A cable conduit replacement device for computer electronic information engineering

By designing a cable replacement device with a rectangular frame and transmission components, the problem of cables easily getting tangled during the replacement process was solved, achieving orderly fixing and stable installation of cables, and improving the efficiency and safety of cable replacement.

CN224289047UActive Publication Date: 2026-05-26ZHANGJIAKOU CHENGDA TRADING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHANGJIAKOU CHENGDA TRADING CO LTD
Filing Date
2025-06-11
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing cable replacement devices are difficult to effectively classify and fix, which makes cables prone to tangling and mess during the replacement process, increasing maintenance difficulty and posing safety hazards.

Method used

A cable replacement device was designed, comprising a rectangular frame, a slider, a clamp, a rectangular cylinder, a rectangular rod, and a transmission assembly. Through the sliding adjustment of the slider and clamp, the fixing of the clamps, and the stabilizing structure of the transmission assembly, the orderly separation and firm fixation of cables are achieved.

Benefits of technology

This effectively prevents cables from shaking and tangling during pipe replacement, ensuring that cables are neatly organized, improving the stability and safety of pipe replacement, and simplifying subsequent maintenance work.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a cable conduit replacement device for computer electronic information engineering, mainly relating to the field of cable conduit replacement technology. The device includes a rectangular frame with rectangular grooves. Several sliders are slidably arranged within the rectangular grooves. Each slider has a clamp symmetrically arranged on its front side, and a rectangular cylinder is fixedly installed at the bottom of each slider. A rectangular rod is slidably arranged within the rectangular cylinder, and a clamp is fixedly installed at the bottom of the rectangular rod. A transmission assembly is fitted at the rear of the rectangular frame, and support rods are threaded to both ends of the transmission assembly. The advantages of this utility model are: by using adjustable sliders, the cable can be fixed in a specific position, effectively avoiding the mess caused by cable shaking and tangling during conduit replacement; by adjusting the length of the extended rectangular rod and using the clamps, the cable can also be firmly fixed in the vertical direction.
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Description

Technical Field

[0001] This utility model mainly relates to the field of cable conduit replacement technology, specifically a cable conduit replacement device for computer electronic information engineering. Background Technology

[0002] In the construction and maintenance of computer electronic information engineering projects, cable conduit replacement is a crucial step in ensuring the stable operation of information transmission networks. With the increasing integration of electronic equipment and the growing demand for information transmission, engineering sites often have a large number of cables of varying specifications and uses requiring simultaneous conduit replacement.

[0003] Traditional cable replacement work typically involves manual pulling, with operators relying solely on simple tools for temporary cable securing and traction. Due to the lack of a systematic cable organization and securing system, cables with different routes and functions easily become tangled and intertwined during replacement, resulting in a chaotic and disordered cable arrangement. Existing replacement devices struggle to effectively classify and secure cables, leading to a messy cable layout after replacement. This not only increases the difficulty of subsequent line maintenance and troubleshooting but also poses potential safety hazards such as signal transmission abnormalities or even short circuits due to excessive cable compression and bending. Utility Model Content

[0004] To achieve the above objectives, this utility model employs the following technical solution:

[0005] A cable conduit replacement device for computer electronic information engineering includes a rectangular frame with a rectangular groove. Several sliders are slidably arranged in the rectangular groove. Each slider has a clamping plate symmetrically arranged on its front side. A rectangular cylinder is fixedly arranged at the bottom of each slider. A rectangular rod is slidably arranged in the rectangular cylinder. A clamp is fixedly arranged at the bottom of the rectangular rod. A transmission assembly is arranged at the rear of the rectangular frame. Support rods are threaded to both ends of the transmission assembly.

[0006] The slider is symmetrically fixed with support plates on its front side. The clamping plate is connected to the inner side of the corresponding support plate by a first spring. The clamping plate is provided with an arc groove, and the two clamping plates are arranged opposite each other.

[0007] The rectangular tube is threaded to the side with a first bolt, which passes through the rectangular tube and abuts against the rectangular rod.

[0008] The clamp includes a first retaining ring, a second retaining ring, and a pad. The first retaining ring is fixedly disposed on the front of the rectangular rod. The pad is fixedly disposed on the inner ring of the first retaining ring by a second spring. The first retaining ring and the second retaining ring are hinged together. The other end of the first retaining ring is rotatably connected to a connecting rod. The connecting rod passes through the second retaining ring and is connected by a nut.

[0009] The transmission assembly includes a worm gear and a screw. The worm gear is rotatably connected to a rectangular frame. The screw is fixed to the rear of the rectangular frame via a first support seat. A worm wheel is fixedly mounted on the outer ring of the screw, and the worm gear meshes with the worm wheel. Two helical lines are symmetrically arranged on the outer ring of the screw, with the same pitch and opposite directions. Two support rods are sleeved on both ends of the screw and threaded together. A pad is fixedly mounted at the end of each support rod. This structural design drives the two support rods to move in opposite directions. A hexagonal protrusion is fixedly mounted at the end of the worm gear. A second support seat and a third support seat are symmetrically fixed behind the rectangular frame, and the support rods pass through the second and third support seats and are slidably connected.

