Anti-hooking fishing tackle group

By incorporating a resistance bead with an elastic clamp in the leader rig, the position of the double hook rig is restricted, thus solving the problems of broken lines and fish escaping, as well as hook punctures, and achieving more efficient and safer fishing operations.

CN223528758UActive Publication Date: 2025-11-11胡金波
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423163326.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-11
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing leader fishing rigs are prone to line breakage and fish loss due to improper landing net handling, and there is a high risk of hook piercing the angler's hand when unloading the fish, affecting fishing efficiency and safety.

Method used

Design an anti-hook net fishing rig by setting first and second resistance beads with elastic clamps on the leader line to restrict the position of the double hook rig on the swivel. The buffering and sliding mechanism of the resistance beads prevents the empty hook from getting caught on the landing net and facilitates unloading the fish when the hook position is restored.

Benefits of technology

It reduces the occurrence of fish escaping due to broken lines caused by empty hooks getting caught in the landing net, lowers the chances of hooks piercing the landing net or injuring the angler's hand, improves the safety and efficiency of fishing, and is suitable for a variety of fishing scenarios.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223528758U_ABST
    Figure CN223528758U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of fishing gears, and discloses an anti-hooking net fishing tackle group which comprises a fishing line, a splayed ring and a double-hook group, and the fishing line is fixed on a first ring at the first end of the splayed ring; the double-hook hook group comprises a sub-line and fishhooks fixed to the two ends of the sub-line respectively, and the sub-line penetrates through the second ring at the second end of the splayed ring so that the two fishhooks can be located on the two sides of the second ring respectively; the sub-line is provided with a first resistance bean and a second resistance bean which are elastically hooped on the sub-line, the first resistance bean and the second resistance bean are respectively positioned on two sides of the second ring, and the double-hook group is limited on the second ring through cooperation of the first resistance bean and the second resistance bean. Through a unique limiting mechanism, the safety and efficiency of fishing can be improved, the phenomena of fishing line damage and fish running caused by misoperation are reduced, meanwhile, a fisherman is protected against accidental injury, the fishing tackle can be suitable for various fishing scenes including leisure fishing and competitive fishing, and the universality of a fishing tackle group is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of fishing gear technology, and in particular, to an anti-hook fishing net rig. Background Technology

[0002] In fishing, the leader rig is a common type of tackle, consisting of two hooks and a fishing line attached to the main line of the fishing rod. This rig's design allows bait to be attached to the hooks to attract fish. Due to its detachable and replaceable nature, the leader rig is widely popular among fishing enthusiasts. However, existing leader rigs have some technical drawbacks that can affect fishing efficiency and safety in certain situations.

[0003] Specifically, in traditional leader fishing rigs, the two hooks naturally droop downwards in a V-shape under the weight of the hooks. With this design, when catching a large fish, often only one hook will successfully hook it. When using a landing net to scoop the fish out of the water, because both hooks are below the surface, the net easily catches the empty hook, creating a fixed point between the net and the empty hook. In this situation, if the fish exerts its strength, it may break the line or tear its mouth, resulting in a broken line and the fish escaping. This not only reduces the success rate of fishing but also causes unnecessary losses to the angler's effort and patience.

[0004] Furthermore, existing fishing rigs typically require a landing net to scoop the fish into a net bag after it's caught, before bringing it ashore to retrieve it. During this process, with both hooks in the net, the fish's struggle and thrashing during unloading can easily cause the other hook (not yet hooked) to pierce the angler's hand. This not only increases the risk of injury but also reduces the safety of fishing. Utility Model Content

[0005] This utility model provides an anti-hook net fishing rig. Through its unique limiting mechanism, it aims to improve the safety and efficiency of fishing, reduce fishing line damage and fish loss caused by improper operation, and protect anglers from accidental injuries. It solves the technical problems of existing leader fishing rigs in actual use, such as the line breaking and fish getting away when landing the fish with the landing net, and the hand being easily injured when unloading the fish.

