Steel plate bridge hanger with lead weight

CN224697379UActive Publication Date: 2026-08-28RIZHAO PORT SHANGANG WHARF CO LTD
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Patent Information

Application Number
CN202521665971.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-06
Publication Date
2026-08-28
Estimated Expiration
2035-08-06

AI Technical Summary

Technical Problem

[0004]为了弥补以上不足,本实用新型提供了一种带铅坠的钢板桥吊具防风电缆,旨在改善现有技术中铅坠易脱落,影响防风效果甚至引发安全事故的问题

Benefits of technology

[0021]1、本实用新型中,将半圆块二底下的滑块滑入半圆块一的滑槽一,转动螺纹杆使半圆块二靠近电缆一和电缆二,接着弹簧推动夹块夹紧内侧的电缆一和电缆二,把固定在半圆块一底部的铅块稳定安装在电缆上,极大降低铅块坠落风险,最后铅块借助自重增强抗风稳定性。

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Abstract

The utility model relates to windproof cable technical field discloses a kind of steel plate bridge sling windproof cable with lead plummet, including cable one, the outer wall right side of cable one is provided with cable two, the bottom of cable one and cable two is provided with lead block, the outer wall of cable one and cable two is equipped with fixed mechanism, the fixed mechanism is used to fix lead block on cable, the outer wall right side of cable one is provided with connecting mechanism, and the connecting mechanism is used to connect cable one and cable two;The fixed mechanism includes semicircle block one, and the semicircle block one is evenly arranged in the outer wall front side of cable one and cable two.The utility model in the semicircle block two below sliding block is slid into semicircle block one's sliding slot one, rotates threaded rod and makes semicircle block two close to cable one and cable two, then spring pushes and clamps the cable one and cable two of clamping block clamping inside, lead block fixed in the bottom of semicircle block one is stably installed on cable, greatly reduce lead block falling risk.
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Description

Technical Field

[0001] This utility model relates to the field of windproof cable technology, and in particular to a windproof cable for a steel plate bridge hanger with a lead weight. Background Technology

[0002] A cable is a conductor assembly consisting of a conductive core, an insulation layer, a protective layer, and other auxiliary structures. It is mainly used to transmit electrical energy, electrical signals, or to realize electromagnetic energy conversion. By wrapping it with insulation materials and a protective shell, it can safely and stably transmit power or signals in complex environments. It is a core connection component in power systems, communication networks, and industrial equipment.

[0003] Existing cables, through optimized core materials and insulation design, can stably transmit high voltage and high current, meeting the high-power demands of industrial enterprises and urban power grids, and have low line loss. However, under wind force, the cables will generate continuous vibration, which will cause mechanical fatigue in the long run. The existing technology is to add plumb bobs to increase the weight of the vertical section of the cable, so that the cable can remain stable when suspended vertically. It uses gravity to counteract wind force and prevents the cable from swaying and tangling due to wind. This ensures that the cable can maintain a normal posture and position in the wind, reducing friction with surrounding structures caused by swaying, thereby extending the cable's service life. However, when the lifting equipment moves frequently, shakes, or is impacted by strong winds, the plumb bobs are prone to falling off, affecting the windproof effect and even causing safety accidents. Utility Model Content

[0004] To overcome the above shortcomings, this utility model provides a windproof cable for a steel plate bridge hanger with a lead weight, aiming to improve the problem in the prior art where the lead weight is easy to fall off, affecting the windproof effect and even causing safety accidents.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a windproof cable for a steel plate bridge hanger with a lead weight, comprising a cable one, a cable two disposed on the right side of the outer wall of the cable one, lead blocks disposed at the bottom of both the cable one and the cable two, a fixing mechanism installed on the outer wall of both the cable one and the cable two for fixing the lead blocks to the cables, a connecting mechanism disposed on the right side of the outer wall of the cable one for connecting the cable one and the cable two; the fixing mechanism comprises a semicircular block one disposed on the front side of the outer wall of both the cable one and the cable two, a semicircular block two disposed on the rear side of the outer wall of the semicircular block one, springs disposed on the inner side of both the semicircular block one and the semicircular block two, clamps disposed at the ends of the springs, a sliding groove one opened on the rear side of the top wall of the semicircular block one, a slider fixedly connected to the bottom wall of the semicircular block two, the sliding groove one slidably connected to the slider, the lead blocks fixedly connected to the bottom wall of the semicircular block one, and a driving assembly disposed at the bottom of both the cable one and the cable two.

