Fishing line switching structure and fishing line set
By designing the elastic telescopic parts of the fishing line transfer structure to be in an upright state under the action of external force, multi-directional buffering of the fishing line tension is achieved, which solves the problem of poor force unloading effect of the existing device, improves the anti-entanglement property and fish catching rate of the fishing line, and is easy to process.
Patent Information
- Application Number
- CN202422822380.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-11-18
AI Technical Summary
The existing figure-eight ring device cannot quickly and effectively decompose the pulling force according to the change of the pulling force direction of the fishing line by the fish during the struggle of the fish, has a poor unloading effect, and is difficult to manufacture.
A fishing line transfer structure is designed, including a first connecting member, a first transfer member, a second connecting member and an elastic telescopic member. The elastic telescopic member is upright under the action of an external force, so that the first connecting member and the second connecting member are separated, and can buffer the pulling force of the fish in multiple directions and angles. The elastic telescopic member automatically contracts to drive the fish hook to hook the fish's mouth.
It can effectively buffer the pulling force of the fish during its struggle, prevent the fishing line from being entangled and broken, and improve the fish catching rate. It has a simple structure and is easy to process.
Smart Images

Figure CN223379872U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fishing gear, in particular to a fishing line adapter structure and a fishing line assembly. Background Art
[0002] As a fishing tackle accessory that connects the main line and sub-lines, the figure-eight ring primarily protects the main line and prevents it from becoming tangled or knotted. Chinese patent CN206565125U discloses an "Automatic Hook-Pulling Figure-eight Ring," which includes a cylinder, a telescopic rod, and an elastic member. The upper end of the telescopic rod extends into the cylinder and has a stop block, allowing the rod to move up and down along the inner wall of the cylinder. The elastic member is located between the stop block and the closed lower end of the cylinder. The closed upper end of the cylinder is connected to the main line, and the lower end of the telescopic rod is connected to multiple sub-lines, each with a fishhook. This device can buffer the force exerted by a fish on the fishing line when it struggles, and the elastic member can automatically rebound to hook the fish, reducing the risk of the fish becoming unhooked. However, since the direction of the pulling force generated by the fish changes constantly during its struggle, the cylinder in the device limits the expansion and contraction direction of the elastic part, so that the elastic part can only expand and contract in the axial direction of the cylinder. It is impossible to quickly and effectively decompose the pulling force according to the changes in the direction of the pulling force of the fish on the fishing line, and the force unloading effect is greatly reduced; and the telescopic part and the elastic part are both placed in the cylinder, and the length of the telescopic part and the elastic part are both limited by the cylinder, which requires many material selection requirements and is difficult to process. Utility Model Content
[0003] In order to overcome the deficiencies of the prior art, the utility model provides a fishing line adapter structure, which can not only effectively buffer the pulling force of the fish on the fishing line at multiple angles and directions, but also has simple materials and is easy to process.
[0004] The technical solution adopted by the utility model to solve the technical problem is: a fishing line adapter structure, comprising:
[0005] a first connecting member;
[0006] a first adapter, movably connected to the first connecting member;
[0007] a second connecting member;
[0008] a second adapter, movably connected to the second connecting member;
[0009] An elastic telescopic member, whose two ends are movably connected to the first adapter member and the second adapter member respectively, and when the first connecting member and / or the second connecting member are subjected to external force, at least part of the elastic telescopic member is in an upright state, so that the first connecting member and the second connecting member are separated.
[0010] In the present invention, at least part of the elastic telescopic member is in an upright state, so that the first connecting member and the second connecting member are spaced apart, thereby preventing the main line and the sub-line from being entangled. In addition, the elastic telescopic member can be deformed and bent in multiple directions and angles according to the struggling and circling of the fish, thereby buffering the pulling force of the fish on the fishing line during the struggling process, playing a role of unloading force, protecting the fishing line from being broken by the fish, and automatically contracting the elastic telescopic member to drive the fish hook to hook the fish's mouth, thereby improving the fish catching rate.
