Multi-folding force-unloading fishhook

By designing a multi-fold unloading hook, the problem of insufficient unloading force of traditional fish hooks is solved, the success rate and stability of fishing are improved, the fish is prevented from escaping, and the service life of the fish hook is extended.

CN223125654UActive Publication Date: 2025-07-22JINGDEZHEN HAIBA KING KONG E-COMMERCE CO LTD
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Patent Information

Application Number
CN202421735586.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-07-22
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

Traditional fish hooks have poor unloading effect when dealing with large fish, which can easily lead to broken fish line or deformed and decoupled fishing, affecting the success rate and experience of fishing.

Method used

A multi-fold unloading hook is designed. The hook body is formed integrally from the front end of the hook, the middle end of the hook and the tail end of the hook. The tail end of the hook is a multi-fold structure. The front end of the hook is not on the same plane. It is made of high-hardness material. The front end of the hook is designed with barbs, and the barbs are tilted downward.

Benefits of technology

Effectively disperse and absorb the tension of the fish when it struggles, improve the success rate of fishing, prevent the fish from escaping, increase the reliability and stability of fishing, and extend the service life of the fish hook.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-fold force unloading fishhook which comprises a hook body, the hook body comprises at least one hook front end, at least one hook middle end and at least one hook tail end, and the hook front end, the hook middle end and the hook tail end are integrally formed. The tail end of the hook is designed to be of a multi-folding structure, and a hook handle is designed at the tail end. And the hook front end and the hook tail end are not on the same plane. Compared with the prior art, the fishhook has the advantages that through unique structural design and material selection, the problems existing in the aspects of force unloading, piercing effect, fish escape prevention and the like of a traditional fishhook are effectively solved. The fishing rod has the advantages of being reasonable in structure, convenient to use, reliable in performance and the like, can meet the requirements of fishermen in different fishing scenes, and improves the fun and success rate of fishing. It is believed that the fishing hook can bring better fishing experience to fishing enthusiasts through popularization and application of the fishing hook.
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Description

Technical Field

[0001] The utility model relates to the field of fishing tools, in particular to a multi-foldable drag hook. Background Art

[0002] In fishing activities, the fishing hook is a crucial tool. Traditional fishing hooks have certain limitations in structure and function. For example, when dealing with big fish, the drag effect is not good, easily leading to the fishing line breaking or the hook deforming and coming off the hook, affecting the success rate and experience of fishing. In order to improve the fishing effect and success rate and meet the needs of fishermen in different scenarios, we have developed this multi-foldable drag hook. Summary of the Invention

[0003] The utility model aims to solve the above technical problems and provides a multi-foldable drag hook.

[0004] To solve the above technical problems, the technical solution provided by the utility model is: a multi-foldable drag hook, including a hook body, wherein the hook body includes at least one hook front end, at least one hook middle end and at least one hook tail end, and the hook front end, hook middle end and hook tail end are integrally formed;

[0005] The hook tail end is designed as a multi-foldable structure or a straight rod structure, and a hook handle is designed at the end;

[0006] The hook front end and the hook tail end are not in the same plane.

[0007] Further, the hook body includes one hook front end, one hook middle end and one hook tail end, the hook tail end is a multi-foldable structure, and the number of bends is greater than or equal to one.

[0008] Further, the hook handle is of a flat structure, and the transverse width is greater than the diameter of the hook tail end.

[0009] Further, a barb is designed at the hook front end.

[0010] Further, the barb is located on one side of the hook front end relative to the hook tail end, and the tip of the barb inclines downward.

[0011] Further, the barb is integrally formed with the hook front end or connected by electric welding.

[0012] Further, the hook body is made of a high-hardness material.

[0013] Further, the barb is made of a hard metal or non-metal material.

[0014] Furthermore, the hook body includes two hook fronts, two hook middles, and one hook tail. The hook tail is in an "n" shape structure, and the two hook fronts and the two hook middles are arranged back-to-back with the hook tail as the center. The hook body is in a "Ji" shape structure.

[0015] Furthermore, the hook body includes two hook fronts, two hook middles, and one hook tail. The hook tail is in an "n" shape structure, and the two hook fronts and the two hook middles are arranged back-to-back with the hook tail as the center. The hook body is in a "Ji" shape structure. One side of the hook tail is a bent structure, and the other side is a straight rod structure.

