Positioning chuck of fishing line set maker and maker comprising positioning chuck
By improving the positioning clamp structure of the fishing line rig maker, and using a sliding plate and slide rail to form an adjustable longitudinal groove, the problem of burrs at the end of the wire was solved, resulting in a shorter burr length and improved line rig quality and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 王吉周
- Filing Date
- 2025-07-02
- Publication Date
- 2026-05-26
AI Technical Summary
Existing fishing line rig making tools produce lines with long, burr-like metal wires at the end, which are difficult to cut or smooth and can easily injure consumers.
A new positioning chuck for fishing line assemblies is designed, including a positioning chuck base, a first sliding plate, and a second sliding plate. These components work together via a slide rail to form an adjustable longitudinal groove, ensuring that the end of the wire fits snugly against the groove wall and reducing burr length.
It effectively reduces the length of burrs at the ends of the wire, improving the quality and safety of the fishing line setup.
Smart Images

Figure CN224273080U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fishing tackle manufacturing, specifically an improved fishing line rig maker that can be used to make fishing components for various purposes. Background Technology
[0002] The fishing line rig maker is used to create personalized fishing line rigs. Users can bend, loop, and coil the wire by rotating the spindle around the shaft and using the hook action of the clamp, thereby creating various fishing line rigs.
[0003] Chinese utility model patent CN 2023231641143 discloses a fishing line assembly maker. The maker includes a base and a fixed panel disposed at the rear end of the base. A fixed bearing is installed on the fixed panel, and a main shaft passes through the fixed bearing and is mounted on the fixed bearing. The rear end of the main shaft is fixedly connected to a rocker arm, and a replaceable handle-shaped replacement part is installed at the front end of the main shaft. The front end of the main shaft and the end of the handle-shaped replacement part are fixed together by a connector. The front end of the connector has an extension, and the front part of the extension is configured as a bent head. A support member is vertically disposed at the front end of the base. The top of the support member is a positioning chuck, which is located on the extension line of the main shaft. The top surface of the positioning chuck has a transverse groove, and the positioning chuck has a longitudinal groove in the direction facing the handle-shaped replacement part.
[0004] However, in actual use, it was found that the fishing line rigs made using the aforementioned rig maker have a long, burr-like tail, such as... Figure 6A As shown, their length is usually only 1-2mm, making them difficult to cut or smooth with tools, and they can easily injure consumers when picked up.
[0005] Therefore, it is hoped that by improving the structure of the fishing line rig maker, the quality of the line rig can be improved, and the burrs on the metal wire at the end of the line rig can be avoided. Utility Model Content
[0006] The purpose of this invention is to provide a new positioning clamp for a fishing line rig maker, thereby improving the structure of the fishing line rig maker and enabling the production of fishing line rigs with shorter burrs on the tail wire.
[0007] Based on this, the present invention provides a positioning clamp for a fishing line assembly maker. The positioning clamp is disposed on the top of a support member. The positioning clamp is characterized in that it includes a positioning clamp seat 401, a first sliding piece 402 and a second sliding piece 403. A slide rail 411 that cooperates with the first sliding piece 402 and the second sliding piece 403 is provided in the middle of the clamp seat 401 in the horizontal direction. A second extension 404 is provided in the upper part of the positioning clamp seat 401. The second extension 404 forms a transverse groove 443, a longitudinal groove platform 405 and a longitudinal groove left vertical wall 406 and a longitudinal groove outer end left vertical wall 409 that are perpendicular to the longitudinal groove platform 405.
[0008] The first sliding piece 402 forms a vertical longitudinal groove right wall 407. When the first sliding piece 402 slides along the slide rail 411 to the working position, the longitudinal groove left wall 406, the longitudinal groove platform 405 and the longitudinal groove right wall 407 together form a longitudinal groove 442.
[0009] The second sliding piece 403 forms a right vertical wall 408 at the outer end of the vertical longitudinal groove. When the second sliding piece 403 slides along the slide rail 411 to the working position, the left vertical wall 409 at the outer end of the vertical groove, the platform 405 of the vertical groove, and the right vertical wall 408 at the outer end of the vertical groove together form the outer end 444 of the vertical groove. The width of the outer end 444 of the vertical groove is greater than the width of the vertical groove 442.
[0010] In this invention, the positioning chuck 401 can be an integral structure, for example, obtained by casting or machine tool cutting, or obtained by segmented construction and fixed connection.
