Artificial bait fishhook with flexible connection structure

Through flexible connection structure and ball design, the problems of rigid swimming and poor waterproof performance of baits are solved, achieving better simulation results and fish-catching efficiency.

CN223040815UActive Publication Date: 2025-07-01LEADER SPORTING GOODS CO LTD
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Patent Information

Application Number
CN202421974945.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-07-01
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

The existing fake bait connection ring is fixedly connected to the simulated fish body, resulting in limited swimming in the simulated fish body, unable to effectively simulate the fish's swimming posture, and the electronic sound method increases production costs and poor waterproof performance.

Method used

The flexible connection structure is adopted, and the design of the flexible connection ring and the simulated fish body can move up and down, and a shaking sound is generated under the traction of the fish line, simulating the fish's swimming posture and attracting the fish.

Benefits of technology

It improves the simulation degree of the counterfeit bait and the efficiency of fishing, reduces production costs and improves waterproofing performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of artificial baits, and discloses an artificial bait fishhook with a flexible connection structure, which comprises an artificial fish body, the flexible connection structure is arranged at the front end of the artificial fish body, the artificial fish body is connected with a tongue plate through the flexible connection structure, and two balls are arranged in the tongue plate; a mounting groove is formed in the upper portion of one end of the simulated fish body, a through hole is transversely formed in the simulated fish body in a penetrating mode, and the through hole is communicated with the mounting groove. According to the utility model, the connecting ring is flexibly connected with the simulated fish body, and the vertical movement of the bait can be realized under the traction of the fishing line, so that the swimming stroke of the fish can be simulated, the surrounding big fish can be effectively attracted to approach, and the fishing efficiency of the big fish can be improved; the cylindrical containing cavity and the balls are arranged, in the drawing process of the fishing line, the balls can shake in the cylindrical containing cavity to generate sound so as to better attract fish schools to approach, and the fishing efficiency of fishing is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of artificial baits, in particular to an artificial bait hook with a flexible connection structure. Background Technique

[0002] A fishing bait is food used to lure fish when fishing. According to the principle of luring fish, fishing baits can be divided into real baits and artificial baits; artificial baits, also known as imitation fishing baits or mimic baits, are small devices made of plastics, metals or other materials that resemble small fish, shrimps and insects. When fishing, through the operation of the angler, it makes it resemble a natural living thing in the water, luring fierce fish to take the bait; different from traditional real baits, bionic fishing baits are now widely used in fishing and are very popular for their durability and stability.

[0003] The original intention of people in designing artificial baits is to simulate the swimming of small fish and design bionic fishing baits by using the habit of big fish eating small fish. However, the existing connecting rings of artificial baits are directly fixedly connected to the bionic fish body, which limits the swimming of the bionic fish body. Although a tongue plate is provided in the front, under the traction of the fishing line, the artificial bait connected by the connecting ring cannot be adjusted up and down, which makes the swimming of the artificial bait relatively rigid. Some of the existing artificial baits use electronic sound production, which increases the production cost of the fishing bait. At the same time, when soaked in water for a long time, it cannot effectively prevent water, that is, it cannot achieve a good sound imitation effect. For this reason, we propose an artificial bait hook with a flexible connection structure. Content of the Utility Model

[0004] The main purpose of the utility model is to provide an artificial bait hook with a flexible connection structure, which can effectively solve the problem that under the traction of the fishing line, the artificial bait connected by the connecting ring cannot be adjusted up and down, which makes the swimming of the artificial bait relatively rigid. Some of the existing artificial baits use electronic sound production, which increases the production cost of the fishing bait. At the same time, when soaked in water for a long time, it cannot effectively prevent water, that is, it cannot achieve a good sound imitation effect.

[0005] To achieve the above purpose, the technical solution adopted by the utility model is as follows:

[0006] An artificial bait hook with a flexible connection structure includes a bionic fish body. A flexible connection structure is arranged at the front end of the bionic fish body. The bionic fish body is connected with a tongue plate through the flexible connection structure. Two balls are arranged inside the tongue plate.

