanism, a supporting mechanism and a cutting machine, the clamping mechanism is used for clamping a cable, the clamping mechanism is provided with a scale mark for marking the cutting length, the supporting mechanism comprises a supporting assembly and a depth adjusting assembly, and the depth adjusting assembly is provided with a depth adjusting groove. The supporting assembly is slidably connected to the clamping mechanism in the axial direction of the cable, the depth adjusting assembly is installed on the supporting assembly, the cutting machine is installed on the depth adjusting assembly, the depth adjusting assembly is used for driving the cutting machine to move in the radial direction of the cable, the cutting machine is provided with a saw blade, and the axial direction of the saw blade is perpendicular to the axis of the cable. According to the utility model, the supporting assembly drives the cutting machine to move relative to the clamping mechanism, so that the cutting machine can longitudinally cut the cable clamped by the clamping mechanism, and the clamping mechanism is provided with the scale marks for marking the cutting length, so that the accuracy of the stripping and cutting length can be realized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable outer sheath stripping technical field especially relates to a kind of automatic cable outer sheath longitudinal cutting tool. BACKGROUND

[0002] In modern power transmission systems, cables serve as important carriers for energy transmission, with complex structures and diverse functions. In particular, in high-voltage and ultra-high-voltage cable applications, the outer sheath of the cable plays a crucial protective role. The outer sheath is typically made of polymer materials with good weather resistance, such as polyethylene (PE) or polyvinyl chloride (PVC), and may include a metal armor layer to enhance mechanical strength and electromagnetic shielding effectiveness. However, during the installation, maintenance, or recycling of cables, it is often necessary to accurately and efficiently remove these outer sheaths to expose the conductors or insulation layers inside the cable for further processing.

[0003] A cable aluminum sheath longitudinal cutting device is disclosed in the related art, which includes a support, a first mounting seat, a position adjusting mechanism, a cutter and a pointer. The support is provided with a scale, and the first mounting seat is detachably connected to the support. The first mounting seat is used to clamp the aluminum sheath of the cable in cooperation with the support. The position adjusting mechanism is installed on the support, and the cutter is installed on the position adjusting mechanism to cut the aluminum sheath of the cable. The position adjusting mechanism is used to control the depth of the cutter cutting the aluminum sheath of the cable. The pointer moves with the cutter and points to the scale. This cable aluminum sheath longitudinal cutting device cannot achieve accurate length of stripping and cutting. SUMMARY

[0004] The utility model aims at at least one of the technical problems existing in the prior art. To this end, the utility model provides an automatic cable outer sheath longitudinal cutting tool, which solves the problem of inaccurate length of stripping and cutting of the existing cable aluminum sheath longitudinal cutting device.

[0005] According to the utility model embodiment, an automatic cable outer sheath longitudinal cutting tool is provided, which includes:

[0006] A clamping mechanism is used to clamp the cable, and a scale mark for identifying the cutting length is provided on the clamping mechanism.

[0007] A support mechanism includes a support assembly and a depth adjusting assembly. The support assembly is slidably connected to the clamping mechanism along the axial direction of the cable. The depth adjusting assembly is installed on the support assembly.

[0008] A cutting machine is installed on the depth adjusting assembly. The depth adjusting assembly is used to drive the cutting machine to move along the radial direction of the cable. The cutting machine has a saw blade, and the axial direction of the saw blade is perpendicular to the axis of the cable.

[0009] According to the automatic cable outer sheath longitudinal cutting tool, at least the following beneficial effects are achieved:

[0010] The clamping mechanism can clamp the cable, the support assembly is slidably connected to the clamping mechanism along the axial direction of the cable, the cutting machine is installed on the first support assembly, and the support assembly drives the cutting machine to move relative to the clamping mechanism, so that the cutting machine can longitudinally cut the cable clamped by the clamping mechanism. The automatic and semi-automatic solution replaces the traditional manual holding operation mode, effectively reduces the opportunity of the operator directly contacting the sharp cutting tool, and reduces the incidence of work accidents. The cutting depth adjustment function is provided, so that the preset cutting precision can be ensured in each peeling process, the internal insulation damage caused by unstable factors such as manual operation is reduced, and the reliability and consistency of the product are enhanced. The scale mark for marking the cutting length is arranged on the clamping mechanism, and the peeling length can be accurately realized.