[0006] As a further description of the above technical solution:

[0007] The drive assembly includes a threaded rod disposed on the rear side of the outer wall of the semicircular block, and a threaded hole is provided on the front side of the inner wall of the slide groove. The threaded hole is threadedly connected to the threaded rod, and the slider is threadedly connected to the threaded rod.

[0008] As a further description of the above technical solution:

[0009] The connecting mechanism includes a connecting block, which is fixedly connected to the left end of the outer wall of the second cable. A connecting groove is provided on the right end of the outer wall of the first cable. The connecting block engages with the connecting groove. A fixing component is provided on the outer wall of the first cable.

[0010] As a further description of the above technical solution:

[0011] The fixing component includes a threaded ring, which is disposed on the right side of the outer wall of the first cable. A second sliding groove is formed on the left side of the inner wall of the threaded ring. A sliding ring is fixedly connected to the right side of the outer wall of the first cable. The second sliding groove is slidably connected to the sliding ring. A threaded groove is formed on the left side of the outer wall of the second cable. The threaded ring is threadedly connected to the threaded groove.

[0012] As a further description of the above technical solution:

[0013] Cable 1 and Cable 2 are disposed inside multiple clamping blocks, and the springs are equidistantly distributed.

[0014] As a further description of the above technical solution:

[0015] The second cable is located inside the threaded ring, and the threaded groove is located inside the threaded ring.

[0016] As a further description of the above technical solution:

[0017] The outer wall of the cable is provided with anti-slip texture, which is formed around the outer wall of the threaded ring.

[0018] As a further description of the above technical solution:

[0019] Both cable one and cable two have internal hexagonal blocks on their outer rear sides, and the internal hexagonal blocks are fixedly connected to the rear end of the outer wall of the threaded rod.

[0020] This utility model has the following beneficial effects:

[0021] 1. In this utility model, the slider under the second semicircular block is slid into the groove of the first semicircular block, the threaded rod is rotated to bring the second semicircular block close to the first and second cables, then the spring pushes the clamping block to clamp the inner side of the first and second cables, and the lead block fixed at the bottom of the first semicircular block is stably installed on the cable, which greatly reduces the risk of the lead block falling. Finally, the lead block enhances the wind resistance stability with its own weight.

[0022] 2. In this utility model, the left end connecting block of cable two is inserted into the right end connecting groove of cable one to achieve a preliminary connection. Then, the outer thread ring of cable one is rotated so that the inner groove two of the thread ring slides along the outer groove of cable one, so that the thread ring connects with the thread groove of cable two, thereby fixing cable two and cable one, and finally completing the cable connection. Attached Figure Description

[0023] Figure 1 This is a front view of a windproof cable for a steel plate bridge hanger with a lead weight, as proposed in this utility model.

[0024] Figure 2 This is a perspective view of a windproof cable for a steel plate bridge hanger with a lead weight, as proposed in this utility model.

[0025] Figure 3 This is a partial exploded view of the windproof cable of a steel plate bridge hanger with a lead sinker proposed in this utility model;

[0026] Figure 4 This is a partial structural schematic diagram of a windproof cable for a steel plate bridge hanger with a lead weight, as proposed in this utility model.

[0027] Figure 5 This is a partial structural exploded view of the windproof cable of a steel plate bridge hanger with a lead weight proposed in this utility model.

[0028] Legend:

[0029] 1. Cable 1; 2. Cable 2; 3. Lead block; 4. Anti-slip texture; 5. Fixing mechanism; 501. Semicircular block 1; 502. Semicircular block 2; 503. Spring; 504. Clamping block; 505. Slide groove 1; 506. Slider; 507. Drive assembly; 5071. Threaded rod; 5072. Threaded hole; 6. Connecting mechanism; 601. Connecting block; 602. Connecting groove; 603. Fixing assembly; 6031. Threaded ring; 6032. Slide groove 2; 6033. Sliding ring; 6034. Threaded groove; 7. Socket hexagonal block. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0031] Reference Figure 2 , Figure 3 and Figure 4 An embodiment of this utility model provides a windproof cable for a steel plate bridge hanger with a lead weight, including a cable 1, a cable 2 on the right side of the outer wall of the cable 1, lead blocks 3 at the bottom of both the cable 1 and the cable 2, a fixing mechanism 5 installed on the outer wall of both the cable 1 and the cable 2, the fixing mechanism 5 being used to fix the lead blocks 3 to the cable, and a connecting mechanism 6 on the right side of the outer wall of the cable 1, the connecting mechanism 6 being used to connect the cable 1 and the cable 2.