[0007] An installation groove is opened at the upper part of one end of the bionic fish body. A through hole is horizontally penetrated through the bionic fish body, and the through hole is communicated with the installation groove. Grooves are arranged at both ends of the through hole. Simulation fish eyes are pasted inside the grooves.

[0008] The flexible connection structure includes a plug rod, and the plug rod is inserted into the through hole. A connecting ring is sleeved on the plug rod, and one end of the connecting ring is flexibly connected to the tongue plate;

[0009] A connecting plate is installed inside the lower end of the tongue plate. A second wire-passing round hole is opened at the bottom end of the connecting plate, and one end of the connecting ring is sleeved inside the second wire-passing round hole;

[0010] A fishhook is fixedly installed inside the simulated fish body, and one end of the fishhook is provided with rough lines.

[0011] Furthermore, a first wire-passing round hole and a wire-passing semi-hole are opened at the upper end of the connecting plate. The first wire-passing round hole is located below the wire-passing semi-hole, and the second wire-passing round hole, the first wire-passing round hole and the wire-passing semi-hole are on the same straight line. A wire-tying plate is arranged between the first wire-passing round hole and the wire-passing semi-hole. A number of limiting through holes are arranged in an array at the middle position of the connecting plate.

[0012] Furthermore, an inclined plate is arranged at the upper end of the tongue plate. A cylindrical cavity is arranged on the tongue plate at the lower end of the inclined plate. Two ball bearings are arranged inside the cylindrical cavity. A through hole is opened on the tongue plate, and the first wire-passing round hole and the wire-passing semi-hole are inside the through hole.

[0013] Furthermore, the flexible connection structure includes a mounting ring, and the mounting ring and the fishhook are of an integral structure. The mounting ring is arranged at the mounting groove.

[0014] Furthermore, a corrugated groove is arranged at the rear end of the simulated fish body, and two hooks are arranged at the rear end of the corrugated groove.

[0015] Furthermore, transition grooves are arranged on both sides of the lower end of the simulated fish body.

[0016] Compared with the prior art, the utility model has the following beneficial effects:

[0017] 1. By setting the flexible connection structure, the utility model can effectively overcome the problem that the existing artificial bait swims rigidly and cannot swim up and down well. By adopting a flexible connection between the connecting ring and the simulated fish body, when the fishing line is pulled, under the action of the water flow after passing through the tongue plate, the simulated fish body can move up and down without restriction. The setting of the flexible connection increases the movement range of the simulated artificial bait, better realizes the relative movement between the simulated fish body and the tongue plate, and can realize the up and down movement of the bait under the traction of the fishing line, so as to play a role in imitating the swimming posture of fish, and then effectively attract the big fish around and improve the fish-catching efficiency of big fish.

[0018] 2. In the utility model, through the cylindrical cavity and the ball bearings arranged, during the process of fishline traction, the ball bearings will shake in the cylindrical cavity, and sounds will be generated during the shaking process to better attract fish to approach and increase the efficiency of catching fish.

[0019] Parts not involved in this device are the same as the prior art or can be implemented using the prior art. Description of the Drawings

[0020] Figure 1 It is one of the overall structural schematic diagrams of a false bait hook with a flexible connection structure according to the present utility model.

[0021] Figure 2 It is the second overall structural schematic diagram of a false bait hook with a flexible connection structure according to the present utility model.

[0022] Figure 3 It is the overall structural explosion diagram of a false bait hook with a flexible connection structure according to the present utility model.

[0023] Figure 4 It is the bottom view of a false bait hook with a flexible connection structure according to the present utility model.

[0024] Figure 5 It is the partial explosion diagram of a false bait hook with a flexible connection structure according to the present utility model.

[0025] Figure 6 It is the enlarged view of the simulated fish body of a false bait hook with a flexible connection structure according to the present utility model.

[0026] Figure 7 It is a false bait hook with a flexible connection structure according to the present utility model Figure 6 sectional view along A-A.

[0027] Figure 8 It is the partial explosion diagram of another embodiment of a false bait hook with a flexible connection structure according to the present utility model.

[0028] Figure 9 It is the schematic diagram of the existing false bait connection structure.

