A wire clamp and method of using the same

By designing an X-shaped crossover wiring clamp and transmission mechanism, uniform winding of cable connectors is achieved, solving the problems of cumbersome operation and uneven winding of existing wiring tools, and improving the strength of the connection and operational efficiency.

CN116169537BActive Publication Date: 2026-08-25WUHAN FILLER SMART IOT TECH CO LTD
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Patent Information

Application Number
CN202310111850.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-07
Publication Date
2026-08-25
Estimated Expiration
2043-02-07

AI Technical Summary

Technical Problem

Existing wiring tools are cumbersome and difficult to control when wrapping cable connectors, which can easily lead to uneven wrapping and affect the strength of the connection.

Method used

A wiring clamp was designed, including a first and second clamp handle arranged in an X-shape, equipped with a wire wheel, a winding seat and a transmission mechanism. The rotation of the wire wheel drives the winding seat to make the cable connector evenly wound, and the combination of the wire groove and the wire spring ensures tight winding.

Benefits of technology

It achieves uniform winding of cable connectors, improves connection strength, prevents insulation tape or rubber sleeve from falling off, and simplifies the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a wire clamp, which comprises a first clamp handle, a second clamp handle, a wire wheel, a wire winding seat and a transmission mechanism, the wire wheel is arranged on one side of the first clamp handle close to the second clamp handle, and the wire wheel is rotationally connected with the first clamp handle; the wire winding seat is internally provided with a main wire hole, the wire winding seat is rotationally connected with the first clamp handle around the center line of the main wire hole, a cable connector can be rotationally connected with the wire wheel through the main wire hole, and the wire winding seat is internally provided with a branch wire hole; and the transmission mechanism is used for driving the wire winding seat to rotate along with the rotation of the wire wheel. When the first cable connector drives the wire wheel to rotate, the wire winding seat can be driven to rotate, the second cable connector is uniformly wound on the first cable connector, and the connection firmness of the cable connector is ensured.
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Description

Technical Field

[0001] This invention relates to the field of wiring pliers technology, and more particularly to a wiring pliers and its method of use. Background Technology

[0002] Cables are widely used in the field of communication as a medium for transmitting communication signals. During the use of cables, they are often damaged by external interference, resulting in open circuits. In order to solve this open circuit fault, it is necessary to reconnect the damaged cables.

[0003] There are two methods for connecting broken cables. The first is the medium connection method, which involves using a connector to connect the cables. For example, a cable connector disclosed in invention patent CN108155510A connects two cable connectors, one in the first connector and the other in the second connector. By connecting the first connector and the second connector, the broken cable can be made conductive. This method has relatively good connection quality, but it is more cumbersome to operate, which not only reduces the efficiency of cable connection but also increases the cost. The second method is the direct connection method, which involves using a connector to connect the two cable ends. For example, a connector for electrical engineering disclosed in invention patent CN111564745A connects two cable cutters to peel off the outer sheath of the cable connector, and then uses the pliers to tie the two cable connectors together. This method is simple to operate and is the most common method.

[0004] In the second wiring method, in order to make the connection between the two cable connectors more secure, it is usually necessary to twist the two cable connectors together, that is, to use pliers to wrap one cable connector around the other cable connector. However, using pliers to perform this wrapping operation is not easy to control and is prone to uneven wrapping of the cable connectors. Summary of the Invention

[0005] In view of this, the present invention proposes a wire clamp and its method of use, which can evenly wrap one cable connector around another cable connector to ensure the connection of the cable connectors.

[0006] The technical solution of this invention is implemented as follows: On one hand, this invention provides a wiring clamp, including a first clamp handle and a second clamp handle.

[0007] The second clamp handle is arranged in an X-shape with the first clamp handle, and the second clamp handle is rotatably connected to the first clamp handle;

[0008] It also includes a guide wheel, a winding seat, and a transmission mechanism, among which,

[0009] The guide wheel is disposed on the side of the first clamp handle near the second clamp handle, and the guide wheel is rotatably connected to the first clamp handle;

[0010] The winding seat is disposed on the first clamp handle, and a main wire hole is provided in the winding seat. The winding seat is rotatably connected to the first clamp handle around the center line of the main wire hole. The cable connector can pass through the main wire hole and be rotatably connected to the wire wheel. A branch wire hole is also provided in the winding seat.