[0016] The advantages of the present utility model compared with the prior art are as follows:

[0017] 1. The force-releasing effect is remarkable.

[0018] The multi-folded hook tail structure can effectively disperse and absorb the pulling force when the fish struggles, reduce the probability of the fishing line breaking and the hook being disengaged, and improve the success rate of fishing.

[0019] 2. The piercing effect is good.

[0020] The design that the hook front and the hook tail are not in the same plane makes it easier and smoother for the fishhook to pierce into the fish's mouth, improving the piercing efficiency and stability of the fishhook.

[0021] 3. Prevent the fish from escaping.

[0022] The barbs at the hook front can effectively prevent the fish from spitting out the fishhook, increasing the reliability of fishing.

[0023] 4. The structural strength is high.

[0024] The hook body made of high-hardness material and the barb material with a hard texture ensure that the fishhook is not easily deformed and damaged during long-term use, extending the service life of the fishhook. Description of the Drawings

[0025] Figure 1 is Embodiment 1 of the multi-fold force-releasing fishhook of the present utility model.

[0026] Figure 2 is Embodiment 2 of the multi-fold force-releasing fishhook of the present utility model.

[0027] Figure 3 is Embodiment 3 of the multi-fold force-releasing fishhook of the present utility model.

[0028] Figure 4 is Embodiment 4 of the multi-fold force-releasing fishhook of the present utility model.

[0029] Figure 5This is the fifth embodiment of the multi-fold release force fishhook of the present utility model.

[0030] Figure 6 This is the sixth embodiment of the multi-fold release force fishhook of the present utility model.

[0031] As shown in the figure: 1 - hook body; 101 - front end of the hook; 102 - middle end of the hook; 103 - tail end of the hook; 104 - shank of the hook, 105 - barb. Detailed implementation manner

[0032] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0033] In the description of the present utility model, it should be noted that unless otherwise clearly defined and limited, the term "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; for those of ordinary skill in the art, the specific meaning of the above terms in the present utility model can be understood according to specific situations.

[0034] Working principle of the present utility model:

[0035] (I) Overall structure of the multi-fold release force fishhook

[0036] The multi-fold release force fishhook of the present invention mainly includes a hook body. The hook body is divided into at least one front end of the hook, at least one middle end of the hook and at least one tail end of the hook. These three parts are integrally formed, ensuring the overall strength and stability of the fishhook.

[0037] (II) Unique design of the tail end of the hook

[0038] 2.1. As Figure 1 , Figure 2 , Figure 3 , Figure 4 shown, the hook is composed of one tail end of the hook, one middle end of the hook and one front end of the hook;

[0039] The tail end of the hook is designed as a multi-fold structure. This multi-fold design greatly increases the elasticity and deformation ability of the tail end of the hook. When the fish struggles after being hooked, the multi-fold structure can effectively absorb and disperse the pulling force of the fish, playing a good role in releasing the force and reducing the risk of the fishing line breaking and the fishhook being disengaged. Moreover, a shank is designed at the end of the tail end of the hook, which is convenient for connecting and fixing with the fishing line.

[0040] 2.2. As Figure 5 , Figure 6 shown, the hook body is composed of two front ends of the hook, two middle ends of the hook and one tail end of the hook;

[0041] The front ends and the middle parts of the two hooks are symmetrically arranged with respect to the hook tail end. The middle part of the hook is designed in an "n"-shaped structure. This layout enables the hook body to apply force from multiple directions during use, increasing the success rate of fishing or other related operations.

[0042] One side of the hook tail end is in a bent structure, and the other side is in a straight rod structure. This asymmetrical design further enhances the stability and gripping force of the hook body. When a fish is hooked, the front ends and the middle parts of the hooks arranged in different directions can disperse the struggling force of the fish, reducing the possibility of the fish breaking free.

[0043] (III) The positional relationship between the front end and the tail end of the hook

[0044] The front end and the tail end of the hook are not in the same plane. This non-coplanar design helps to better pierce the fish's mouth when fishing, improving the piercing effect and stability of the fishhook.