[0032] The fixing mechanism 5 includes a semicircular block 501, which is located on the front side of the outer wall of cable 1 and cable 2. A semicircular block 502 is located on the rear side of the outer wall of the semicircular block 501. A spring 503 is installed on the inner side of the semicircular block 1 and the semicircular block 2. A clamping block 504 is installed at the end of the spring 503. The spring 503 pushes the clamping block 504 to clamp the cable 1 and cable 2 inside the clamping blocks 504. A sliding groove 505 is opened on the rear side of the top wall of the semicircular block 1. A slider 506 is fixedly connected to the bottom wall of the semicircular block 2. The sliding groove 505 is slidably connected to the slider 506. The slider 506 under the semicircular block 2 slides into the sliding groove 505 of the semicircular block 1. A lead block 3 is fixedly connected to the bottom wall of the semicircular block 1. A driving assembly 507 is provided at the bottom of both cable 1 and cable 2.

[0033] The drive assembly 507 includes a threaded rod 5071, which is disposed on the rear side of the outer wall of the semicircular block 501. A threaded hole 5072 is provided on the front side of the inner wall of the slide groove 505. The threaded hole 5072 is threadedly connected to the threaded rod 5071. The slider 506 is threadedly connected to the threaded rod 5071. Rotating the threaded rod 5071 causes the semicircular block 502 on the slider 506 to approach the cable 1 and the cable 2. The cable 1 and the cable 2 are disposed on the inner side of multiple clamping blocks 504. The springs 503 are evenly distributed.

[0034] Specifically, firstly, the slider 506 at the bottom of the second semicircular block 502 is slid into the groove 505 of the first semicircular block 501. Then, the threaded rod 5071 is rotated so that the second semicircular block 502 on the slider 506 moves closer to the first cable 1 and the second cable 2. At this time, the spring 503 pushes the clamping block 504 to tightly clamp the first cable 1 and the second cable 2 inside the multiple clamping blocks 504. In this way, the lead block 3 fixed at the bottom of the first semicircular block 501 can be stably installed on the cable, which significantly reduces the risk of the lead block 3 falling. The lead block 3 uses its own weight to further enhance the wind resistance stability.

[0035] Reference Figure 1 , Figure 2 and Figure 5 The connecting mechanism 6 includes a connecting block 601, which is fixedly connected to the left end of the outer wall of the second cable 2. A connecting groove 602 is provided on the right end of the outer wall of the first cable 1. The connecting block 601 engages with the connecting groove 602. A fixing component 603 is provided on the outer wall of the first cable 1.

[0036] The fixing component 603 includes a threaded ring 6031, which is disposed on the right side of the outer wall of cable 1. A sliding groove 6032 is provided on the left side of the inner wall of the threaded ring 6031. A sliding ring 6033 is fixedly connected to the right side of the outer wall of cable 1. The sliding groove 6032 is slidably connected to the sliding ring 6033. A threaded groove 6034 is provided on the left side of the outer wall of cable 2. The threaded ring 6031 is threadedly connected to the threaded groove 6034.

[0037] Specifically, firstly, the left end connecting block 601 of cable 2 is inserted into the right end connecting groove 602 of cable 1 to achieve a preliminary connection. Then, the threaded ring 6031 on the outside of cable 1 is rotated, so that the sliding groove 6032 inside the threaded ring 6031 slides along the sliding ring 6033 on the outside of cable 1, thereby connecting the threaded ring 6031 with the threaded groove 6034 of cable 2. The threaded ring 6031 firmly fixes cable 2 and cable 1 together, thus completing the cable connection.

[0038] Reference Figure 1 , Figure 2 and Figure 4 The outer wall of cable 1 is provided with anti-slip texture 4. The anti-slip texture 4 is formed around the outer wall of the threaded ring 6031. The anti-slip texture 4 is used to increase the friction between the hand and the threaded ring 6031. The rear side of the outer wall of cable 1 and cable 2 is provided with an internal hexagonal block 7. The internal hexagonal block 7 is fixedly connected to the rear end of the outer wall of the threaded rod 5071. By rotating the internal hexagonal block 7 with an internal hexagonal wrench, the threaded rod 5071 can be driven to rotate more conveniently and effortlessly.

[0039] Specifically, the anti-slip texture 4 is used to increase the friction between the hand and the threaded ring 6031. By turning the internal hexagonal block 7 with an internal hexagonal wrench, the threaded rod 5071 can be driven to rotate more conveniently and effortlessly.

