Self-locking type low-resistance live fish buckle fishing wheel

By employing a mechanical self-locking structure with a slider and a locking block, and a flexible sound-emitting plate design, the problems of line wear and high retrieval resistance in existing live fish hook fishing reels are solved, achieving low-resistance retrieval and clear operation feedback.

CN224111975UActive Publication Date: 2026-04-14李正道
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
李正道
Filing Date
2025-03-26
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The locking mechanism of existing live fish hook fishing reels is prone to causing fishing line wear, and the sound-generating device has too much resistance to line reeling, affecting the efficiency of fishing line reeling and the user experience.

Method used

It adopts a mechanical self-locking structure with a slider and a locking block, and achieves low-resistance unlocking through a button inclined surface drive design. It also introduces a sound-generating mechanism that matches the rotation direction of the elastic sound-generating plate and the reel to provide operation feedback.

Benefits of technology

It reduces the risk of friction damage to the fishing line, lowers the resistance to reeling in the line, improves the user experience and the efficiency of reeling in the line, and provides clear operational feedback.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a self-locking type low-resistance live fish buckle fishing wheel, which comprises a top plate, a bottom plate, a line wheel, a coil spring and a locking mechanism, the line wheel is rotatably arranged between the top plate and the bottom plate, and the coil spring is arranged in the line wheel, is connected with a fish line wound on the line wheel and is used for providing automatic winding force for the fish line. The locking mechanism comprises a plurality of clamping blocks which are evenly and fixedly arranged at intervals in the circumferential direction of the bottom of the wire wheel, a locking sliding block is slidably arranged on the bottom plate, one end of the locking sliding block extends into an annular area of the clamping block assembly, the end, back to the clamping block assembly, of the locking sliding block abuts against a spring, and elastic force facing the clamping block assembly is applied to the locking sliding block. And the key driving assembly is used for driving the locking sliding block to move in the direction away from the clamping blocks, so that the locking sliding block is separated from the gaps of the clamping blocks, and rotation limitation on the wire wheel is relieved. The sliding block is matched with the clamping block, the fishing line is prevented from being directly clamped, and the risk that the fishing line is damaged due to friction is eliminated.
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Description

Technical Field

[0001] This utility model relates to the field of fishing gear and equipment technology, and in particular to a self-locking, low-resistance live fish catch fishing reel. Background Technology

[0002] In recent years, with the continuous development of fishing gear technology, live fish reels, as key tools for temporarily holding live fish, have attracted much attention for their functional design. Existing technologies, such as Chinese utility model patent CN218898023U, disclose a live fish reel that uses a coil spring to drive the fishing line to automatically wind up, and utilizes a locking mechanism with a movable component cooperating with the first housing to lock or release the fishing line. While this solution solves the tedious problem of manually adjusting the fishing line length and managing the line, it still has the following shortcomings:

[0003] (1) The locking mechanism clamps the fishing line directly to the first housing through the moving component. The friction between the clamping surface and the fishing line is large, which can easily lead to wear and even breakage of the fishing line surface after long-term use. Especially when catching large fish, the instantaneous pulling force generated by the struggle of the fish may exceed the locking capacity of the clamping mechanism, causing the fishing line to slip or become uncontrollable, and there is a risk of the fish escaping.

[0004] (2) Lack of sound-generating mechanism and operation feedback. To provide operation feedback and enhance the enjoyment of fishing, existing fishing reels are usually equipped with a sound-generating device to provide immediate operation feedback through a ticking sound. However, the sound-generating device of existing reels mostly uses a combination of spring and tooth block. The resistance of the spring is the same when reeling in and letting out the line, resulting in excessive resistance when reeling in the line, which affects the efficiency of reeling in the line and the control of the line length. Summary of the Invention

[0005] To address the problems existing in the prior art, this utility model provides a self-locking low-resistance live fish hook fishing reel. While retaining the automatic winding function, it optimizes the clamping method of the locking structure to reduce fishing line damage, and introduces a low-resistance sound-generating mechanism to improve the user's operating experience.

[0006] The technical solution adopted by this utility model is as follows: A self-locking low-resistance live fish hook fishing reel includes a top plate, a bottom plate, a reel, a coil spring, and a locking mechanism. The reel is rotatably disposed between the top plate and the bottom plate. The coil spring is disposed inside the reel and connected to the fishing line wound on the reel, for providing automatic winding force for the fishing line. The locking mechanism includes:

[0007] The locking block assembly consists of multiple locking blocks that are evenly spaced and fixedly arranged along the circumferential direction of the bottom of the reel, forming a circular array.