[0011] The transmission mechanism is used to make the winding seat rotate as the guide wheel rotates.

[0012] Based on the above technical solutions, preferably, the rotation axis direction of the guide wheel is perpendicular to the center line direction of the main wire hole and parallel to the rotation axis direction of the first clamp handle.

[0013] More preferably, the transmission mechanism includes a drive gear, a transmission gear, an internal gear ring, a transmission rod, a gear disc, and a driven gear, wherein,

[0014] The drive gear is fixedly mounted on the guide wheel, and the drive gear is coaxial with the guide wheel;

[0015] The transmission gear is mounted on the first clamp handle, the transmission gear is rotatably connected to the first clamp handle, and meshes with the drive gear;

[0016] The internal gear ring is fixedly mounted on the winding seat, and the internal gear ring is coaxially mounted with the main wire hole;

[0017] The transmission rod is mounted on the first clamp handle, and the transmission rod is rotatably connected to the first clamp handle;

[0018] The gear disk is fixedly mounted on the transmission rod, and the gear disk meshes with the transmission gear;

[0019] The driven gear is fixedly mounted on the transmission rod, and the driven gear meshes with the internal gear ring.

[0020] More preferably, the first clamp handle has a wire-passing groove on the side near the second clamp handle, and an installation groove is formed in the wire-passing groove, with the drive gear, the transmission gear and the gear plate located in the installation groove.

[0021] More preferably, a fixing groove is provided on the side of the second clamp handle near the first clamp handle, and a cable guide wheel is rotatably disposed in the fixing groove. The cable guide wheel is positioned corresponding to the cable guide wheel, and the cable guide wheel is a rod-shaped structure that is thin in the middle and thick at both ends.

[0022] Based on the above technical solutions, preferably, multiple branch holes are provided, and the multiple branch holes are arranged in a circumferential array around the center line of the main hole.

[0023] More preferably, a wire clamping spring is provided in the wire branch hole, one end of which is fixedly mounted on the winding seat, and the other end is used to hold the cable connector.

[0024] Based on the above technical solutions, preferably, a first wire-pressing groove is provided on the side of the first clamp handle near the second clamp handle.

[0025] More preferably, the second clamp handle has a second wire-pressing groove on the side near the first clamp handle, the position of the second wire-pressing groove corresponds to the position of the first wire-pressing groove, and the length of the second wire-pressing groove is less than the length of the first wire-pressing groove.

[0026] Secondly, the present invention provides a method for using the above-mentioned wiring clamp, comprising the following steps:

[0027] S1, take out the first cable connector and the second cable connector that need to be connected, and place the first cable connector and the second cable connector between the first clamp and the second clamp respectively, and use the squeezing of the first clamp and the second clamp to peel off the outer skin of the first cable connector and the second cable connector respectively.

[0028] S2, pass the first cable connector through the main cable hole and insert it between the cable guide wheel and the cable management wheel, and pass the second cable connector through the branch cable hole;

[0029] S3, grip the first clamp handle and the second clamp handle to squeeze the wire guide wheel and the cable management wheel against the first cable connector;

[0030] S4, pull the first cable connector and the second cable connector away from the guide wheel, so that the first cable connector drives the guide wheel to rotate, and the winding seat is rotated by the drive of the transmission mechanism, so that the second cable connector in the split hole is wound around the first cable connector.

[0031] S5, bend the part of the first cable connector that is not wrapped around the second cable connector;

[0032] S6, separate the first clamp handle and the second clamp handle, place the first cable connector and the second cable connector in the first crimping groove, and squeeze the first clamp handle and the second clamp handle again to make the part of the first cable connector that is not wrapped around the second cable connector fit with the second cable connector;

[0033] S7. Wrap the first cable connector and the second cable connector with insulating tape or a rubber tube.