[0011] According to some embodiments of the utility model, the support assembly is provided with a through hole for the cable to pass through and a cutting hole for the saw blade to pass through, the cutting hole is communicated with the through hole, the cutting hole is a long slot hole, and the length direction of the cutting hole is parallel to the axial direction of the cable.

[0012] According to some embodiments of the utility model, the cutting machine is provided with a mounting hole, the depth adjustment assembly comprises a depth adjustment rod and a depth adjustment anchor, the depth adjustment rod is installed on the support assembly, the depth adjustment anchor is installed on the depth adjustment rod, the axial direction of the depth adjustment rod is the radial direction of the cable, the position of the depth adjustment anchor on the depth adjustment rod is adjustable, the depth adjustment rod passes through the mounting hole, and the depth adjustment anchor is used for driving the cutting machine to move along the radial direction of the cable.

[0013] According to some embodiments of the utility model, the clamping mechanism comprises a connecting rod, a first clamping assembly and a second clamping assembly, the support assembly is slidably connected to the connecting rod along the axial direction of the cable, the scale mark is arranged on the connecting rod, the first clamping assembly is located between the support assembly and the second clamping assembly, the first clamping assembly and the second clamping assembly are used for clamping the cable, and the position of the first clamping assembly on the connecting rod is adjustable.

[0014] According to some embodiments of the utility model, the support assembly is connected with a sliding block, and the sliding block is slidably connected to the connecting rod.

[0015] According to some embodiments of the utility model, first clamping assembly includes first guide rod, first clamping block and second clamping block, first guide rod connects connecting rod, first clamping block and second clamping block are all slidingly connected on first guide rod, first clamping block is provided with first clamping groove for the cable to extend into, second clamping block is provided with second clamping groove for the cable to extend into, first clamping groove and second clamping groove are oppositely arranged.

[0016] According to some embodiments of the utility model, first guide rod is screw rod, first clamping assembly still includes first locking nut and second locking nut, first locking nut and second locking nut are threadedly connected with first guide rod, first clamping block is provided with first connecting hole for the first guide rod slidingly passing through, second clamping block is provided with second connecting hole for the first guide rod slidingly passing through, first locking nut abuts against first clamping block and is located at the side of first clamping block away from second clamping block, second locking nut abuts against second clamping block and is located at the side of second clamping block away from first clamping block.

[0017] According to some embodiments of the utility model, first clamping assembly still includes connecting block, connecting block connects first guide rod, connecting block is provided with third connecting hole for the connecting rod passing through, connecting block is provided with locking anchor device, locking anchor device connects connecting rod, the position of locking anchor device on connecting rod is adjustable, locking anchor device is used to lock connecting block on connecting rod.

[0018] According to some embodiments of the utility model, connecting rod is provided with four, first guide rod is provided with two, four connecting rods are parallelly arranged, two ends of first guide rod are connected with two connecting rods respectively, two first guide rods are parallelly arranged, the axis of two first guide rods is perpendicular to the axial direction of cable, two ends of first clamping block are slidingly connected on two first guide rods respectively, two ends of second clamping block are connected on two first guide rods respectively, the axial direction of connecting rod, the axial direction of guide rod and the length direction of first clamping block are perpendicularly arranged two by two.

[0019] According to some embodiments of the utility model, second clamping assembly includes second guide rod, third clamping block and fourth clamping block, second guide rod connects connecting rod, third clamping block and fourth clamping block are all slidingly connected on second guide rod, third clamping block is provided with third clamping groove for the cable to extend into, fourth clamping block is provided with fourth clamping groove for the cable to extend into, third clamping groove and fourth clamping groove are oppositely arranged.