[0008] A locking slider is slidably disposed on the base plate, with one end extending into the annular area of ​​the locking block assembly. The moving direction of the locking slider is consistent with the radial direction of the thread wheel, and the sliding stroke satisfies the insertion and disengagement with the locking block gap.

[0009] A spring abuts against the end of the locking slider that faces away from the locking block assembly, and applies an elastic force toward the locking slider to the locking slider, so that the locking slider, in its natural state, engages with the gap between two adjacent locking blocks to lock the rotation of the spool.

[0010] A button drive assembly is used to drive the locking slider to move away from the locking block assembly, so as to release the rotation restriction of the thread wheel and compress the spring by disengaging from the locking block gap.

[0011] Furthermore, the button driving assembly includes a cylindrical button base fixedly connected between the top plate and the bottom plate, and a button that is movably mounted in the button base; the locking slider has a first inclined surface at one end extending into the button base, and the lower part of the button has a second inclined surface that cooperates with the first inclined surface; when the button is pressed down, the second inclined surface contacts the first inclined surface, pushing the locking slider to move away from the locking block, so as to disengage from the gap of the locking block and compress the spring; after the button is released, the spring drives the locking slider and the button to reset, restoring the locking of the reel.

[0012] Furthermore, the side wall of the button base is provided with a wire hole for the fishing line to pass through, and the button is provided with a wire groove to accommodate the fishing line.

[0013] Furthermore, an annular recessed groove is provided on the base plate corresponding to the card block assembly, the depth of the annular recessed groove is adapted to the height of the card block, and a sliding groove is provided on the base plate corresponding to the locking slider, the locking slider being slidably disposed in the sliding groove.

[0014] Furthermore, the end of the slide is provided with a limiting block for limiting and guiding the spring.

[0015] Furthermore, the locking slider has a guide post that cooperates with the spring on the side facing away from the annular recessed groove.

[0016] Furthermore, it also includes a sound-generating mechanism, which includes an elastic sound-generating sheet, one end of which is curled and fixedly installed on the base plate, and the other end is a free end, which extends to the gap between two adjacent blocks; the curling direction of the elastic sound-generating sheet is consistent with the rotation direction of the spool when it feeds the line, and its curled part is offset toward the rotation direction of the spool when it feeds the line.

[0017] Furthermore, the locking mechanism and the sound-generating mechanism are respectively located on opposite sides of the same radial plane of the reel.

[0018] The beneficial effects of this utility model are as follows:

[0019] (1) The mechanical self-locking structure of slider and locking block is adopted to avoid directly clamping the fishing line and fundamentally eliminate the risk of friction damage to the fishing line;

[0020] (2) By using the button inclined surface drive design (the first inclined surface and the second inclined surface cooperate), the vertical pressing action is converted into the radial horizontal movement of the slider, which reduces the resistance and makes the unlocking process easier.

[0021] (3) The curling direction of the elastic sound-producing sheet is consistent with the unwinding direction. When unwinding, the block pushes the elastic sheet to deform and vibrate to produce sound, providing clear operational feedback. When winding, the deformation resistance of the elastic sheet decreases, reducing interference with the winding action. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0023] Figure 2 This is an exploded view of this utility model.

[0024] Figure 3 This is a schematic diagram of the locking block assembly at the bottom of the reel of this utility model.

[0025] Figure 4 This is a partial schematic diagram of the locking mechanism of this utility model.

[0026] Figure 5 This is a partial schematic diagram of the sound-generating mechanism of this utility model.

[0027] Figure 6 This is a schematic diagram of the cross-sectional structure of this utility model. Detailed Implementation

[0028] To facilitate understanding of this utility model, it will be described more comprehensively and in detail below with reference to the accompanying drawings and preferred embodiments. However, the scope of protection of this utility model is not limited to the following specific embodiments.

[0029] like Figure 1 As shown in the figure, this embodiment provides a self-locking low-resistance live fish hook fishing reel, including a top plate 100, a bottom plate 200, a reel 300, a coil spring (not shown in the figure), and a locking mechanism 400. The reel 300 is rotatably disposed between the top plate 100 and the bottom plate 200. The coil spring is disposed inside the reel 300 and connected to the fishing line wound on the reel 300, and is used to provide automatic winding force for the fishing line.