[0034] The wiring clamp and its method of use of the present invention have the following advantages over the prior art:

[0035] (1) By setting up a wire wheel, a winding seat and a transmission mechanism, when the first cable connector drives the wire wheel to rotate, it can drive the winding seat to rotate, so that the second cable connector is evenly wound on the first cable connector, thereby ensuring the connection of the cable connector.

[0036] (2) By setting the first wire pressing groove and the second wire pressing groove, not only can the part of the first cable connector that is not wrapped around the second cable connector be pressed against the outside of the second cable connector, but the outer diameter of the ends of the first cable and the second cable after wrapping can also be relatively large to prevent the insulating tape or rubber tube from detaching.

[0037] (3) By setting up cable management wheels, the first cable connector can be guided to prevent it from deviating during movement;

[0038] (4) By setting a pressure spring, the second cable connector in the split hole can be supported by the spring, which can provide tension to the second cable, making the second cable connector tighter during the winding process, thus ensuring the winding effect of the second cable connector. Attached Figure Description

[0039] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0040] Figure 1 This is a perspective view of a wiring clamp according to the present invention;

[0041] Figure 2 This is a cross-sectional view of the transmission mechanism in a wiring clamp according to the present invention;

[0042] Figure 3 This is a perspective view of the transmission rod in a wiring clamp according to the present invention;

[0043] Figure 4 This is a perspective view of the internal gear ring in a wiring clamp according to the present invention;

[0044] Figure 5 This is a perspective view of the driven gear in a wiring clamp according to the present invention;

[0045] Figure 6This is a perspective view of the wire threading groove in a wiring clamp according to the present invention;

[0046] Figure 7 This is a perspective view of the winding seat in a wiring clamp according to the present invention;

[0047] Figure 8 This is a perspective view of the first wire clamping groove in a method of using a wiring clamp according to the present invention;

[0048] Figure 9 This is a perspective view of the second wire clamping groove in a method of using a wiring clamp according to the present invention;

[0049] Figure 10 This is a cross-sectional view of the cable management wheel in a wire clamp according to the present invention;

[0050] Figure 11 This is a schematic diagram showing the second cable connector wrapped around the first cable connector in a method of using a wiring clamp according to the present invention.

[0051] Figure 12 This is a schematic diagram showing the connection of the first cable connector and the second cable connector in a method of using a wiring clamp according to the present invention.

[0052] The components are as follows: 1. First clamp handle; 101. Threading groove; 102. Mounting groove; 103. First wire pressing groove; 2. Second clamp handle; 201. Second wire pressing groove; 202. Fixing groove; 21. Thread guide wheel; 3. Wire guide wheel; 4. Winding seat; 401. Main wire hole; 402. Thread splitting hole; 41. Wire pressing spring; 5. Transmission mechanism; 51. Drive gear; 52. Transmission gear; 53. Internal gear ring; 54. Transmission rod; 55. Gear disc; 56. Driven gear; 6. First cable connector; 7. Second cable connector. Detailed Implementation

[0053] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0054] like Figure 1-10 As shown, a wiring clamp of the present invention includes a first clamp handle 1, a second clamp handle 2, a wire wheel 3, a winding seat 4, and a transmission mechanism 5.

[0055] The second clamp handle 2 is arranged in an X-shape with the first clamp handle 1, and the second clamp handle 2 is rotatably connected to the first clamp handle 1; for example Figure 1As shown, the left end of the first clamp handle 1 and the second clamp handle 2 is the clamp head, which is used to perform wiring operations on the cable connector. The right end of the first clamp handle 1 and the second clamp handle 2 is the handle, which is used to control the clamp head. When the handles of the first clamp handle 1 and the second clamp handle 2 are moved relative to each other, the clamp heads of the first clamp handle 1 and the second clamp handle 2 can be moved relative to each other. When the handles of the first clamp handle 1 and the second clamp handle 2 are moved in opposite directions, the clamp heads of the first clamp handle 1 and the second clamp handle 2 can be moved in opposite directions.

