Cable fixing frame for cable processing

By designing an adjustable cable fixing assembly, the problem of existing fixing brackets being unable to adapt to cables of different specifications is solved, achieving stable fixing of cables during processing and efficient production.

CN224052913UActive Publication Date: 2026-03-27HEBEI LI NENG CABLE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Most existing cable holders use a fixed structure, which is difficult to adapt to cables with large variations in thickness. This results in cables not being securely fixed, deviations in processing dimensions, and the need for frequent adjustments to the cable position, reducing processing efficiency.

Method used

An adjustable cable fixing assembly was designed, including rectangular and arc-shaped telescopic sleeves, a threaded rod, and a rotating motor. By adjusting the telescopic extension and position of the fixing assembly, the cable can be precisely fixed, adapting to the processing needs of cables of different specifications.

Benefits of technology

This achieves stable cable fixation during processing, reduces downtime caused by changing the fixing frame, improves production efficiency and processing accuracy, and ensures the stability and consistency of the cable during processing.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224052913U_ABST
    Figure CN224052913U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of cable processing, in particular to a cable fixing frame for cable processing, which comprises a bottom plate, a cable body and a fixing assembly. A to-be-processed cable body is arranged above the bottom plate, and fixing assemblies which are used for fixing the cable body and are in sliding connection with the bottom plate are arranged outside the two ends of the cable body in a sleeving mode respectively. According to the utility model, the cable body firstly passes through the fixing assembly, the fixing assembly is adjusted according to the diameter or length of the cable body, and the cable body is fixed, so that the cable body is convenient to process, and through the adjustable fixing assembly, when cables of different specifications are processed, the fixing frame does not need to be frequently replaced, and the processing efficiency is improved. The cable fixing frame can adapt to new cable sizes through simple adjustment, continuous operation is achieved, downtime caused by replacement of the fixing frame is avoided, production efficiency is improved, the cable is accurately fixed to the needed position, the cable is kept stable and does not shake or move, and therefore the precision and consistency of the machining size are guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable processing technical field especially relates to cable processing cable fixing frame. BACKGROUND

[0002] Cable is a kind of electrical equipment for transmitting electric energy, signal or data, usually by one or more mutually insulated conductor stranded and wrapped in a protective cover, and fixing frame is a kind of device for fixing and positioning cable during cable processing, it can ensure that cable keeps stable during processing, improves processing precision and quality, and also helps to improve processing efficiency and protect the safety of operating personnel.

[0003] The existing fixing frame mostly adopts fixed structure, different cables have different diameters or lengths, if the fixing frame is inconvenient to adjust, it can be difficult to adapt to the cable with large variation in thickness, leading to the cable with smaller or larger specifications not being fixed firmly, so that the processing size deviation occurs, such as inaccurate stripping length, uneven stranding pitch, etc., affecting the overall performance and appearance quality of cable, and due to the cable not being fixed firmly, cable position needs to be frequently adjusted during processing, reducing processing efficiency.

[0004] Therefore, in view of the above, the existing fixing frame mostly adopts fixed structure, if inconvenient to adjust, it can be difficult to adapt to the cable with large variation in thickness, leading to the cable not being fixed firmly, so that the processing size deviation occurs, and cable position needs to be frequently adjusted, which will reduce processing efficiency, cable processing cable fixing frame can be designed, adjustable fixing assembly is added, and the applicability of fixing frame is improved. SUMMARY

[0005] In order to overcome the problem that the existing fixing frame mostly adopts fixed structure, if inconvenient to adjust, it can be difficult to adapt to the cable with large variation in thickness, leading to the cable not being fixed firmly, so that the processing size deviation occurs, and cable position needs to be frequently adjusted, which will reduce processing efficiency.

