A hinge-type multi-degree-of-freedom damping type adjustable pitch wire clamp

By designing a hinged multi-degree-of-freedom damping type distance adjustment clamp, a rotary telescopic module and a locking anti-slip module, combined with a stable protection module and an automatic adjustment module, the problems of unstable distance adjustment and poor adaptability of the wire are solved, and the stable adjustment and locking of the distance between the wire clamps are achieved, and the stability and adaptability of the wire are improved.

CN118659283BActive Publication Date: 2025-06-10TORCH ELECTRICAL GRP
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Patent Information

Application Number
CN202410755445.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-12
Publication Date
2025-06-10
Estimated Expiration
2044-06-12

AI Technical Summary

Technical Problem

The existing distance adjustment wire clamps have poor stability after distance adjustment, which is difficult to adapt to the needs of different spatial locations and wire diameters, which can easily lead to wire wear and damage to wire clamps.

Method used

A hinged multi-degree-of-freedom damping type distance adjustment wire clamp is designed, using a rotary telescopic module and a locking anti-slip module to achieve stable adjustment and locking of the distance between the wire clamps. Combined with a stable protection module and an automatic adjustment module to ensure the stability and adaptability of the wire.

Benefits of technology

The stable adjustment and locking of the distance between wire clamps is achieved, the stability and adaptability after the distance adjustment is improved, and the risks of wire wear and wire clamp damage are reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of wire clamps, and specifically relates to a hinge-type multi-degree-of-freedom damping type distance-adjustable wire clamp, which includes a wire clamp body. A wire clamp cover plate is hinged to the left of the bottom end of the wire clamp body. The bottom end of the wire clamp body is fixedly connected with a damping cavity cover plate through screws. A distance-adjusting mechanism is arranged between two groups of wire clamp bodies, and an adaptation mechanism is arranged between the wire clamp body and the wire clamp cover plate. The distance-adjusting mechanism includes a rotary telescopic module and a locking and anti-slip module. The rotary telescopic module is used to adjust the distance between two groups of wire clamp bodies so that the wire clamp can adapt to various scenario requirements. The locking and anti-slip module cooperates with the rotary telescopic module to lock the distance between two groups of wire clamp bodies, ensuring the stability of the distance. By designing the rotary telescopic module, the present invention is beneficial to rotating the rotating wheel to make the threaded telescopic rod restricted by the clamping column and the clamping column groove expand and contract, avoiding the rotation of the threaded telescopic rod following the adjusting seat, and facilitating the stable adjustment of the distance between two groups of wire clamp bodies.
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Description

Technical Field

[0001] The present invention relates to the technical field of wire clamps, and in particular to a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp. Background Technique

[0002] The jumper wire is one of the important components of the overhead transmission line. Its function is to connect the conductors on both sides of the strain tower to achieve an electrical path. During line construction, due to the influence of the structural type of the strain tower, the stiffness of the conductor, and the relative position of the sub-conductors of the line, the shaping of the sub-conductors in the jumper wire is often not as neat as that of the conductors of the transmission line. Due to the existence of the sag, the upper drainage wire on the bundled conductor is prone to collide with the extension rod at the rear of the lower conductor during construction. As a result, in the lightest case, the conductor is damaged, and in the most serious case, the drainage wire is broken or the wire is broken. Therefore, a wire clamp is needed to support the drainage wire and the extension rod and maintain a certain distance, and at the same time, it is also necessary to meet the requirements of different spatial positions.

[0003] The distance-adjusting wire clamp is mainly used for adjusting the distance of the conductor strain string in the first-level and above galloping areas and strong wind sections. When the jumper wire has different angles, the distance and angle between the jumper wire and the extension rod are different. If the distance and angle between the distance-adjusting wire clamp and the wire grooves at both ends are not adjustable, there will be a pulling, protruding or angle twisting on the jumper wire, and there is a large stress. In this way, in the galloping area and strong wind area, the jumper wire is extremely prone to wear or the wire clamp is damaged.

