Fishing line linking device with rotating speed increasing anti-winding structure

By introducing rolling ball beads into the fishing line link device to reduce rotation resistance and parallel plane structure, the problem of fishing line winding under the impact of large fish is solved, and efficient rotation and durability are achieved.

CN223262157UActive Publication Date: 2025-08-26POYANG BLACK KINGKONG FISHING TACKLE CO LTD
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Patent Information

Application Number
CN202422733552.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-08-26
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

Existing fish line link devices are prone to deformation and distortion when facing the impact force of large fish, resulting in problems of winding and tangent running of fish.

Method used

A fishing line link device is designed, including a main line binding member, a sub-line binding member, a transfer bearing member, a main line controlling member, a sub-line controlling member and a resistance-reducing speed increase member. By setting a rolling ball bead in the sub-line carrying member, the rotation resistance of the sub-line binding member is reduced, the rotation speed is increased, and the swing movement is avoided through a parallel plane structure to prevent winding.

Benefits of technology

It effectively improves the rotation speed of the fishing line, prevents winding, ensures that the pulling force can be released quickly when large fish struggle, avoids the fishing line breaking, and has good wear resistance and adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a fishing line linking device with a rotating speed increasing anti-winding structure, which comprises a main line binding component, a sub-line binding component, a transfer bearing component, a main line bearing component, a sub-line bearing component and a resistance reducing and speed increasing component, according to the fishing line linking device, the resistance reducing and speed increasing component composed of the rolling balls is arranged between the sub-line rotating component and the sub-line binding component, the resistance of the sub-line binding component in the rotating process can be effectively reduced, so that the rotating speed is increased, the winding problem of a fishing line in the using process is prevented, and especially when a fish struggles or is impacted, the fishing line is prevented from being damaged. The pulling force can be quickly and smoothly released, the fishing line is prevented from being broken due to winding, the rolling ball is precisely matched with the sub-line rotation bearing component and the main line rotation bearing component, the abrasion resistance and durability under long-term use are ensured, and the device can adapt to fishing lines of different specifications and types and fishes of different sizes.
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Description

Technical Field

[0001] The utility model relates to a fishing tool, in particular to a fishing line connecting device with a speed-increasing and anti-winding structure. Background Art

[0002] Patent document CN217905906U discloses a figure-eight ring, which is a fishing line linking device, comprising a figure-eight ring connecting shell and a PE connecting line. The figure-eight ring connecting shell is rotatably connected to the figure-eight ring connecting shaft, the figure-eight ring connecting shaft is fixedly connected to the figure-eight ring connecting ring, and the PE connecting line is tied and connected to the figure-eight ring connecting ring. When the main fishing line and the sub-line are tied and connected with the PE connecting lines at both ends of the figure-eight ring connecting shell respectively, a large force will be generated at the connection when the rod is lifted when a fish is caught. The flexible connection of the PE connecting line can buffer the connection and protect the line group. At the same time, the PE connecting line is relatively soft, and the sub-line swings more naturally with the water in the water, making it easier for fish to bite the hook. The fishing line connection joint is wrapped with an environmentally friendly silicone rubber body to avoid entanglement between the fish hook, the sub-line and the knotted part of the PE connecting line and the figure-eight ring connecting ring during fishing. However, this type of fishing line link has a limited rotation range, which means it can only withstand the impact of fish and prevent entanglement within a small range. However, when subjected to the impact of large fish, it is prone to deformation and distortion, which can cause the line to tangent and the fish to escape. Therefore, it is necessary to optimize the structure of this fishing line link to overcome the above-mentioned drawbacks. Utility Model Content

[0003] The purpose of the utility model is to provide a fishing line connecting device with a rotation speed increasing and anti-entanglement structure, so as to increase the rotation speed and prevent the fishing line from being entangled.

[0004] The technical solution adopted by the present invention to solve its technical problems is:

[0005] A fishing line connecting device with a speed-increasing anti-entanglement structure, comprising:

[0006] a main line tie-down member, the main line tie-down member being engageable with the main line tie-down;

[0007] a sub-line tying member, the sub-line tying member being engageable with the sub-line tying member;

[0008] A transfer load-bearing member, the transfer load-bearing member is located between the main line tying member and the sub-line tying member;

[0009] A main line transfer member is located between the transfer bearing member and the main line tying member. The transfer bearing member is connected to the main line tying member through the main line transfer member, so that the main line tying member can rotate on the transfer bearing member.

[0010] A sub-line transfer member is located between the transfer bearing member and the sub-line tying member. The transfer bearing member is engaged with the sub-line tying member through the sub-line transfer member, so that the sub-line tying member can rotate on the transfer bearing member.

[0011] Also includes:

[0012] The resistance reducing and speed increasing component is installed in the sub-line rotation component, and the resistance reducing and speed increasing component reduces the resistance and speeds up the rotation process of the sub-line tying component.

