Quick-locking wire clamp device

Through the design of the power and transmission components, the high-efficiency operation of the fast-locking clamp is achieved, solving the problem of complex operation of existing clamp devices, improving installation efficiency and safety, and adapting to various cable requirements.

CN223843458UActive Publication Date: 2026-01-27伟隆电气有限公司
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520366654.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-01-27
Estimated Expiration
2035-03-04

AI Technical Summary

Technical Problem

Existing quick-locking cable clamp devices are complex to operate during the clamping process, which is time-consuming and labor-intensive. They are particularly inefficient in scenarios where cables need to be replaced or installed quickly, and may cause safety issues.

Method used

The design incorporates power and transmission components, including a drive gear, driven gear, rack and pinion, and gear transmission system. The drive gear is driven by a rotary switch to achieve rapid locking of the cable clamp. Combined with multi-stage gear and lead screw transmission, high-precision cable fixing is achieved.

Benefits of technology

It simplifies the cable clamping process, saves operation time, improves installation efficiency, adapts to different cable diameters and types, ensures uniform cable fixation, avoids damage caused by excessive local stress, extends the life of the device, and improves operational safety and convenience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223843458U_ABST
    Figure CN223843458U_ABST
Patent Text Reader

Abstract

The utility model relates to a quick locking wire clamp device, which relates to the technical field of equipment wire clamps, and comprises a wire clamp main body, an upper fixing plate, a lower fixing plate, a power assembly and a transmission assembly, both the upper fixing plate and the lower fixing plate are arranged on the wire clamp main body, the transmission assembly is arranged on the upper fixing plate, and the power assembly comprises a driving gear which is arranged on the upper fixing plate; the first belt wheel is arranged on the upper fixing plate; the driven gear is arranged on the first belt wheel, the driven gear and the driving gear are in meshing transmission, and the driven gear and the first belt wheel are in coaxial transmission; the first gear is arranged on the upper fixing plate; the second gear is arranged on the upper fixing plate; one end of the first rack is arranged on the first belt wheel, and the other end of the first rack is arranged on the first gear; one end of the second rack is arranged on the first belt wheel, and the other end of the second rack is arranged on the second gear. According to the wire clamping device, through the power assembly and the transmission assembly, a user can conveniently save operation time in the wire clamping process.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of wire clamp technology, and in particular to a quick-locking wire clamp device. Background Technology

[0002] Quick-locking wire clamps are devices used in power lines and equipment to quickly and safely secure conductors. Locking is achieved with a single action, simplifying the multi-step operation required by traditional wire clamps. Once locked, they are in a self-locking state, ensuring the stability of the line installation. Quick-locking wire clamps are widely used in power systems, effectively improving construction efficiency and ensuring the safety and reliability of lines.

[0003] Currently, Chinese utility model patent application CN 222107039U, published on December 3, 2024, provides a wire clamp for preventing wire slippage. It includes a pad, two sets of clamping plates and two sets of docking plates fixedly mounted on the pad, a clamping plate mounted on top of the pad, and two sets of flipping plates and closing plates mounted on opposite sides of the clamping plate. A torsion spring is fixedly mounted on the top of the clamping plate and flips with the flipping plate via the torsion spring. The clamping plate and the pad are fixedly mounted by docking bolts. The flipping plate and the closing plate are connected by a raised limiting ring. The bottom of the raised limiting ring has a groove on the pad. This utility model uses docking bolts to connect the clamping plate and the pad on the other side. If the torsion spring loses its elasticity or the bolts loosen, the clamping plate and the pad are fixed by the other side, thereby increasing the service life of the wire clamp while ensuring its clamping effect.

[0004] The anti-detachment device wire clamp in related technologies is relatively complicated to use in the process of clamping the wire. This operation method is time-consuming and labor-intensive, especially in scenarios where cables need to be replaced or installed quickly, resulting in low efficiency. In power line installation, workers need to operate at heights, which may cause safety problems.