[0011] In a preferred embodiment, the positioning chuck further includes fastening screws 410 for clamping the first sliding plate 402 and / or the second sliding plate 403.
[0012] In this invention, the horizontal height of the top 444 of the transverse groove 443 is higher than the horizontal height of the longitudinal groove platform 405.
[0013] In order to provide users with more operating space, a preferred embodiment is to construct an inclined transition connection between the upper surface of the positioning chuck (401) and the front facade, and between the upper surface and the rear interior.
[0014] Optionally, the positioning chuck is made of a hard material, such as stainless steel or carbon steel. Those skilled in the art may also choose other materials with strength to manufacture the positioning chuck.
[0015] This invention further provides a fishing line assembly maker containing the aforementioned positioning clamp.
[0016] In a preferred embodiment, the fabricator includes a base 9 and a fixed panel 5 disposed at the rear end of the base. A fixed bearing 8 is mounted on the fixed panel 5. A main shaft 1 passes through the fixed bearing 8 and is mounted on the fixed bearing 8. The rear end of the main shaft 1 is fixedly connected to a rocker arm 6. A replaceable handle-shaped replacement part 3 is mounted on the front end of the main shaft 1. The front end of the main shaft 1 and the end of the handle-shaped replacement part 3 are fixed together by a connector 2. The front end of the connector 2 has a first extension 21, and the front part of the first extension 21 is configured as a bent head 22.
[0017] A support member 41 is vertically installed at the front end of the base 9. The top of the support member 41 is a positioning chuck 4, which is located on the extension line of the spindle 1.
[0018] In this invention, for ease of description and not limitation, the direction toward the rocker arm is referred to as "rear" and the direction toward the positioning chuck is referred to as "front".
[0019] Similar to existing technologies, in this invention, the shank-shaped replacement is selected from a curved hook 3A, a straight shank 3B, and a straight shank 3C with a front end groove. Those skilled in the art can also use replacements with other structures to create different fishing line assemblies.
[0020] In a preferred embodiment, a handle 7 for easy gripping is mounted on the rear of the rocker arm 6. When the handle 7 is rotated around the main shaft 1, the main shaft 1 rotates accordingly.
[0021] In terms of connection, the front end of the spindle 1 has a shank replacement slot 11 that matches the end of the shank replacement 3, and the end of the shank replacement 3 can be inserted into the shank replacement slot 11. The front end of the spindle 1 also has a spindle bolt hole 12.
[0022] The connector 2 is axially hollow, and the inner diameter of the connector 2 matches the outer diameter of the front end of the spindle 1. The connector 2 has a connector bolt hole 23.
[0023] Insert the rear end of the shank-shaped replacement part 3 into the shank-shaped replacement part slot 11 of the spindle, fit the connector 2 onto the front end of the spindle 1, and pass the connector bolt 18 through the connector bolt hole 23 and the spindle bolt hole 12 to fix the spindle 1, connector 2 and shank-shaped replacement part 3 together.
[0024] According to a preferred embodiment, the support member 41 is fixed to the base 9 by support member bolts 13.
[0025] Optionally, a groove 10 is provided in the middle of the base 9 to facilitate the placement of small items.
[0026] Alternatively, a drawer can be installed inside the base 9.
[0027] This utility model's fishing line assemblies are simple in structure and easy to use. The headstock 401, the first sliding plate 402, and the second sliding plate 403 are engaged via a slide rail, allowing the width of the longitudinal groove 442 to be adjustable to accommodate metal lines of different thicknesses. Furthermore, because the width of the outer end 444 of the longitudinal groove is greater than the width of the longitudinal groove 442, the bent end of the metal wire can be closer to the vertical portion when twisting the wire, thus effectively reducing the length of burrs at the wire end. Attached Figure Description
[0028] Figure 1 A schematic diagram of a fishing line rig maker;
[0029] Figure 2-4 This is a schematic diagram of the positioning chuck.
