Anchoring connection structure of high-strength rope

The high-strength rope anchoring connection structure with its multiple fastening system solves the problems of cumbersome installation and disassembly, poor clamping effect, and poor versatility of existing rope anchoring connection structures, achieving rapid fastening and stable clamping, and improving safety and applicability.

CN224150098UActive Publication Date: 2026-04-21SHENLONG ROPE IND (HAINAN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENLONG ROPE IND (HAINAN) CO LTD
Filing Date
2025-07-17
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing rope anchoring connection structures are cumbersome to install and dismantle, have poor clamping effect, are prone to loosening or slipping, have poor versatility, and pose safety hazards.

Method used

It adopts a high-strength rope anchoring connection structure that includes a fixed base, locking mechanism, connecting mechanism and clamping guide mechanism. Through a multi-fastening system of locking bolts and clamping plates, combined with the design of threaded holes and limiting grooves, it can achieve rapid fastening and stable clamping of the rope.

Benefits of technology

It significantly improves installation and disassembly efficiency, enhances anti-slip performance, prevents rope loosening and slippage, and improves safety and applicability.

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Abstract

The utility model relates to the technical field of rope connection, and discloses an anchoring connection structure of a high-strength rope, which comprises a fixed base, a locking mechanism, a connecting mechanism and a clamping guide mechanism, the locking mechanism is used for locking and fixing the rope, the clamping guide mechanism is used for clamping and guiding the rope, and the connecting mechanism is connected with the fixed base. The locking mechanism comprises a locking seat, a fixing block, locking rings, a mounting block, locking blocks and locking bolts, the locking seat is fixed on the fixing base, and by arranging the locking mechanism, during mounting, a rope penetrates into the two locking rings, the locking blocks are driven by screwing the locking bolts to enable the locking rings to tightly hold the rope, then the locking rings are embedded into the locking seat, and the rope is locked by the locking blocks. The locking block slides along the limiting sliding groove, the locking ring is rotated to be aligned with the threaded hole, the locking ring is fixed through the fixing bolt, reverse operation is conducted during dismounting, the locking mechanism achieves rapid multiple fastening of the rope through cooperation of multiple components, compared with a traditional structure, the mounting and dismounting efficiency is remarkably improved, and the rapid operation requirement under the emergency working condition is met.
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Description

Technical Field

[0001] This utility model relates to the field of rope connection technology, and in particular to an anchoring connection structure for a high-strength rope. Background Technology

[0002] In high-altitude operations such as construction and power maintenance, workers often use high-strength ropes to perform climbing and suspension operations. Through reliable anchoring connections, one end of the rope is firmly fixed to a stable part such as the top of a building or a steel frame structure, providing workers with safe working conditions. In bridge construction, high-strength ropes are used to hoist bridge components and pull construction equipment. Their anchoring connection points are set on solid foundations such as piers and abutments to effectively transfer the huge tensile force generated by the rope to the foundation structure. For example, the cable anchoring of cable-stayed bridges requires precise design of the anchoring connection structure to ensure that the cable is firmly connected to the main body of the bridge, ensuring the overall stability and load-bearing capacity of the bridge.

[0003] Existing rope anchoring connection structures have some shortcomings. For example, the installation and disassembly process of some connection structures is relatively cumbersome, some connection structures have poor clamping effect on ropes, and the ropes are prone to loosening or even slipping when subjected to large tension, which poses a significant safety hazard. In addition, some connection structures are applicable to a limited range of rope specifications and have poor versatility. Therefore, we propose an anchoring connection structure for high-strength ropes. Utility Model Content

[0004] The purpose of this utility model is to provide a high-strength rope anchoring connection structure to solve some shortcomings of existing rope anchoring connection structures. For example, the installation and disassembly process of some connection structures is relatively cumbersome, some connection structures have poor clamping effect on ropes, and the ropes are prone to loosening or even slipping when subjected to large tension, which poses a significant safety hazard. In addition, some connection structures are applicable to a limited range of rope specifications and have poor versatility.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an anchoring connection structure for a high-strength rope, comprising a fixed base, a locking mechanism, a connecting mechanism, and a clamping guide mechanism. The fixed base is provided with a locking hole for securely connecting the fixed base to an external fixed object via a connector. The locking mechanism, connecting mechanism, and clamping guide mechanism are all disposed on the fixed base. The locking mechanism is used to lock and fix the rope. The connecting mechanism is used to connect the rope to the fixed base. The clamping guide mechanism is used to clamp and guide the rope. The locking mechanism includes a locking seat, a fixing block, a fixing bolt, a locking ring, an mounting block, a locking block, and a locking bolt. The locking seat is fixed on the fixed base, and the fixing block is fixedly disposed on the left and right sides of the locking seat.