[0011] Furthermore, the first adapter and the second adapter are hollow sleeves with a socket formed along the axial direction. The sleeves have a simple structure, are easy to process, and provide sufficient space for the movement of the first connector and the second connector.
[0012] Furthermore, the first connector is a connecting ring, which is bent into a ring shape. The closed end of the bent ring extends through the socket and into the first adapter, where it is secured by a sleeve. The closed connection of the connecting ring prevents the fishing line from detaching from the first connector, thus increasing the stability of the connection. The diameter of the sleeve is larger than the diameter of the socket, preventing the first connector from detaching from the first adapter.
[0013] Furthermore, the second connecting member is a connecting ring, which is bent into a ring shape, and the closed end after bending passes through the socket and extends into the second adapter and is fixed by the kit.
[0014] Furthermore, the second connecting member includes a sub-line hook and a first space bean sleeved on the sub-line hook. The first space bean slides up and down relative to the sub-line hook to close or open the opening of the sub-line hook, making it easy to replace the sub-line at any time.
[0015] Furthermore, the elastic member has anti-slip ends at both ends, which are respectively placed inside the first adapter and the second adapter. The width of the anti-slip ends is larger than the diameter of the insertion hole to prevent the elastic member from separating from the first adapter and the second adapter.
[0016] Furthermore, the elastic telescopic member is a spring, which is formed by spirally winding spring coils, and the spring coils are tightly fitted together. The spring coils are tightly fitted together and form a mutually tightening force to maintain the upright state of the elastic telescopic member.
[0017] The utility model also discloses a fishing line group, including a main line, a float and a lead sinker connected to the main line, a second space bean, a sub-line, a fish hook connected to the sub-line, and the above-mentioned transfer structure, wherein the first connecting piece is connected to the main line, the second space bean passes through the main line and is limited at both ends of the first connecting piece, and the second connecting piece is connected to the sub-line.
[0018] The beneficial effects of the present invention are: 1) at least part of the elastic telescopic member is in an upright state, so that the first connecting member and the second connecting member are spaced apart, preventing the main line and the sub-line from being entangled; 2) the elastic telescopic member can be deformed and bent in multiple directions and angles according to the struggling and circling of the fish, buffering the pulling force of the fish on the fishing line during the struggling process, playing a role of unloading force, and protecting the fishing line from being broken by the fish; 3) the elastic telescopic member automatically contracts, driving the fishhook to hook the fish's mouth tightly, thereby improving the fish catching rate; 4) the first connecting member, the first adapter, the second connecting member, the second adapter and the elastic telescopic member are all rotatably connected, eliminating the influence of the fish struggling and circling on the fishing line, and effectively preventing the main line and the sub-line from being entangled with each other; 5) the structure is simple, the materials are convenient to obtain, and the processing is convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the fishing line transfer structure in the utility model.
[0020] Figure 2 This is the front view of the fishing line adapter structure in the utility model.
[0021] Figure 3 It is a side view of the fishing line adapter structure in the utility model.
[0022] Figure 4 This is a cross-sectional view of the fishing line adapter structure in the present invention.
[0023] Figure 5 It is a schematic diagram of the three-dimensional structure of the fishing line group in the utility model.
[0024] Figure 6 It is a schematic diagram of the three-dimensional structure of a fishing line adapter structure in another embodiment of the present invention.
[0025] Figure 7 This is a front view of a fishing line adapter structure in another embodiment of the present invention.
[0026] Figure 8 It is a side view of a fishing line adapter structure in another embodiment of the present invention.
[0027] Figure 9 It is a cross-sectional view of a fishing line adapter structure in another embodiment of the present invention.
[0028] Figure 10 This is a schematic diagram of the three-dimensional structure of a fishing line group in another embodiment of the present invention.