[0006] The utility model discloses a technical scheme for cable processing cable fixing frame, including bottom plate, cable body and fixed component, the cable body of being processed is equipped with on the bottom plate top, and the fixed component that is used for fixing the cable body and is connected with the bottom plate slidingly is equipped with each set to the both ends outside of cable body, and the fixed component includes the first rectangular telescopic sleeve, and the first rectangular telescopic sleeve is set up symmetrically in transverse direction, and the first rectangular telescopic sleeve lower end one side edge place installs the rectangular telescopic column, and the rectangular telescopic column outside sets up the second rectangular telescopic sleeve, and the second rectangular telescopic sleeve and rectangular telescopic column junction both sides symmetrically are equipped with the positioning pin, and the rectangular telescopic column both sides linear symmetry are seted up with multiple positioning holes, and the second rectangular telescopic sleeve lower end installs the rectangular thread sleeve, and the rectangular thread sleeve middle part is equipped with the threaded rod, and the first rectangular telescopic sleeve inside sets up the rectangular telescopic plate, and the rectangular telescopic plate and first rectangular telescopic sleeve junction both sides symmetrically are equipped with the first fixed pin, and the rectangular telescopic plate both sides longitudinal symmetry are seted up with multiple first fixed holes, and four groups of arc telescopic sleeve are seted up around between two groups of first rectangular telescopic sleeve, and two groups of arc telescopic sleeve fixed connection with rectangular telescopic plate are set up symmetrically, and arc telescopic plate is connected with the arc telescopic sleeve and is seted up between every two groups of arc telescopic sleeve, and the arc telescopic sleeve junction is equipped with the second fixed pin, and the arc telescopic plate is equipped with multiple second fixed holes along the opening of the arc telescopic plate.

[0007] Further, two groups of rectangular sliding grooves are symmetrically set up on the both sides edge of the bottom plate top.

[0008] Further, the positioning pin is positioned and connected with the rectangular telescopic column through the positioning hole of the second rectangular telescopic sleeve.

[0009] Further, the threaded rod is set up in transverse direction along the rectangular sliding groove, and the threaded rod one end installs the rotary motor.

[0010] Further, the first fixed pin is positioned and connected with the rectangular telescopic plate through the first fixed hole of the first rectangular telescopic sleeve.

[0011] Further, the second fixed pin is positioned and connected with the arc telescopic plate through the second fixed hole of the arc telescopic sleeve.

[0012] Further, the arc telescopic sleeve inside installs the arc rubber pad.

[0013] The utility model discloses a beneficial effect: the cable body is carefully threaded through the fixed assembly of careful design first, this fixed assembly has very high flexibility, can carry out accurate adjustment according to the actual diameter or length situation of cable body, through simple adjustment operation, and the fixed assembly can firmly fix the cable body in proper position, and the subsequent processing operation has been provided with very great convenience, and this adjustable fixed assembly designs cleverly, when processing different specifications cable, need not frequently replace fixed frame, just through easy and simple adjustment, can quickly adapt to new cable size, thereby realizes the goal of continuous operation, this design not only greatly reduces the downtime of replacement fixed frame, effectively improves production efficiency, and can also accurately fix the cable in the position required, ensures that it can keep stable and immobile in a series of processing procedures such as peeling, stranding, welding, absolutely will not appear the condition such as shaking or displacement, in this way, the precision and consistency of processing size are fully guaranteed, and the overall quality of product is greatly improved. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is whole structure schematic diagram of the utility model;

[0015] Figure 2 It is bottom plate structure schematic diagram of the utility model;

[0016] Figure 3 It is rectangular telescopic column structure schematic diagram of the utility model;

[0017] Figure 4 It is rectangular telescopic plate structure schematic diagram of the utility model;

[0018] Figure 5 It is arc telescopic sleeve structure schematic diagram of the utility model.

[0019] Mark explanation: 1, bottom plate;2, cable body;101, rectangular chute;301, first rectangular telescopic sleeve;302, rectangular telescopic column;303, second rectangular telescopic sleeve;304, positioning pin;305, positioning hole;306, rectangular threaded sleeve;307, threaded rod;308, rotation motor;309, rectangular telescopic plate;310, first fixed pin;311, first fixed hole;312, arc telescopic sleeve;313, arc telescopic plate;314, second fixed pin;315, second fixed hole;316, arc rubber pad. DETAILED DESCRIPTION

[0020] The utility model will be further explained in connection with the drawings and examples.

