Broken wire connection tool

By designing a combination of a sleeve, a clamping plate, a cone and a conductive component, the problems of existing broken wire connection tools in terms of reusability and connection reliability are solved, and stable electrical connection and reuse of broken wires are achieved.

CN120637992APending Publication Date: 2025-09-12GUIZHOU POWER GRID CO LTD
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Patent Information

Application Number
CN202510798111.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

Existing disconnection connection tools have deficiencies in reusability and connection reliability, resulting in resource waste and unstable electrical connections.

Method used

A broken wire splicing tool is designed, which includes a first and a second splicing mechanism. It uses a combination of a sleeve, a clamping plate, a cone and a conductive component to ensure the precise alignment and stable connection of the broken wire and the conductive component through an observation hole, thereby achieving reuse.

Benefits of technology

The stable electrical connection and reuse of broken wires are achieved, the efficiency and safety of the connection work are ensured, and the waste of resources is avoided.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of broken wire connection work, and discloses a broken wire connection tool which comprises a first connection mechanism, and the first connection mechanism comprises a first sleeve, a first clamping plate installed in the first sleeve, a first conical cylinder installed on the outer side of the first sleeve, and a conductive part installed in the first sleeve. The first connecting mechanism comprises a first sleeve, a connecting part mounted on the outer side of the first sleeve, and a second connecting mechanism; the second connecting mechanism comprises a second sleeve, a second clamping plate mounted in the second sleeve, and a second conical cylinder mounted on the outer side of the second sleeve; through the mutual cooperation of the first connection mechanism and the second connection mechanism, the connection work of the broken line can be easily completed, the stable electrical connection of the broken line can be accurately ensured in the connection process, in addition, when the disassembly is needed, the disassembly can be completed only by unscrewing the first conical cylinder body and the second conical cylinder body, and thus the repeated utilization of the connection work of the broken line is realized.
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Description

Technical Field

[0001] The invention relates to the field of broken wire connection work, in particular to a broken wire connection tool. Background Art

[0002] In the field of wire splicing, there are currently two main types of wire splicing tools. One method uses a splicing sleeve and hydraulic pliers. The operation process involves inserting the splicing sleeve onto the two ends of the broken wire, and then using the hydraulic pliers to compress the sleeve, thereby firmly connecting the sleeve to the two broken wires and achieving the purpose of splicing the broken wires. However, this method has obvious limitations. Once the splicing sleeve is pressed and shaped by the hydraulic pliers, it undergoes irreversible deformation, which makes it useless for reuse and results in a waste of resources.

[0003] Another common splicing tool is the plug-in splicing sleeve, which inserts the broken wire into the splicing sleeve and secures it with a clip inside. While this type of splicing tool offers the advantage of reusability, in practice, it's often difficult for workers to accurately determine whether the two broken wires inside the splicing sleeve are securely attached to the conductive block. This can easily lead to the two broken wires failing to fully adhere to the conductive block, preventing a reliable electrical connection. This poses a safety hazard to subsequent circuit operation and seriously impacts the quality and reliability of the splicing process.

[0004] In summary, existing broken wire splicing tools still have problems that need to be solved in terms of reusability and connection reliability. It is necessary to further develop new splicing tools that can overcome the above-mentioned defects to meet the requirements of efficient, stable and resource-saving wire splicing in practical applications. Summary of the Invention

[0005] Therefore, the technical problem to be solved by the present invention is that the existing disconnection connecting tools still have difficult-to-solve problems in terms of reusability and connection reliability.

[0006] The above technical problem is solved by the following technical solution: The present invention proposes a disconnection connection tool, which includes:

[0007] a first connecting mechanism, comprising a first sleeve, a first clamping plate installed inside the first sleeve, a first cone installed outside the first sleeve, a conductive component installed inside the first sleeve, and a connecting component installed outside the first sleeve;

[0008] a second connecting mechanism, the second connecting mechanism comprising a second sleeve, a second clamping plate installed inside the second sleeve, and a second cone installed outside the second sleeve;

[0009] When the first sleeve is connected to the first cone, the first cone squeezes the first clamping plate, causing the first clamping plate to clamp the first broken wire;

[0010] The first sleeve is connected to the second sleeve via the connecting component;

[0011] When the second sleeve is connected to the second cone, the second cone squeezes the second clamping plate, causing the second clamping plate to clamp the second broken wire;

[0012] The first broken wire and the second broken wire are electrically connected via the conductive component;

[0013] The connecting component includes a connecting threaded sleeve and an observation hole provided inside the connecting threaded sleeve. The observation hole can accurately ensure the electrical connection stability between the first broken wire and the second broken wire and the conductive component.