[0004] In view of the above technical problems, Chinese Patent Application No.: 201911313836.6, a strain drainage wire support distance-adjusting wire clamp, through two wire clamps, a connecting rod and an extension rod, meets the spatial fixing and installation requirements of the drainage wire and the extension rod at a relatively long distance, and realizes the multi-degree-of-freedom adjustment between the wire clamps.

[0005] Although the strain drainage wire support distance-adjusting wire clamp can adjust the distance, it does not lock the direction and can rotate with each other, which is inconvenient to control the rotation and is prone to relative sliding, and the stability after distance adjustment is poor.

[0006] Therefore, a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp is proposed. Summary of the Invention

[0007] The purpose of the present invention is to provide a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp to solve the problems of unstable distance adjustment and poor adaptability to conductors proposed in the above background technology.

[0008] To achieve the above object, the present invention provides the following technical solution: A hinge-type multi-degree-of-freedom damping type distance-adjustable wire clamp, including a wire clamp body, a wire clamp cover is hinged to the left of the bottom end of the wire clamp body, the bottom end of the wire clamp body is fixedly connected with a damping cavity cover through a screw, a distance-adjusting mechanism is arranged between two wire clamp bodies, an adaptation mechanism is arranged between the wire clamp body and the wire clamp cover, the distance-adjusting mechanism includes a rotary telescopic module and a locking anti-slip module, the rotary telescopic module is used to adjust the distance between two wire clamp bodies so that the wire clamp can adapt to various scenarios, and the locking anti-slip module cooperates with the rotary telescopic module to lock the distance between two wire clamp bodies to ensure the stability of the distance;

[0009] The adaptation mechanism includes a stable protection module and an automatic adjustment module. The stable protection module is used to stably protect the wire to reduce wire wear, and the automatic adjustment module is used to cooperate with the stable protection module to automatically adjust the clamping space so that the wire clamp is suitable for clamping wires of different diameters.

[0010] Preferably, the rotary telescopic module includes a damping cavity opened between the wire clamp body and the damping cavity cover. A damping rubber pad is arranged inside the damping cavity. The damping rubber pad is sleeved outside the damping head. One side of the damping head is fixedly connected with one end of a connecting rod. The other end of the connecting rod is fixedly connected with a threaded telescopic rod. An adjusting seat is sleeved outside the threaded telescopic rod. Rotating wheels are rotatably connected to both ends of the adjusting seat. The rotating wheels are threadedly connected with the threaded telescopic rod.

[0011] Preferably, the damping cavity, the damping rubber pad and the damping head are arranged in a V-shaped rotating body. The inside of the damping cavity is adapted to the outside of the damping rubber pad, and the inside of the damping rubber pad is adapted to the outside of the damping head.

[0012] Preferably, a clamping post is fixedly connected to the inside of the adjusting seat. The clamping post is inserted into a clamping post groove opened on the threaded telescopic rod.

[0013] Preferably, a clamping handle is arranged in the middle of the adjusting seat. The clamping handle and the rotating wheels are both hexagonal. The clamping post and the clamping post groove are both polygonal. The clamping post and the clamping post groove are adapted to each other.

[0014] Preferably, the locking anti-slip module includes an annular groove opened on the outside of the adjusting seat. An annular plate is sleeved inside the annular groove. One end of the annular plate is fixedly connected with a clamping block. The clamping block is inserted into a clamping block groove opened on the rotating wheel. One side of the annular plate is attached to one side of a movable ring. The other side of the movable ring is fixedly connected with one end of a return spring. The other end of the return spring is fixedly connected to the inner wall of the annular groove. A pulling plate is fixedly connected to the outside of the annular plate.

[0015] Preferably, a sliding hole and a limiting groove are opened on the pulling plate. A sliding rail is slidably connected inside the sliding hole. The sliding rail is fixedly connected to the adjusting seat. The sliding hole and the limiting groove are both adapted to the sliding rail.