[0030] Figure 5 Diagram showing the fit between the positioning chuck, the shank-shaped replacement part, and the metal wire;
[0031] Figure 6A The end of the metal wire is from existing technology;
[0032] Figure 6B This is the end of the metal wire in this utility model;
[0033] Figure 7 This is a schematic diagram of a partial structure at the front end of the spindle;
[0034] Figure 8 This is a schematic diagram of the process of constructing the bent metal wire in Example 1;
[0035] In the diagram: 1. Spindle; 11. Slot; 12. Spindle bolt hole;
[0036] 2. Connector; 21. First extension; 22. Bending head; 23. Bolt hole;
[0037] 3. Handle-shaped replacement part; 3A. Hook; 3B. Straight handle; 3C. Straight handle with front end groove;
[0038] 4. Positioning chuck; 41. Support component; 401. Positioning chuck seat; 402. First sliding plate; 403. Second sliding plate; 404. Second extension; 405. Longitudinal groove platform; 406. Left vertical wall of longitudinal groove; 407. Right vertical wall of longitudinal groove; 408. Right vertical wall of outer end of longitudinal groove; 409. Left vertical wall of outer end of longitudinal groove; 410. Fastening screw; 411. Slide rail; 442. Longitudinal groove; 443. Transverse groove; 444. Top;
[0039] 5. Fixed panel; 6. Rocker arm; 7. Crank handle; 8. Fixed bearing; 9. Base; 10. Groove; 13. Support bolt; 14. Bending; 15. Ring; 18. Connecting bolt. Detailed Implementation
[0040] The following embodiments are used to explain the technical solution of this utility model in a non-limiting manner.
[0041] Example 1: Making a bent metal wire
[0042] like Figure 1 The fishing line assemblies shown have a base 9 with a columnar support 41 and a fixed panel 5 at the front end. A fixed bearing 8 is fixedly mounted on the fixed panel 5, and the main shaft 1 mates with the fixed bearing 8, passing through the fixed bearing 8 to be mounted on it. A rocker arm 6 is mounted at the rear end of the main shaft 1, and a rocker arm 7 is provided at the end of the rocker arm 6. When the rocker arm 7 is rotated around the main shaft 1, the main shaft 1 can be driven to rotate.
[0043] The front end of the spindle 1 is provided with a shank-shaped replacement slot 11 and a spindle bolt hole 12.
[0044] The handle-shaped replacement part is a replaceable component, and there are three types: hook 3A, straight handle 3B, and straight handle 3C with a front end groove. In this embodiment, hook 3A is used as an example for manufacturing such a component. Figure 8 The wire assembly is shown. Insert the rear end of the hook 3A into the shank-shaped replacement slot 11 of the spindle.
[0045] Insert the hook 3A and the main shaft 1 together into the connector 2, and tighten the connector bolt 18 to fix the main shaft 1, connector 2 and hook 3A together. That is, when the crank handle 7 is turned, the hook 3A is driven to rotate around the axis.
[0046] The connector 2 has a protruding first extension 21 at its front end, and a bent head 22 is formed at the front of the first extension 21 for hooking the wire.
[0047] The top of the support member 41 is the positioning chuck 4. The positioning chuck includes a positioning chuck base 401, a first sliding piece 402 and a second sliding piece 403. The chuck base 401 is provided with a first slide rail and a second slide rail in the horizontal direction in the middle. The first slide rail can cooperate with the first sliding piece 402 and the second slide rail can cooperate with the second sliding piece 403.
[0048] The middle part of the positioning chuck 401 is constructed with a slide rail 411 in the horizontal direction, and the upper part is constructed with a second extension 404. The second extension 404 is constructed with a transverse groove 443, a longitudinal groove platform 405, and a longitudinal groove left vertical wall 406 and a longitudinal groove outer end left vertical wall 409 perpendicular to the longitudinal groove platform 405.
[0049] The lower portions of the first sliding piece 402 and the second sliding piece 403 are respectively configured to match the shape of the slide rail 411.
[0050] The first sliding piece 402 forms a vertical longitudinal groove right wall 407. When the first sliding piece 402 slides along the slide rail to the working position, the longitudinal groove left wall 406, the longitudinal groove platform 405 and the longitudinal groove right wall 407 together form a longitudinal groove 442.
[0051] The second sliding piece 403 forms a right vertical wall 408 at the outer end of the vertical longitudinal groove. When the second sliding piece 403 slides along the slide rail to the working position, the left vertical wall 409 at the outer end of the longitudinal groove, the longitudinal groove platform 405, and the right vertical wall 408 at the outer end of the longitudinal groove together form the outer end 444 of the longitudinal groove. The width of the outer end 444 of the longitudinal groove is greater than the width of the longitudinal groove 442.
[0052] The support member 41 is fixed to the base 9 using support bolts 13.