[0006] This utility model provides an anti-hook fishing rig, including a fishing line, a figure-eight swivel, and a double hook assembly. The fishing line is fixed to a first ring at the first end of the figure-eight swivel. The double hook assembly includes a leader line and hooks fixed to both ends of the leader line. The leader line passes through a second ring at the second end of the figure-eight swivel, so that the two hooks are respectively located on both sides of the second ring. The leader line is provided with a first resistance bead and a second resistance bead that are elastically clamped on the leader line. The first resistance bead and the second resistance bead are respectively located on both sides of the second ring. The first resistance bead and the second resistance bead cooperate to limit the double hook assembly on the second ring.

[0007] Furthermore, the minor radial dimension of both the first and second resistance beads is greater than the inner radial dimension of the second ring.

[0008] Furthermore, the minor radial dimension of the first resistance bead and the minor radial dimension of the second resistance bead are both 1.2-4 times the inner radial dimension of the second ring.

[0009] Furthermore, the length of the reserved sub-line between the first resistance bead and the second resistance bead is 0.2cm-5cm.

[0010] Furthermore, the reserved length of the sub-line between the first resistance bead and the corresponding hook is 'a', and the reserved length of the sub-line between the second resistance bead and the corresponding hook is 'b', where 'a' and 'b' may be the same or different.

[0011] Furthermore, the first resistance bean and / or the second resistance bean are selected from one of the following: round bean, oval bean, polygonal bean, gourd-shaped bean, teardrop-shaped bean, cylindrical bean, and conical bean.

[0012] Furthermore, the first resistance bead and the second resistance bead may have the same or different shapes; and / or the first resistance bead and the second resistance bead may have the same or different radial dimensions.

[0013] Furthermore, both the first resistance bead and the second resistance bead have a small end and a large end, with the small ends of the first resistance bead and the second resistance bead arranged opposite each other.

[0014] Furthermore, a first resistance bead is provided; and / or a second resistance bead is provided.

[0015] Furthermore, the first resistance bead is provided with multiple beads, and the distance between two adjacent first resistance beads is 0-5cm; and / or the second resistance bead is provided with multiple beads, and the distance between two adjacent first resistance beads is 0-5cm.

[0016] This utility model has the following beneficial effects:

[0017] This utility model of an anti-hook net fishing rig, by setting an elastic clamp on the leader line with a first and a second resistance bead, can limit the double hook assembly to the second ring of the swivel, ensuring that the two hooks are on opposite sides of the second ring. When a fish is hooked, due to the fish's weight and struggling force, the double hook assembly moves towards the hooked end and is buffered by the corresponding first or second resistance bead. When the force is greater than the elastic clamping force of the first or second resistance bead on the leader line, it will also cause the first or second resistance bead to slide towards the empty hook, or even block and fix the hook in the second ring position. This makes it less likely that the landing net will catch the empty hook when landing the fish, thus reducing the phenomenon of line breakage and fish escape caused by the empty hook getting caught in the landing net. Even if the fish struggles during the landing process, it can significantly reduce the chance of the empty hook piercing the landing net or injuring the angler's hand, which improves the safety of the fishing process; by reducing the empty hook... When the hook gets caught in the landing net, it reduces the risk of line damage or breakage caused by the fish's struggle, thus extending the line's lifespan. Because it reduces the chance of losing fish due to improper landing net handling, anglers can focus more on fishing itself, rather than frequently changing lines or resetting the rig, thereby improving fishing efficiency. After catching a fish, simply sliding the first or second resistance bead returns the double hook rig to its initial position and limits its movement, making it easier for anglers to control the hook's position and remove the fish from the hook, reducing the risk of the other hook pricking the hand while the fish struggles in the net. This hook-proof net rig design allows it to adapt to different fishing environments and fish species, improving fishing safety and efficiency. It is suitable for various fishing scenarios, including recreational and competitive fishing, increasing the rig's versatility. Its unique limiting mechanism aims to improve fishing safety and efficiency, reduce line damage and fish loss due to improper handling, and protect anglers from accidental injury.

[0018] In addition to the objectives, features, and advantages described above, this utility model has other objectives, features, and advantages. The present utility model will now be described in further detail with reference to the figures. Attached Figure Description

[0019] The accompanying drawings, which form part of this utility model, are used to provide a further understanding of the utility model. The illustrative embodiments of the utility model and their descriptions are used to explain the utility model and do not constitute an undue limitation of the utility model. In the drawings:

[0020] Figure 1 This is one of the structural schematic diagrams of a preferred embodiment of the anti-hook fishing net assembly of this utility model;

[0021] Figure 2 This is the second structural schematic diagram of the preferred embodiment of the anti-hook fishing net assembly of this utility model;

[0022] Figure 3 This is the third structural schematic diagram of the preferred embodiment of the anti-hook fishing net rig of this utility model.