[0056] The guide wheel 3 is used for frictional rotation with the cable connector. The guide wheel 3 is located on the side of the first clamp handle 1 near the second clamp handle 2, and the guide wheel 3 is rotatably connected to the first clamp handle 1; for example... Figure 1 and Figure 2 As shown, the wire wheel 3 is located at the jaw of the first clamp handle 1. When the cable connector moves to the middle of the wire wheel 3 and the second clamp handle 2, the jaw of the second clamp handle 2 is controlled to press and hold the cable connector, thereby pulling the cable connector and driving the wire wheel 3 to rotate.

[0057] The winding base 4 is used to rotate one cable connector, causing it to wind around another cable connector. The winding base 4 is mounted on the first clamp handle 1. A main wire hole 401 is provided inside the winding base 4. The winding base 4 is rotatably connected to the first clamp handle 1 around the center line of the main wire hole 401. The cable connector can pass through the main wire hole 401 and be rolled into the guide wheel 3. A branch wire hole 402 is also provided inside the winding base 4. Figure 2 As shown, one cable connector can pass through the main cable hole 401 and extend into the middle of the wire wheel 3 and the second clamp handle 2, while the other cable connector can pass through the branch cable hole 402. Since the winding seat 4 rotates around the center line of the main cable hole 401, the branch cable hole 402 can also rotate around the center line of the main cable hole 401. That is, the cable connector in the branch cable hole 402 rotates around the cable connector in the main cable hole 401, so that the cable connector in the branch cable hole 402 is evenly wound around the cable connector in the main cable hole 401.

[0058] As a preferred embodiment, multiple branch holes 402 can be provided, and the multiple branch holes 402 can be arranged in a circumferential array around the center line of the main hole 401. The multiple branch holes 402 can be set with different inner diameters to adapt to different types of cables, and multiple cables can be wound around at the same time to meet actual needs.

[0059] Furthermore, when the winding base 4 rotates, the cable connector in the branch hole 402 is relatively loose, which will cause the cable connector to not be tightly wound. Therefore, a pressure spring 41 can be provided in the branch hole 402. One end of the pressure spring 41 is fixed on the winding base 4, and the other end is used to hold the cable connector. When the winding base 4 rotates, the pressure spring 41 holds the cable connector, which can provide tension to the cable connector in the branch hole 402, making it tighter during the winding process and ensuring the winding effect of the cable connector.

[0060] The transmission mechanism 5 is used to make the winding seat 4 rotate with the rotation of the guide wheel 3. That is, when the cable connector in the main wire hole 401 drives the guide wheel 3 to rotate, the cable connector in the branch wire hole 402 can be wound around the cable connector in the main wire hole 401.

[0061] In a preferred embodiment, the rotation axis of the guide wheel 3 is perpendicular to the centerline of the main wire hole 401. Therefore, the direction of the cable inside the main wire hole 401 can be tangent to the rotation direction of the guide wheel 3, achieving the effect of the cable inside the main wire hole 401 driving the guide wheel 3 to rotate; the rotation axis of the guide wheel 3 is parallel to the rotation axis of the first clamp handle 1, such as... Figure 1 and Figure 2 As shown, the direction of the cable inside the main cable hole 401 is along the length direction of the first clamp handle 1, leaving enough distance for pulling the cable.