[0014] In a preferred embodiment of the wire splicing tool of the present invention: the first sleeve includes a first sleeve body, and a first threaded sleeve fixedly connected to one end of the first sleeve body;

[0015] The connecting threaded sleeve is fixedly connected to the other end of the first sleeve body.

[0016] In a preferred embodiment of the wire splicing tool of the present invention: the first clamping plate includes a first tough plate fixedly connected to the inside of the first sleeve body, and a first barb fixedly connected to the outside of the first tough plate;

[0017] The first tough plate is configured to be made of a tough material.

[0018] In a preferred embodiment of the wire splicing tool of the present invention: the first cone includes a first cone body and a first thread groove provided inside the first cone body;

[0019] The first cone body can be threadedly connected to the first threaded sleeve through the first thread groove. The inner surface of the first cone body is configured as a cone. By twisting the first cone body, the first barb can catch the first broken wire.

[0020] In a preferred embodiment of the wire splicing tool of the present invention: the conductive component includes a conductive seat fixedly connected to the interior of the first sleeve body, and a first conductive cylinder and a second conductive cylinder fixedly connected to both sides of the conductive seat;

[0021] The conductive seat, the first conductive tube and the second conductive tube are made of conductive material.

[0022] In a preferred embodiment of the wire splicing tool of the present invention, the second sleeve includes a second sleeve body, a connecting thread groove provided inside the second sleeve body, and a second threaded sleeve fixedly connected to the outside of the second sleeve body;

[0023] The second sleeve body can be threadedly connected to the connecting thread sleeve through the connecting thread groove.

[0024] In a preferred embodiment of the wire splicing tool of the present invention, the second clamping plate includes a second tough plate fixedly connected to the interior of the second sleeve body, and a second barb fixedly connected to the outer side of the second tough plate;

[0025] The second tough plate is configured to be made of a tough material.

[0026] In a preferred embodiment of the wire splicing tool of the present invention: the second cone includes a second cone body and a second thread groove provided inside the second cone body;

[0027] The second conical cylinder body can be threadedly connected to the second threaded sleeve through the second thread groove. The inner surface of the second conical cylinder body is set as a cone surface. By twisting the second conical cylinder body, the second barb can catch the second broken wire.

[0028] The beneficial effects of the present invention are that: through the mutual cooperation of the first connecting mechanism and the second connecting mechanism, the disconnected wire connection work can be easily completed, and during the connection process, the electrical connection stability of the disconnected wire can be accurately guaranteed. In addition, when disassembly is required, it is only necessary to loosen the first cone body and the second cone body to complete it, thereby realizing the reuse of the disconnected wire connection work. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings of the embodiments of the present invention. Obviously, the drawings described below only relate to some embodiments of the present invention and are not intended to limit the present invention. Among them:

[0030] Figure 1 Shows a schematic diagram of the overall structure of the present invention;

[0031] Figure 2 Shows a schematic cross-sectional view of the overall structure of the present invention;

[0032] Figure 3 shows a cross-sectional schematic diagram of a first connecting mechanism of the present invention;

[0033] Figure 4 shows a cross-sectional schematic diagram of a second connecting mechanism of the present invention;

[0034] Figure 5 Shown is an installation diagram of the present invention. DETAILED DESCRIPTION

[0035] In order to enable those skilled in the art to better understand the present invention, the present invention is further described in detail below with reference to specific embodiments and the accompanying drawings.

[0036] The terms used in the present invention are those commonly used in the art in view of the functions of the present invention, but these terms may vary according to the intentions of those skilled in the art, precedents, or new technologies in the art. In addition, specific terms may be selected by the applicant, and in such cases, their detailed meanings will be described in the detailed description of the present invention. Therefore, the terms used in the specification should not be understood as simple names, but rather as the meanings of the terms and the overall description of the present invention.