[0023] Legend:

[0024] 100. Fishing line; 200. Figure-eight swivel; 201. First loop; 202. Second loop; 300. Double hook assembly; 301. Leader line; 302. Fish hook; 400. First resistance bead; 500. Second resistance bead. Detailed Implementation

[0025] The embodiments of the present invention will be described in detail below with reference to the accompanying drawings. However, the present invention can be implemented in many different ways as defined and covered below.

[0026] Figure 1 This is one of the structural schematic diagrams of a preferred embodiment of the anti-hook fishing net assembly of this utility model; Figure 2 This is the second structural schematic diagram of the preferred embodiment of the anti-hook fishing net assembly of this utility model; Figure 3 This is the third structural schematic diagram of the preferred embodiment of the anti-hook fishing net rig of this utility model.

[0027] like Figure 1 , Figure 2 and Figure 3As shown, the anti-hook net fishing rig of this embodiment includes a fishing line 100, a swivel 200, and a double hook assembly 300. The fishing line 100 is fixed to the first ring 201 at the first end of the swivel 200. The double hook assembly 300 includes a leader line 301 and fish hooks 302 respectively fixed to both ends of the leader line 301. The leader line 301 passes through the second ring 202 at the second end of the swivel 200, so that the two fish hooks 302 are respectively located on both sides of the second ring 202. The leader line 301 is provided with a first resistance bead 400 and a second resistance bead 500 that are elastically clamped on the leader line 301. The first resistance bead 400 and the second resistance bead 500 are respectively located on both sides of the second ring 202. The first resistance bead 400 and the second resistance bead 500 cooperate to limit the double hook assembly 300 on the second ring 202.This utility model of an anti-hook net fishing rig, by setting an elastic clamp on the leader line 301 with a first resistance bead 400 and a second resistance bead 500, can limit the double hook assembly 300 on the second ring 202 of the swivel 200, ensuring that the two hooks 302 are respectively on both sides of the second ring 202. When a fish is hooked, due to the fish's gravity and struggling force, the double hook assembly 300 moves towards the end where the fish is hooked and is buffered by the corresponding first resistance bead 400 or second resistance bead 500. When the force is greater than the first resistance bead 400 or second resistance bead 500, the double hook assembly 300 moves towards the end where the fish is hooked and is buffered by the first resistance bead 400 or second resistance bead 500 on the corresponding side. When the second resistance bead 500 is held by the elastic clamping force of the leader line 301, it will also cause the first resistance bead 400 or the second resistance bead 500 to slide towards the empty hook, or even cause the hook 302 to be blocked and fixed at the position of the second ring 202 by the first resistance bead 400 or the second resistance bead 500. This makes it less likely that the landing net will catch the empty hook that did not hook the fish, thus reducing the phenomenon of line breakage and fish escape caused by the empty hook getting caught in the landing net. Even if the fish struggles during the landing process, it can greatly reduce the chance of the empty hook 302 piercing the landing net or injuring the angler's hand. This improves the safety of the fishing process; by reducing the number of empty hooks caught in the landing net, it reduces damage or breakage of the fishing line 100 caused by the fish's struggle, thus extending the lifespan of the fishing line 100; because it reduces the occurrence of fish escaping due to improper landing net operation, anglers can focus more on fishing itself, rather than frequently changing the fishing line 100 or resetting the tackle, thereby improving fishing efficiency; after catching a fish, simply sliding the first resistance bead 400 or the second resistance bead 500 will return the double hook rig 300 to its initial position and limit its movement, allowing anglers to... The position of hook 302 is easily controlled, making it convenient to remove the fish from the hook and reducing the risk of being pricked by another hook 302 while the fish is struggling in the net. This hook-proof net fishing rig is designed to adapt to different fishing environments and fish species, improving the safety and efficiency of fishing. It is suitable for a variety of fishing scenarios, including recreational and competitive fishing, increasing the rig's versatility. Through its unique limiting mechanism, it aims to improve the safety and efficiency of fishing, reduce line damage and fish loss due to improper operation, and protect anglers from accidental injuries.