[0021] Example 1

[0022] As Figures 1-5As shown, the cable processing cable fixing frame, including bottom plate 1, cable body 2 and fixed assembly; bottom plate 1 top is equipped with the cable body 2 to be processed, the cable body 2 both ends outside each set is equipped with the fixed assembly for fixing cable body 2 and with bottom plate 1 sliding connection, fixed assembly includes first rectangular telescopic sleeve 301, first rectangular telescopic sleeve 301 is horizontally symmetric, first rectangular telescopic sleeve 301 lower end one side edge installs rectangular telescopic column 302, rectangular telescopic column 302 outside is equipped with second rectangular telescopic sleeve 303, second rectangular telescopic sleeve 303 and rectangular telescopic column 302 connection place both sides symmetrically are equipped with positioning pin 304, rectangular telescopic column 302 both sides linearly symmetrically are equipped with multiple positioning holes 305, second rectangular telescopic sleeve 303 lower end installs rectangular threaded sleeve 306, threaded rod 307 is arranged in the middle of rectangular threaded sleeve 306, first rectangular telescopic sleeve 301 inside is equipped with rectangular telescopic plate 309, rectangular telescopic plate 309 and first rectangular telescopic sleeve 301 connection place both sides symmetrically are equipped with first fixed pin 310, rectangular telescopic plate 309 both sides are vertically symmetrically equipped with multiple first fixed holes 311, two groups of first rectangular telescopic sleeve 301 are circumferentially equipped with four groups of arc telescopic sleeve 312, wherein symmetrically arranged two groups of arc telescopic sleeve 312 are fixedly connected with rectangular telescopic plate 309, arc telescopic plate 313 is connected between every two groups of arc telescopic sleeve 312, second fixed pin 314 is arranged at the connection between arc telescopic plate 313 and arc telescopic sleeve 312, multiple second fixed holes 315 are sequentially arranged on arc telescopic plate 313.

[0023] Two groups of rectangular sliding grooves 101 are horizontally symmetrically arranged at the upper side edges of the bottom plate 1.

[0024] The positioning pin 304 is positioned and connected with the rectangular telescopic column 302 through the positioning hole 305.

[0025] The threaded rod 307 is horizontally arranged along the rectangular sliding groove 101, and a rotating motor 308 is arranged at one end of the threaded rod 307. Through the driving of the rotating motor 308, the threaded rod 307 rotates, so that the second rectangular telescopic sleeve 303 is driven by the rectangular threaded sleeve 306 to move horizontally along the rectangular sliding groove 101 to a suitable position.

[0026] The first fixed pin 310 is positioned and connected with the rectangular telescopic plate 309 through the first fixed hole 311.

[0027] The second fixed pin 314 is positioned and connected with the arc telescopic plate 313 through the second fixed hole 315.

[0028] The arc-shaped rubber pad 316 is installed inside the arc-shaped telescopic sleeve 312, which can increase the friction and reinforce the fixation of the cable body 2, and has a certain elasticity to avoid wearing the cable body 2.