[0016] Preferably, the stable protection module includes a wire groove cavity opened at the bottom end of the wire clamp body and the upper end of the wire clamp cover plate. A clamping rubber pad is clamped inside the wire groove cavity. A positioning boss is fixedly connected to the outer side of the clamping rubber pad, and the positioning boss is clamped in a rubber positioning groove, and the rubber positioning groove is opened on the inner wall of the wire groove cavity.

[0017] Preferably, both the wire groove cavity and the clamping rubber pad are set as X-rotating bodies that are large at both ends and small in the middle, and the wire groove cavity and the clamping rubber pad are adapted to each other.

[0018] Preferably, the automatic adjustment module includes a hexagonal nut fixing cavity opened on the rubber positioning groove. A hexagonal nut is arranged inside the hexagonal nut fixing cavity. An installation U-shaped groove is opened on the wire clamp cover plate. A hexagonal bolt is clamped inside the installation U-shaped groove. The hexagonal bolt is threadedly connected to the hexagonal nut. A flat washer, a spring washer and an adjusting washer are sleeved on the outer side of the hexagonal bolt, and the spring washer is arranged between the flat washer and the adjusting washer.

[0019] Advantages of the present invention:

[0020] 1. By designing the rotation and telescoping module, the present invention rotates the runner to make the threaded telescopic rod restricted by the clamping post and the clamping post groove telescopic, avoiding the rotation of the threaded telescopic rod following the runner, facilitating the stable adjustment of the distance between the two wire clamp bodies, and through the mutual cooperation of the damping cavity, the damping rubber pad and the damping head, not only a good damping effect is generated, but also the wire clamp body can rotate 360 degrees around the damping head, achieving the purpose of multiple degrees of freedom.

[0021] 2. By designing the locking and anti-slip module in cooperation with the rotation and telescoping module, the present invention quickly fixes the runners at different angles to the adjustment seat, locks the telescopic threaded telescopic rod to the adjustment seat, facilitating the stable fixation of the distance between the two wire clamp bodies, and can stably collect the fixation of the runner, facilitating the flexible adjustment of the runner.

[0022] 3. By designing the stable protection module, the wire groove cavity and the clamping rubber pad are both X-rotating bodies that are large at both ends and small in the middle, which can prevent the wire groove cavity from sliding out of the clamping rubber pad, improving the operation safety factor, and through the positioning boss being clamped in the rubber positioning groove, the stability is further improved, reducing the wear of the wire.

[0023] 4. By designing the automatic adjustment module in cooperation with the stable protection module, when clamping wires with different diameters, the angle of the wire clamp cover plate is different. By rotating and adjusting, the hexagonal bolt can always be perpendicular to the hexagonal nut inside the hexagonal nut fixing cavity, which is firm and reliable, and through the restoring force of the spring washer, while adapting to the wire, it can also suppress the wire jumping, improving the safety of the line operation. Description of the drawings

[0024] To more clearly illustrate the technical solutions in the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only those of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0025] Figure 1 It is an overall three-dimensional schematic diagram of a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp according to an embodiment of the present invention;

[0026] Figure 2 It is a Figure 1 Cross-sectional schematic diagram at A-A in a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp according to an embodiment of the present invention;

[0027] Figure 3 It is a Figure 2 Enlarged schematic diagram at B in a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp according to an embodiment of the present invention;

[0028] Figure 4 It is a Figure 2 Enlarged schematic diagram at C in a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp according to an embodiment of the present invention;

[0029] Figure 5 It is an exploded schematic diagram of the distance-adjusting mechanism of a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp according to an embodiment of the present invention;

[0030] Figure 6 It is a Figure 5 Enlarged schematic diagram at D in a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp according to an embodiment of the present invention;

[0031] Figure 7 It is a Figure 5 Enlarged schematic diagram at E in a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp according to an embodiment of the present invention;

[0032] Figure 8 It is an exploded schematic diagram of the adaptation mechanism of a hinge-type multi-degree-of-freedom damping type distance-adjusting wire clamp according to an embodiment of the present invention.