[0028] like Figure 1As shown, in this embodiment, the minor radial dimension of the first resistance bead 400 and the minor radial dimension of the second resistance bead 500 are both greater than the inner radial dimension of the second ring 202. Because the minor radial dimension of the resistance bead (first resistance bead 400 or second resistance bead 500) is larger than the inner diameter of the ring, this ensures that the resistance bead can be fixed on the second ring 202, preventing the double hook assembly 300 from sliding arbitrarily on the second ring 202 or even causing one side to come off, thus achieving the limitation of the hook assembly; when a fish is hooked, the fish's gravity and struggling force will cause the double hook assembly 300 to move towards the end where the fish is hooked, and the resistance bead (first resistance bead 400 or second resistance bead 500) provides cushioning on the corresponding side, reducing the direct pulling force on the leader line 301 and protecting the leader line from being broken; when the force is greater than the elastic clamping force of the resistance bead (first resistance bead 400 or second resistance bead 500) on the leader line 301, the resistance bead (first resistance bead 400 or second resistance bead 500) will slide towards the empty hook, or even cause the hook 302 to pass through the resistance bead (first resistance bead 400 or second resistance bead 500). 00) The rig blocks and fixes itself at the position of the second ring 202, preventing empty hooks from getting caught in the landing net and making it easier to see empty hooks 302, thus preventing them from injuring people. Due to the presence of the resistance beads (first resistance bead 400 and second resistance bead 500), even when the fish is struggling, the chance of the unhooked hook 302 piercing the landing net or injuring the angler's hand is reduced, thus reducing the phenomenon of line breakage and fish loss caused by empty hooks getting caught in the landing net. After catching a fish, by sliding the first resistance bead 400 and / or the second resistance bead 500, the double hook rig 300 can be returned to its initial position and repositioned, making it easier for the angler to control the position of the hook 302, making it easier to unload the fish, and reducing the risk of the other hook 302 piercing the hand when the fish is struggling in the net. This design allows the rig to adapt to different fishing environments and fish species, improving the safety and efficiency of fishing, and is suitable for a variety of fishing scenarios.

[0029] like Figure 1As shown, in this embodiment, the minor radial dimension of the first resistance bead 400 and the minor radial dimension of the second resistance bead 500 are both 1.2-4 times the inner radial dimension of the second ring 202. This 1.2-4 times range ensures that the first resistance bead 400 and the second resistance bead 500 effectively restrict the movement of the double hook assembly 300 on the second ring 202 of the swivel 200, preventing the double hook assembly 300 from sliding freely or even coming off one side. When a fish is hooked, the fish's weight and struggling force will cause the double hook assembly 300 to move towards the hooked end. The first resistance bead 400 or the second resistance bead 500 provides cushioning on the corresponding side, reducing the direct pulling force on the leader line 301 and protecting the leader line 301 from breaking. When the force exceeds the elastic clamping force of the first resistance bead 400 or the second resistance bead 500 on the leader line 301, the first resistance bead 400 or the second resistance bead 500 will slide towards the empty hook 302, or even... This causes the hook 302 to be blocked and fixed in the position of the second ring 202 by the first resistance bead 400 or the second resistance bead 500 on the corresponding side, preventing the empty hook from getting caught in the landing net. Due to the presence of the first resistance bead 400 or the second resistance bead 500, even when the fish is struggling, the chance of the hook 302 piercing the landing net or injuring the angler's hand is reduced, and the phenomenon of the line breaking and fish escaping due to the empty hook getting caught in the landing net is reduced. After catching a fish, by sliding the first resistance bead 400 and / or the second resistance bead 500, the double hook assembly 300 can be returned to its initial position and repositioned, making it easier for the angler to control the position of the hook 302 and to remove the fish from the hook, reducing the risk of the other hook 302 piercing the hand when the fish is struggling in the net. If the size is less than 1.2 times the hook length, the limiting mechanism may not be secure. If the first resistance bead 400 and the second resistance bead 500 are too small, they may not effectively limit the movement range of the double hook rig 300 on the second loop 202 of the swivel 200, and may even cause the double hook rig 300 to easily slip off from one side. An excessively small first resistance bead 400 and second resistance bead 500 may not provide sufficient cushioning, causing the leader line 301 to bear greater pulling force when a fish is hooked, increasing the risk of breakage. If the size is greater than 4 times the hook length, it may cause operational difficulties. An excessively large first resistance bead 400 and second resistance bead 500 may have difficulty sliding on the leader line 301, affecting the angler's ability to adjust the hook rig position when needed; it may damage the fishing line during sliding, affecting its lifespan; it may also affect other fishing gear nearby; and an excessively large first resistance bead 400 and second resistance bead 500 may not be suitable for all sizes of fishing line, reducing the versatility of the rig.