[0037] Reference Figures 1 to 5 This embodiment provides a disconnection connection tool, including:

[0038] The first connecting mechanism 1 includes a first sleeve 11, a first clamping plate 12 installed inside the first sleeve 11, a first cone 13 installed outside the first sleeve 11, a conductive component 14 installed inside the first sleeve 11, and a connecting component 15 installed outside the first sleeve 11;

[0039] The second connecting mechanism 2 includes a second sleeve 21, a second clamping plate 22 installed inside the second sleeve 21, and a second cone 23 installed outside the second sleeve 21;

[0040] When the first sleeve 11 is connected to the first cone 13, the first cone 13 will squeeze the first clamping plate 12, so that the first clamping plate 12 clamps the first broken wire A;

[0041] The first sleeve 11 is connected to the second sleeve 21 via a connecting member 15;

[0042] When the second sleeve 21 is connected to the second cone 23, the second cone 23 will squeeze the second clamping plate 22, so that the second clamping plate 22 clamps the second broken wire B;

[0043] The first broken wire A and the second broken wire B are electrically connected via the conductive component 14;

[0044] The connecting component 15 includes a connecting threaded sleeve 151 and an observation hole 152 opened inside the connecting threaded sleeve 151 . There are at least two observation holes 152 .

[0045] When in use, first insert the first broken wire A into the first sleeve 11 and the first cone 13, and make the first broken wire A contact with the conductive component 14, then connect the first sleeve 11 and the first cone 13, so that the first cone 13 presses the first clamping plate 12, so that the first clamping plate 12 presses and fixes the first broken wire A.

[0046] Insert the second broken wire B into the second sleeve 21 and the second cone 23, and partially connect the second sleeve 21 and the second cone 23, so that the second cone 23 slightly presses the second clamping plate 22, so that the second clamping plate 22 preliminarily fixes the second broken wire B. At this time, since the second clamping plate 22 does not completely press the second broken wire B, the angle of the second broken wire B can be slightly adjusted.

[0047] The first sleeve 11 is connected to the second sleeve 21 through the connecting component 15. During the connection process, the first sleeve 11 drives the second broken wire B to move synchronously through the second clamping plate 22. The staff can observe the alignment of the second broken wire B and the conductive component 14 through the observation hole 152 and adjust the angle of the second broken wire B at any time to ensure that when the first sleeve 11 and the second sleeve 21 are fully connected, the second broken wire B is in full contact with the conductive component 14.

[0048] After the first sleeve 11 is connected to the second sleeve 21 , the second sleeve 21 and the second cone 23 are completely connected, so that the second cone 23 completely presses the second clamping plate 22 , thereby making the second clamping plate 22 completely press and fix the second broken wire B.

[0049] Through the above operations, the disconnection reconnection work can be completed.

[0050] As an embodiment provided in this application, Figures 1 to 3 The first sleeve 11 includes a first sleeve body 111 and a first threaded sleeve 112 fixedly connected to one end of the first sleeve body 111;

[0051] The connecting threaded sleeve 151 is fixedly connected to the other end of the first sleeve body 111 .

[0052] The first clamping plate 12 includes a first flexible plate 121 fixedly connected to the inside of the first sleeve body 111 and a first barb 122 fixedly connected to the outside of the first flexible plate 121;

[0053] The first tough plate 121 is made of a tough material.

[0054] The first cone 13 includes a first cone body 131 and a first thread groove 132 provided inside the first cone body 131;

[0055] The first cone body 131 can be threadedly connected to the first threaded sleeve 112 through the first thread groove 132. The inner surface of the first cone body 131 is set as a conical surface, and the opening of the first cone body 131 is set as an arc surface to facilitate the insertion of the first broken wire A.

[0056] After the first broken wire A is inserted into the first cone body 131 and the first sleeve body 111 , the first broken wire A is adjusted so that the first broken wire A contacts the conductive component 14 .

[0057] The first cone body 131 is tightened so that the first cone body 131 is connected to the first sleeve body 111 through the cooperation between the first thread groove 132 and the first threaded sleeve 112 .