[0033] The markings in the figure are: 1. clamp body; 2. clamp cover plate; 3. damping cavity cover plate; 4. damping cavity; 5. damping rubber pad; 6. damping head; 7. connecting rod; 8. threaded telescopic rod; 9. adjusting seat; 10. rotating wheel; 11. clamping post; 12. clamping post groove; 13. clamping handle; 14. annular groove; 15. annular plate; 16. clamping block; 17. clamping block groove; 18. movable ring; 19. return spring; 20. pulling plate; 21. sliding hole; 22. slide rail; 23. limiting groove; 24. wire groove cavity; 25. clamping rubber pad; 26. positioning boss; 27. rubber positioning groove; 28. hexagon nut fixing cavity; 29. hexagon nut; 30. installation U-shaped groove; 31. hexagon bolt; 32. flat washer; 33. spring washer; 34. adjusting washer. Detailed implementation manners

[0034] In order to make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the following further elaborates on the present invention in detail in combination with specific embodiments.

[0035] It should be noted that unless otherwise defined, the technical terms or scientific terms used in the present invention should have the ordinary meanings understood by those with ordinary skills in the field to which the present invention belongs. The "first", "second" and similar terms used in the present invention do not indicate any order, quantity or importance, but are only used to distinguish different components. The terms such as "including" or "comprising" mean that the elements or objects appearing before this word cover the elements or objects listed after this word and their equivalents, without excluding other elements or objects. The terms such as "connected" or "linked" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. The terms such as "upper", "lower", "left" and "right" are only used to represent relative position relationships. When the absolute position of the object being described changes, the relative position relationship may also change accordingly.

[0036] Please refer to Figures 1 to 8 , the present invention provides a technical solution: a hinge-type multi-degree-of-freedom damping type adjustable-distance wire clamp, including a clamp body 1. The left side of the bottom end of the clamp body 1 is hinged with a clamp cover plate 2. The bottom end of the clamp body 1 is fixedly connected with a damping cavity cover plate 3 by screws. An adjustable-distance mechanism is arranged between two clamp bodies 1, and an adaptation mechanism is arranged between the clamp body 1 and the clamp cover plate 2. The adjustable-distance mechanism includes a rotary telescopic module and a locking and anti-slip module. The rotary telescopic module is used to adjust the distance between two clamp bodies 1 so that the clamp can adapt to various scenario requirements. The locking and anti-slip module cooperates with the rotary telescopic module to lock the distance between two clamp bodies 1, ensuring the stability of the distance;

[0037] The adaptation mechanism includes a stable protection module and an automatic adjustment module. The stable protection module is used to stably protect the wire, reducing wire wear. The automatic adjustment module is used to cooperate with the stable protection module to automatically adjust the clamping space, so that the wire clamp is suitable for clamping wires of different diameters.