[0013] Specifically, the resistance reduction and speed increase components include:

[0014] A group of rolling balls is provided, each rolling ball is placed in a sub-line rotation component and cooperates with the sub-line tying component, so that when the sub-line tying component rotates, the rolling balls roll between the sub-line rotation component and the sub-line tying component, thereby reducing the rotation resistance of the sub-line tying component and increasing the rotation speed.

[0015] Sub-line transfer components include:

[0016] The sub-line ring warehouse is formed by enclosing plates and covering the outside of the sub-line binding components and the transfer bearing components. It has a accommodating space inside so that the rolling ball can be placed inside the sub-line ring warehouse.

[0017] Sub-line tying components include:

[0018] The sub-line loop is formed by enclosing ribs so that the sub-line can pass through the sub-line loop and be tied and fixed;

[0019] The sub-line end column, the inner end of the sub-line end column extends into the sub-line ring bin, and the outer end is exposed to the outside of the sub-line ring bin, and a connecting core hole is provided. The sub-line loop is hung in the connecting core hole and can be deflected at the outer end of the sub-line end column. The outer wall of the sub-line end column is provided with an outer convex ridge, which extends along the circumference of the sub-line end column and protrudes radially toward the outside of the sub-line end column. The inner wall of the sub-line ring bin is provided with an inner convex step surface, which extends along the circumference of the sub-line ring bin and protrudes radially toward the inner side of the sub-line ring bin. A movable annular cavity for accommodating rolling balls is formed between the inner convex step surface and the outer convex ridge. The rolling balls are in contact with the outer convex ridge and the inner convex step surface, so that the sub-line end column can rotate in the sub-line ring bin, and the rolling balls reduce the resistance and speed up the rotation process, thereby preventing the fishing line from being entangled and safely removing the impact force brought by large fish.

[0020] The transfer bearing member includes:

[0021] A load-bearing pole column, at both ends of which a sub-line transfer terminal and a main line transfer terminal are respectively provided, the sub-line transfer terminal and the main line transfer terminal respectively extend along the circumference of the load-bearing pole column, and protrude radially toward the outside of the load-bearing pole column, the sub-line transfer terminal extends into the interior of the sub-line ring bin, and the edge of the sub-line ring bin has a limiting edge that is adapted to the sub-line transfer terminal, and the limiting edge is used to axially limit the sub-line transfer terminal so that the sub-line ring bin can rotate on the load-bearing pole column.

[0022] The main line transfer components include:

[0023] The main line ring warehouse is formed by enclosing plates and covering the outside of the main line binding components and the load-bearing poles, so that the load-bearing poles and the main line binding components can rotate in the main line ring warehouse.

[0024] Main line tying components include:

[0025] The main line ring is formed by enclosing ribs so that the main line can pass through the main line ring and be tied and fixed. The side of the main line ring is provided with a main line end column, and the inner end of the main line end column extends into the interior of the main line ring bin. The outer wall is provided with a matching flange, which extends along the circumference of the main line end column and protrudes radially toward the outside of the main line end column. The main line ring bin is covered on the outside of the main line end column, and the main line end column is axially limited by the matching flange so that the main line end column can rotate in the main line ring bin.

[0026] The contact surface between the sub-line adapter end and the sub-line end column is a parallel plane structure, which can prevent the sub-line loop from swinging when subjected to the impact force of fish, further reducing the probability of entanglement between the sub-line and the fish hook device.

[0027] The advantages of the present invention are:

[0028] The fishing line connecting device is equipped with a resistance reducing and speed increasing component composed of rolling balls between the sub-line supporting component and the sub-line tying component, which can effectively reduce the resistance of the sub-line tying component during rotation, thereby increasing the rotation speed, helping to prevent the fishing line from being entangled during use, especially when the fish is struggling or impacted, and can quickly and smoothly release the tension to avoid the fishing line from breaking due to entanglement. The rolling balls are precisely matched with the sub-line supporting component and the main line supporting component to ensure wear resistance and durability under long-term use, and can adapt to fishing lines of different specifications and types, as well as fish of different sizes. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 It is a structural schematic diagram of the fishing line connecting device proposed by the present invention. DETAILED DESCRIPTION

[0030] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. The components of the embodiments of the present invention generally described and shown in the drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the utility model for protection, but merely represents selected embodiments of the present invention. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0031] like Figure 1 As shown, the fishing line connecting device with an increased speed anti-entanglement structure proposed by the present invention includes a main line binding component, a sub-line binding component, a transfer load-bearing component, a main line transfer component, a sub-line transfer component and a resistance reduction and speed increase component. The main line binding component can be engaged with the main line binding component, and the sub-line binding component can be engaged with the sub-line binding component. The transfer load-bearing component is located between the main line binding component and the sub-line binding component. The main line transfer component is located between the transfer load-bearing component and the main line binding component. The transfer load-bearing component is engaged with the main line binding component through the main line transfer component, so that the main line binding component can rotate on the transfer load-bearing component. The sub-line transfer component is located between the transfer load-bearing component and the sub-line binding component. The transfer load-bearing component is engaged with the sub-line binding component through the sub-line transfer component, so that the sub-line binding component can rotate on the transfer load-bearing component. The drag reduction and speed increase component is installed in the sub-line transfer component, and the resistance reduction and speed increase component reduces the resistance and speeds up the rotation process of the sub-line binding component.