[0029] In the figures: 1, tongue plate; 2, simulated fish body; 3, fishhook; 4, inclined plate; 5, cylindrical cavity; 6, ball bearing; 7, through hole; 8, connecting plate; 9, first wire threading round hole; 10, half wire threading hole; 11, second wire threading round hole; 12, limiting perforation; 13, connecting ring; 14, mounting groove; 15, through hole; 16, inserting rod; 17, simulated fish eye; 18, corrugated groove; 19, hanging hook; 20, transition groove; 21, wire tying plate; 22, rough texture; 23, mounting ring. Detailed Embodiment

[0030] In order to make the technical means, creative features, achieved purposes and effects realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0031] As Figures 1-7 shown, a fishing lure hook with a flexible connection structure includes a simulated fish body 2. A flexible connection structure is provided at the front end of the simulated fish body 2. The simulated fish body 2 is connected to a tongue plate 1 through the flexible connection structure. The tongue plate 1, also called a water baffle, is used to move along with the fishing line when pulling the fishing hook 3. The water baffle blocks the water flow, so that the subsequent simulated fish body 2 will not tip over, better simulating the posture of fish in water and increasing the aesthetic degree. Two balls 6 are arranged inside the tongue plate 1;

[0032] An installation groove 14 is opened in the upper part of one end of the simulated fish body 2. The position of the installation groove 14 is approximately located at the fish mouth of the simulated fish body, further increasing the simulation aesthetics of the fishing bait. A through hole 15 is transversely penetrated in the simulated fish body 2. Actually, there are two through holes 15, which are respectively in the simulated fish body 2 at both ends of the installation groove 14, and the through hole 15 is connected to the installation groove 14 in a communicating way. Grooves are arranged at both ends of the through hole 15. A simulated fish eye 17 is pasted inside the groove. The flexible connection structure includes a plug rod 16, and the plug rod 16 is inserted into the through hole 15. A connection ring 13 is sleeved on the plug rod 16, and one end of the connection ring 13 is flexibly connected to the tongue plate 1; during installation, first place one end of the connection ring 13 between the two through holes 15, then insert the plug rod 16 into the through hole 15 and pass through the connection ring 13 at the same time, and then bond the two simulated fish eyes 17 in the groove to block the plug rod 16 to prevent the plug rod 16 from slipping out, so as to realize the fixation of the plug rod 16.

[0033] A connecting plate 8 is installed inside the lower end of the tongue plate 1. A second wire-passing round hole 11 is opened at the bottom end of the connecting plate 8. One end of the connection ring 13 is sleeved inside the second wire-passing round hole 11;

[0034] The simulated fish body 2 is integrally formed by die casting. A fishing hook 3 is fixedly installed inside the simulated fish body 2, and a rough texture 22 is arranged at one end of the fishing hook 3. In this embodiment, the rough texture 22 is similar to burrs, which can increase the connection stability between the formed simulated fish body 2 and the fishing hook 3 during die casting.

[0035] In the prior art such as Figure 9As shown, the connecting ring is directly and fixedly connected to the simulated fish body, which limits the movement of the simulated fish body. Although a tongue plate is provided in the front, under the traction of the fishing line, the fishing lure connected by the connecting ring cannot be adjusted up and down. This makes the movement of the fishing lure rather rigid. In this application, by setting the connecting ring 13 and the simulated fish body 2 to be flexibly connected, during traction, under the action of the water flow after passing through the tongue plate 1, the simulated fish body 2 can move up and down without restriction. The setting of the flexible connection increases the movement range of the simulated fishing lure, better realizing the relative movement between the simulated fish body and the tongue plate. Under the traction of the fishing line, the fishing bait can move up and down to mimic the swimming posture of fish.

[0036] At the upper end of the connecting plate 8, a first wire-passing round hole 9 and a wire-passing semi-hole 10 are provided. The first wire-passing round hole 9 is located below the wire-passing semi-hole 10, and the second wire-passing round hole 11, the first wire-passing round hole 9 and the wire-passing semi-hole 10 are on the same straight line. A wire-tying plate 21 is arranged between the first wire-passing round hole 9 and the wire-passing semi-hole 10. At the middle position of the connecting plate 8, several groups of limiting through holes 12 are arranged in an array. The connecting plate 8 is made of metal material, which can increase the connection strength of the fishing lure.