[0038] As an embodiment of the present invention, as Figure 3 and Figure 5 and Figure 6 shown, the rotary telescopic module includes a damping cavity 4 opened between the wire clamp body 1 and the damping cavity cover plate 3. A damping rubber pad 5 is arranged inside the damping cavity 4. The damping rubber pad 5 is sleeved outside the damping head 6. One side of the damping head 6 is fixedly connected to one end of a connecting rod 7. The other end of the connecting rod 7 is fixedly connected to a threaded telescopic rod 8. An adjusting seat 9 is sleeved outside the threaded telescopic rod 8. Rotating wheels 10 are rotatably connected to both ends of the adjusting seat 9. The rotating wheels 10 are threadedly connected to the threaded telescopic rod 8. The damping cavity 4, the damping rubber pad 5 and the damping head 6 are arranged in a V-shaped rotating body. The inside of the damping cavity 4 is adapted to the outside of the damping rubber pad 5, and the inside of the damping rubber pad 5 is adapted to the outside of the damping head 6. A clamping column 11 is fixedly connected to the inner side of the adjusting seat 9. The clamping column 11 is inserted into a clamping column groove 12 opened on the threaded telescopic rod 8. A clamping handle 13 is arranged in the middle of the adjusting seat 9. Both the clamping handle 13 and the rotating wheel 10 are hexagonal. Both the clamping column 11 and the clamping column groove 12 are polygonal. The clamping column 11 and the clamping column groove 12 are adapted to each other. When in use, due to the arrangement of the damping cavity 4, the damping rubber pad 5 and the damping head 6 in a V-shaped rotating body between the wire clamp body 1 and the damping cavity cover plate 3, good damping effects can be produced whether the damping head 6 is twisted or pulled. Then rotate the rotating wheel 10. Because the rotating wheel 10 is threadedly connected to the threaded telescopic rod 8 and the threaded telescopic rod 8 is restricted in the adjusting seat 9 through the clamping column 11 and the clamping column groove 12, the threaded telescopic rod 8 cannot rotate with the rotating wheel 10, so that the threaded telescopic rod 8 expands and contracts, thereby adjusting the distance between the two wire clamp bodies 1. Moreover, both the rotating wheel 10 and the clamping handle 13 in the middle of the adjusting seat 9 are set to be hexagonal, making it convenient to clamp and rotate the adjusting seat 9 and the rotating wheel 10, which is beneficial to rotating the rotating wheel 10 to make the threaded telescopic rod 8 restricted by the clamping column 11 and the clamping column groove 12 expand and contract, preventing the threaded telescopic rod 8 from rotating with the rotating wheel 10, facilitating the stable adjustment of the distance between the two wire clamp bodies 1. And through the mutual cooperation of the damping cavity 4, the damping rubber pad 5 and the damping head 6, not only good damping effects are produced, but also the wire clamp body 1 can rotate 360 degrees around the damping head 6, achieving the purpose of multiple degrees of freedom.

[0039] As an embodiment of the present invention, as Figure 5 and Figure 6 and Figure 7As shown in the figure, the locking and anti-slip module includes an annular groove 14 formed on the outer side of the adjusting seat 9. An annular plate 15 is sleeved inside the annular groove 14. One end of the annular plate 15 is fixedly connected with a clamping block 16. The clamping block 16 is inserted into a clamping block groove 17 formed on the runner 10. One side of the annular plate 15 is attached to one side of a movable ring 18. The other side of the movable ring 18 is fixedly connected with one end of a return spring 19. The other end of the return spring 19 is fixedly connected to the inner wall of the annular groove 14. A pull plate 20 is fixedly connected to the outer side of the annular plate 15. A sliding hole 21 and a limiting groove 23 are formed on the pull plate 20. A sliding rail 22 is slidably connected inside the sliding hole 21. The sliding rail 22 is fixedly connected to the adjusting seat 9. Both the sliding hole 21 and the limiting groove 23 are adapted to the sliding rail 22. By pulling the pull plate 20 on the outer side of the annular plate 15 in the annular groove 14, the clamping block 16 on one side of the annular plate 15 is disengaged from the clamping block groove 17 on the runner 10 and enters the annular groove 14. Then, after the sliding hole 21 on the pull plate 20 is disengaged from the sliding rail 22, the pull plate 20 is rotated so that the sliding rail 22 is clamped in the limiting groove 23, thereby locking the current state of the annular plate 15. Finally, the pull plate 20 is rotated so that the sliding rail 22 is disengaged from the limiting groove 23 and enters the sliding hole 21. Then, the restoring force of the return spring 19 drives the clamping block 16 through the annular plate 15 and the movable ring 18 to enter another set of clamping block grooves 17 on the runner 10, which is beneficial to quickly fixing the runner 10 at different angles to the adjusting seat 9, locking the only telescopic threaded telescopic rod 8 to the adjusting seat 9, facilitating the stable fixation of the distance between the two wire clamp bodies 1, and enabling the stable fixation of the runner 10, facilitating the flexible adjustment of the runner 10.