[0020] Additional aspects and advantages of the present application will be given in part in the following description. BRIEF DESCRIPTION OF DRAWINGS

[0021] The present application will be further described with reference to the drawings and examples, in which:

[0022] Figure 1 It is a front view of the automatic cable outer sheath longitudinal cutting tool of the embodiment of the present application;

[0023] Figure 2 It is a front view of the cutting machine of the automatic cable outer sheath longitudinal cutting tool of the embodiment of the present application;

[0024] Figure 3 It is a top view of the cutting machine of the automatic cable outer sheath longitudinal cutting tool of the embodiment of the present application;

[0025] Figure 4 It is a structural schematic view of the automatic cable outer sheath longitudinal cutting tool of the embodiment of the present application;

[0026] Figure 5 It is a structural schematic view of the automatic cable outer sheath longitudinal cutting tool of the embodiment of the present application;

[0027] Figure 6 It is a structural schematic view of the automatic cable outer sheath longitudinal cutting tool of the embodiment of the present application;

[0028] Figure 7 It is a structural schematic view of the automatic cable outer sheath longitudinal cutting tool of the embodiment of the present application;

[0029] Figure 8 It is a structural schematic view of the automatic cable outer sheath longitudinal cutting tool of the embodiment of the present application.

[0030] Reference Signs:

[0031] 100, clamping mechanism; 110, connecting rod; 120, first clamping assembly; 121, first guide rod; 122, first clamping block; 1221, first clamping groove; 123, second clamping block; 1231, second clamping groove; 124, first locking nut; 125, second locking nut; 126, connecting block; 1261, locking anchor; 130, second clamping assembly; 131, second guide rod; 132, third clamping block; 133, fourth clamping block; 134, third locking nut; 135, fourth locking nut;

[0032] 200, supporting mechanism; 210, supporting assembly; 211, through hole; 212, cutting hole; 213, sliding block; 220, depth adjusting assembly; 221, depth adjusting rod; 222, depth adjusting anchor;

[0033] 300, cutting machine; 310, saw blade; 320, mounting plate; 321, mounting hole;

[0034] 400, cable. DETAILED DESCRIPTION

[0035] Embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary only, and are used only for the purpose of explaining the present application, and cannot be understood as a limitation of the present application.

[0036] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential" and the like are based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application. In addition, the features defined as "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0037] In the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be connected inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0038] Please refer to Figure 1 , Figure 2 and Figure 3The utility model discloses an automatic cable outer sheath longitudinal cutting tool, including clamping mechanism 100, support mechanism 200 and cutting machine 300. Clamping mechanism 100 is used for clamping cable 400, and the scale mark is arranged on clamping mechanism 100, and the scale mark is used for identifying cutting length. Support mechanism 200 includes support assembly 210 and depth adjustment assembly 220, and support assembly 210 is slidably connected on clamping mechanism 100 along the axial direction of cable 400, and depth adjustment assembly 220 is installed on support assembly 210. Cutting machine 300 is installed on depth adjustment assembly 220, and depth adjustment assembly 220 is used to drive cutting machine 300 to move along the radial direction of cable 400, and cutting machine 300 has saw blade 310, and the axial direction of saw blade 310 is perpendicular to the axis of cable 400.

[0039] Clamping mechanism 100 can clamp cable 400, support assembly 210 is slidably connected on clamping mechanism 100 along the axial direction of cable 400, cutting machine 300 is installed on first support assembly 210, and support assembly 210 drives cutting machine 300 to move relative to clamping mechanism 100, so that cutting machine 300 can longitudinally cut the cable 400 clamped by clamping mechanism 100. The traditional manual holding operation mode is replaced by the automatic and semi-automatic solution, effectively reducing the opportunity of the operator directly contacting the sharp cutting tool, and reducing the incidence of work accidents. With cutting depth adjustment function, it ensures that each stripping process can reach the preset cutting accuracy, reduces the internal insulation damage caused by manual operation and other unstable factors, and enhances the reliability and consistency of the product. The scale mark for identifying the cutting length is arranged on the clamping mechanism 100, and the cutting length can be accurately realized.