[0032] In this embodiment, the resistance reducing and speed increasing component includes rolling balls 100. A group of rolling balls are provided. Each rolling ball is placed in the sub-line rotating component and cooperates with the sub-line tying component so that when the sub-line tying component rotates, the rolling balls roll between the sub-line rotating component and the sub-line tying component, thereby reducing the rotational resistance of the sub-line tying component and increasing the rotational speed.

[0033] The sub-line supporting component includes a sub-line ring warehouse 200, which is formed by enclosing plates and covering the outside of the sub-line binding component and the transfer bearing component. It has an accommodating space inside so that the rolling ball can be placed inside the sub-line ring warehouse.

[0034] The sub-line tying component includes a sub-line ring 310 and a sub-line end column 320. The sub-line ring is formed by enclosing ribs so that the sub-line can pass through the sub-line ring and be tied and fixed. The inner end of the sub-line end column extends into the sub-line ring warehouse, and its outer end is exposed to the outside of the sub-line ring warehouse, and a connecting core hole is provided. The sub-line ring is hung in the connecting core hole and can be deflected at the outer end of the sub-line end column. The outer wall of the sub-line end column is provided with an outer convex ridge 321, which is along the sub-line end column. It extends circumferentially and protrudes radially toward the outside of the sub-line end column. An inner convex step surface 210 is provided on the inner wall of the sub-line ring warehouse. The inner convex step surface extends along the circumference of the sub-line ring warehouse and protrudes radially toward the inside of the sub-line ring warehouse. A movable annular cavity for accommodating rolling balls is formed between the inner convex step surface and the outer convex ridge. The rolling balls are engaged with the outer convex ridge and the inner convex step surface, so that the sub-line end column can rotate in the sub-line ring warehouse, and the rolling balls reduce the resistance and speed up the rotation process.

[0035] The transfer bearing component includes a bearing pole 400, and a sub-line transfer terminal 410 and a main line transfer terminal 420 are respectively provided at both ends of the bearing pole. The sub-line transfer terminal and the main line transfer terminal extend along the circumference of the bearing pole respectively, and protrude radially toward the outside of the bearing pole. The sub-line transfer terminal extends into the interior of the sub-line ring bin, and the edge of the sub-line ring bin has a limiting edge that is adapted to the sub-line transfer terminal. The limiting edge axially limits the sub-line transfer terminal so that the sub-line ring bin can rotate on the bearing pole.

[0036] The main line rotation component includes a main line ring bin 500, which is formed by enclosing plates and covering the outside of the main line binding component and the bearing pole, so that the bearing pole and the main line binding component can rotate in the main line ring bin.

[0037] The main line binding component includes a main line ring 600, which is formed by enclosing ribs so that the main line can pass through the main line ring and be tied and fixed. The side of the main line ring is provided with a main line end column 610, and the inner end of the main line end column extends into the interior of the main line ring bin. The outer wall thereof is provided with a matching flange 611, which extends along the circumference of the main line end column and protrudes radially toward the outside of the main line end column. The main line ring bin is covered on the outside of the main line end column, and the main line end column is axially limited by the matching flange so that the main line end column can rotate in the main line ring bin.

[0038] The contact surface between the sub-line adapter end and the sub-line end post is a parallel plane structure, which can prevent the sub-line loop from swinging when subjected to the impact force of fish.

[0039] In the description of the present utility model, it should be noted that when terms such as "upper", "lower", "inner", "outer", "left", and "right" indicate an orientation or positional relationship, they should be understood as being based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the utility model product is usually placed when in use, or the orientation or positional relationship commonly understood by those skilled in the art. They are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present utility model. In addition, when terms such as "first" and "second" appear, they are only used to distinguish the description and cannot be understood as indicating or implying relative importance. In the description of the present utility model, it should also be noted that, unless otherwise clearly specified and limited, terms such as "installation", "setting", and "connection" should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, an indirect connection through an intermediate medium, or it can be a communication between the internal parts of two elements. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.