[0010] The top of the rectangular frame has a through groove, and the top of each slider is threaded with a second bolt, which passes through the through groove and abuts against the top of the rectangular frame.

[0011] Compared with the existing technology, the beneficial effects of this utility model are:

[0012] This utility model has a simple structure and is easy to install and use. Through a sliding and adjustable slider, the cables are orderly separated and fixed in a specific position, effectively avoiding the chaos caused by the shaking and tangling of the cables during the pipe replacement process.

[0013] By adjusting the length of the extended rectangular rod and using clamps, the cables can be firmly fixed in the vertical direction, preventing them from tangling due to sagging or misalignment, and further improving the cable management effect.

[0014] The worm gear and screw structure of the transmission components not only enables rapid and stable fixing of the rectangular frame, but also allows for adaptation to different installation environments by adjusting the spacing of the support rods during installation, ensuring the stability and reliability of the entire device. Attached Figure Description

[0015] Appendix Figure 1 This is a first-view structural schematic diagram of the present invention;

[0016] Appendix Figure 2 This is a schematic diagram of the second-view structure of this utility model;

[0017] Appendix Figure 3 This is a first exploded structural diagram of the present invention;

[0018] Appendix Figure 4 This is a schematic diagram of the second exploded structure of this utility model.

[0019] The following are the labels in the attached diagram: 1. Rectangular frame; 2. Slider; 3. Clamping plate; 4. Rectangular cylinder; 5. Rectangular rod; 6. Clamp; 601. First clamping ring; 602. Second clamping ring; 603. Pad; 604. Connecting rod; 7. Transmission assembly; 701. Worm gear; 702. Screw; 703. First support seat; 8. Support rod; 9. Support plate; 10. First bolt; 11. Second bolt; 12. Second support seat; 13. Third support seat. Detailed Implementation

[0020] The present invention will be further described in conjunction with the accompanying drawings and specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the teachings of this invention, those skilled in the art can make various alterations or modifications to the present invention, and these equivalent forms also fall within the scope defined in this application.

[0021] Referring to the accompanying drawings, a cable conduit replacement device for computer electronic information engineering includes a rectangular frame 1. A rectangular groove is provided on the rectangular frame 1, and several sliders 2 are slidably arranged in the rectangular groove. Each slider 2 has a clamping plate 3 symmetrically arranged on its front side. A rectangular cylinder 4 is fixedly arranged at the bottom of each slider 2. A rectangular rod 5 is slidably arranged in the rectangular cylinder 4. A clamp 6 is fixedly arranged at the bottom of the rectangular rod 5. A transmission assembly 7 is provided at the rear of the rectangular frame 1, and support rods 8 are threadedly connected to both ends of the transmission assembly 7.

[0022] The slider 2 is symmetrically fixed with support plates 9 on its front side. The clamping plate 3 is connected to the inner side of the corresponding support plate 9 by a first spring. The clamping plate 3 has an arc groove, and the two clamping plates 3 are arranged opposite each other.

[0023] The rectangular tube 4 is threadedly connected to the first bolt 10, which passes through the rectangular tube 4 and abuts against the rectangular rod 5.

[0024] The clamp 6 includes a first retaining ring 601, a second retaining ring 602, and a pad 603. The first retaining ring 601 is fixedly disposed on the front side of the rectangular rod 5. The pad 603 is fixedly disposed on the inner ring of the first retaining ring 601 by a second spring. The first retaining ring 601 and the second retaining ring 602 are hinged together. The other end of the first retaining ring 601 is rotatably connected to a connecting rod 604. The connecting rod 604 passes through the second retaining ring 602 and is connected by a nut.

[0025] The transmission assembly 7 includes a worm gear 701 and a screw 702. The worm gear 701 is rotatably connected to the rectangular frame 1. The screw 702 is fixed to the rear of the rectangular frame 1 via a first support seat 703. A worm wheel is fixedly installed on the outer ring of the screw 702, and the worm gear 701 meshes with the worm wheel. Two helical lines are symmetrically opened on the outer ring of the screw 702. The two helical lines have the same pitch and opposite directions of rotation. Two support rods 8 are sleeved on both ends of the screw 702 and are threaded together. A pad is fixedly installed at the end of the support rod 8. This structural design drives the two support rods 8 to move in opposite directions. A hexagonal protrusion is fixedly installed at the end of the worm gear 701. An external device drives the worm gear 701 to rotate, which in turn drives the screw 702 to rotate. A second support seat 12 and a third support seat 13 are symmetrically fixedly installed behind the rectangular frame 1. The support rod 8 passes through the second support seat 12 and the third support seat 13 and is slidably connected. This structural design limits the position of the support rod 8.

[0026] The top of the rectangular frame 1 is provided with a through groove, and the top of each slider 2 is threaded with a second bolt 11. The second bolt 11 passes through the through groove and abuts against the top of the rectangular frame 1. This structural design limits the slider 2.