[0005] Therefore, it is necessary to provide a quick-locking wire clamp device to solve the above problems. Utility Model Content

[0006] This application provides a quick-locking wire clamp device to improve the technical problem that the wire clamping process in related technologies is relatively complicated, time-consuming and labor-intensive, and inefficient in scenarios where cables need to be quickly replaced or installed.

[0007] This application provides a quick-locking wire clamp device, including a wire clamp body, an upper fixing plate, a lower fixing plate, a power component, and a transmission component. The wire clamp body has a main wire groove. Both the upper and lower fixing plates are mounted on the wire clamp body. The transmission component is mounted on the upper fixing plate. The power component includes a drive gear mounted on the upper fixing plate; a first pulley mounted on the upper fixing plate; a driven gear mounted on the end of the first pulley away from the upper fixing plate, which meshes with the drive gear and is coaxial with the first pulley; a first gear mounted on the upper fixing plate; a second gear mounted on the upper fixing plate; a first rack, one end of which is mounted on the first pulley, and the other end of which is mounted on the first gear; and a second rack, one end of which is mounted on the first pulley, and the other end of which is mounted on the second gear.

[0008] The technical solution described above in this application embodiment has at least the following technical effects: the wire clamp body is fixed in the position to be installed, ensuring that the main wire groove is facing correctly, the cable to be fixed is placed in the main wire groove, and the driving gear is driven to rotate through meshing transmission. The driven gear drives the first pulley to rotate, the first pulley drives the first rack and the second rack to rotate, the first rack drives the first gear to rotate, and the second rack drives the second gear to rotate. Thus, the first gear and the second gear drive the transmission assembly to bring the distance between the upper fixing plate and the lower fixing plate closer, thereby facilitating the quick locking of the wire clamp body.

[0009] The wire clamp device provided in this application embodiment can facilitate users in the wire clamping process by using a power component and a transmission component, thereby reducing the number of steps in the wire clamping process, saving operation time, and speeding up the operation.

[0010] In some embodiments, the transmission assembly includes a third gear disposed on an upper fixed plate; a fourth gear disposed on the upper fixed plate; a third rack, one end of which is disposed on a first gear and meshes with the first gear for transmission, and the other end of which is disposed on a third gear and meshes with the third gear for transmission; and a fourth rack, one end of which is disposed on a third gear and meshes with the third gear for transmission, and the other end of which is disposed on a fourth gear and meshes with the fourth gear for transmission.

[0011] In some embodiments, the second gear and the first gear are each provided with a first lead screw, and a first slider is slidably disposed on the first lead screw; the third gear is provided with a second lead screw, and a second slider is slidably disposed on the second lead screw; the fourth gear is provided with a third lead screw, and a third slider is slidably disposed on the third lead screw.

[0012] In some embodiments, a gap is provided on the clamp body.

[0013] In some embodiments, the upper fixing plate is provided with a connecting cover, the connecting cover is provided with a hinge, the connecting cover is rotatably connected to the upper fixing plate through the hinge, and the connecting cover is provided with a handle.

[0014] In some embodiments, a connecting hole is provided on the connecting cover at the location corresponding to the drive gear, and a rotary switch is provided on the drive gear through the connecting hole.

[0015] In some embodiments, the clamp body is provided with a fixing groove. Attached Figure Description

[0016] Figure 1 A three-dimensional structural diagram of a quick-locking wire clamp device provided in this application embodiment. Figure 1 ;

[0017] Figure 2 A three-dimensional structural diagram of a quick-locking wire clamp device provided in this application embodiment. Figure 2 ;

[0018] Figure 3 A three-dimensional structural diagram of the power assembly and transmission assembly provided in the embodiments of this application;

[0019] Figure 4 A three-dimensional structural diagram of the wire clamp body provided in the embodiments of this application;

[0020] The following are the labeling elements in the figure:

[0021] 1. Wire clamp body; 11. Main wire groove; 12. Upper fixing plate; 13. Lower fixing plate; 2. Power assembly; 21. Driving gear; 22. Driven gear; 23. First rack; 24. Second rack; 25. First gear; 26. Second gear; 27. First pulley; 3. Transmission assembly; 30. First lead screw; 31. First slider; 32. Second lead screw; 33. Second slider; 34. Third lead screw; 35. Third slider; 36. Third rack; 37. Fourth rack; 38. Third gear; 39. Fourth gear; 4. Connecting cover; 41. Hinge; 5. Rotary switch; 6. Fixing groove; 7. Clearance; 8. Handle. Detailed Implementation

[0022] Based on this, in order to improve the technical problems of relatively complicated usage and time-consuming and labor-intensive operation in the clamping process of related technologies, which are inefficient in scenarios where cables need to be quickly replaced or installed, the embodiments of this application provide the following solutions.

[0023] Please refer to the following: Figures 1 to 4 This application provides a quick-locking wire clamp device, which includes a wire clamp body 1, an upper fixing plate 12, a lower fixing plate 13, a power component 2, and a transmission component 3. The wire clamp body 1 has a main wire groove 11. The upper fixing plate 12 and the lower fixing plate 13 are both disposed on the wire clamp body 1. The transmission component 3 is disposed on the upper fixing plate 12, and the power component 2 is disposed on the upper fixing plate 12.

[0024] In some embodiments, please refer to the following: Figures 1 to 4 The power assembly 2 includes a drive gear 21 mounted on the upper fixed plate 12; a first pulley 27 mounted on the upper fixed plate 12; a driven gear 22 mounted on the end of the first pulley 27 away from the upper fixed plate 12, the driven gear 22 meshing with the drive gear 21 and coaxially driving with the first pulley 27; a first gear 25 mounted on the upper fixed plate 12; a second gear 26 mounted on the upper fixed plate 12; and a first rack 23, one end of which is mounted on the first pulley 27. The other end of a rack 23 is mounted on a first gear 25; a second rack 24 is mounted on a first pulley 27 at one end and on a second gear 26 at the other end. A connecting cover 4 is mounted on the upper fixed plate 12, and a hinge 41 is mounted on the connecting cover 4. The connecting cover 4 is rotatably connected to the upper fixed plate 12 via the hinge 41. A handle 8 is mounted on the connecting cover 4. A connecting hole is opened on the connecting cover 4 at the position corresponding to the drive gear 21. A rotary switch 5 is mounted on the drive gear 21 through the connecting hole.

[0025] With this setup, the cable clamp body 1 is fixed in the desired installation position, ensuring the main cable tray 11 is facing correctly. The cable to be fixed is placed in the main cable tray 11. By rotating the switch 5, the driving gear 21 is driven. The driving gear 21 drives the driven gear 22 to rotate through meshing transmission. The driven gear 22 drives the first pulley 27 to rotate. The first pulley 27 drives the first rack 23 and the second rack 24 to rotate. The first rack 23 drives the first gear 25 to rotate, and the second rack 24 drives the second gear 26 to rotate. Thus, the first gear 25 and the second gear 26 drive the transmission assembly 3 to close the distance between the upper fixing plate 12 and the lower fixing plate 13, thereby facilitating quick locking of the cable clamp body 1. The connecting cover 4 is mainly used to protect the power assembly 2 and the transmission assembly 3, thereby better maintaining the transmission assembly 3 and preventing damage during use. The handle 8 facilitates maintenance when problems occur. At the same time, the rotating switch 5 passes through the connecting hole on the connecting cover 4 for easy operation. Thus, through the linkage of the power component 2 and the transmission component 3, the user only needs to operate the drive gear 21 by turning the switch 5 to adjust the distance between the upper fixed plate 12 and the lower fixed plate 13, thereby quickly locking the cable. This design greatly reduces the time and labor intensity of manual adjustment and improves installation efficiency. It is suitable for various cable diameters and types, and can quickly adapt to different installation needs, especially performing well in scenarios such as power and communication where frequent cable installation and adjustment are required. The connecting cover 4 can effectively protect the power component 2 and the transmission component 3, preventing dust, moisture or other impurities from entering, extending the service life of the components and reducing maintenance costs. The handle 8 allows users to quickly disassemble and install the cable clamp when maintenance or adjustment is needed, improving maintenance convenience.