[0040] The overall structure is compact and light, and is convenient to carry to the construction site for use, especially in the case of limited space or frequent transfer of work site, improves the application flexibility of the equipment.

[0041] In some embodiments, referring to Figure 2 、 Figure 4 And Figure 5 Support assembly 210 is provided with through hole 211 and cutting hole 212, through hole 211 is used for cable 400 to pass through, and cutting hole 212 is used for saw blade 310, and cutting hole 212 communicates with through hole 211, and cutting hole 212 is a long slot hole, and the length direction of cutting hole 212 is parallel to the axial direction of cable 400. The cutting hole 212 is provided for the saw blade 310 to pass through, and the positioning installation of the cutting machine 300 is facilitated.

[0042] In some embodiments, referring to Figure 1 、 Figure 2 And Figure 3The cutting machine 300 is provided with a mounting plate 320, and the mounting plate 320 is provided with a mounting hole 321. The depth adjustment assembly 220 comprises a depth adjustment rod 221 and a depth adjustment anchor 222. The depth adjustment rod 221 is mounted on the support assembly 210, and the depth adjustment anchor 222 is mounted on the depth adjustment rod 221. The axial direction of the depth adjustment rod 221 is the radial direction of the cable 400. The position of the depth adjustment anchor 222 on the depth adjustment rod 221 is adjustable. The depth adjustment rod 221 penetrates the mounting hole 321, and the depth adjustment anchor 222 is used to drive the cutting machine 300 to move along the radial direction of the cable 400. The cutting depth is adjustable, which ensures that the preset cutting accuracy can be achieved in each stripping process, reduces the internal insulation damage caused by unstable factors such as manual operation, and enhances the reliability and consistency of the product.

[0043] In some embodiments, referring to Figure 1 and Figure 4 , the depth adjustment rod 221 can be a screw rod, and the depth adjustment anchor 222 can be a nut. After the cutting machine 300 is installed in place, a disc nut can be screwed on the mounting plate 320 for fixation. By rotating the depth adjustment anchor 222, the position of the depth adjustment anchor 222 on the depth adjustment rod 221 can be changed, thereby adjusting the position of the cutting machine 300 on the depth adjustment rod 221 and adjusting the cutting depth of the cutting machine 300.

[0044] In some embodiments, referring to Figure 1 , Figure 6 and Figure 7 , the clamping mechanism 100 comprises a connecting rod 110, a first clamping assembly 120 and a second clamping assembly 130 connected together. The support assembly 210 is slidingly connected to the connecting rod 110 along the axial direction of the cable 400, and a scale is provided on the connecting rod 110. The first clamping assembly 120 is located between the support assembly 210 and the second clamping assembly 130. The first clamping assembly 120 and the second clamping assembly 130 are used to clamp the cable 400, and the position of the first clamping assembly 120 on the connecting rod 110 is adjustable. The first clamping assembly 120 and the second clamping assembly 130 clamp the cable 400, which improves the clamping stability. The connecting rod 110 connects the support assembly 210. The front end of the cable 400 is cut by the cutting machine 300 on the support assembly 210, and the rear end of the cable 400 can be clamped by the first clamping assembly 120 and the second clamping assembly 130, which ensures the smooth cutting of the sheath of the cable 400.

[0045] The position of the first clamping assembly 120 on the connecting rod 110 is adjustable. When the length of the sheath of the cable 400 that needs to be cut is relatively long, the distance between the first clamping assembly 120 and the support assembly 210 can be flexibly adjusted, thereby achieving the effect of extending the length of the longitudinal cutting.

[0046] In some embodiments, referring to Figure 1 , the support assembly 210 is connected with a sliding block 213, and the sliding block 213 is slidingly connected to the connecting rod 110. The sliding block 213 can slide left and right along the connecting rod 110, and the support assembly 210 can drive the cutting machine 300 to move longitudinally through the sliding block 213, so as to realize longitudinal cutting of the outer sheath of the cable 400. The sliding block 213 can be a linear bearing, which is sleeved on the connecting rod 110 to ensure smooth longitudinal cutting.