[0040] As an embodiment of the present invention, as Figure 2 and Figure 4 and Figure 8 shown, the stable protection module includes a wire groove cavity 24 formed at the bottom end of the wire clamp body 1 and the upper end of the wire clamp cover plate 2. A clamping rubber pad 25 is clamped inside the wire groove cavity 24. A positioning boss 26 is fixedly connected to the outer side of the clamping rubber pad 25. The positioning boss 26 is clamped in a rubber positioning groove 27. The rubber positioning groove 27 is formed on the inner wall of the wire groove cavity 24. Both the wire groove cavity 24 and the clamping rubber pad 25 are arranged as X-rotating bodies with large ends and a small middle. The wire groove cavity 24 and the clamping rubber pad 25 are adapted to each other. Align the positioning boss 26 on the clamping rubber pad 25 with the rubber positioning groove 27 in the wire groove cavity 24, so that the clamping rubber pad 25 is clamped on the wire groove cavity 24. Then, rotate the wire clamp cover plate 2 around the wire clamp body 1 so that the two clamping rubber pads 25 protect the wire. It is beneficial to prevent the wire groove cavity 24 from sliding out of the clamping rubber pad 25 by arranging both the wire groove cavity 24 and the clamping rubber pad 25 as X-rotating bodies with large ends and a small middle, improving the operation safety factor. And by clamping the positioning boss 26 in the rubber positioning groove 27, the stability is further improved, and the wear of the wire is reduced.

[0041] As an embodiment of the present invention, asFigure 2 and Figure 4 as well as Figure 8 As shown, the automatic adjustment module includes a hexagonal nut fixing cavity 28 formed in the rubber positioning groove 27. A hexagonal nut 29 is arranged in the hexagonal nut fixing cavity 28. An installation U-shaped groove 30 is formed in the wire clamp cover plate 2. A hexagonal bolt 31 is clamped in the installation U-shaped groove 30. The hexagonal bolt 31 is threadedly connected to the hexagonal nut 29. A flat washer 32, a spring washer 33 and an adjusting washer 34 are sleeved on the outer side of the hexagonal bolt 31. The spring washer 33 is arranged between the flat washer 32 and the adjusting washer 34. The flat washer 32, the spring washer 33 and the adjusting washer 34 are sleeved on the hexagonal bolt 31 in the installation order. Then, the hexagonal bolt 31 is inserted into the hexagonal nut fixing cavity 28 on the wire clamp body 1 from the installation U-shaped groove 30 on the wire clamp cover plate 2, so that the hexagonal bolt 31 is threadedly connected to the hexagonal nut 29 in the hexagonal nut fixing cavity 28. Finally, the wire clamp body 1 and the wire clamp cover plate 2 clamp wires with different diameters, so that the hexagonal bolt 31 slides in the installation U-shaped groove 30 and is adapted by the restoring force of the spring washer 33. It is beneficial that when clamping wires with different diameters, the angles of the wire clamp cover plate 2 are different. By rotating and adjusting, the hexagonal bolt 31 can always be perpendicular to the hexagonal nut 29 in the hexagonal nut fixing cavity 28, which is firm and reliable. And through the restoring force of the spring washer 33, while adapting to the wire, it can also suppress the wire jumping and improve the safety of the line operation.

[0042] Working principle: When in use, through the setting of the damping cavity 4, the damping rubber pad 5 and the damping head 6 V-shaped rotating body between the wire clamp body 1 and the damping cavity cover plate 3, good damping effects can be generated whether the damping head 6 is twisted or pulled. Then, rotate the runner 10. Since the runner 10 is threadedly connected to the threaded telescopic rod 8, and the threaded telescopic rod 8 is restricted in the adjusting seat 9 through the clamping post 11 and the clamping post groove 12, the threaded telescopic rod 8 cannot rotate with the runner 10, so that the threaded telescopic rod 8 expands and contracts, thereby adjusting the distance between the two groups of wire clamp bodies 1. And both the runner 10 and the clamping handle 13 in the middle of the adjusting seat 9 are set as hexagons, making it convenient to clamp and rotate the adjusting seat 9 and the runner 10;