[0026] In some embodiments, please refer to the following: Figures 1 to 4 The transmission assembly 3 includes a third gear 38 mounted on the upper fixed plate 12; a fourth gear 39 mounted on the upper fixed plate 12; a third rack 36, one end of which is mounted on the first gear 25 and meshes with the first gear 25 for transmission, and the other end of which is mounted on the third gear 38 and meshes with the third gear 38 for transmission; a fourth rack 37, one end of which is mounted on the third gear 38 and meshes with the third gear 38 for transmission, and the other end of which is mounted on the fourth gear 39 and meshes with the fourth gear 39 for transmission; a first lead screw 30 is mounted on both the second gear 26 and the first gear 25, and a first slider 31 is slidably mounted on the first lead screw 30; a second lead screw 32 is mounted on the third gear 38, and a second slider 33 is slidably mounted on the second lead screw 32; a third lead screw 34 is mounted on the fourth gear 39, and a third slider 35 is slidably mounted on the third lead screw 34; a gap 7 is provided on the wire clamp body 1; and a fixing groove 6 is provided on the wire clamp body 1.

[0027] With this configuration, the first gear 25 and the second gear 26 drive the third rack 36 to mesh and transmit power. The third rack 36 drives the third gear 38 to rotate. The rotation of the third gear 38 drives the fourth rack 37 to mesh and transmit power. The rotation of the fourth rack 37 drives the fourth gear 39 to rotate. The rotation of the first gear 25 and the second gear 26 drives the first lead screw 30 to rotate. The first lead screw 30 drives the first slider 31 to move upward. The rotation of the third gear 38 drives the second lead screw 32 to rotate. The second lead screw 32 drives the second slider 33 to move upward. The rotation of the fourth gear 39 drives the third lead screw 34 to rotate. The third lead screw 34 drives the third slider 35 to move upward. Thus, the first slider 31, the second slider 33, and the third slider 35 press against the upper fixing plate 12 and the lower fixing plate 13, thereby fixing the cable. The gap 7 on the cable clamp body facilitates better fixing of the cable. Thus, through the transmission of multi-stage gears, racks, and lead screws, the device can achieve high-precision adjustments. This design allows users to make precise fine adjustments according to the diameter and shape of the cable, ensuring that the cable is firmly and evenly fixed. By simultaneously pressing the upper fixing plate 12 and the lower fixing plate 13 with multiple sliders (first slider 31, second slider 33, and third slider 35), the clamping force on the cable is evenly distributed, avoiding damage or deformation of the cable due to excessive local force. The multi-stage transmission mechanism allows the device to adapt to cables of different diameters and types. Users can easily adjust the position of the sliders through simple operations to meet the fixing needs of various cables. The gap 7 on the clamping body line allows the cable to have a certain amount of movement during the fixing process, which facilitates better fitting of the cable into the groove and further improves the fixing effect. The transmission method of gears, racks, and lead screws has high reliability and stability, and can maintain good performance during long-term use, ensuring that the cable is always firmly fixed. By turning the switch 5 or a similar operating device, users can easily control the entire transmission system to achieve quick fixing and release of the cable. This centralized control design greatly simplifies the operation process and improves work efficiency.