[0045] (IV) The number of multi-fold bends at the hook tail end

[0046] As Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 shown, the number of bends of the multi-fold structure at the hook tail end is greater than or equal to one. The specific number of bends can be adjusted according to actual needs and manufacturing processes. Generally, the more the number of bends, the better the elasticity and the force unloading effect of the hook tail end.

[0047] As Figure 5 、 Figure 6 shown, it is composed of two hook front ends, two hook middle parts and one hook tail end, and the overall shape is a "ji"-shaped structure. The hook tail end is in an "n" shape, and the two hook front ends and the two hook middle parts are arranged back-to-back with the hook tail end as the center.

[0048] This multi-fold force-unloading fishhook has a wide range of application scenarios. In fishery catches, its unique structure can improve the fishing efficiency. Whether in freshwater or seawater environments, it can adapt to the body sizes and activity characteristics of different fish species and effectively catch fish.

[0049] For recreational fishing enthusiasts, this fishhook can increase the fun and sense of achievement of fishing. Due to its special structure, it can better cope with various breaking-free actions of fish, making it easier for anglers to successfully catch fish.

[0050] In addition, in some special fishing operations or scientific research, this multi-fold force-unloading fishhook can also play an important role. For example, in the research and monitoring of specific fish species, it can more reliably catch the target fish, providing accurate data and samples for scientific research work.

[0051] (V) Structural Characteristics of the Hook Handle

[0052] The hook handle is designed in a flat structure, and its transverse width is greater than the diameter of the hook tail end. The flat hook handle can provide a larger contact area, making the connection between the fishing line and the hook handle more secure and not prone to slipping. At the same time, the larger transverse width also increases the strength of the hook handle, improving the reliability of the fishing hook during use.

[0053] (VI) Barbed Design at the Front End of the Hook

[0054] In order to prevent the fish from escaping after being hooked, barbs are designed at the front end of the hook. The barbs are located on one side of the front end of the hook relative to the hook tail end, and the tips of the barbs are inclined downward. This design enables the barbs to effectively prevent the fish from spitting out the hook after swallowing it, improving the success rate of fishing.

[0055] (VII) Connection Method of the Barbs

[0056] The barbs and the front end of the hook can be integrally formed or connected by electric welding. Integrally formed barbs have better strength and stability, but the manufacturing process is relatively complex; barbs connected by electric welding are relatively simple in manufacturing, but it is necessary to ensure the quality and strength of the electric welding to ensure that the barbs will not fall off during use.

[0057] (VIII) Material Selection of the Hook Body

[0058] The hook body is made of high-hardness materials such as high-strength stainless steel and titanium alloy. These materials have good wear resistance, corrosion resistance and strength, which can ensure that the fishing hook is not easily deformed and damaged during long-term use.

[0059] (IX) Material Selection of the Barbs

[0060] The barbs are made of hard metals or non-metallic materials such as tungsten steel and ceramics. These materials have high hardness and wear resistance, which can effectively prevent the barbs from being worn or deformed during use, thus ensuring their effect of preventing the fish from escaping.

[0061] Embodiment

[0062] Manufacturing Process

[0063] 1. First, select a suitable high-hardness material according to the design requirements to make the hook body, such as using high-strength stainless steel bars.

[0064] 2. Through die stamping or numerical control machine tool processing, the stainless steel bar is initially formed into a basic shape with a front end, a middle end and a tail end of the hook.

[0065] 3. Perform multi-fold processing on the hook tail end, and hot bending or cold bending processes can be used for precise processing according to the set number and angle of bending.

[0066] 4. Shape the hook handle to make it a flat structure and ensure that its lateral width meets the design requirements.

[0067] 5. Process barbs at the front end of the hook. It can be integrally formed with the hook body by directly stamping the barb shape through a mold; or by using electric welding connection to weld the separately made barb to the front end of the hook.

[0068] 6. Grind and polish the whole fishhook to remove burrs and sharp corners, and improve the surface quality and smoothness of the fishhook.

[0069] 7. Finally, perform heat treatment on the fishhook to improve its hardness and strength.