[0053] When making the wire assembly, the middle section of the metal wire (such as stainless steel wire) is passed between the hook 3A and the first extension 21, so that the front end of the metal wire is locked at the bending head 22 to prevent slippage. Turn the crank handle 7, and as the main shaft rotates, the bending head 22 rotates around the main shaft, causing the metal wire to bend and deform, thus creating the bend 14.
[0054] Then, as Figure 5 As shown, the middle section of the bent metal wire is placed on the transverse groove 443, the bend 14 faces the main shaft and is hung on the hook 3A. The first sliding piece (402) and the second sliding piece (403) are moved to form a longitudinal groove 442 of appropriate width. The end of the metal wire is placed in the lower part of the longitudinal groove 442 to prevent slippage. Turn the crank handle 7. As the main shaft rotates, the hook 3A rotates accordingly, and the metal deforms. At this time, the loop of the wire assembly is placed inside the outer end (444) of the longitudinal groove. Since the width of the outer end (444) of the longitudinal groove is greater than the width of the longitudinal groove (442) and both of them are adjustable in width, it can be ensured that a single metal wire or a metal wire that has been looped is tightly attached to the left and right vertical walls of the groove, thereby reducing the length of the burr at the end of the metal wire.
Claims
1. A fishing line assembly maker positioning collet, said positioning collet being disposed at the top of a support member, characterized in that The positioning chuck includes a positioning chuck seat (401), a first sliding piece (402), and a second sliding piece (403). A slide rail (411) that cooperates with the first sliding piece (402) and the second sliding piece (403) is provided in the middle of the chuck seat (401) in the horizontal direction. A second extension (404) is provided on the upper part of the positioning chuck seat (401). The second extension (404) forms a transverse groove (443), a longitudinal groove platform (405), and a longitudinal groove left wall (406) and a longitudinal groove outer end left wall (409) that are perpendicular to the longitudinal groove platform (405). The first sliding piece (402) forms a vertical right wall (407) of the longitudinal groove. When the first sliding piece (402) slides along the slide rail (411) to the working position, the left wall (406) of the longitudinal groove, the platform (405) of the longitudinal groove and the right wall (407) of the longitudinal groove together form the longitudinal groove (442). The second sliding piece (403) forms a vertical right wall (408) at the outer end of the longitudinal groove. When the second sliding piece (403) slides along the slide rail (411) to the working position, the left wall (409) at the outer end of the longitudinal groove, the longitudinal groove platform (405) and the right wall (408) at the outer end of the longitudinal groove together form the outer end of the longitudinal groove (444). The width of the outer end of the longitudinal groove (444) is greater than the width of the longitudinal groove (442).
2. The fishing line assembly maker positioning collet of claim 1 wherein The positioning chuck (401) is either integrally constructed or constructed in segments and then fixedly connected.
3. The positioning clamp of the fishing line assembly maker according to claim 1, characterized in that... The positioning chuck also includes fastening screws (410) for clamping the first sliding plate (402) and / or the second sliding plate (403).
4. The positioning clamp of the fishing line assembly maker according to claim 1, characterized in that... The top of the transverse groove (443) is at a higher level than the longitudinal groove platform (405).
5. The positioning clamp of the fishing line assembly maker according to claim 1, characterized in that... The upper surface of the positioning chuck (401) is connected to the front facade and the rear interior by a sloped transition.
6. The positioning clamp of the fishing line assembly maker according to claim 1, characterized in that... The positioning chuck is made of a rigid material.
7. A fishing line rig maker, characterized in that... The fishing line assemblies include fishing line assemblies with positioning clamps as described in any one of claims 1-6.
8. The fishing line rig maker according to claim 7, characterized in that... The fabricator includes a base (9) and a fixed panel (5) located at the rear end of the base. A fixed bearing (8) is installed on the fixed panel (5). A main shaft (1) passes through the fixed bearing (8) and is installed on the fixed bearing (8). The rear end of the main shaft (1) is fixedly connected to a rocker arm (6). A replaceable handle-shaped replacement part (3) is installed at the front end of the main shaft (1). The front end of the main shaft (1) is fixed together with the end of the handle-shaped replacement part (3) by a connector (2). The front end of the connector (2) has an extension (21). The front part of the first extension (21) is configured as a bent head (22). A support member (41) is vertically installed at the front end of the base (9). The top of the support member (41) is a positioning chuck (4), which is located on the extension line of the spindle (1).