[0037] At the upper end of the tongue plate 1, an inclined plate 4 is provided. The inclined setting of the inclined plate 4 can play a role in slowing down part of the water flow and better realizing the stability of the fishing bait during movement. On the tongue plate 1 at the lower end of the inclined plate 4, a cylindrical cavity 5 is provided. Two ball bearings 6 are arranged inside the cylindrical cavity 5. The two ball bearings 6 can shake inside the cylindrical cavity 5 and generate sound during the shaking process. This enables the fishing bait to generate noise during use to better attract fish to approach and increase the hook-up rate of the fishing bait. A through hole 7 is provided on the tongue plate 1, and the first wire-passing round hole 9 and the wire-passing semi-hole 10 are inside the through hole 7. One end of the fishing line passes through the first wire-passing round hole 9 and the wire-passing semi-hole 10 to be installed on the tongue plate 1. The simulated fish body 2 forms a flexible connection with the tongue plate through the connecting ring. Compared with the existing fishing bait directly fixedly connected to the tongue plate, the relative movement between the simulated fish body 2 and the tongue plate is better realized. Under the traction of the fishing line, the fishing bait can move up and down to mimic the swimming posture of fish.

[0038] The tongue plate 1 is integrally injection-molded on the connecting plate 8. The several groups of limiting through holes 12 provided on the connecting plate 8 can effectively ensure the connection stability between the tongue plate 1 and the connecting plate 8 after injection molding.

[0039] As Figure 1 and Figure 8As shown, as another embodiment of the present utility model, the flexible connection structure includes an installation ring 23, and the installation ring 23 and the fishhook 3 are of an integral structure. During casting, the position of the installation ring 23 is set at the installation groove 14, so that only a small arc of the installation ring 23 in the installation groove 14 is exposed. On the one hand, it is to increase the connection stability between the formed simulation fish body 2 and the fishhook 3 during mold casting. On the other hand, the exposed small arc can be directly connected to the connection ring 13.

[0040] A corrugated groove 18 is provided at the rear end of the simulation fish body 2. The corrugated groove 18 is provided for winding skirt filaments. The skirt filaments are mostly rubber filaments or silica gel filaments to increase the beauty of the artificial bait. At the same time, the skirt filaments will be coated with reflective paint. During the process of towing the bait, the fluctuation of the skirt filaments can attract the attention of fish schools under the reflection of light. Two hooks 19 are provided at the rear end of the corrugated groove 18 for hanging the artificial bait.

[0041] Transition grooves 20 are provided on both sides of the lower end of the simulation fish body 2, so that the lower end of the simulation fish body 2 forms an arc-shaped transition, similar to the fins of a fish, to increase the stability of movement during the process of towing the bait.

[0042] It should be noted that the present utility model is an artificial bait hook with a flexible connection structure. When in use, first, one end of the fishing line is passed through the first threading round hole 9 and the threading half hole 10 and tied to the threading plate 21, or the fishing line is tied to the buckle of an existing similar safety pin device, and then clamped on the threading plate 21 to realize the connection of the fishing line. Then, under the traction of the fishing line, the cylindrical cavity 5 and the ball 6 provided on the tongue plate 1, and the ball 6 will shake in the cylindrical cavity 5 to generate sound, so as to better attract fish schools to approach and increase the fish-catching efficiency of fishing;

[0043] The connection ring 13 movably connected to the connecting plate 8, and then a flexible connection is formed between the connection ring 13 and the simulation fish body 2 movably connected thereto. Under the traction of the fishing line, the simulation fish body 2 can move in the upper and lower directions. Under the action of the water flow after passing through the tongue plate 1, the simulation fish body 2 can move up and down without restriction. The setting of the flexible connection increases the movement range of the simulation artificial bait and better realizes the relative movement between the simulation fish body 2 and the tongue plate 1. Under the traction of the fishing line, the bait can move up and down to play a role in imitating the swimming posture of fish;