[0029] First, the cable body 2 is inserted through the middle of the four arc-shaped telescopic sleeves 312, then according to the length of the cable body 2, the threaded rod 307 is rotated by rotating the motor 308, so that the rectangular threaded sleeve 306 drives the second rectangular telescopic sleeve 303 to move horizontally along the rectangular sliding groove 101 to the appropriate position, then according to the diameter of the cable body 2, the arc-shaped telescopic plate 313 is adjusted along the arc-shaped telescopic sleeve 312 by adjusting the second fixing pin 314 and the first fixing pin 310, at the same time, the rectangular telescopic plate 309 moves longitudinally along the first rectangular telescopic sleeve 301, until the arc-shaped rubber pad 316 is close to the outer wall of the cable body 2, after confirming, take up the second fixing pin 314 and the first fixing pin 310, first pass the second fixing pin 314 through the arc-shaped telescopic sleeve 312 to connect with the arc-shaped telescopic plate 313 through the second fixed hole 315, then pass the first fixing pin 310 through the first rectangular telescopic sleeve 301 to connect with the rectangular telescopic plate 309 through the first fixed hole 311, finally, according to the processing requirements, adjust the rectangular telescopic column 302 along the second rectangular telescopic sleeve 303 through the positioning pin 304, after confirming, take up the positioning pin 304, pass it through the second rectangular telescopic sleeve 303 to connect with the rectangular telescopic column 302 through the positioning hole 305, after all the fixation is completed, the cable body 2 can be processed.

Claims

1. A cable processing cable holder comprising a base plate (1) ; characterized in that: Also include the cable body (2) and fixed components; bottom plate (1) above the cable body (2) to be processed, the cable body (2) both ends of the outside of each set of fixed components for fixing the cable body (2) and sliding connection with the bottom plate (1), the fixed components include a first rectangular telescopic sleeve (301), the first rectangular telescopic sleeve (301) is horizontally symmetrically arranged, the first rectangular telescopic sleeve (301) is installed at one side edge of the lower end of the rectangular telescopic column (302), the rectangular telescopic column (302) is externally sleeved with a second rectangular telescopic sleeve (303), the second rectangular telescopic sleeve (303) is symmetrically provided with a positioning pin (304) on both sides of the connection with the rectangular telescopic column (302), a plurality of groups of positioning holes (305) are linearly and symmetrically provided on both sides of the rectangular telescopic column (302), a rectangular threaded sleeve (306) is installed at the lower end of the second rectangular telescopic sleeve (303), a threaded rod (307) is provided in the middle of the rectangular threaded sleeve (306), a rectangular telescopic plate (309) is sleeved in the first rectangular telescopic sleeve (301), a first fixing pin (310) is symmetrically provided on both sides of the connection between the rectangular telescopic plate (309) and the first rectangular telescopic sleeve (301), a plurality of groups of first fixing holes (311) are longitudinally and symmetrically provided on both sides of the rectangular telescopic plate (309), four groups of arc telescopic sleeves (312) are circumferentially provided between the two groups of first rectangular telescopic sleeves (301), wherein the two groups of arc telescopic sleeves (312) are fixedly connected with the rectangular telescopic plate (309), an arc telescopic plate (313) is sleeved and connected between every two groups of arc telescopic sleeves (312), a second fixing pin (314) is provided at the connection between the arc telescopic plate (313) and the arc telescopic sleeve (312), and a plurality of groups of second fixing holes (315) are sequentially provided on the arc telescopic plate (313).

2. The cable processing cable fixture of claim 1, wherein: Two groups of rectangular sliding grooves (101) are horizontally and symmetrically provided at the upper side edges of the bottom plate (1).

3. The cable processing cable fixture of claim 1, wherein: The positioning pin (304) passes through the positioning hole (305) in the second rectangular telescopic sleeve (303) and is positioned and connected with the rectangular telescopic column (302).

4. The cable processing cable fixture of claim 2, wherein: The threaded rod (307) is horizontally arranged along the rectangular sliding groove (101), and a rotating motor (308) is installed at one end of the threaded rod (307).

5. The cable processing cable fixture of claim 1, wherein: The first fixing pin (310) passes through the first fixing hole (311) in the first rectangular telescopic sleeve (301) and is positioned and connected with the rectangular telescopic plate (309).

6. The cable processing cable fixture of claim 1, wherein: The second fixing pin (314) passes through the second fixing hole (315) in the arc telescopic sleeve (312) and is positioned and connected with the arc telescopic plate (313).

7. The cable processing cable fixture of claim 1, wherein: An arc-shaped rubber pad (316) is installed inside the arc-shaped telescopic sleeve (312).