[0006] As a preferred embodiment, the fixing bolt passes through the fixing block and is threadedly connected to the fixing block. The locking ring is provided in two sets and is arranged opposite to each other. The mounting block is symmetrically fixed on the outside of the two sets of locking rings. The locking block is connected to the mounting block by the locking bolt.

[0007] As a preferred embodiment, the inner wall of the locking seat is provided with a positioning groove that matches the locking ring, and the locking seat is also provided with a limiting slide groove. The locking block slides in cooperation with the limiting slide groove, and the mounting block is provided with a threaded hole that matches the fixing bolt.

[0008] As a preferred embodiment, the connecting mechanism includes a base, a fixed column, an upper limit plate, a lower connecting plate, and an anti-slip strip. The base is fixed on a fixed base, the fixed column is fixedly installed on the base, the upper limit plate and the lower connecting plate are respectively fixed on the circumferential surface of the fixed column, and the anti-slip strip is disposed on the outer surface of the fixed column and located between the upper limit plate and the lower connecting plate.

[0009] As a preferred embodiment, the clamping guide mechanism includes a rotating disk, a fixed rod, a connecting piece, an inclined plate, a guide post, a screw, a rotating block, and a clamping piece. A limit hole is provided at the right end of the surface of the base. The rotating disk is rotatably connected to the inside of the limit hole, and the connecting piece is fixed on the circumferential surfaces on both sides of the rotating disk.

[0010] As a preferred embodiment, the fixing rod is fixedly installed inside the rotating disk, two sets of inclined plates are provided and fixedly installed on the circumferential surfaces at both ends of the fixing rod, the guide post is fixedly installed between the top ends of the two sets of inclined plates, the guide post is provided with a rope hole for the rope to pass through, the screw is threadedly connected to the inside of the inclined plate, the rotating block is connected to one end of the screw, and the clamping plate is rotatably connected to the other end of the screw.

[0011] The technical effects and advantages of this utility model are as follows:

[0012] By setting up a locking mechanism, during installation, the rope is threaded into two sets of locking rings. By tightening the locking bolts, the locking blocks are driven to make the locking rings hold the rope tightly. Then, the locking rings are embedded into the locking seats, allowing the locking blocks to slide along the limiting grooves. The locking rings are rotated to align with the threaded holes and fixed with fixing bolts. Disassembly is performed in reverse. This locking mechanism achieves rapid and multiple fastening of the rope through the cooperation of multiple components, which significantly improves the efficiency of installation and disassembly compared with traditional structures and meets the needs of rapid operation in emergency situations.

[0013] By setting up a connecting mechanism and a clamping guide mechanism to form a collaborative anchoring system, the base, fixed column, upper limit plate and lower connecting plate of the connecting mechanism form a stable support structure. The rope is wound around the surface of the fixed column and the static friction is enhanced by anti-slip strips. The rotating disk, fixed rod and inclined plate of the clamping guide mechanism form an adjustable guide assembly. The clamping plate is driven by a screw to move linearly along the guide column to achieve rope clamping. The rotating disk can be rotated to adjust the rope exit angle and locked by the connecting plate. This system and the locking mechanism form a three-level fastening system, which includes winding friction, mechanical clamping and structural locking, to prevent loosening and slippage under tension and significantly improve anti-slip performance. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0015] Figure 2 This is a schematic diagram of the connection mechanism structure of this utility model;

[0016] Figure 3 This is a schematic diagram of the locking mechanism structure of this utility model;

[0017] Figure 4 for Figure 3 Enlarged structural diagram at point A in the middle;

[0018] Figure 5 This is a schematic diagram of the clamping and guiding mechanism of this utility model.