[0030] In this embodiment, the length of the reserved leader 301 between the first resistance bead 400 and the second resistance bead 500 is 0.2cm-5cm. This length range of 0.2cm-5cm balances the sensitivity and stability of the fishing rig. A shorter leader 301 quickly transmits the fish bite signal, while a longer leader 301 increases the bait's swing amplitude, improving the fish-attracting effect. Within this length range, the leader 301 length can be adjusted according to the specific fish species, size, and swimming depth to adapt to different fishing environments and strategies. A shorter leader 301 reduces the chance of tangling during casting, especially in waters with high fish density or obstacles, allowing for faster transmission of the fish bite signal and improving fishing reaction speed. A longer leader 301 reduces false signals caused by the fish touching the line, improving the accuracy of hooking the fish. When the length of the pre-line 301 between the first resistance bead 400 and the second resistance bead 500 is less than 0.2cm, the excessively short pre-line 301 may cause the rig to be too sensitive, easily leading to misinterpretations of fish bites, resulting in missed hooksets. It also reduces the bait's swing amplitude, decreasing its effectiveness in attracting fish, especially in situations requiring dynamic baiting. Furthermore, it may reduce the rig's concealment, increasing fish wariness and making them hesitant to bite. It may also interfere with the interaction between the first and second resistance bead 400 and the second resistance bead 500, affecting the hookset. When the length of the pre-line 301 between the first and second resistance bead 400 is greater than 5cm, the excessively long pre-line 301 will slow down signal transmission, resulting in a sluggish response. This is especially true in fishing environments requiring quick reactions, increasing the likelihood of the pre-line 301 tangling during casting. In windy or obstructed environments, it may also make the fish bite signal less obvious, reducing the rig's sensitivity.

[0031] In this embodiment, the reserved length of the sub-line 301 between the first resistance bead 400 and the corresponding hook 302 is 'a', and the reserved length of the sub-line 301 between the second resistance bead 500 and the corresponding hook 302 is 'b'. 'a' and 'b' can be the same or different. When 'a' and 'b' are the same, maintaining consistent sub-line 301 lengths on both sides helps maintain the balance of the fishing rig, making the underwater posture of the two hooks 302 more symmetrical and reducing the possibility of hook 302 shifting or flipping due to unequal lengths. With consistent sub-line 301 lengths on both sides, the speed and intensity of the signal transmitted to the angler are more consistent, helping the angler accurately judge the fish's bite. During casting, sub-lines of the same length reduce the chance of tangling, improving fishing efficiency. When 'a' and 'b' are different, adjusting their lengths allows for adaptation to different fishing conditions and methods. For example, a 301 leader configuration with one side longer than the other can accommodate different water depths and fish species, increasing fishing flexibility. Different leader lengths can increase the bait's sway in the water, improving its attractant effect, especially when dynamic baiting is required. In some situations, a longer leader can reduce false signals caused by fish touching the line, improving the accuracy of hooking a fish. The design of the reserved lengths 'a' and 'b' of the 301 leader needs to be adjusted according to the specific fishing environment and target fish species to achieve optimal fishing results.