[0047] In some embodiments, referring to Figure 1 , Figure 6 and Figure 7 , the first clamping assembly 120 includes a first guide rod 121, a first clamping block 122 and a second clamping block 123, the first guide rod 121 is connected to the connecting rod 110, and the first clamping block 122 and the second clamping block 123 are both slidingly connected to the first guide rod 121. The first clamping block 122 is provided with a first clamping groove 1221 for the cable 400 to extend into, and the second clamping block 123 is provided with a second clamping groove 1231 for the cable 400 to extend into, and the first clamping groove 1221 and the second clamping groove 1231 are oppositely arranged. The first clamping groove 1221 and the second clamping groove 1231 are arc-shaped grooves, the first clamping block 122 and the second clamping block 123 clamp the cable 400, and the first clamping groove 1221 and the second clamping groove 1231 can limit the cable 400.

[0048] In some embodiments, referring to Figure 1 , Figure 6 and Figure 7 , the first guide rod 121 is a screw rod, and the first clamping assembly 120 further includes a first locking nut 124 and a second locking nut 125, and the first locking nut 124 and the second locking nut 125 are threadedly connected with the first guide rod 121. The first clamping block 122 is provided with a first connecting hole for the first guide rod 121 to slidingly pass through, and the second clamping block 123 is provided with a second connecting hole for the first guide rod 121 to slidingly pass through. The first locking nut 124 abuts against the first clamping block 122 and is located on a side of the first clamping block 122 away from the second clamping block 123, and the second locking nut 125 abuts against the second clamping block 123 and is located on a side of the second clamping block 123 away from the first clamping block 122. By screwing the first locking nut 124 and the second locking nut 125, the distance between the first locking nut 124 and the second locking nut 125 can be adjusted, and then the distance between the first clamping block 122 and the second clamping block 123 can be adjusted, so as to facilitate adjustment of the first clamping block 122 and the second clamping block 123 clamping the cable 400.

[0049] The outer sheath stripping of the cable 400 of various sizes and types can be adapted, so that a single device can serve different specifications of products, greatly reducing the cost of purchasing multiple specifications of equipment.

[0050] In some embodiments, referring to Figure 1 、 Figure 6 and Figure 7 , the first guide rod 121 is provided with a height scale mark, and the 0 scale of the height scale mark is located at the equivalent center point of the through hole 211. The height scale mark extends to both sides from the 0 scale, and the distance between the first clamping block 122 and the second clamping block 123 can be adjusted through the scale, so that the cable 400 always maintains a coaxial position with the through hole 211, thereby making the initial position of the cable 400 of different specifications always consistent, and making the cable 400 cutting depth adjustment always effective.

[0051] In some embodiments, referring to Figure 1 、 Figure 6 and Figure 7 , the first clamping assembly 120 further comprises a connecting block 126, and the connecting block 126 is connected to the first guide rod 121. The connecting block 126 is provided with a third connecting hole for the connecting rod 110 to pass through. The connecting block 126 is provided with a locking anchor 1261 connected to the connecting rod 110. The position of the locking anchor 1261 on the connecting rod 110 can be adjusted, and the locking anchor 1261 is used to lock the connecting block 126 on the connecting rod 110. The locking anchor 1261 can include a clamp, and the locking clamp limits the connecting block 126 on the connecting rod 110. Loosening the clamp allows the connecting block 126 to move on the connecting rod 110.

[0052] The connecting block 126 and the locking anchor 1261 are provided to adjust the position of the first clamping assembly 120 on the connecting rod 110, and to improve the clamping stability of the clamping mechanism 100 on the cable 400. The position of the first clamping assembly 120 on the connecting rod 110 can be adjusted. When the length of the cable 400 sheath that needs to be cut is longer, the distance between the first clamping assembly 120 and the support assembly 210 can be flexibly adjusted, thereby achieving the effect of extending the longitudinal cutting length.