[0019] In the diagram: 1. Fixed base; 2. Locking hole; 3. Locking mechanism; 4. Connecting mechanism; 5. Clamping guide mechanism; 301. Locking seat; 302. Fixed block; 303. Fixed bolt; 304. Locking ring; 305. Mounting block; 306. Locking block; 307. Limiting groove; 308. Positioning groove; 309. Locking bolt; 401. Base; 402. Fixed column; 403. Upper limit plate; 404. Lower connecting plate; 405. Anti-slip strip; 501. Limiting hole; 502. Rotating disk; 503. Fixed rod; 504. Connecting piece; 505. Inclined plate; 506. Guide column; 507. Screw; 508. Rotating block; 509. Clamping piece. Detailed Implementation

[0020] 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.

[0021] Please see the appendix Figure 1 and appendix Figure 3- Appendix Figure 4 An anchoring connection structure for a high-strength rope includes a fixed base 1, a locking mechanism 3, a connecting mechanism 4, and a clamping guide mechanism 5. The fixed base 1 has a locking hole 2 for securely connecting the fixed base 1 to an external fixed object via a connector. The locking mechanism 3, the connecting mechanism 4, and the clamping guide mechanism 5 are all mounted on the fixed base 1. The locking mechanism 3 is used to lock and fix the rope, the connecting mechanism 4 is used to connect the rope to the fixed base 1, and the clamping guide mechanism 5 is used to clamp and guide the rope. The locking mechanism 3 includes a locking seat. 301, fixing block 302, fixing bolt 303, locking ring 304, mounting block 305, locking block 306, and locking bolt 309. The locking seat 301 is fixed on the fixing base 1. The fixing block 302 is fixedly set on the left and right sides of the locking seat 301. The fixing base 1 serves as the basic carrier of the entire anchoring connection structure. It is connected to the external fixing object through the locking hole 2, providing a stable installation platform for the locking mechanism 3, the connecting mechanism 4, and the clamping guide mechanism 5, ensuring the overall stability of the structure when subjected to high-strength rope tension.

[0022] The fixing bolt 303 passes through the fixing block 302 and is threadedly connected to the fixing block 302. Two sets of locking rings 304 are provided and are arranged opposite each other. The mounting block 305 is symmetrically fixed on the outside of the two sets of locking rings 304. The locking block 306 is connected to the mounting block 305 through the locking bolt 309. The two sets of locking rings 304 can wrap around and lock the rope from both sides. The way the mounting block 305 and the locking block 306 are connected by the locking bolt 309 makes it easy to flexibly adjust the locking force according to the rope diameter and achieve precise fastening of the rope.

[0023] The inner wall of the locking seat 301 is provided with a positioning groove 308 that is adapted to the locking ring 304. The locking seat 301 is also provided with a limiting slide groove 307. The locking block 306 slides with the limiting slide groove 307. The mounting block 305 is provided with a threaded hole that is adapted to the fixing bolt 303. The positioning groove 308 and the locking ring 304 are tightly fitted to achieve circumferential positioning. The limiting slide groove 307 guides the sliding of the locking block 306. Together with the threaded hole on the mounting block 305 and the fixing bolt 303, a three-dimensional constraint system is formed, which effectively prevents the locking ring 304 from displacing or loosening during use.

[0024] Specifically, by setting up a locking mechanism 3, the rope can be secured in multiple ways by using a locking seat 301, a fixing block 302, a fixing bolt 303 in conjunction with a locking ring 304, an mounting block 305, a locking block 306, and a locking bolt 309. During installation, the rope is first threaded into the two sets of locking rings 304. The locking bolt 309 drives the locking block 306 to lock the two sets of locking rings 304 with the rope. Then, the locked locking ring 304 is installed inside the locking seat 301. The locking block 306 slides along the limiting groove 307. Then, the locked locking ring 304 is rotated so that the threaded hole is aligned with the fixing bolt 303. The fixing bolt 303 is used to fix the locking ring 304. Finally, the rope passes through the hole in the directional post on one side of the locking seat 301. Disassembly is done by reversing the operation. Compared with the traditional cumbersome structure, the installation and disassembly process is greatly simplified, solving the problem of inconvenient installation and disassembly of some connection structures, improving operational efficiency, and facilitating rapid operation in emergency situations.