[0062] Furthermore, the transmission mechanism 5 includes a drive gear 51, a transmission gear 52, an internal gear ring 53, a transmission rod 54, a gear disc 55, and a driven gear 56. The drive gear 51 is fixedly mounted on the guide wheel 3 and is coaxially arranged with the guide wheel 3; the transmission gear 52 is mounted on the first clamp 1, rotatably connected to the first clamp 1, and meshes with the drive gear 51; the internal gear ring 53 is fixedly mounted on the winding seat 4 and is coaxially arranged with the main wire hole 401; the transmission rod 54 is mounted on the first clamp 1 and rotatably connected to the first clamp 1; the gear disc 55 is fixedly mounted on the transmission rod 54 and meshes with the transmission gear 52; the driven gear 56 is fixedly mounted on the transmission rod 54 and meshes with the internal gear ring 53; Figure 2-5As shown, when the guide wheel 3 rotates, it can drive the drive gear 51 to rotate coaxially. The meshing of the drive gear 51, transmission gear 52, and gear disc 55 drives the transmission rod 54 to rotate. Furthermore, the meshing of the driven gear 56 with the internal gear ring 53 drives the winding seat 4 to rotate, thus achieving the effect of the winding seat 4 rotating along with the guide wheel 3. In addition, the transmission gear 52 not only has a transmission function but can also control the speed ratio between the winding seat 4 and the guide wheel 3 by controlling its tooth ratio with the drive gear 51. Specifically, to prevent the drive gear 51, transmission gear 52, and gear disc 55 from obstructing the movement of the cable, a threading groove 101 can be opened on the side of the first clamp 1 near the second clamp 2. An installation groove 102 is opened inside the threading groove 101, allowing the drive gear 51, transmission gear 52, and gear disc 55 to be located inside the installation groove 102.

[0063] Furthermore, since the cable connector drives the wire guide wheel 3 to rotate, the second clamp handle 2 needs to squeeze the cable connector, which may cause the second clamp handle 2 to damage the cable connector. To solve this problem, a fixing groove 202 can be opened on the side of the second clamp handle 2 near the first clamp handle 1. A cable guide wheel 21 is rotatably installed in the fixing groove 202. The cable guide wheel 21 is positioned corresponding to the wire guide wheel 3 (that is, when the jaws of the first clamp handle 1 and the second clamp handle 2 are closed, the cable guide wheel 21 is in contact with the wire guide wheel 3), so that the sliding engagement between the cable connector and the second clamp handle 2 is converted into a rolling engagement between the cable connector and the cable guide wheel 21. In addition, the cable guide wheel 21 can be set as follows: Figure 10 The rod-shaped structure shown is thin in the middle and thick at both ends. During the movement of the cable connector, the cable guide wheel 21 can keep the cable connector in the middle position and prevent it from deviating during the movement.

[0064] Optionally, the rotation of the winding base 4 can achieve the effect of one cable connector being wrapped around another cable connector, such as... Figure 11 As shown, when the lengths of the two cable connectors after removing the outer sheath are the same, there will be a section at the top of the wrapped cable connector that is not wrapped. This section can be bent to achieve the desired effect. Figure 12 To achieve the desired effect, and in order to align the bent position with the wound cable connector, a first crimping groove 103 can be provided on the side of the first clamp handle 1 near the second clamp handle 2, as shown. Figure 8 As shown, two cable connectors are placed in the first crimping groove 103, and the two cable connectors are squeezed by the second clamp handle 2 to make them fit together more closely.

[0065] Furthermore, after the two cable connectors are wrapped together, they need to be secured with insulating tape or a rubber sleeve. To prevent the insulating tape or rubber sleeve from coming off, such as... Figure 12As shown, the outer diameter of the upper end of the two cable connectors after winding can be larger than the outer diameter of the lower end. Therefore, a second wire-pressing groove 201 can be provided on the side of the second clamp handle 2 near the first clamp handle 1. The position of the second wire-pressing groove 201 corresponds to the position of the first wire-pressing groove 103, and the length of the second wire-pressing groove 201 (this length refers to the direction in which the cable connector is placed) is less than the length of the first wire-pressing groove 103. Figure 9 As shown, when the second clamp handle 2 squeezes the two cable connectors, the cable connector at the position of the second clamping groove 201 will not be squeezed. Therefore, its outer diameter will be larger than the outer diameter of the squeezed cable connector, thereby preventing the wrapping of insulating tape or rubber tube from falling off.

