Fishing line and fishing rod using same

By designing a fishing line with elastic segments and a limiting device, the problem of rigid fishing line being difficult to pull bait is solved, the success rate of shrimp biting the hook is improved, and the sensing device prompts the angler to reel in the fishing line, achieving efficient fishing results.

CN223403110UActive Publication Date: 2025-10-03刘旭港
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Patent Information

Application Number
CN202422901282.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-10-03
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

Existing fishing lines are rigid, making it difficult to pull the bait when the shrimp bites the hook, thus reducing the success rate of fishing.

Method used

The fishing line design includes an elastic line segment and a first rigid line segment. The elastic line segment can be stretched when the shrimp pulls the hook, and is prevented from over-stretching by a limit device. Combined with a sensing device, it prompts that the hook is successfully bitten.

Benefits of technology

The success rate of shrimp biting the hook is improved, and the angler is prompted to reel in the fishing line in time through the sensing device, thereby simplifying the structure and reducing production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a fishing line, the lower end of the fishing line is connected with a fishhook, the fishing line comprises an elastic line segment and a first rigid line segment which are connected with each other, and the elastic line segment can be lengthened under the condition that a shrimp pulls the fishhook. The utility model further relates to a fishing rod applying the fishing line, the fishing rod comprises a hollow rod body, the elastic line segment and the first rigid line segment are contained in the rod body, the upper end of the elastic line segment is fixed in the rod body, the lower end of the elastic line segment is connected with the first rigid line segment, and the elastic line segment is connected with the first rigid line segment. The tail end of the first rigid line segment penetrates out of the lower end part of the rod body; and a limiting device for preventing the elastic line segment from being excessively stretched is arranged between the first rigid line segment and the rod body. The fishing line with the elastic line segment is adopted, so that bait can be pulled by a certain distance when a shrimp bites the hook, and the effect of paralyzing the shrimp is achieved; the fishing line can also be used for fishing or crabs; the fishing rod is provided with the sensing device capable of prompting hook biting, so that the success rate of fishing is increased.
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Description

Technical Field

[0001] The utility model relates to the technical field of fishing tools, in particular to a fishing line and a fishing rod using the fishing line. Background Art

[0002] Fishing is a very popular leisure activity, and existing fishing tackle is mostly used for fishing, and fishing tackle usually comprises fishing rod, fishing line and fishing hook. When needing to catch shrimp, the fishing hook is replaced with shrimp hook.

[0003] One end of the fishing rod is connected to a fishing line, and the end of the fishing line is connected to a shrimp hook with bait on it. When the shrimp bites the hook, it first pulls the bait with its legs. Because the existing fishing line is rigid, the bait is difficult to pull, which makes the shrimp more alert and reduces the success rate of being hooked. Utility Model Content

[0004] The first technical problem to be solved by the present invention is to provide a fishing line with a high fishing success rate in view of the current status of the existing technology.

[0005] The second technical problem to be solved by the present invention is to provide a fishing rod using the above-mentioned fishing line in view of the current status of the existing technology.

[0006] The technical solution adopted by the present invention to solve the first technical problem mentioned above is: a fishing line, the lower end of which is connected to a fishing hook, and the fishing line includes an elastic line segment and a first rigid line segment connected to each other. When the shrimp pulls the fishing hook, the elastic line segment can be stretched.

[0007] The technical solution adopted by the present invention to solve the above-mentioned second technical problem is: a fishing rod using the above-mentioned fishing line, also including a hollow rod body, the elastic line segment and the first rigid line segment are accommodated in the rod body, the upper end of the elastic line segment is fixed in the rod body, the lower end of the elastic line segment is connected to the first rigid line segment, and the end of the first rigid line segment passes through the lower end of the rod body; a limiting device is provided between the first rigid line segment and the rod body to prevent the elastic line segment from being over-stretched.