[0029] Among them, 1-first connecting piece, 2-first adapter, 21-socket, 22-sleeve, 3-second connecting piece, 31-sub-line hook, 32-first space bean, 4-second adapter, 5-elastic telescopic piece, 51-anti-slip end, 6-kit, 7-main line, 8-float, 9-lead sinker, 10-sub-line, 11-fish hook, 12-second space bean. DETAILED DESCRIPTION
[0030] In order to enable those skilled in the art to better understand the present invention, the following will provide a clear and complete description of the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative work should fall within the scope of protection of the present invention.
[0031] like Figure 1-Figure 5 As shown, a fishing line adapter structure includes a first connecting member 1, a first adapter 2 movably connected to the first connecting member 1, a second connecting member 3, a second adapter 4 movably connected to the second connecting member 3, and an elastic telescopic member 5.
[0032] The two ends of the elastic telescopic member 5 are movably connected to the first adapter 2 and the second adapter 4 respectively, and when the first connecting member 1 and / or the second connecting member 3 are subjected to external force, here refers to when only the first connecting member 1 is subjected to external force, or when only the second connecting member 3 is subjected to external force, or when both the first connecting member 1 and the second connecting member 3 are subjected to external force, at least part of the elastic telescopic member 5 is in an upright state, so that the first connecting member 1 and the second connecting member 3 are spaced apart. The upright state here refers to each horizontal cross section (with Figure 4 The center points of the elastic member 5 are all on the same straight line, so that the elastic member 5 is upright as a whole without bending. The upright state can be an upright state in the horizontal direction, an upright state in the vertical direction, or an upright state in the inclined direction. As long as the elastic member 5 is not bent as a whole, there is no specific limitation. Figure 5 As shown, the elastic stretchable member 5 is in an upright state in the horizontal direction.
[0033] When the first connector 1 and the second connector 3 are both subjected to external force, the middle portion of the elastic member 5 can remain upright and does not bend, so that there is always a certain distance between the first connector 1 and the second connector 3. When the first connector 1 is connected to the main line 7 and the second connector 3 is connected to the sub-line 10, the main line 7 and the sub-line 10 are separated by the fishing line adapter structure, so that the spacing between the main line 7 and the sub-line 10 is increased as much as possible, preventing the main line 7 and the sub-line 10 from being entangled. Of course, in other embodiments, the distance between the first connector 1 and the second connector 3 can be further adjusted by replacing the elastic member 5 of different lengths, which is flexible to use.
[0034] In this embodiment, the elastic telescopic member 5 is a spring, which is formed by spirally winding a spring coil. When the spring is in a natural state without stress, the spring coils are tightly fitted together and form a mutually tightening force to maintain the upright state of the elastic telescopic member 5. When the pulling force of the fish is greater than the force between the elastic telescopic members 5, the elastic telescopic member 5 deforms and stretches to act as a force unloading buffer to prevent the fishing line from being broken. When the pulling force of the fish is less than the force between the elastic telescopic members 5, the elastic telescopic member 5 automatically contracts, driving the fish back to the hook, thereby improving the fish catching rate.
[0035] It should be noted that whether the spring remains upright, or at least partially remains upright, under the action of external force is determined by the spring stiffness, that is, the spring will only produce unit deformation when the load on the spring reaches a certain amount. Depending on the type and weight of the fish being fished, springs of different stiffnesses can be selected to ensure that at least part of the spring is in an upright state during the force-bearing process of fishing. There is no specific restriction.
[0036] like Figure 4 As shown, the first adapter 2 and the second adapter 4 are both hollow sleeves 22 , and the sleeve 22 forms two insertion holes 21 along the axial direction, that is, the two insertion holes 21 are arranged at both ends of the sleeve 22 opposite to each other and pass through the sleeve 22 .