[0043] Pull the pull plate 20 on the outer side of the ring plate 15 in the pull ring groove 14, so that the clamping block 16 on one side of the ring plate 15 disengages from the clamping block groove 17 on the runner 10 and enters the ring groove 14. Then, after the sliding hole 21 on the pull plate 20 disengages from the slide rail 22, rotate the pull plate 20 so that the slide rail 22 is clamped in the limit groove 23, thereby locking the current state of the ring plate 15. Finally, rotate the pull plate 20 so that the slide rail 22 disengages from the limit groove 23 and enters the sliding hole 21. Then, the restoring force of the return spring 19 drives the clamping block 16 to enter another group of clamping block grooves 17 on the runner 10 through the ring plate 15 and the movable ring 18;

[0044] Align the positioning boss 26 on the clamping rubber pad 25 with the rubber positioning groove 27 in the wire groove cavity 24, so that the clamping rubber pad 25 is clamped on the wire groove cavity 24. Then rotate the wire clamp cover plate 2 around the wire clamp body 1 to protect the wire with the two groups of clamping rubber pads 25;

[0045] Install the flat washer 32, spring washer 33 and adjusting washer 34 on the hexagon bolt 31 in sequence. Then insert the hexagon bolt 31 into the hexagon nut fixing cavity 28 on the wire clamp body 1 from the installation U-shaped groove 30 on the wire clamp cover plate 2, so that the hexagon bolt 31 is threadedly connected to the hexagon nut 29 in the hexagon nut fixing cavity 28. Finally, the wire clamp body 1 and the wire clamp cover plate 2 clamp wires with different diameters, enabling the hexagon bolt 31 to slide in the installation U-shaped groove 30 and being adapted by the restoring force of the spring washer 33.

[0046] Those of ordinary skill in the art should understand that the discussion of any of the above embodiments is merely exemplary and is not intended to imply that the scope of the present invention (including the claims) is limited to these examples; within the concept of the present invention, the technical features in the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other variations in different aspects of the present invention as described above, which are not provided in detail for the sake of brevity.

[0047] The present invention aims to cover all such substitutions, modifications and variations that fall within the broad scope of the appended claims. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. A hinged multi-degree-of-freedom damping type adjustable distance wire clamp, comprising a wire clamp body (1), a wire clamp cover plate (2) hingedly connected to the left side of the bottom end of the wire clamp body (1), a damping cavity cover plate (3) fixedly connected to the bottom end of the wire clamp body (1) by screws, a distance adjustment mechanism being arranged between two groups of the wire clamp bodies (1), and an adaption mechanism being arranged between the wire clamp body (1) and the wire clamp cover plate (2), characterized in that: The distance adjustment mechanism comprises a rotating telescopic module and a locking anti-skid module, the rotating telescopic module is used to adjust the distance between the two sets of wire clamp bodies (1) so that the wire clamps can adapt to the needs of various scenarios, and the locking anti-skid module cooperates with the rotating telescopic module to lock the distance between the two sets of wire clamp bodies (1) so that the stability of the distance is guaranteed; The locking anti-slip module comprises an annular groove (14) provided on the outside of the adjustment seat (9), an annular plate (15) is sleeved inside the annular groove (14), one end of the annular plate (15) is fixedly connected to a clamping block (16), the clamping block (16) is inserted into the clamping block groove (17), the clamping block groove (17) is provided on the rotating wheel (10), one side of the annular plate (15) is attached to one side of a movable ring (18), the other side of the movable ring (18) is fixedly connected to one end of a return spring (19), the other end of the return spring (19) is fixedly connected to the inner wall of the annular groove (14), and the outer side of the annular plate (15) is fixedly connected to a pull plate (20); The pull plate (20) is provided with a sliding hole (21) and a limiting groove (23), the inner side of the sliding hole (21) is slidably connected to a sliding rail (22), the sliding rail (22) is fixedly connected to the adjustment seat (9), and the sliding hole (21) and the limiting groove (23) are both adapted to the sliding rail (22); The adapting mechanism includes a stabilizing protection module and an automatic adjusting module. The stabilizing protection module is used to stably protect the wires and reduce wire wear. The automatic adjusting module is used to automatically adjust the clamping space in cooperation with the stabilizing protection module so that the wire clamp is suitable for clamping wires of different diameters.