[0008] Preferably, the limiting device includes a first limiting mechanism disposed within the rod and a second limiting mechanism disposed on the first rigid segment; along the length of the rod, the first limiting mechanism is located below the second limiting mechanism. When the shrimp pulls on the hook, stretching the elastic segment, the second limiting mechanism on the first rigid segment is blocked by the first limiting mechanism, thereby preventing the elastic segment from being excessively stretched.

[0009] To save production costs, the rod body comprises a thick rod and a thin rod, the thin rod being inserted into the thick rod, and the stopper being installed within the thick rod. The stopper takes up installation space within the rod body, and to facilitate installation, it is installed within the thick rod. Only the first rigid segment passes through the thin rod, so a thin rod of smaller diameter can be used. In this embodiment, the thin rod is inserted into the thick rod from the lower end of the thick rod, and the outer wall of the thin rod is threadedly connected to the inner wall of the thick rod.

[0010] In order to simplify the structure, the upper end of the thin rod serves as the first limiting mechanism, and the end of the first rigid line segment passes through the lower end of the thin rod.

[0011] To indicate a successful hook bite, the fishing rod also includes a sensing device comprising a first sensor mounted on the rod body and a second sensor mounted on the fishing line corresponding to the first sensor. The first and second sensors are configured such that when the second sensor moves away from the first sensor, the first sensor issues a hook bite alarm. In this embodiment, the first sensor also serves as the aforementioned second stopper, further simplifying the structure.

[0012] On the contrary, the first sensor and the second sensor can also be configured so that when the second sensor is close to the first sensor, the first sensor issues a hook alarm. However, the design positions of the first sensor and the second sensor in this solution are different from those in the above solution. Those skilled in the art can set them according to specific circumstances.

[0013] To facilitate signal recognition, the second sensor is positioned at the junction of the elastic segment and the first rigid segment, ensuring that the distance the second sensor moves is the same as the distance the fishing line is stretched. When the second sensor is positioned at the junction of the elastic segment and the first rigid segment, the distance the second sensor moves is the same as the distance the fishing line is stretched, thereby facilitating sensitive distance recognition between the first and second sensors.

[0014] To facilitate storage, the lower end of the first rigid line segment is connected to the aforementioned hook, and a fixing member for securing the hook is provided on the outer wall of the rod body. The hook extends beyond the thin rod and, after storage, can be hung on the fixing member to prevent the hook from moving around or piercing the skin. In this embodiment, the fixing member can be a rubber band wrapped around the outer wall of the rod body.

[0015] In order to facilitate the fixing of the fishing line, the fishing line further includes a second rigid line segment, the upper end of the second rigid line segment is fixed to the upper end of the rod body, and the lower end of the second rigid line segment is connected to the upper end of the elastic line segment.

[0016] To better accommodate the tension generated by shrimp bites, the elastic line segments have an elastic modulus of 10 to 20 N / m. In this embodiment, the maximum distance the elastic line segments are stretched by shrimp is 15 to 30 cm. If the fishing line of this invention is used for fishing or crab fishing, elastic line segments with different elastic moduli, such as rubber bands or elastic cords, can be replaced based on the tension generated by the fish or crab bites.

[0017] Compared with the existing technology, the advantages of the present invention are: the present invention adopts a fishing line with elastic line segments, so that when the shrimp bites the hook, the bait can be pulled a certain distance, which has the effect of paralyzing the shrimp;

[0018] The fishing line of the utility model can also be used for fishing or crab fishing;

[0019] The fishing rod of the utility model is provided with a sensing device which can prompt when the hook is bitten, thereby improving the success rate of fishing. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a partial structural diagram of a fishing rod in an embodiment of the present utility model;

[0021] Figure 2 for Figure 1 Cross-section of the fishing rod;

[0022] Figure 3 for Figure 1 Exploded view of a medium fishing rod. DETAILED DESCRIPTION

[0023] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments.

[0024] like Figures 1 to 3 The figure shows a preferred embodiment of the fishing rod of the present invention, which includes a rod body 1, a fishing line 2 and a fishing hook 3 connected to the lower end of the fishing line 2.