[0058] During the process of tightening the first conical cylinder body 131, the conical surface of the inner surface of the first conical cylinder body 131 will squeeze the first flexible plate 121, causing the first flexible plate 121 to bend, so that the first barb 122 on the outside of the first flexible plate 121 tightly grasps the first broken wire A to fix the first broken wire A.

[0059] As an embodiment provided in this application, Figures 1 to 3 The conductive component 14 includes a conductive base 141 fixedly connected to the inside of the first sleeve body 111, and a first conductive cylinder 142 and a second conductive cylinder 143 fixedly connected to both sides of the conductive base 141;

[0060] The conductive base 141 , the first conductive tube 142 and the second conductive tube 143 are made of conductive material.

[0061] As attached Figure 3 As shown, in the process of adjusting the first broken wire A to make the first broken wire A contact with the conductive component 14, the staff can Figure 3 In the figure, looking from the first conductive tube 142 toward the first tough plate 121 , that is, observing from the gap between the conductive component 14 and the first sleeve body 111 whether the first broken wire A is in contact with the first conductive tube 142 .

[0062] By using this method, the contact between the first broken wire A and the first conductive tube 142 can be observed with the naked eye to ensure stable contact and improve the stability of the electrical connection.

[0063] As an embodiment provided in this application, Figures 1 to 5 The second sleeve 21 includes a second sleeve body 211, a connecting thread groove 212 provided inside the second sleeve body 211, and a second threaded sleeve 213 fixedly connected to the outside of the second sleeve body 211;

[0064] The second sleeve body 211 can be threadedly connected to the connecting thread sleeve 151 through the connecting thread groove 212 .

[0065] The second clamping plate 22 includes a second tough plate 221 fixedly connected to the inside of the second sleeve body 211, and a second barb 222 fixedly connected to the outside of the second tough plate 221;

[0066] The second tough plate 221 is made of tough material.

[0067] The second cone 23 includes a second cone body 231 and a second thread groove 232 formed inside the second cone body 231;

[0068] The second conical cylinder body 231 can be threadedly connected to the second threaded sleeve 213 through the second thread groove 232 , and the inner surface of the second conical cylinder body 231 is configured as a conical surface.

[0069] When in use, insert the second broken wire B into the second sleeve body 211 and the second cone body 231, and screw the second cone body 231 so that the second cone body 231 gradually approaches the second sleeve body 211 through the cooperation of the second threaded sleeve 213 and the second threaded groove 232. Figure 4 In the position shown, the second hook 222 slightly presses the second broken line B, but does not completely press the second broken line B, so that the angle of the second broken line B on the left side of the second hook 222 can be slightly adjusted by adjusting the angle of the second broken line B on the right side of the second hook 222.

[0070] The second sleeve body 211 and the second cone body 231 are screwed synchronously, so that the second sleeve body 211 is threadedly connected to the first sleeve body 111 through the cooperation between the connecting thread groove 212 and the connecting thread sleeve 151 .

[0071] As attached Figure 5 As shown, during the process of the connecting thread groove 212 and the connecting thread sleeve 151 engaging with each other, the staff can observe the connection status of the second broken wire B and the second conductive tube 143 through the observation hole 152. If the shaking or other factors caused by twisting the second sleeve body 211 cause the center line of the second broken wire B to deviate from the center line of the second conductive tube 143, the staff can discover it in time through the observation hole 152 and adjust the angle of the second broken wire B in time to ensure that the second broken wire B can be inserted into the second conductive tube 143 after the second sleeve body 211 is fully connected to the first sleeve body 111.

[0072] After the second sleeve body 211 is completely connected to the first sleeve body 111, the second conical cylinder body 231 is screwed so that the second conical cylinder body 231 is completely in contact with the second sleeve body 211, so that the second conical cylinder body 231 is completely pressed against the second tough plate 221, so that the second barb 222 is completely grasped by the second broken wire B to completely fix the second broken wire B.

[0073] At this point, the disconnection reconnection work can be completed.