Claims

1. A fishing line connecting device with an increased speed and anti-entanglement structure, comprising: a main line tie-down member, the main line tie-down member being engageable with the main line tie-down; a sub-line tying member, the sub-line tying member being engageable with the sub-line tying member; A transfer load-bearing member, the transfer load-bearing member is located between the main line tying member and the sub-line tying member; A main line transfer member is located between the transfer bearing member and the main line tying member. The transfer bearing member is connected to the main line tying member through the main line transfer member, so that the main line tying member can rotate on the transfer bearing member. A sub-line transfer member is located between the transfer bearing member and the sub-line tying member. The transfer bearing member is engaged with the sub-line tying member through the sub-line transfer member, so that the sub-line tying member can rotate on the transfer bearing member. It is characterized by further comprising: The resistance reducing and speed increasing component is installed in the sub-line rotation component, and the resistance reducing and speed increasing component reduces the resistance and speeds up the rotation process of the sub-line tying component.

2. A fishing line connecting device with a speed-increasing anti-entanglement structure according to claim 1, characterized in that: The drag reduction and speed increase components include: A group of rolling balls is provided, each rolling ball is placed in a sub-line rotation component and cooperates with the sub-line tying component, so that when the sub-line tying component rotates, the rolling balls roll between the sub-line rotation component and the sub-line tying component, thereby reducing the rotation resistance of the sub-line tying component and increasing the rotation speed.

3. A fishing line connecting device with a speed-increasing anti-entanglement structure according to claim 2, characterized in that: Sub-line transfer components include: The sub-line ring warehouse is formed by enclosing plates and covering the outside of the sub-line binding components and the transfer bearing components. It has a accommodating space inside so that the rolling ball can be placed inside the sub-line ring warehouse.

4. The fishing line connecting device with a speed-increasing anti-entanglement structure according to claim 3, characterized in that: Sub-line tying components include: The sub-line loop is formed by enclosing ribs so that the sub-line can pass through the sub-line loop and be tied and fixed; The sub-line end column, the inner end of the sub-line end column extends into the sub-line ring warehouse, and the outer end is exposed to the outside of the sub-line ring warehouse, and a connecting core hole is provided. The sub-line ring is hung in the connecting core hole and can be deflected at the outer end of the sub-line end column. The outer wall of the sub-line end column is provided with an outer convex ridge, which extends along the circumference of the sub-line end column and protrudes radially toward the outside of the sub-line end column. The inner wall of the sub-line ring warehouse is provided with an inner convex step surface, which extends along the circumference of the sub-line ring warehouse and protrudes radially toward the inner side of the sub-line ring warehouse. A movable annular cavity for accommodating rolling balls is formed between the inner convex step surface and the outer convex ridge. The rolling balls are in contact with the outer convex ridge and the inner convex step surface, so that the sub-line end column can rotate in the sub-line ring warehouse, and the rolling balls reduce the resistance and speed up its rotation process.

5. A fishing line connecting device with a speed-increasing anti-entanglement structure according to claim 3 or 4, characterized in that: The transfer bearing member includes: A load-bearing pole column, at both ends of which a sub-line transfer terminal and a main line transfer terminal are respectively provided, the sub-line transfer terminal and the main line transfer terminal respectively extend along the circumference of the load-bearing pole column, and protrude radially toward the outside of the load-bearing pole column, the sub-line transfer terminal extends into the interior of the sub-line ring bin, and the edge of the sub-line ring bin has a limiting edge that is adapted to the sub-line transfer terminal, and the limiting edge is used to axially limit the sub-line transfer terminal so that the sub-line ring bin can rotate on the load-bearing pole column.

6. The fishing line connecting device with a speed-increasing anti-entanglement structure according to claim 5, characterized in that: The main line transfer components include: The main line ring warehouse is formed by enclosing plates and covering the outside of the main line binding components and the load-bearing poles, so that the load-bearing poles and the main line binding components can rotate in the main line ring warehouse.

7. The fishing line connecting device with a speed-increasing anti-entanglement structure according to claim 6, characterized in that: Main line tying components include: The main line ring is formed by enclosing ribs so that the main line can pass through the main line ring and be tied and fixed. The side of the main line ring is provided with a main line end column, and the inner end of the main line end column extends into the interior of the main line ring bin. The outer wall is provided with a matching flange, which extends along the circumference of the main line end column and protrudes radially toward the outside of the main line end column. The main line ring bin is covered on the outside of the main line end column, and the main line end column is axially limited by the matching flange so that the main line end column can rotate in the main line ring bin.

8. The fishing line connecting device with a speed-increasing anti-entanglement structure according to claim 5, characterized in that: The contact surface between the sub-line adapter end and the sub-line end post is a parallel plane structure, which can prevent the sub-line loop from swinging when subjected to the impact force of fish.

Citation Information

Patent Citations

  • Novel splayed ring

    CN217905906U