[0037] like Figure 2 、 Figure 4As shown, the first connector 1 is a connecting ring that is bent into a ring shape. The bent closed end passes through the socket 21 at the top of the first adapter 2 and then extends into the sleeve 22 of the first adapter 2. The closed end of the connecting ring is fixed by a sleeve 6. Specifically, the width of the closed end is smaller than the diameter of the socket 21, facilitating flexible rotation of the first connector 1 relative to the first adapter 2. The diameter of the sleeve 6 is larger than the diameter of the socket 21, preventing the first connector 1 from being separated from the first adapter 2. In this embodiment, the sleeve 6 is a cylindrical structure with one end open, and is mounted on the closed end of the connecting ring from the opening. The installation of the sleeve 6 and the first adapter 2 can be achieved using existing technology. Of course, the closed end of the first connector 1 can also be fixed by other methods, which are not limited to this.
[0038] Similarly, the second connecting member 3 is a connecting ring, which is bent into a ring shape, and the closed end of the bent part passes through the socket 21 at the bottom end of the second adapter 4 and then extends into the sleeve 22 of the second adapter 4. The closed end of the connecting ring is fixed by the sleeve 6. The installation of the sleeve 6 and the second adapter 4 can be achieved by existing technology. Of course, in other embodiments, such as Figures 6-10 As shown, the second connecting member 3 may include a sub-line hook 31 and a first space bean 32 mounted on the sub-line hook 31. The sub-line hook 31 is used to hang the sub-line 10, and its open state facilitates the replacement of the sub-line 10 at any time. The first space bean 32 can slide up and down relative to the sub-line hook 31, and is used to close or open the opening of the sub-line hook 31 to prevent the sub-line 10 from detaching from the sub-line hook 31. There is no specific limitation.
[0039] like Figure 4 As shown, the two ends of the elastic telescopic member 5 have anti-slip end portions 51, which are respectively placed in the first adapter 2 and the second adapter 4. Figure 4 2 and 3. The spring coil of the elastic member 5 is bent upwards through the socket 21 and extends into the first adapter 2, and an anti-slip end 51 is formed at the end of the spring coil. The spring coil of the elastic member 5 is bent downwards through the socket 21 and extends into the second adapter 4, and an anti-slip end 51 is formed at the end of the spring coil. The width of the anti-slip end 51 is greater than the diameter of the socket 21, so as to prevent the elastic member 5 from separating from the first adapter 2 and the second adapter 4. The installation of the anti-slip end 51 with the first adapter 2 and the second adapter 4 can be achieved by the prior art. In this embodiment, the elastic member 5 is connected to the first adapter 2 and the second adapter 4 only by the anti-slip end 51 at the upper and lower ends, and the main body is still in an independent, exposed state. Compared with the existing design in which the spring is placed in the cylinder to stretch and deform, the elastic member 5 in the utility model is not affected by other parts and can be deformed according to the pulling force generated in different directions during the fish struggling and circling, achieving a quick and effective force unloading and buffering effect, and is also convenient for processing.
[0040] In this embodiment, the first connecting member 1 and the first adapter 2 are circumferentially free to rotate, the second connecting member 3 and the second adapter 4 are circumferentially free to rotate, and the elastic telescopic member 5 and the first adapter 2 are circumferentially free to rotate, and there is a certain gap between the spring coil of the elastic telescopic member 5 and the socket 21, so that the elastic telescopic member 5 can be tilted at a certain angle relative to the first adapter 2, so that the elastic telescopic member 5 can rotate at multiple angles and in multiple directions relative to the first adapter 2. Similarly, the elastic telescopic member 5 and the second adapter 4 can rotate at multiple angles and in multiple directions, and each component can rotate flexibly without interfering with each other, effectively alleviating the tension on the fishing line during the struggle of the fish and preventing the fishing line from being entangled. Of course, in other embodiments, there may be other connection methods, which are not specifically limited.
[0041] like Figure 5 As shown, the utility model also discloses a fishing line group, including a main line 7, a float 8 and a lead sinker 9 connected to the main line 7, a second space bean 12, a sub-line 10, and a fish hook 11 connected to the sub-line 10, and also includes a fishing line transfer structure, the first connecting member 1 is connected to the main line 7, the second space bean 12 passes through the main line 7 and is limited at both ends of the first connecting member 1, and the second connecting member 3 is connected to the sub-line 10.