[0053] In some embodiments, referring to Figure 1 、 Figure 6 and Figure 7The four connecting rods 110 are arranged in parallel, and the two first guide rods 121 are arranged in parallel. The two ends of each first guide rod 121 are connected to two connecting rods 110, respectively. The two first guide rods 121 are arranged in parallel, and the axis planes of the two first guide rods 121 are perpendicular to the axial direction of the cable 400. The two ends of the first clamping block 122 are slidably connected to the two first guide rods 121, respectively. The two ends of the second clamping block 123 are connected to the two first guide rods 121, respectively. The axial directions of the connecting rods 110, the axial directions of the guide rods, and the length directions of the first clamping blocks 122 are arranged in pairs of perpendicular directions, and the connecting rods 110, the guide rods, the first clamping blocks 122, and the second clamping blocks 123 are convenient to install.

[0054] When the clamping mechanism 100 is placed on the ground, the axial directions of the four connecting rods 110 are horizontal directions, the axial directions of the two guide rods are vertical directions, and the length directions of the first clamping blocks 122 are horizontal directions. The position of the guide rod connected to the connecting rod 110 can be adjusted by adjusting the locking anchor 1261. The distance between the first clamping block 122 and the second clamping block 123 in the vertical direction can be adjusted by rotating the first locking nut 124 and the second locking nut 125, so that the first clamping rod and the second clamping rod can conveniently clamp the cable 400.

[0055] In some embodiments, referring to Figure 1 , Figure 7 and Figure 8 , the second clamping assembly 130 has a structure similar to that of the first clamping assembly 120. The second clamping assembly 130 includes a second guide rod 131, a third clamping block 132, and a fourth clamping block 133. The second guide rod 131 is connected to the connecting rod 110. The third clamping block 132 and the fourth clamping block 133 are slidably connected to the second guide rod 131. The third clamping block 132 is provided with a third clamping groove for the cable 400 to extend into, and the fourth clamping block 133 is provided with a fourth clamping groove for the cable 400 to extend into. The third clamping groove and the fourth clamping groove are arranged oppositely. The third clamping groove and the fourth clamping groove are arc-shaped grooves. The third clamping block 132 and the fourth clamping block 133 clamp the cable 400, and the third clamping groove and the fourth clamping groove can limit the cable 400.

[0056] The second guide rod 131 is a screw rod, and the second clamping assembly 130 further comprises a third locking nut 134 and a fourth locking nut 135, which are in threaded connection with the second guide rod 131. The third clamping block 132 is provided with a fourth connecting hole for slidingly penetrating the second guide rod 131, and the fourth clamping block 133 is provided with a fifth connecting hole for slidingly penetrating the second guide rod 131. The third locking nut 134 abuts against the third clamping block 132, and the third locking nut 134 is located on the side of the third clamping block 132 away from the fourth clamping block 133. The fourth locking nut 135 abuts against the fourth clamping block 133, and the fourth locking nut 135 is located on the side of the fourth clamping block 133 away from the third clamping block 132. By screwing the third locking nut 134 and the fourth locking nut 135, the distance between the third locking nut 134 and the fourth locking nut 135 can be adjusted, and then the distance between the third clamping block 132 and the fourth clamping block 133 can be adjusted, so that the third clamping block 132 and the fourth clamping block 133 can be conveniently adjusted to clamp the cable 400.

[0057] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the exemplary description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0058] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. An automated cable outer sheath longitudinal cutting tool, characterized in that, include: A clamping mechanism for clamping cables, wherein the clamping mechanism is provided with scale marks for marking the cutting length; A support mechanism includes a support component and a depth adjustment component, wherein the support component is slidably connected to the clamping mechanism along the axial direction of the cable, and the depth adjustment component is mounted on the support component; A cutting machine, mounted on the depth adjustment assembly, the depth adjustment assembly being used to drive the cutting machine to move radially along the cable, the cutting machine having a saw blade whose axial direction is perpendicular to the cable axis.