[0030] like Figure 2 , Figure 3 , Figure 4 , Figure 6As shown, the locking mechanism 400 provided in this embodiment includes a locking block assembly, a locking slider 405, a spring 406, and a button driving assembly. The locking block assembly includes multiple locking blocks 410 evenly spaced and fixedly arranged along the circumferential direction of the bottom of the reel 300, forming a circular array. The locking slider 405 is slidably disposed on the base plate 200, with one end extending into the annular region of the locking block 410 assembly. The moving direction of the locking slider 405 is consistent with the radial direction of the reel 300, and its sliding stroke satisfies the need for engagement and disengagement with the locking blocks 410. The spring 406 abuts against the end of the locking slider 405 facing away from the locking block assembly, applying an elastic force towards the locking block 410 assembly to the locking slider 405, causing the locking slider 405 to engage with the gap between two adjacent locking blocks 410 in its natural state, thereby locking the reel 300 from rotating. The button drive assembly is used to drive the locking slider 405 to move away from the latch block 410 assembly, so as to release the rotation restriction of the threaded wheel 300 and compress the spring 406 by disengaging from the gap of the latch block 410.

[0031] In one embodiment, for example, the button driving assembly includes a cylindrical button base 403 fixedly connected between the top plate 100 and the bottom plate 200, and a button 401 movably mounted within the button base 403. A first inclined surface is provided at one end of the locking slider 405 extending into the button base 403, and a second inclined surface cooperating with the first inclined surface is provided at the lower part of the button 401. When the button 401 is pressed downwards, the second inclined surface contacts the first inclined surface, pushing the locking slider 405 to move away from the locking block 410, thereby disengaging from the gap in the locking block 410 and compressing the spring 406. After the button 401 is released, the spring 406 drives the locking slider 405 and the button 401 to reset, restoring the locking of the reel 300.

[0032] Preferably, in this embodiment, the side wall of the button base 403 is provided with a line hole 404 for the fishing line to pass through the button base 403, and the button 401 is provided with a line groove 402 to accommodate the fishing line, and the end of the fishing line passes through the line hole 404 and the line groove 402.

[0033] In one embodiment, the base plate 200 is provided with an annular recessed groove 409 corresponding to the locking block 410 assembly, the depth of the annular recessed groove 409 is adapted to the height of the locking block 410, and the base plate 200 is provided with a sliding groove 408 corresponding to the locking slider 405, the locking slider 405 is slidably disposed in the sliding groove 408.

[0034] Furthermore, to increase the restriction on the spring 406 and improve stability, in this embodiment, the end of the slide groove 408 is provided with a limiting block 407 to limit and guide the spring 406. The locking slider 405 is provided with a guide post that cooperates with the spring 406 on the side facing away from the annular recessed groove 409.

[0035] like Figure 2 , Figure 5 , Figure 6 As shown, the self-locking low-resistance live fish hook fishing reel of this embodiment also includes a sound-generating mechanism 500. The sound-generating mechanism 500 includes an elastic sound-generating sheet 501, one end of which is curled and fixedly installed on the base plate 200, and the other end is a free end 502, which extends to the gap between two adjacent locking blocks 410. The curling direction of the elastic sound-generating sheet 501 is consistent with the rotation direction of the reel 300 when releasing line, and its curled part is offset towards the rotation direction of the reel 300 when releasing line.

[0036] The curling direction of the elastic sound-producing sheet 501 refers to the direction of its bending arc, specifically the bending trajectory from the free end 502 to the fixed end of the elastic sound-producing sheet 501. This curling direction is the same as the rotation direction of the reel during unloading ( Figure 5 (The direction indicated by the middle arrow) is consistent. When the spool releases the line, the locking block 410 rotates with the spool in the curling direction, sequentially contacting the free end 502 of the elastic sound-producing plate 501. Since the curling direction of the elastic sound-producing plate 501 is consistent with the line release direction, the pushing force of the locking block 410 on the elastic sound-producing plate is in the same direction as its bending direction, causing the elastic sound-producing plate to bend further (compressed deformation). When the elastic sound-producing plate is compressed, it accumulates elastic potential energy. When the locking block disengages, the elastic sound-producing plate quickly rebounds, triggering high-frequency vibration and producing a crisp "click" sound. The deformation of the elastic sound-producing plate during line release needs to overcome its own stiffness, generating a certain resistance. However, this resistance is designed to be a moderate value (e.g., by adjusting the thickness or material of the elastic plate) to ensure clear sound production without significantly affecting the smoothness of line release.

[0037] When the spool takes in the line, its rotation direction is opposite to the unwinding direction, and the movement direction of the locking block 410 is opposite to the curling direction of the elastic sound-generating plate 501. At this time, the contact action of the locking block 410 on the elastic sound-generating plate changes from "pushing" to "sliding". The elastic sound-generating plate mainly undergoes slight stretching rather than compression, its deformation is significantly reduced, and its stiffness resistance is reduced accordingly. The elastic sound-generating plate produces only weak vibration or no sound during take-up, and the resistance is extremely small, avoiding the take-up delay problem caused by bidirectional resistance in traditional spring mechanisms. This elastic sound-generating plate achieves separation of unwinding sound feedback and low take-up resistance through targeted matching of the curling direction and the rotation direction of the spool.