[0025] Please see the appendix Figure 1 - Appendix Figure 2 and appendix Figure 5 The connecting mechanism 4 includes a base 401, a fixed column 402, an upper limit plate 403, a lower connecting plate 404, and an anti-slip strip 405. The base 401 is fixed on the fixed base 1, and the fixed column 402 is fixedly installed on the base 401. The upper limit plate 403 and the lower connecting plate 404 are respectively fixed on the circumferential surface of the fixed column 402. The anti-slip strip 405 is disposed on the outer surface of the fixed column 402 and located between the upper limit plate 403 and the lower connecting plate 404. In the connecting mechanism 4, after the base 401 is fixed to the fixed base 1, the fixed column 402 serves as the core load-bearing component. The upper limit plate 403 and the lower connecting plate 404 restrict the axial movement of the rope, and the anti-slip strip 405 increases the contact friction. Together, they form the first line of defense for fixing the rope entanglement.

[0026] The clamping guide mechanism 5 includes a rotating disk 502, a fixed rod 503, a connecting piece 504, an inclined plate 505, a guide post 506, a screw 507, a rotating block 508, and a clamping piece 509. A limit hole 501 is provided at the right end of the surface of the base 401. The rotating disk 502 is rotatably connected to the inside of the limit hole 501. The connecting piece 504 is fixed on the circumferential surfaces on both sides of the rotating disk 502. The rotating disk 502 and the base 401 are rotatably connected through the limit hole 501. The connecting piece 504 plays the role of angle fixation and auxiliary load bearing, so that the clamping guide mechanism 5 can flexibly adjust the rope guiding angle according to actual needs, thereby enhancing the applicability of the structure.

[0027] The fixed rod 503 is fixedly installed inside the rotating disk 502. Two sets of inclined plates 505 are provided and fixedly installed on the circumferential surfaces at both ends of the fixed rod 503. The guide post 506 is fixedly installed between the tops of the two sets of inclined plates 505. The guide post 506 has a rope-passing hole for the rope to pass through. The screw 507 is threadedly connected to the inside of the inclined plate 505. The rotating block 508 is connected to one end of the screw 507. The clamping plate 509 is rotatably connected to the other end of the screw 507. The fixed rod 503 provides support for the inclined plate 505. The rope-passing hole on the guide post 506 guides the direction of the rope. The screw 507, rotating block 508 and clamping plate 509 form a spiral transmission mechanism. The clamping plate 509 can gradually clamp the rope by rotating the rotating block 508. The operation is simple and the clamping force is controllable.

[0028] Specifically, by setting up a connecting mechanism 4 and a clamping guide mechanism 5, the connecting mechanism 4, in which the base 401, fixed column 402, upper limit plate 403, lower connecting plate 404 and anti-slip strip 405 work together to provide a stable connection foundation for the rope. The rope is wrapped around the circumferential surface of the fixed column 402 and located between the upper limit plate 403 and the lower connecting plate 404. The anti-slip strip 405 increases friction to prevent slippage. In the clamping guide mechanism 5, the rotating disk 502, fixed rod 503 and other components cooperate, and the screw 507 drives the clamping plate 509 to move along the guide column 506 to clamp the rope. The rotating disk 502 is rotated to a suitable angle to control the direction of the rope. The rope is fixed to the base 401 by bolts passing through the connecting plate 504 and finally passes through the rope hole of the guide column 506. At the same time, the locking mechanism 3 further strengthens the clamping effect with multiple fastenings, effectively preventing the rope from loosening and slipping under tension. This solves the problems of poor clamping effect and poor versatility, and improves the safety and applicability of the anchoring connection.