[0066] A method of using a wiring clamp according to the present invention includes the following steps:

[0067] S1, take out the first cable connector 6 and the second cable connector 7 that need to be connected, and place the first cable connector 6 and the second cable connector 7 between the first clamp handle 1 and the second clamp handle 2 respectively, and use the squeezing of the first clamp handle 1 and the second clamp handle 2 to peel off the outer skin of the first cable connector 6 and the second cable connector 7 respectively.

[0068] S2, pass the first cable connector 6 through the main cable hole 401 and insert it between the cable guide wheel 3 and the cable management wheel 21, and pass the second cable connector 7 through the branch cable hole 402;

[0069] S3, grip the first clamp handle 1 and the second clamp handle 2, so that the wire wheel 3 and the cable management wheel 21 squeeze the first cable connector 6;

[0070] S4, pull the first cable connector 6 and the second cable connector 7 away from the guide wheel 3, causing the first cable connector 6 to drive the guide wheel 3 to rotate. The transmission mechanism 5 then drives the winding seat 4 to rotate, causing the second cable connector 7 inside the branch hole 402 to wind around the first cable connector 6, achieving the desired effect. Figure 11 The effect shown;

[0071] S5, bend the part of the first cable connector 6 that is not wrapped around the second cable connector 7;

[0072] S6, such as Figure 8 and Figure 9 As shown, separate the first clamp handle 1 and the second clamp handle 2, place the first cable connector 6 and the second cable connector 7 into the first crimping groove 103, and squeeze the first clamp handle 1 and the second clamp handle 2 again to make the part of the first cable connector 6 that is not wrapped around the second cable connector 7 fit against the second cable connector 7, thus achieving the desired result. Figure 12 The effect shown;

[0073] S7. Use insulating tape or rubber sleeve to wrap the first cable connector 6 and the second cable connector 7. Since the second clamping groove 201 on the second clamp handle 2 does not squeeze the first cable connector 6 and the second cable connector 7, the outer diameter of the first cable connector 6 and the second cable connector 7 at this position will be larger than the outer diameter at other positions, thereby preventing the insulating tape or rubber sleeve from falling off.

[0074] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A pair of wire clamps, comprising a first clamp handle (1) and a second clamp handle (2). The second clamp handle (2) is arranged in an X-shape with the first clamp handle (1), and the second clamp handle (2) is rotatably connected to the first clamp handle (1); Its features are: It also includes a guide wheel (3), a winding seat (4), and a transmission mechanism (5), wherein, The guide wheel (3) is located on the side of the first clamp handle (1) near the second clamp handle (2), and the guide wheel (3) is rotatably connected to the first clamp handle (1); The winding seat (4) is disposed on the first clamp handle (1). The winding seat (4) has a main wire hole (401) inside. The winding seat (4) is rotatably connected to the first clamp handle (1) around the center line of the main wire hole (401). The cable connector can pass through the main wire hole (401) and be rotatably connected to the guide wheel (3). The winding seat (4) also has a branch wire hole (402). The transmission mechanism (5) is used to make the winding seat (4) rotate as the guide wheel (3) rotates; The rotation axis direction of the guide wheel (3) is perpendicular to the center line direction of the main wire hole (401) and parallel to the rotation axis direction of the first clamp handle (1); The transmission mechanism (5) includes a drive gear (51), a transmission gear (52), an internal gear ring (53), a transmission rod (54), a gear disc (55), and a driven gear (56). The drive gear (51) is fixedly mounted on the guide wheel (3) and is coaxial with the guide wheel (3). The transmission gear (52) is mounted on the first clamp handle (1), rotatably connected to the first clamp handle (1), and meshes with the drive gear (51). The internal gear ring (53)... The gear ring (53) is fixedly mounted on the winding seat (4), and the internal gear ring (53) is coaxially mounted with the main wire hole (401); the transmission rod (54) is mounted on the first clamp handle (1), and the transmission rod (54) is rotatably connected to the first clamp handle (1); the gear disc (55) is fixedly mounted on the transmission rod (54), and the gear disc (55) meshes with the transmission gear (52); the driven gear (56) is fixedly mounted on the transmission rod (54), and the driven gear (56) meshes with the internal gear ring (53); The first clamp handle (1) has a wire-feeding groove (101) on the side near the second clamp handle (2), and a mounting groove (102) is provided in the wire-feeding groove (101). The drive gear (51), the transmission gear (52) and the gear plate (55) are all located in the mounting groove (102). The second clamp handle (2) has a fixing groove (202) on the side near the first clamp handle (1), and a cable management wheel (21) is rotatably arranged in the fixing groove (202). The cable management wheel (21) is positioned opposite to the cable guide wheel (3). The first cable connector (6) passes through the main cable hole (401) and is inserted between the wire guide wheel (3) and the cable management wheel (21), so that the wire guide wheel (3) and the cable management wheel (21) squeeze the first cable connector (6); the second cable connector (7) passes through the branch hole (402), and pulls the first cable connector (6) and the second cable connector (7) away from the wire guide wheel (3), so that the first cable connector (6) drives the wire guide wheel (3) to rotate, and uses the drive of the transmission mechanism (5) to make the winding seat (4) rotate, so that the second cable connector (7) in the branch hole (402) is wrapped around the first cable connector (6).