[0074] If disassembly is required, the first cone body 131 and the second cone body 231 are loosened so that the first barb 122 and the second barb 222 no longer catch the first broken wire A and the second broken wire B. The disassembly can be completed with simple operation.

[0075] In summary, through the mutual cooperation of the first connecting mechanism 1 and the second connecting mechanism 2, the broken line connection work can be easily completed, and during the connection process, the electrical connection stability of the broken line can be accurately guaranteed. In addition, when disassembly is required, it is only necessary to loosen the first cone body 131 and the second cone body 231 to complete it, thereby realizing the reuse of the broken line connection work.

[0076] Finally, it should be pointed out that the methods and devices described in detail above are merely embodiments, and those skilled in the art can modify these embodiments in different ways without departing from the scope of the present invention.

Claims

1. A wire-breaking splicing tool, characterized by: include, A first connecting mechanism (1), comprising a first sleeve (11), a first clamping plate (12) installed inside the first sleeve (11), a first cone (13) installed outside the first sleeve (11), a conductive component (14) installed inside the first sleeve (11), and a connecting component (15) installed outside the first sleeve (11); A second connecting mechanism (2), the second connecting mechanism (2) comprising a second sleeve (21), a second clamping plate (22) installed inside the second sleeve (21), and a second cone (23) installed outside the second sleeve (21); When the first sleeve (11) is connected to the first cone (13), the first cone (13) squeezes the first clamping plate (12), so that the first clamping plate (12) clamps the first broken wire (A); The first sleeve (11) is connected to the second sleeve (21) via the connecting component (15); When the second sleeve (21) is connected to the second cone (23), the second cone (23) squeezes the second clamping plate (22), so that the second clamping plate (22) clamps the second broken wire (B); The first broken wire (A) and the second broken wire (B) are electrically connected via the conductive component (14); The connecting component (15) comprises a connecting threaded sleeve (151) and an observation hole (152) provided inside the connecting threaded sleeve (151).

2. The wire splicing tool according to claim 1, characterized in that: The first sleeve (11) comprises a first sleeve body (111) and a first threaded sleeve (112) fixedly connected to one end of the first sleeve body (111); The connecting threaded sleeve (151) is fixedly connected to the other end of the first sleeve body (111).

3. The wire splicing tool according to claim 2, characterized in that: The first clamping plate (12) comprises a first tough plate (121) fixedly connected to the inside of the first sleeve body (111), and a first barb (122) fixedly connected to the outside of the first tough plate (121); The first tough plate (121) is configured as a tough material.

4. The wire splicing tool according to claim 3, characterized in that: The first cone (13) comprises a first cone body (131) and a first thread groove (132) provided inside the first cone body (131); The first conical cylinder body (131) can be threadedly connected to the first threaded sleeve (112) via the first thread groove (132), and the inner surface of the first conical cylinder body (131) is configured as a conical surface.

5. The wire splicing tool according to claim 4, characterized in that: The conductive component (14) comprises a conductive seat (141) fixedly connected to the inside of the first sleeve body (111), and a first conductive cylinder (142) and a second conductive cylinder (143) fixedly connected to both sides of the conductive seat (141); The conductive seat (141), the first conductive tube (142) and the second conductive tube (143) are made of conductive materials.

6. The wire splicing tool according to any one of claims 1 to 5, characterized in that: The second sleeve (21) comprises a second sleeve body (211), a connecting thread groove (212) provided inside the second sleeve body (211), and a second threaded sleeve (213) fixedly connected to the outside of the second sleeve body (211); The second sleeve body (211) can be threadedly connected to the connecting threaded sleeve (151) via the connecting threaded groove (212).

7. The wire splicing tool according to claim 6, characterized in that: The second clamping plate (22) includes a second tough plate (221) fixedly connected to the inside of the second sleeve body (211), and a second barb (222) fixedly connected to the outside of the second tough plate (221); The second tough plate (221) is configured as a tough material.

8. The wire splicing tool according to claim 7, characterized in that: The second cone (23) includes a second cone body (231) and a second thread groove (232) provided inside the second cone body (231); The second conical cylinder body (231) can be threadedly connected to the second threaded sleeve (213) through the second thread groove (232), and the inner surface of the second conical cylinder body (231) is configured as a conical surface.