2. A hinged multi-degree-of-freedom damping type adjustable distance wire clamp according to claim 1, characterized in that: The rotary telescopic module comprises a damping chamber (4) provided between a wire clamp body (1) and a damping chamber cover plate (3); a damping rubber pad (5) is arranged inside the damping chamber (4); the damping rubber pad (5) is sleeved on the outside of a damping head (6); one end of a connecting rod (7) is fixedly connected to one side of the damping head (6); the other end of the connecting rod (7) is fixedly connected to a threaded telescopic rod (8); an adjustment seat (9) is sleeved on the outside of the threaded telescopic rod (8); both ends of the adjustment seat (9) are rotatably connected to a rotating wheel (10); the rotating wheel (10) is threadedly connected to the threaded telescopic rod (8).

3. A hinged multi-degree-of-freedom damping type adjustable distance wire clamp according to claim 2, characterized in that: The damping chamber (4), the damping rubber pad (5) and the damping head (6) are arranged in a V-shaped rotating body; the interior of the damping chamber (4) is matched with the exterior of the damping rubber pad (5), and the interior of the damping rubber pad (5) is matched with the exterior of the damping head (6).

4. A hinged multi-degree-of-freedom damping type adjustable distance wire clamp according to claim 3, characterized in that: A clamping column (11) is fixedly connected to the inner side of the adjustment seat (9), and the clamping column (11) is inserted into a clamping column groove (12), and the clamping column groove (12) is provided on the threaded telescopic rod (8).

5. The hinged multi-degree-of-freedom damping type adjustable distance wire clamp according to claim 4, characterized in that: A clamping handle (13) is arranged in the middle of the adjustment seat (9); the clamping handle (13) and the rotating wheel (10) are both arranged in a hexagonal shape; the clamping column (11) and the clamping column groove (12) are both arranged in a polygonal shape; and the clamping column (11) and the clamping column groove (12) are adapted to each other.

6. The hinged multi-degree-of-freedom damping type adjustable distance wire clamp according to claim 1, characterized in that: The stabilizing protection module comprises a wire slot cavity (24) provided at the bottom end of the wire clamp body (1) and the top end of the wire clamp cover plate (2); a clamping rubber pad (25) is provided inside the wire slot cavity (24); a positioning boss (26) is fixedly connected to the outer side of the clamping rubber pad (25); the positioning boss (26) is provided in a rubber positioning groove (27); and the rubber positioning groove (27) is provided on the inner wall of the wire slot cavity (24).

7. A hinged multi-degree-of-freedom damping type adjustable distance wire clamp according to claim 6, characterized in that: The wire slot cavity (24) and the clamping rubber pad (25) are both configured as an X-shaped rotating body with large ends and a small middle. The wire slot cavity (24) and the clamping rubber pad (25) are adapted to each other.

8. The hinged multi-degree-of-freedom damping type adjustable distance wire clamp according to claim 6, characterized in that: The automatic adjustment module comprises a hexagonal nut fixing cavity (28) formed on the rubber positioning groove (27), a hexagonal nut (29) being arranged in the hexagonal nut fixing cavity (28), a mounting U-shaped groove (30) formed on the wire clamp cover plate (2), a hexagonal bolt (31) being clamped in the mounting U-shaped groove (30), the hexagonal bolt (31) being threadedly connected with the hexagonal nut (29), a flat washer (32), a spring washer (33) and an adjusting washer (34) being sleeved on the outer side of the hexagonal bolt (31), the spring washer (33) being arranged between the flat washer (32) and the adjusting washer (34).

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