[0027] When using this device, place the rectangular frame 1 in a suitable position, and rotate the hexagonal protrusion at the end of the worm gear 701 using an external device (such as a hand drill), which will drive the worm gear 701 to rotate. This will drive the screw 702 to rotate through the worm gear transmission, thereby causing the two support rods 8 to move in opposite directions until the end pads are pressed against the mounting surface, thus completing the fixation of the rectangular frame 1. The removed cable is placed between the symmetrically arranged clamps 3 on the slider 2. Since the clamps 3 are connected to the inner side of the corresponding support plate 9 by the first spring, the first spring will be compressed when the cable is inserted. The arc grooves on the two clamps 3 can better fit the cable, achieving the initial fixation of the cable.

[0028] According to the length of the cable, loosen the first bolt 10 on the side of the rectangular tube 4 so that the rectangular rod 5 can slide inside the rectangular tube 4. After adjusting to a suitable height, tighten the first bolt 10 so that it passes through the rectangular tube 4 and abuts against the rectangular rod 5, thereby fixing the position of the rectangular rod 5. Rotate the connecting rod 604 to loosen it from the second retaining ring 602, place the cable on the pad 603, and the pad 603 is fixed to the inner ring of the first retaining ring 601 by the second spring, which can buffer and fix the tube. Then pass the connecting rod 604 through the second retaining ring 602 and connect it with the nut to complete the fixing of the cable and the clamp 6.

[0029] If it is necessary to adjust the position of slider 2 on rectangular frame 1, loosen the second bolt 11 on the top of slider 2, allowing slider 2 to slide within the rectangular groove of rectangular frame 1. After adjusting to the appropriate position, tighten the second bolt 11 so that it passes through the through groove and abuts against the top of rectangular frame 1, thereby limiting the movement of slider 2 and adjusting the lateral position of the cable. After completing all the above preparations, cable conduit replacement can be performed. Through the coordinated operation of various components of the device, cable conduit replacement can be achieved stably and efficiently.

[0030] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A cable changing device for computer electronic information engineering, comprising a rectangular frame (1), characterized in that: The rectangular frame (1) has a rectangular groove, and several sliders (2) are slidably arranged in the rectangular groove. Each slider (2) has a clamp (3) symmetrically arranged on the front. Each slider (2) has a rectangular tube (4) fixedly arranged at the bottom. A rectangular rod (5) is slidably arranged in the rectangular tube (4). A clamp (6) is fixedly arranged at the bottom of the rectangular rod (5). A transmission assembly (7) is arranged at the rear of the rectangular frame (1). The two ends of the transmission assembly (7) are threadedly connected to support rods (8).

2. The cable conversion device for computer electronic information engineering of claim 1, wherein: The slider (2) is symmetrically fixed with support plates (9) on its front side. The clamping plate (3) is connected to the inner side of the corresponding support plate (9) by a first spring. The clamping plate (3) has an arc groove, and the two clamping plates (3) are arranged opposite each other.

3. The cable conversion device for computer electronic information engineering of claim 1, wherein: The rectangular tube (4) is threadedly connected to the side of the first bolt (10), which passes through the rectangular tube (4) and abuts against the rectangular rod (5).

4. The cable conversion device for computer electronic information engineering of claim 1, wherein: The clamp (6) includes a first retaining ring (601), a second retaining ring (602), and a pad (603). The first retaining ring (601) is fixedly disposed on the front side of the rectangular rod (5). The pad (603) is fixedly disposed on the inner ring of the first retaining ring (601) by a second spring. The first retaining ring (601) and the second retaining ring (602) are hinged together. The other end of the first retaining ring (601) is rotatably connected to a connecting rod (604). The connecting rod (604) passes through the second retaining ring (602) and is connected by a nut.

5. The cable conversion device for computer electronic information engineering of claim 1, wherein: The transmission assembly (7) includes a worm gear (701) and a screw (702). The worm gear (701) is rotatably connected to the rectangular frame (1). The screw (702) is fixed to the rear of the rectangular frame (1) via a first support seat (703). A worm wheel is fixedly installed on the outer ring of the screw (702). The worm gear (701) meshes with the worm wheel. Two spiral lines are symmetrically opened on the outer ring of the screw (702). The two spiral lines have the same pitch and opposite directions. Two support rods (8) are sleeved on both ends of the screw (702) and threadedly connected. A pad is fixedly installed at the end of the support rod (8). This structural design drives the two support rods (8) to move in opposite directions. A hexagonal protrusion is fixedly installed at the end of the worm gear (701). A second support seat (12) and a third support seat (13) are symmetrically fixedly installed behind the rectangular frame (1). The support rods (8) pass through the second support seat (12) and the third support seat (13) and are slidably connected.

6. The cable conversion device for computer electronic information engineering of claim 1, wherein: The top of the rectangular frame (1) is provided with a through groove, and the top of each slider (2) is threaded with a second bolt (11), which passes through the through groove and abuts against the top of the rectangular frame (1).