[0025] The rod body 1 includes a thick rod 11 and a thin rod 12. Both the thick rod 11 and the thin rod 12 are hollow rods. The thin rod 12 is inserted into the lower end of the thick rod 11. Specifically, an external thread is provided on the outer wall of the upper end of the thin rod, and an internal thread is provided on the inner wall of the lower end of the thick rod. The thin rod and the thick rod are threadedly connected.

[0026] The fishing line 2 comprises a second rigid segment 23, an elastic segment 21, and a first rigid segment 22, connected sequentially from top to bottom. The upper end of the second rigid segment 23 is fixed to the inner top wall of the thick rod 11. The thick rod 11 contains the second rigid segment 23, the elastic segment 21, and a portion of the first rigid segment 22. The first rigid segment 22 passes from the thick rod 11 into the thin rod 12 and exits from the lower end of the thin rod 12. The end of the first rigid segment 22 is connected to the fishing hook 3. When a shrimp pulls on the fishing hook 3, the elastic segment 21 within the thick rod 11 can be stretched. A second limiting mechanism 221 is provided at the junction of the elastic segment 21 and the first rigid segment 22. Correspondingly, the upper end of the thin rod 12 acts as the first limiting mechanism 111 that interacts with the second limiting mechanism 221. When the elastic segment 21 is stretched, the second limiting mechanism 221 is blocked by the first limiting mechanism 111, thereby preventing the elastic segment 21 from excessively stretching.

[0027] In this embodiment, the rod body 1 exists to facilitate the design of a limiting mechanism to prevent the elastic segment 21 from being over-stretched; in other embodiments, other methods can also be used to prevent the elastic segment 21 from being over-stretched, for example, a third rigid segment is connected between the lower end of the second rigid segment 23 and the upper end of the first rigid segment 22, and the length of the third rigid segment is greater than the natural length of the elastic segment 21, that is, the maximum length to which the elastic segment 21 is stretched is the length of the third rigid segment.

[0028] To indicate a successful hook bite, the fishing rod also includes a sensing device. This sensing device comprises a first sensor 1a, located on the outer wall of the thick rod 11, and a second sensor 2a, located at the elastic segment 21 and the first rigid segment 22, corresponding to the position of the first sensor 1a. The first sensor 1a and the second sensor 2a are configured such that when the second sensor 2a moves away from the first sensor 1a, the first sensor 1a issues a hook bite alarm. In this embodiment, the first sensor 2a functions as the aforementioned second limiting mechanism 221, simplifying the overall structure of the fishing rod.

[0029] Correspondingly, the first sensor 1a and the second sensor 2a can also be configured so that when the second sensor 2a approaches the first sensor 1a, the first sensor 1a issues a hook alarm. In this design, when the elastic segment 21 is in its natural state, the first sensor 1a and the second sensor 2a are separated by a certain distance along the length of the rod 1. When the elastic segment 21 is in its stretched state, the second sensor 2a gradually approaches the first sensor 1a until the first sensor 1a issues a hook alarm. For example, the first sensor 1a is located below the second sensor 2a.

[0030] Furthermore, the end of the thin rod 12 is covered with an end cap 122, which has a through hole for the lower end of the first rigid wire segment 22 to pass through. The end of the first rigid wire segment 22 is connected to the fishing hook 3, and the portion of the first rigid wire segment 22 that passes through the thin rod 12 is strung with a lead weight 4. For easy storage, the outer wall of the thin rod 12 is provided with a fixing member 121 for fixing the fishing hook 3. In this embodiment, the fixing member 121 is a rubber band wrapped around the outer wall of the thin rod 12. When the fishing rod is not in use, the fishing hook 4 is hooked to the rubber band to prevent the fishing hook 4 from moving around and piercing objects or skin, while also preventing the fishing hook 4 from being damaged.