2. The automated cable outer sheath longitudinal cutting tool according to claim 1, characterized in that, The support assembly is provided with a through hole for cable to pass through and a cutting hole for saw blade to pass through. The cutting hole is connected to the through hole and is a long slot. The length direction of the cutting hole is parallel to the axial direction of the cable.

3. The automated cable outer sheath longitudinal cutting tool according to claim 1, characterized in that, The cutting machine is provided with a mounting hole. The depth adjustment assembly includes a depth adjustment rod and a depth adjustment anchor. The depth adjustment rod is mounted on the support assembly, and the depth adjustment anchor is mounted on the depth adjustment rod. The axial direction of the depth adjustment rod is the radial direction of the cable. The position of the depth adjustment anchor on the depth adjustment rod is adjustable. The depth adjustment rod passes through the mounting hole, and the depth adjustment anchor is used to drive the cutting machine to move radially along the cable.

4. The automated cable outer sheath longitudinal cutting tool according to claim 1, characterized in that, The clamping mechanism includes a connecting rod, a first clamping component, and a second clamping component connected together. The support component is slidably connected to the connecting rod along the axial direction of the cable. The scale is marked on the connecting rod. The first clamping component is located between the support component and the second clamping component. The first clamping component and the second clamping component are used to clamp the cable. The position of the first clamping component on the connecting rod is adjustable.

5. The automated cable outer sheath longitudinal cutting tool according to claim 4, characterized in that, A slider is connected to the support assembly, and the slider is slidably connected to the connecting rod.

6. The automated cable outer sheath longitudinal cutting tool according to claim 4, characterized in that, The first clamping assembly includes a first guide rod, a first clamping block, and a second clamping block. The first guide rod is connected to the connecting rod. The first clamping block and the second clamping block are slidably connected to the first guide rod. The first clamping block is provided with a first clamping groove for cable insertion, and the second clamping block is provided with a second clamping groove for cable insertion. The first clamping groove and the second clamping groove are arranged opposite to each other.

7. The automated cable outer sheath longitudinal cutting tool according to claim 6, characterized in that, The first guide rod is a screw rod, and the first clamping assembly further includes a first locking nut and a second locking nut. The first locking nut and the second locking nut are threadedly connected to the first guide rod. The first clamping block is provided with a first connecting hole for the first guide rod to slide through, and the second clamping block is provided with a second connecting hole for the first guide rod to slide through. The first locking nut abuts against the first clamping block and is located on the side of the first clamping block away from the second clamping block, and the second locking nut abuts against the second clamping block and is located on the side of the second clamping block away from the first clamping block.

8. The automated cable outer sheath longitudinal cutting tool according to claim 6, characterized in that, The first clamping assembly further includes a connecting block connected to the first guide rod. The connecting block is provided with a third connecting hole for the connecting rod to pass through. The connecting block is provided with a locking anchor connected to the connecting rod. The position of the locking anchor on the connecting rod is adjustable. The locking anchor is used to lock the connecting block onto the connecting rod.

9. The automated cable outer sheath longitudinal cutting tool according to claim 6, characterized in that, The system comprises four connecting rods, including two first guide rods. The four connecting rods are arranged in parallel, with each end of a first guide rod connected to one of the two connecting rods. The two first guide rods are parallel to each other, and the plane containing the axes of the two first guide rods is perpendicular to the axial direction of the cable. The two ends of the first clamping block are slidably connected to the two first guide rods, and the two ends of the second clamping block are connected to the two first guide rods. The axial directions of the connecting rods, the axial directions of the guide rods, and the length direction of the first clamping blocks are perpendicular to each other.

10. The automated cable outer sheath longitudinal cutting tool according to claim 4, characterized in that, The second clamping assembly includes a second guide rod, a third clamping block, and a fourth clamping block. The second guide rod is connected to the connecting rod. The third clamping block and the fourth clamping block are slidably connected to the second guide rod. The third clamping block is provided with a third clamping groove for cable insertion, and the fourth clamping block is provided with a fourth clamping groove for cable insertion. The third clamping groove and the fourth clamping groove are arranged opposite to each other.