[0032] In this embodiment, the first resistance bead 400 and / or the second resistance bead 500 are selected from one of the following: round bead, elliptical bead, polygonal bead, gourd-shaped bead, teardrop-shaped bead, cylindrical bead, and conical bead. Round beads, due to their uniform geometric characteristics, can provide stable resistance and uniform force distribution. They exhibit uniform friction during rotation and have strong stability. Elliptical beads may result in uneven force distribution, potentially providing more resistance in certain directions compared to round beads. Polygonal beads may provide different contact points and resistance at each corner, which may affect their stability and sliding characteristics in specific directions. Gourd-shaped beads, with the side with the smaller taper facing the direction of movement, are used to reduce the water resistance experienced by the entire assembly during movement. Teardrop-shaped beads, based on fluid mechanics, also have the side with the smaller taper facing the direction of movement to reduce the water resistance experienced by the entire assembly during movement. Compared to cylindrical space beads, teardrop-shaped beads have a more uniform force distribution. Cylindrical beads are currently the most frequently used type of float bead in platform fishing. Because of their cylindrical shape, the thickness is relatively uniform from one end to the other, resulting in a relatively even distribution of force at each point of contact with the fishing line. Therefore, when a cylindrical bead is tightened onto the fishing line, the friction is even and the stability is strong. Conical beads, on the other hand, may have a smaller contact area at one end due to their geometry, thus providing greater resistance at that end. This design may help provide more control in a specific direction. Different shapes of first-resistance beads (400) and second-resistance beads (500) will produce different effects based on their shape characteristics, including stability, force distribution, and reduced water resistance. Choosing the appropriate shape can optimize for specific fishing environments and needs. Figure 1 As shown, both the first resistance bead 400 and / or the second resistance bead 500 are oval-shaped. Figure 2 As shown, the first resistance bead 400 and / or the second resistance bead 500 are both gourd-shaped beans.

[0033] In this embodiment, the first resistance bead 400 and the second resistance bead 500 may have the same or different shapes; and / or the first resistance bead 400 and the second resistance bead 500 may have the same or different radial dimensions. When the first resistance bead 400 and the second resistance bead 500 have the same shape, their appearance in the fishing rig is more unified and coordinated, which helps maintain the overall aesthetics and consistency of the fishing rig. If the first resistance bead 400 and the second resistance bead 500 have different shapes, the function of the resistance bead can be adjusted according to the specific needs of fishing. For example, one resistance bead can be designed to focus more on stability, while the other can be designed to focus more on reducing water resistance. When the radial dimensions are the same, the balance and symmetry of the two resistance beads in the fishing rig are better, which helps the stability and balance of the fishing rig. Different radial dimensions can provide different resistance and cushioning effects, adapting to different fishing environments and fish species. For example, a larger resistance bead can provide stronger fixing force, while a smaller resistance bead can reduce water resistance and improve the sensitivity of the fishing line. The selection of the shape and radial dimensions of the first resistance bead 400 and the second resistance bead 500 should be determined according to the specific fishing environment and needs to achieve the best fishing effect and performance.

[0034] like Figure 2 As shown in this embodiment, both the first resistance bead 400 and the second resistance bead 500 have small and large ends, with the small ends of the first resistance bead 400 and the second resistance bead 500 arranged opposite each other. This arrangement of the first resistance bead 400 and the second resistance bead 500 with their small ends opposite each other helps to balance the forces on the two hooks 302 during fishing. When a fish bites, the different sizes of the ends make the positions of the first resistance bead 400 and the second resistance bead 500 on the leader line 301 more stable, reducing slippage or displacement caused by the fish's pull; it also provides better fixation, making the first resistance bead 400 and the second resistance bead 500 more securely fixed on the leader line 301, reducing movement caused by water flow or fish pulling, thereby improving the stability of the fishing rig. When one of the hooks 302 hooks a fish, the force generated when the fish is hooked, especially if the force is too large and exceeds the elastic clamping force of the first resistance bead 400 or the second resistance bead 500, will cause the first resistance bead 400 or the second resistance bead 500 to slide toward the end where the fish is hooked. This causes the small end of the first resistance bead 400 or the small end of the second resistance bead 500 to enter the second ring 202 and be fixed in place. This makes the position of the empty hook 302 fixed and clearly visible, thus preventing the hook 302 from getting caught in the net or injuring people.

[0035] like Figure 1 and Figure 2As shown, in this embodiment, one first resistance bead 400 and / or one second resistance bead 500 are provided. This effectively limits the force applied and, when the force is too great, also acts as a buffer, allowing for smooth sliding and force dissipation on the sub-line 301, preventing the sub-line 301 from breaking. Using a single bead is suitable for scenarios with relatively small forces. If the force is too great (e.g., all forces are directed at large fish), the number of first resistance bead 400 and / or second resistance bead 500 can be appropriately increased.