[0044] This application mentions two connection methods between the fishhook 3 and the simulation fish body 2. One is as Figure 8As shown, the mounting ring 23 and the fishhook 3 are of an integral structure. During casting, the mounting ring 23 is positioned at the mounting groove 14, such that only a small arc of the mounting ring 23 in the mounting groove 14 is exposed. On the one hand, this is to increase the stability of the connection between the molded simulated fish body 2 and the fishhook 3 during mold casting. On the other hand, the exposed small arc can be directly connected to the connecting ring 13. One way is as Figure 3 shown. First, one end of the connecting ring 13 is placed between the two through holes 15. Then, the insertion rod 16 is inserted into the through hole 15 and passes through the connecting ring 13 at the same time. Then, the two simulated fish eyes 17 are bonded in the groove to block the insertion rod 16 and prevent the insertion rod 16 from slipping out, so as to fix the insertion rod 16. The above two methods both achieve the movable connection of the connecting ring 13, which effectively solves the problem in the prior art such as Figure 9 shown, where the connecting ring is directly fixedly connected to the simulated fish body 2.

[0045] The inclined plate 4 provided on the tongue plate 1 is considered based on the fact that the outer shell of the cylindrical cavity 5 protrudes with a relatively small area. The upper end of the tongue plate 1 is set to be inclined, which can further reduce the water flow resistance without affecting the function of the tongue plate 1.

[0046] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A fishing hook with a flexible connection structure, comprising a simulated fish body (2), characterized in that: A flexible connection structure is provided at the front end of the simulated fish body (2), the simulated fish body (2) is connected to a tongue plate (1) via the flexible connection structure, and two balls (6) are provided inside the tongue plate (1); A mounting groove (14) is provided at the upper part of one end of the simulated fish body (2), a through hole (15) is provided transversely through the simulated fish body (2), and the through hole (15) is connected to the mounting groove (14), grooves are provided at both ends of the through hole (15), and simulated fish eyes (17) are pasted inside the grooves; The flexible connection structure comprises an insertion rod (16), and the insertion rod (16) is inserted into the inside of the through hole (15), a connecting ring (13) is sleeved on the insertion rod (16), and one end of the connecting ring (13) is flexibly connected to the tongue plate (1); A connecting plate (8) is installed inside the lower end of the tongue plate (1), a second threading circular hole (11) is opened at the bottom end of the connecting plate (8), and one end of the connecting ring (13) is sleeved inside the second threading circular hole (11); A fish hook (3) is fixedly installed inside the simulated fish body (2), and one end of the fish hook (3) is provided with a rough texture (22).

2. The artificial bait fishing hook with a flexible connection structure according to claim 1, characterized in that: The upper end of the connecting plate (8) is provided with a first threading circular hole (9) and a threading half hole (10), and the first threading circular hole (9) is located below the threading half hole (10), and the second threading circular hole (11), the first threading circular hole (9) and the threading half hole (10) are located on the same straight line, a threading plate (21) is provided between the first threading circular hole (9) and the threading half hole (10), and a plurality of groups of limiting through holes (12) are arranged in an array in the middle position of the connecting plate (8).

3. The artificial bait fishing hook with a flexible connection structure according to claim 2, characterized in that: The upper end of the tongue plate (1) is provided with an inclined plate (4), a cylindrical cavity (5) is provided on the tongue plate (1) at the lower end of the inclined plate (4), the two balls (6) are arranged inside the cylindrical cavity (5), a through hole (7) is opened on the tongue plate (1), and the first threading circular hole (9) and the threading half hole (10) are located inside the through hole (7).

4. The artificial bait fishing hook with a flexible connection structure according to claim 1, characterized in that: The flexible connection structure comprises a mounting ring (23), and the mounting ring (23) and the fish hook (3) are an integral structure, and the mounting ring (23) is arranged at the mounting groove (14).

5. The artificial bait fishing hook with a flexible connection structure according to claim 1, characterized in that: The rear end of the simulated fish body (2) is provided with a corrugated groove (18), and the rear end of the corrugated groove (18) is provided with two hooks (19).

6. The artificial bait fishing hook with a flexible connection structure according to claim 1, characterized in that: Transition grooves (20) are provided on both sides of the lower end of the simulated fish body (2).

Citation Information

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