[0040] Working principle: First, slide the slider 506 under the second semicircular block 502 into the groove 505 of the first semicircular block 501. Rotate the threaded rod 5071 to make the second semicircular block 502 on the slider 506 approach the first cable 1 and the second cable 2. The spring 503 pushes the clamping block 504 to clamp the first cable 1 and the second cable 2 inside the multiple clamping blocks 504, thereby stably installing the lead block 3 fixed at the bottom of the first semicircular block 501 on the cable, greatly reducing the risk of the lead block 3 falling. The lead block 3 enhances wind resistance stability by its own weight.

[0041] First, insert the connecting block 601 at the left end of cable 2 into the connecting groove 602 at the right end of cable 1 to achieve a preliminary connection. Then, rotate the threaded ring 6031 outside cable 1. The sliding groove 6032 inside the threaded ring 6031 slides along the sliding ring 6033 outside cable 1, so that the threaded ring 6031 connects with the threaded groove 6034 of cable 2, thereby fixing cable 2 and cable 1 together and completing the cable connection.

[0042] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A windproof cable for a steel plate bridge hanger with a lead weight, comprising cable one (1), characterized in that: Cable 2 (2) is provided on the right side of the outer wall of cable 1 (1). Lead blocks (3) are provided at the bottom of both cable 1 (1) and cable 2 (2). Fixing mechanisms (5) are installed on the outer walls of both cable 1 (1) and cable 2 (2). The fixing mechanisms (5) are used to fix the lead blocks (3) on the cable. A connecting mechanism (6) is provided on the right side of the outer wall of cable 1 (1). The connecting mechanism (6) is used to connect cable 1 (1) and cable 2 (2). The fixing mechanism (5) includes a semicircular block one (501), which is provided on the front side of the outer wall of cable one (1) and cable two (2). A semicircular block two (502) is provided on the rear side of the outer wall of the semicircular block one (501). A spring (503) is installed on the inner side of the semicircular block one (501) and the semicircular block two (502). A clamping block (504) is installed at the end of the spring (503). A sliding groove one (505) is opened on the rear side of the top wall of the semicircular block one (501). A slider (506) is fixedly connected to the bottom wall of the semicircular block two (502). The sliding groove one (505) is slidably connected to the slider (506). The lead block (3) is fixedly connected to the bottom wall of the semicircular block one (501). A driving assembly (507) is provided at the bottom of the cable one (1) and the cable two (2).

2. The windproof cable for a steel plate bridge hanger with a lead weight according to claim 1, characterized in that: The drive assembly (507) includes a threaded rod (5071), which is disposed on the rear side of the outer wall of the semicircular block (501). A threaded hole (5072) is provided on the front side of the inner wall of the slide groove (505). The threaded hole (5072) is threadedly connected to the threaded rod (5071), and the slider (506) is threadedly connected to the threaded rod (5071).

3. The windproof cable for a steel plate bridge hanger with a lead weight according to claim 1, characterized in that: The connecting mechanism (6) includes a connecting block (601), which is fixedly connected to the left end of the outer wall of the second cable (2). The right end of the outer wall of the first cable (1) is provided with a connecting groove (602). The connecting block (601) engages with the connecting groove (602). The outer wall of the first cable (1) is provided with a fixing component (603).

4. The windproof cable for a steel plate bridge hanger with a lead weight according to claim 3, characterized in that: The fixing component (603) includes a threaded ring (6031), which is disposed on the right side of the outer wall of the first cable (1). A second groove (6032) is provided on the left side of the inner wall of the threaded ring (6031). A sliding ring (6033) is fixedly connected to the right side of the outer wall of the first cable (1). The second groove (6032) is slidably connected to the sliding ring (6033). A threaded groove (6034) is provided on the left side of the outer wall of the second cable (2). The threaded ring (6031) is threadedly connected to the threaded groove (6034).

5. The windproof cable for a steel plate bridge hanger with a lead weight according to claim 1, characterized in that: The first cable (1) and the second cable (2) are arranged inside the multiple clamps (504), and the springs (503) are equidistantly distributed.

6. The windproof cable for a steel plate bridge hanger with a lead weight according to claim 4, characterized in that: The second cable (2) is located inside the threaded ring (6031), and the threaded groove (6034) is located inside the threaded ring (6031).

7. The windproof cable for a steel plate bridge hanger with a lead weight according to claim 1, characterized in that: The outer wall of the cable (1) is provided with anti-slip texture (4), which is formed around the outer wall of the threaded ring (6031).

8. The windproof cable for a steel plate bridge hanger with a lead weight according to claim 4, characterized in that: Both the outer wall rear side of cable one (1) and cable two (2) are provided with hexagonal inner blocks (7), which are fixedly connected to the outer wall rear end of the threaded rod (5071).