[0036] like Figure 3 As shown, in this embodiment, multiple first resistance beads 400 are arranged, with a spacing of 0-5cm between adjacent first resistance beads 400; and / or multiple second resistance beads 500 are arranged, with a spacing of 0-5cm between adjacent first resistance beads 400. When multiple beads are arranged, adjacent first resistance beads 400 or adjacent second resistance beads 500 can work together to produce a dual effect of damping and buffering, which can quickly release force and prevent the leader line 301 from being pulled apart due to excessive force. By controlling the spacing between adjacent first resistance beads 400 or adjacent second resistance beads 500, the effect of damping force and buffering can be adjusted, thereby adapting to different fishing scenarios and improving adaptability. Optionally, when multiple first resistance beads 400 are arranged, the radial dimension of the first first resistance bead 400 closest to the second ring 202 is larger than the radial dimension of the other first resistance beads 400. Optionally, when multiple second resistance beads 500 are arranged, the radial dimension of the first second resistance bead 500 closest to the second ring 202 is larger than the radial dimension of the other second resistance beads 500.

[0037] Any matters not covered in this utility model are common knowledge.

[0038] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0039] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the appended claims.

[0040] The above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A hook-proof fishing rig, characterized in that, Includes fishing line (100), swivel (200) and double hook assembly (300), with fishing line (100) fixed on the first loop (201) at the first end of the swivel (200); The double hook assembly (300) includes a leader (301) and hooks (302) fixed at both ends of the leader (301). The leader (301) passes through the second loop (202) at the second end of the figure-eight swivel (200) so that the two hooks (302) are respectively located on both sides of the second loop (202). The sub-line (301) is provided with a first resistance bead (400) and a second resistance bead (500) that are elastically clamped on the sub-line (301). The first resistance bead (400) and the second resistance bead (500) are located on both sides of the second ring (202). The first resistance bead (400) and the second resistance bead (500) work together to limit the double hook assembly (300) on the second ring (202).

2. The anti-hook fishing rig according to claim 1, characterized in that, The short radial dimension of the first resistance bead (400) and the short radial dimension of the second resistance bead (500) are both greater than the inner radial dimension of the second ring (202).

3. The anti-hook fishing rig according to claim 2, characterized in that, The short radial dimension of the first resistance bead (400) and the short radial dimension of the second resistance bead (500) are both 1.2 to 4 times the inner radial dimension of the second ring (202).

4. The anti-hook fishing rig according to claim 1, characterized in that, The length of the reserved sub-line (301) between the first resistance bead (400) and the second resistance bead (500) is 0.2cm-5cm.

5. The anti-hook fishing rig according to claim 1, characterized in that, The length of the sub-line (301) between the first resistance bead (400) and the corresponding hook (302) is reserved as a. The reserved length of the sub-line (301) between the second resistance bead (500) and the corresponding hook (302) is b. a and b may be the same or different.

6. The anti-hook fishing rig according to any one of claims 1 to 5, characterized in that, The first resistance bean (400) and / or the second resistance bean (500) are made of one of the following: round bean, oval bean, polygonal bean, gourd-shaped bean, teardrop-shaped bean, cylindrical bean, or conical bean.

7. The anti-hook fishing rig according to any one of claims 1 to 5, characterized in that, The first resistance bead (400) and the second resistance bead (500) may have the same or different shapes; and / or The first resistance bead (400) and the second resistance bead (500) may have the same or different radial dimensions.

8. The anti-hook fishing rig according to any one of claims 1 to 5, characterized in that, Both the first resistance bead (400) and the second resistance bead (500) have small and large ends. The small ends of the first resistance bead (400) and the second resistance bead (500) are arranged opposite each other.

9. The anti-hook fishing rig according to any one of claims 1 to 5, characterized in that, The first resistance bead (400) is provided with one; and / or The second resistance bead (500) is arranged with one.

10. The anti-hook fishing rig according to any one of claims 1 to 5, characterized in that, Multiple first resistance beads (400) are arranged, with a spacing of 0-5 cm between adjacent first resistance beads (400); and / or Multiple second resistance beads (500) are arranged, and the distance between two adjacent first resistance beads (400) is 0-5cm.