2. The wiring clamp as described in claim 1, characterized in that: The thread-feeding wheel (21) is a rod-shaped structure that is thin in the middle and thick at both ends.

3. The wiring clamp as described in claim 1, characterized in that: Multiple branch holes (402) are provided, and the multiple branch holes (402) are arranged in a circular array around the center line of the main hole (401).

4. A wiring clamp as described in claim 1 or 3, characterized in that: A wire pressing spring (41) is provided inside the wire splitting hole (402). One end of the wire pressing spring (41) is fixedly mounted on the winding seat (4), and the other end is used to hold the cable connector.

5. A wiring clamp as described in claim 1, characterized in that: The first clamp handle (1) has a first wire groove (103) on the side near the second clamp handle (2).

6. A wiring clamp as described in claim 5, characterized in that: The second clamp handle (2) has a second wire pressing groove (201) on the side near the first clamp handle (1). The position of the second wire pressing groove (201) corresponds to the position of the first wire pressing groove (103), and the length of the second wire pressing groove (201) is less than the length of the first wire pressing groove (103).

7. A method of using the wiring clamp as described in claim 6, characterized in that, The steps include the following: S1, take out the first cable connector (6) and the second cable connector (7) that need to be connected, and place the first cable connector (6) and the second cable connector (7) between the first clamp handle (1) and the second clamp handle (2) respectively, and use the squeezing of the first clamp handle (1) and the second clamp handle (2) to peel off the outer skin of the first cable connector (6) and the second cable connector (7) respectively. S2, pass the first cable connector (6) through the main cable hole (401) and insert it between the wire guide wheel (3) and the cable management wheel (21), and pass the second cable connector (7) through the branch cable hole (402). S3, grip the first clamp handle (1) and the second clamp handle (2) to squeeze the first cable connector (6) with the wire wheel (3) and the cable management wheel (21); S4, pull the first cable connector (6) and the second cable connector (7) away from the guide wheel (3) so that the first cable connector (6) drives the guide wheel (3) to rotate, and use the transmission mechanism (5) to drive the winding seat (4) to rotate so that the second cable connector (7) in the split hole (402) is wound around the first cable connector (6); S5, bend the part of the first cable connector (6) that is not wrapped around the second cable connector (7); S6, separate the first clamp handle (1) and the second clamp handle (2), place the first cable connector (6) and the second cable connector (7) in the first wire pressing groove (103), and squeeze the first clamp handle (1) and the second clamp handle (2) again so that the part of the first cable connector (6) that is not wrapped around the second cable connector (7) fits against the second cable connector (7); S7. Wrap the first cable connector (6) and the second cable connector (7) with insulating tape or rubber tube.

Citation Information

Patent Citations

  • Cable connector

    CN108155510A

  • Wiring clamp for electrical engineering

    CN111564745A

  • Wire stripping and winding integrated electrician pliers

    CN217453563U