[0028] The implementation principle of the quick-locking wire clamp device in this application embodiment is as follows: The wire clamp body 1 is fixed in the desired installation position, ensuring the main wire groove 11 is facing correctly. The cable to be fixed is placed in the main wire groove 11. The drive gear 21 is driven by rotating the switch 5. The drive gear 21 drives the driven gear 22 to rotate through meshing transmission. The driven gear 22 drives the first pulley 27 to rotate. The first pulley 27 drives the first rack 23 and the second rack 24 to rotate. The first rack 23 drives the first gear 25 to rotate. The second rack 24 drives the second gear 26 to rotate. The first gear 25 and the second gear 26 drive the third rack 36 to mesh through transmission. The third rack 36 drives the third gear 38 to rotate. The rotation of the third gear 38 drives the fourth rack 37 to mesh through transmission. The fourth rack 37 drives the fourth gear 39 to rotate. The first gear 25 and the second gear 26... The rotation drives the first lead screw 30 to rotate, which in turn drives the first slider 31 to move upward. The rotation of the third gear 38 drives the second lead screw 32 to rotate, which in turn drives the second slider 33 to move upward. The rotation of the fourth gear 39 drives the third lead screw 34 to rotate, which in turn drives the third slider 35 to move upward. Thus, the first slider 31, the second slider 33, and the third slider 35 press against the upper fixing plate 12 and the lower fixing plate 13, thereby fixing the cable. The gap 7 on the clamp body facilitates better fixing of the cable, and makes it easy to quickly lock the clamp body 1. The connecting cover 4 is mainly used to protect the power component 2 and the transmission component 3, thereby better maintaining the transmission component 3 and avoiding damage during use. The handle 8 makes it easy for the user to repair when problems occur. At the same time, the rotary switch 5 passes through the connecting hole on the connecting cover 4 for easy operation.

[0029] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A quick-locking wire clamp device, characterized in that: The device includes a wire clamp body (1), an upper fixing plate (12), a lower fixing plate (13), a power assembly (2), and a transmission assembly (3). The wire clamp body (1) has a main wire groove (11). The upper fixing plate (12) and the lower fixing plate (13) are both mounted on the wire clamp body (1). The transmission assembly (3) is mounted on the upper fixing plate (12). The power assembly (2) includes a drive gear (21) mounted on the upper fixing plate (12); a first pulley (27) mounted on the upper fixing plate (12); and a driven gear (22) mounted on the end of the first pulley (27) away from the upper fixing plate (12). The wheel (22) meshes with the driving gear (21) for transmission, and the driven gear (22) is coaxially driven with the first pulley (27); the first gear (25) is mounted on the upper fixed plate (12); the second gear (26) is mounted on the upper fixed plate (12); the first rack (23) has one end mounted on the first pulley (27) and the other end mounted on the first gear (25); the second rack (24) has one end mounted on the first pulley (27) and the other end mounted on the second gear (26).

2. The quick-locking wire clamp device according to claim 1, characterized in that: The transmission assembly (3) includes a third gear (38) mounted on the upper fixed plate (12); a fourth gear (39) mounted on the upper fixed plate (12); a third rack (36), one end of which is mounted on the first gear (25) and meshes with the first gear (25) for transmission, and the other end of which is mounted on the third gear (38) and meshes with the third gear (38) for transmission; and a fourth rack (37), one end of which is mounted on the third gear (38) and meshes with the third gear (38) for transmission, and the other end of which is mounted on the fourth gear (39) and meshes with the fourth gear (39) for transmission.

3. The quick-locking wire clamp device according to claim 2, characterized in that: The second gear (26) and the first gear (25) are each provided with a first lead screw (30), and a first slider (31) is slidably provided on the first lead screw (30). The third gear (38) is provided with a second lead screw (32), and a second slider (33) is slidably provided on the second lead screw (32). The fourth gear (39) is provided with a third lead screw (34), and a third slider (35) is slidably provided on the third lead screw (34).

4. The quick-locking wire clamp device according to claim 3, characterized in that: The clamp body (1) has a gap (7).

5. The quick-locking wire clamp device according to claim 4, characterized in that: The upper fixing plate (12) is provided with a connecting cover (4), the connecting cover (4) is provided with a hinge (41), the connecting cover (4) is rotatably connected to the upper fixing plate (12) through the hinge (41), and the connecting cover (4) is provided with a handle (8).

6. The quick-locking wire clamp device according to claim 5, characterized in that: The connecting cover (4) has a connecting hole at the corresponding position of the drive gear (21), and a rotary switch (5) is provided on the drive gear (21) through the connecting hole.

7. A quick-locking wire clamp device according to claim 6, characterized in that: The clamp body (1) is provided with a fixing groove (6).

Citation Information

Patent Citations

  • Anti-drop equipment wire clamp

    CN222107039U