[0042] The usage process of the utility model is as follows: the main line 7 is connected to the first connecting member 1, one end of the sub-line 10 is connected to the second connecting member 3, and the other end of the sub-line 10 is connected to the fish hook 11; the fishing line group is thrown into the water, and when it is stationary, the elastic telescopic member 5 is in an upright state in the entire axis length direction due to the force of its own tension, so that the first connecting member 1 and the second connecting member 3 are spaced apart, and the distance between the main line 7 and the sub-line 10 is pulled apart to prevent the main line 7 and the sub-line 10 from being entangled; after the fish is hooked, when the tension generated by the fish struggling is greater than the force of the elastic telescopic member 5, the elastic telescopic member 5 is deformed and stretched, and is bent at multiple angles and in multiple directions as the direction of the tension changes, so as to buffer the tension exerted on the fishing line during the struggle of the fish and protect the fishing line from being broken. When the tension generated by the struggle of the fish is less than the force of the elastic telescopic member 5, the elastic telescopic member 5 automatically contracts, driving the fish hook 11 to move upward to hook the fish mouth tightly, thereby improving the fish catching rate.
[0043] The above specific implementation methods are used to illustrate the present invention rather than to limit the present invention. Any modifications and changes made to the present invention within the spirit of the present invention and the protection scope of the claims shall fall within the protection scope of the present invention.
Claims
1. A fishing line transfer structure, characterized in that: include: A first connecting member (1); A first adapter (2) movably connected to the first connecting member (1); A second connecting member (3); A second adapter (4) movably connected to the second connecting member (3); An elastic telescopic member (5) has two ends movably connected to the first adapter member (2) and the second adapter member (4), respectively, and when the first connecting member (1) and / or the second connecting member (3) are subjected to an external force, at least a portion of the elastic telescopic member (5) is in an upright state, so that the first connecting member (1) and the second connecting member (3) are spaced apart.
2. The fishing line adapter structure according to claim 1, characterized in that: The first adapter (2) and the second adapter (4) are both hollow sleeves (22) with a socket (21) formed in the sleeve (22) along the axial direction.
3. The fishing line adapter structure according to claim 2, characterized in that: The first connecting member (1) is a connecting ring, which is bent into a ring shape, and the closed end after bending passes through the insertion hole (21) and extends into the first adapter (2), and is fixed by the sleeve (6).
4. The fishing line adapter structure according to claim 2, characterized in that: The second connecting member (3) is a connecting ring, which is bent into a ring shape, and the closed end after bending passes through the insertion hole (21) and extends into the second adapter (4), and is fixed by the sleeve (6).
5. The fishing line adapter structure according to claim 1, characterized in that: The second connecting member (3) comprises a sub-line hook (31) and a first space bean (32) sleeved on the sub-line hook (31).
6. The fishing line adapter structure according to claim 1, characterized in that: Both ends of the elastic telescopic member (5) are provided with anti-slip end portions (51), which are respectively placed in the first adapter member (2) and the second adapter member (4).
7. The fishing line adapter structure according to claim 1, characterized in that: The elastic telescopic member (5) is a spring, which is formed by spirally winding spring coils, and the spring coils are tightly fitted together.
8. A fishing line assembly, comprising a main line (7), a float (8) and a lead sinker (9) connected to the main line (7), a second space bean (12), a sub-line (10), and a fish hook (11) connected to the sub-line (10), characterized in that: It also includes a fishing line transfer structure as described in any one of claims 1 to 7, wherein the first connector (1) is connected to the main line (7), the second space bean (12) passes through the main line (7) and is limited at both ends of the first connector (1), and the second connector (3) is connected to the sub-line (10).
Citation Information
Patent Citations
Automatic drag hook eight characters ring
CN206565125U