[0029] Working principle of this utility model: This utility model is an anchoring connection structure for a high-strength rope. When this high-strength rope anchoring connection structure is in operation, firstly, the fixed base 1 is securely connected to an external fixed object via the locking hole 2 on the fixed base 1 using a connector. Then, the rope is sequentially passed through the rope-passing hole of the guide post 506, wrapped around the circumferential surface of the fixed post 402 of the connecting mechanism 4, and positioned between the upper limit plate 403 and the lower connecting plate 404. The anti-slip strip 405 increases the friction between the rope and the fixed post 402. Next, the rotating disk 502 is rotated to a suitable angle to control the rope direction. Then, bolts are passed through the connecting piece 504 and fixed to the base 401. Finally, the rope is threaded through two sets of locking rings 304. Internally, the locking bolt 309 drives the locking block 306 to lock the two sets of locking rings 304 to the rope. The locked locking rings 304 are then installed inside the locking seat 301, allowing the locking block 306 to slide along the limiting slide groove 307. The locking rings 304 are rotated so that the threaded hole on the mounting block 305 is aligned with the fixing bolt 303, and the mounting block 305 is pressed tightly against the inner wall of the positioning circular groove 308 to prevent lateral movement. The fixing bolt 303 is used to fix the locking rings 304. Finally, the rotating block 508 is rotated to drive the screw 507, causing the clamping plate 509 to move along the guide post 506 to further clamp the rope. For disassembly, the above steps are reversed to achieve quick disassembly. The entire process is now complete.

[0030] 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. An anchoring connection structure of a high-strength rope, characterized by: The system includes a fixed base (1), a locking mechanism (3), a connecting mechanism (4), and a clamping guide mechanism (5). The fixed base (1) has a locking hole (2) and is used to securely connect the fixed base (1) to an external fixed object through a connector. The locking mechanism (3), the connecting mechanism (4), and the clamping guide mechanism (5) are all set on the fixed base (1). The locking mechanism (3) is used to lock and fix the rope. The connecting mechanism (4) is used to connect the rope to the fixed base (1). The clamping guide mechanism (5) is used to clamp and guide the rope. The locking mechanism (3) includes a locking seat (301), a fixing block (302), a fixing bolt (303), a locking ring (304), an mounting block (305), a locking block (306), and a locking bolt (309). The locking seat (301) is fixed on the fixed base (1), and the fixing block (302) is fixedly set on the left and right sides of the locking seat (301).

2. An anchoring connection structure for a high-strength rope according to claim 1, characterized in that: The fixing bolt (303) passes through the fixing block (302) and is threadedly connected to the fixing block (302). The locking ring (304) is provided in two sets and is arranged opposite to each other. The mounting block (305) is symmetrically fixed on the outside of the two sets of locking rings (304). The locking block (306) is connected to the mounting block (305) by the locking bolt (309).

3. An anchoring connection structure for a high-strength rope according to claim 2, characterized in that: The inner wall of the locking seat (301) is provided with a positioning groove (308) that is adapted to the locking ring (304). The locking seat (301) is also provided with a limiting slide groove (307). The locking block (306) slides with the limiting slide groove (307). The mounting block (305) is provided with a threaded hole that is adapted to the fixing bolt (303).

4. An anchoring connection structure for a high-strength rope according to claim 1, characterized in that: The connecting mechanism (4) includes a base (401), a fixed column (402), an upper limit plate (403), a lower connecting plate (404), and an anti-slip strip (405). The base (401) is fixed on the fixed base (1), the fixed column (402) is fixedly installed on the base (401), the upper limit plate (403) and the lower connecting plate (404) are respectively fixed on the circumferential surface of the fixed column (402), and the anti-slip strip (405) is disposed on the outer surface of the fixed column (402) and located between the upper limit plate (403) and the lower connecting plate (404).

5. An anchoring connection structure for a high-strength rope according to claim 4, characterized in that: The clamping guide mechanism (5) includes a rotating disk (502), a fixed rod (503), a connecting piece (504), an inclined plate (505), a guide post (506), a screw (507), a rotating block (508), and a clamping piece (509). A limiting hole (501) is provided at the right end of the surface of the base (401). The rotating disk (502) is rotatably connected to the inside of the limiting hole (501). The connecting piece (504) is fixed on the circumferential surfaces on both sides of the rotating disk (502).

6. An anchoring connection structure for a high-strength rope according to claim 5, characterized in that: The fixing rod (503) is fixedly installed inside the rotating disk (502). Two sets of inclined plates (505) are provided and fixedly installed on the two ends of the circumferential surface of the fixing rod (503). The guide post (506) is fixedly installed between the top ends of the two sets of inclined plates (505). The guide post (506) is provided with a rope hole for the rope to pass through. The screw (507) is threadedly connected to the inside of the inclined plate (505). The rotating block (508) is connected to one end of the screw (507). The clamping piece (509) is rotatably connected to the other end of the screw (507).