[0070] Usage

[0071] When using the multi-fold release fishhook, the appropriate model and specification should be selected according to the target fish species and the size of the fish during fishing to ensure that the performance of the fishhook can be fully exerted; after use, the sundries and stains on the fishhook should be cleaned in time and stored in a dry and ventilated place to prevent the fishhook from rusting and being damaged; regularly check the barbs, hook body, hook handle and other parts of the fishhook, and replace them in time if there is any damage or deformation to ensure the safety and success rate of fishing.

[0072] Specific usage

[0073] 1. Pass the fishing line through the hook handle and firmly connect the fishing line to the hook handle according to the common fishing knotting method.

[0074] 2. Select the appropriate bait and hang the bait on the front end of the hook.

[0075] 3. Throw the fishhook into the water and wait for the fish to take the bait.

[0076] 4. When the fish swallows the fishhook, the barbs at the front end of the hook will prevent the fish from spitting out the fishhook, and at the same time, the multi-fold structure at the tail end of the hook will play a role in releasing the force, reducing the risk of the fishing line breaking and the fishhook being disengaged.

[0077] The multi-fold release fishhook of the present invention effectively solves the problems existing in traditional fishhooks in terms of force release, piercing effect and preventing fish from escaping through unique structural design and material selection. It has the advantages of reasonable structure, convenient use, reliable performance, etc., can meet the needs of fishermen in different fishing scenarios, and improve the fun and success rate of fishing. It is believed that the popularization and application of this fishhook will bring a better fishing experience to fishing enthusiasts.

[0078] The above describes the present utility model and its implementation manners. Such description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present utility model, and the actual structure is not limited thereto. Generally speaking, if those of ordinary skill in the art are inspired by it and design, without creative efforts, structural manners and embodiments similar to the technical solution without departing from the gist of the creation of the present utility model, they shall fall within the protection scope of the present utility model.

Claims

1. Multi-foldable fishhook with a release mechanism, including a hook body (1), characterized in that: The hook body (1) includes at least one hook front end (101), at least one hook middle end (102), and at least one hook tail end (103), and the hook front end (101), the hook middle end (102), and the hook tail end (103) are integrally formed; The hook tail end (103) is designed as a multi-fold structure or a straight rod structure, and a hook handle (104) is designed at the end; The hook front end (101) is integrally twisted and designed, and is not in the same plane as the hook tail end (103).

2. The multi-fold force-releasing fishhook according to claim 1, wherein: The hook body (1) includes a hook front end (101), a hook middle end (102), and a hook tail end (103), and the hook tail end (103) is a multi-fold structure, and the number of bends is greater than or equal to one.

3. The multi-fold unloading fishhook according to claim 2, wherein: The hook handle (104) is a flat structure, and the transverse width is greater than the diameter of the hook tail end (103).

4. The multi-fold unloading fishhook according to claim 2, wherein: The hook front end (101) is designed with barbs (105).

5. The multi-fold unloading hook according to claim 4, wherein: The barbs (105) are located on one side of the hook front end (101) relative to the hook tail end (103), and the tips of the barbs (105) are inclined downward.

6. The multi-fold force-releasing fishhook according to claim 4, wherein: The barbs (105) are integrally formed with the hook front end (101) or connected by electric welding.

7. The multi-fold unloading fishhook according to claim 1, wherein: The hook body (1) is made of a high-hardness material.

8. The multi-fold force-releasing fishhook according to claim 4, wherein: The barbs (105) are made of a hard metal or non-metal material.

9. The multi-fold force-discharging fishhook according to claim 1, characterized in that: The hook body (1) includes two hook front ends (101), two hook middle ends (102), and one hook tail end (103), and the hook tail end (103) is in an "n" shape structure, and the two hook front ends (101) and the two hook middle ends (102) are both arranged back-to-back with the hook tail end (103) as the center, and the hook body (1) is in a "ji" shape structure.

10. The multi-fold unloading hook according to claim 1, wherein: The hook body (1) includes two hook front ends (101), two hook middle ends (102), and one hook tail end (103), and the hook tail end (103) is in an "n" shape structure, and the two hook front ends (101) and the two hook middle ends (102) are both arranged back-to-back with the hook tail end (103) as the center, and the hook body (1) is in a "ji" shape structure, and one side of the hook tail end (103) is a bent structure, and the other side is a straight rod structure.