[0038] See Figure 2In one embodiment, the locking mechanism 400 and the sound-generating mechanism 500 are respectively disposed on opposite sides of the same radial plane of the reel 300.

[0039] With the aid of the teachings present in the foregoing description and related drawings, those skilled in the art will conceive of many modifications and other embodiments of the present invention. Therefore, it is to be understood that the present invention is not limited to the specific embodiments disclosed, and modifications and other embodiments are considered to be included within the scope of the appended claims. Although specific terms are used herein, they are used in a general and descriptive sense only and are not intended to be limiting.

Claims

1. A self-locking, low-resistance live fish reel, comprising a top plate (100), a bottom plate (200), a reel (300), a coil spring, and a locking mechanism (400), wherein the reel (300) is rotatably disposed between the top plate (100) and the bottom plate (200), and the coil spring is disposed inside the reel (300) and connected to the fishing line wound on the reel (300) to provide an automatic winding force for the fishing line, characterized in that, The locking mechanism (400) includes: The card block assembly consists of multiple card blocks (410) that are evenly spaced and fixedly arranged along the bottom circumferential direction of the spool (300) to form a ring array; The locking slider (405) is slidably disposed on the base plate (200), with one end extending into the annular area of ​​the locking block (410) assembly. The moving direction of the locking slider (405) is consistent with the radial direction of the thread wheel (300), and the sliding stroke satisfies the insertion and disengagement of the locking block (410) gap. A spring (406) abuts against the end of the locking slider (405) facing away from the locking block assembly, and applies an elastic force toward the locking slider (405) toward the locking block (410) assembly, so that the locking slider (405) is engaged in the gap between two adjacent locking blocks (410) in its natural state, thereby locking the spool (300) from rotating. A button drive assembly is used to drive the locking slider (405) to move away from the latch block (410) assembly, so as to release the rotation restriction of the line wheel (300) and compress the spring (406) by disengaging from the gap of the latch block (410).

2. The self-locking low-resistance live fish catch fishing reel as described in claim 1, characterized in that: The button driving assembly includes a cylindrical button base (403) fixedly connected between the top plate (100) and the bottom plate (200), and a button (401) movably mounted in the button base (403); the locking slider (405) has a first inclined surface at one end extending into the button base (403), and the lower part of the button (401) has a second inclined surface that cooperates with the first inclined surface; when the button (401) is pressed down, the second inclined surface contacts the first inclined surface, pushing the locking slider (405) to move away from the locking block (410) to disengage from the gap of the locking block (410) and compress the spring (406); after the button (401) is released, the spring (406) drives the locking slider (405) and the button (401) to reset, restoring the locking of the reel (300).

3. The self-locking low-resistance live fish catch fishing reel as described in claim 2, characterized in that: The button base (403) has a wire hole (404) on its side wall for the fishing line to pass through, and the button (401) has a wire groove (402) to accommodate the fishing line.

4. The self-locking low-resistance live fish catch fishing reel as described in claim 1, characterized in that: The base plate (200) is provided with an annular recessed groove (409) corresponding to the locking block (410) assembly. The depth of the annular recessed groove (409) is adapted to the height of the locking block (410). The base plate (200) is provided with a sliding groove (408) corresponding to the locking slider (405). The locking slider (405) is slidably disposed in the sliding groove (408).

5. The self-locking low-resistance live fish catch fishing reel as described in claim 4, characterized in that: The end of the slide (408) is provided with a limiting block (407) for limiting and guiding the spring (406).

6. A self-locking low-resistance live fish catch fishing reel as described in claim 4, characterized in that: The locking slider (405) has a guide post that cooperates with the spring (406) on the side facing away from the annular recess (409).

7. A self-locking low-resistance live fish catch fishing reel as described in any one of claims 1-6, characterized in that: It also includes a sound-generating mechanism (500), which includes an elastic sound-generating sheet (501), one end of which is curled and fixedly installed on the base plate (200), and the other end is a free end (502), which extends to the gap between two adjacent locking blocks (410); the curling direction of the elastic sound-generating sheet (501) is consistent with the rotation direction of the spool (300) when it is feeding the line, and its curled part is offset towards the rotation direction of the spool (300) when it is feeding the line.

8. A self-locking low-resistance live fish catch fishing reel as described in claim 7, characterized in that: The locking mechanism (400) and the sound-generating mechanism (500) are respectively disposed on opposite sides of the same radial plane of the reel (300).

Citation Information

Patent Citations

  • Fish buckling wheel for live fish

    CN218898023U