[0031] In order to better adapt to the tension generated when shrimp bite the hook, the elastic coefficient of the elastic segment 21 in this embodiment is 10 to 20 Newtons per meter. Specifically, a rubber band, elastic rope, small spring, etc. can be used. In this embodiment, the maximum distance that the elastic segment 21 is stretched by the shrimp is 15 to 30 centimeters. If the fishing line of the present invention is used for fishing or crab fishing, elastic segments 21 with different elastic coefficients can be replaced according to the tension generated when the fish or crab bites the hook.

[0032] With the fishing rod of this embodiment, anglers can directly hold the rod body 1 near the water surface to fish, or they can stand higher above the water, such as on a bridge, and tie the rod body 1 to a long line to fish. When a shrimp pulls on the hook 3 and moves a certain distance, the sensor in the rod body 1 sounds a hooked alarm. The angler can then, based on experience, lift the fishing rod out of the water at the appropriate time. Some shrimp do not pull on the hook 3 after biting the hook, and the sensor in the rod body 1 does not sound a hooked alarm. In this case, the angler can lift the fishing rod upward a certain distance (without lifting it out of the water). During this lifting process, the shrimp's own weight will cause the elastic segment 21 to stretch, triggering the sensor to sound an alarm. In other words, by properly lifting the fishing rod, anglers can detect shrimp that have bitten the hook but are not pulling on the hook 3.

Claims

1. A fishing line, wherein the lower end of the fishing line (2) is connected to a fishing hook (3), characterized in that: The fishing line (2) comprises an elastic line segment (21) and a first rigid line segment (22) connected to each other. When the shrimp pulls the hook (3), the elastic line segment (21) can be stretched.

2. A fishing rod using the fishing line according to claim 1, characterized in that: It also includes a hollow rod body (1), the elastic line segment (21) and the first rigid line segment (22) are accommodated in the rod body (1), the upper end of the elastic line segment (21) is fixed in the rod body (1), the lower end of the elastic line segment (21) is connected to the first rigid line segment (22), and the end of the first rigid line segment (22) passes through the lower end of the rod body (1); A limiting device is provided between the first rigid line segment (22) and the rod body (1) to prevent the elastic line segment (21) from being overstretched.

3. The fishing rod according to claim 2, characterized in that: The limiting device comprises a first limiting mechanism (111) arranged in the rod body (1) and a second limiting mechanism (221) arranged on the first rigid line segment (22); along the length direction of the rod body (1), the first limiting mechanism (111) is located below the second limiting mechanism (221).

4. The fishing rod according to claim 3, characterized in that: The rod body (1) comprises a thick rod (11) and a thin rod (12); the thin rod (12) is inserted into the thick rod (11); and the limiting device is installed in the thick rod (11).

5. The fishing rod according to claim 4, characterized in that: The upper end of the thin rod (12) is the first limiting mechanism (111), and the first rigid line segment (22) passes through the lower end of the thin rod (12).

6. The fishing rod according to claim 2, characterized in that: The invention also includes a sensing device, wherein the sensing device includes a first sensor (1a) arranged on the rod body (1) and a second sensor (2a) arranged on the fishing line (2) and corresponding to the position of the first sensor (1a); the first sensor (1a) and the second sensor (2a) are configured such that when the second sensor (2a) is away from the first sensor (1a), the first sensor (1a) issues a hook alarm.

7. The fishing rod according to claim 6, characterized in that: The second sensor (2a) is arranged at the connection between the elastic line segment (21) and the first rigid line segment (22).

8. The fishing rod according to any one of claims 2 to 7, characterized in that: The lower end of the first rigid line segment (22) is connected to the fishing hook (3), and a fixing member (121) for fixing the fishing hook (3) is provided on the outer side wall of the rod body (1).

9. The fishing rod according to any one of claims 2 to 7, characterized in that: The fishing line (2) further comprises a second rigid line segment (23), the upper end of the second rigid line segment (23) being fixed to the upper end of the rod body (1), and the lower end of the second rigid line segment (23) being connected to the upper end of the elastic line segment (21).

10. The fishing rod according to any one of claims 2 to 7, characterized in that: The elastic coefficient of the elastic line segment (21) is 10 to 20 N / m.