Water dripping wheel

By designing a clutch switch with a torsion spring on the water drop wheel, the elastic reset control of the line release switch is achieved, which solves the problem that the existing water drop wheel release switch cannot adapt to different fishing conditions, and improves the flexibility and convenience of fishing operations.

CN222885177UActive Publication Date: 2025-05-20CIXI HAIRUI FISHING TACKLE CO LTD
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Patent Information

Application Number
CN202421827840.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-05-20
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The existing water drop wheel line release switch cannot adapt to different fishing situations, and cannot realize the function of automatically rebounding or not rebounding after pressing the line release switch, which limits the flexibility of fishing operations.

Method used

A clutch switch with a torsion spring is designed to connect to the clutch cam through the torsion spring to realize the elastic reset control of the lay-off switch. When the clutch switch is in different states, the torsion spring torque allows the release switch to rebound automatically or not in different situations.

Benefits of technology

It realizes flexible control of the line-discharge switch under different fishing conditions, and is suitable for different fishing scenarios such as lures and boat fishing, improving the convenience and flexibility of fishing operations.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222885177U_ABST
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Abstract

The utility model discloses a waterdrop reel which comprises a main shell, a clutch switch capable of being rotated and toggled is arranged on the main shell, a torsion spring is arranged on the clutch switch, when the clutch switch is turned on, the torsion spring is pulled to twist anticlockwise, the clutch switch rotates, and the waterdrop reel is driven to rotate. The clutch cam is always in a free opening state, and the torsion spring always keeps a clockwise torsion force, so that even if the pay-off switch is pressed at the moment, the pay-off switch automatically rebounds due to the action of the torsion force when the pay-off switch is pressed; the method is suitable for the ordinary road subgrade process; when the clutch switch is in a closed state and the torsion spring recovers to a state without acting force, once the pay-off switch is pressed, the clutch cam is driven to rotate, the torsion spring is driven to rotate clockwise and keep an anticlockwise torsion force, so that the pay-off switch cannot rebound, and if the pay-off switch needs to rebound, the rocker arm needs to be rotated, and then the pay-off switch cannot be rebounded. The clutch cam is made to rotate through the force of the rocker arm, the torsional spring is made to return to the original state, and the paying-off process is completed.
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Description

Technical Field

[0001] The utility model belongs to the technical field of fishing reels, and particularly relates to a fishing reel. Background Technique

[0002] A fishing reel, also known as a fishing line reel, a line dispenser, a spooling reel, anciently called a fishing cart, is one of the essential fishing tackle for casting (sea) rod fishing. Fishing reels can be roughly divided into spinning reels, fishing reels, etc. according to types. Fishing reels are mainly used for lure fishing, so they can also be called lure reels. Lure fishing is a healthy outdoor sport, and fishing reels play an important role in it, controlling the entry and exit of the fishing line. Fishing reels are favored by lure fishing enthusiasts because of their accurate casting, fast operation, and precise control of the fishing line. The existing fishing line release switch on the fishing reel is connected to the clutch cam, and can only be in a single mode: after pressing the fishing line release switch, the fishing line spool rotates freely for line release. After releasing the fishing line release switch, the fishing line release switch automatically pops up, and the fishing line spool is released from free rotation for line release; it is impossible to keep the fishing line release switch in a depressed state for line release after pressing the fishing line release switch and then releasing it, and it cannot be applied to different fishing situations. For this reason, the utility model proposes a fishing reel. Content of the Utility Model

[0003] The purpose of the utility model is to provide a fishing reel to solve the problems raised in the above background technique.

[0004] To achieve the above purpose, the utility model provides the following technical solution: A fishing reel, including a main housing, a spool is rotatably arranged inside the main housing, a spooling wheel is synchronously rotatably arranged on the spool, a manual driving mechanism for driving the spool to rotate is arranged outside the main housing, and the rotation power is transmitted and cut off between the manual driving mechanism and the spool through a clutch mechanism. An elastically resetable fishing line release switch for controlling the power transmission and cut-off of the clutch mechanism is also arranged inside the main housing. A clutch switch that can be rotated and toggled is arranged on the main housing, a torsion spring is arranged on the clutch switch, and the clutch switch controls the opening and closing of the elastic reset of the fishing line release switch through the torsion spring.

[0005] Preferably, the clutch mechanism includes a rotatable and telescopic clutch connecting shaft, which is installed on the main housing and aligned with the take-up reel. A clutch cam is arranged inside the main housing and sleeved on the clutch connecting shaft. A stroke limiting groove for restricting the rotation stroke of the clutch cam is arranged on the clutch cam. A limiting rod for anti-disengagement is arranged in the stroke limiting groove, and one end of the limiting rod is fixed to the main housing. The inner end of the torsion spring is fixedly connected to the edge of the limiting rod. A communication groove matching the pressing stroke of the wire releasing switch is arranged on the inner surface of the main housing. The extending end of the clutch cam extends into the communication groove and rotates synchronously with the wire releasing switch. A switching block for controlling the telescopic movement of the clutch connecting shaft is arranged on the clutch cam. The switching block is sleeved on the clutch connecting shaft in a limited manner, and the switching block is elastically connected to the main housing through a return spring.

[0006] Preferably, a synchronous groove is arranged at the inner end of the clutch connecting shaft, and a synchronous connecting pin matching the synchronous groove is arranged at one end of the take-up reel. When the wire releasing switch is not pressed down, the clutch connecting shaft and the take-up reel are connected and kept rotating synchronously through the synchronous groove and the synchronous connecting pin.

[0007] Preferably, when the clutch switch is in the natural state, the torsion spring is in the natural state. When the wire releasing switch is pressed down, the clutch cam rotates counterclockwise, squeezing the switching block and the clutch connecting shaft to extend outward synchronously. The synchronous connecting pin on the take-up reel is completely separated from the synchronous groove on the clutch connecting shaft, and the clutch cam and the wire releasing switch do not reset after the wire releasing switch is released. When the clutch switch is in the pressed-open state, the torsion spring is in the counterclockwise twisting state. When the wire releasing switch is pressed down, the clutch cam rotates counterclockwise, the take-up reel is separated from the clutch connecting shaft, and after the wire releasing switch is released, the clutch cam and the wire releasing switch are reset by the torsion spring, and the clutch connecting shaft and the take-up reel resume synchronous rotation.

[0008] Preferably, the manual driving mechanism includes a rocker arm arranged outside, and the rocker arm is rotationally connected to the main housing. A driving gear that rotates synchronously is arranged on the rocker arm, and the driving gear is located inside the main housing. A driven gear that rotates synchronously is arranged on the clutch connecting shaft located inside the main housing. The driving gear and the driven gear are meshed and driven.

[0009] Preferably, a translation guiding mechanism is further arranged at the front end of the main housing. The translation guiding mechanism includes a reciprocating groove rod rotatably arranged at the front end of the take-up wheel. One end of the reciprocating groove rod extends into the main housing, and a gear B is arranged at one end of the reciprocating groove rod. A gear A that is meshed and driven with the gear B is arranged on the reciprocating groove rod. A guiding sleeve is sleeved on the reciprocating groove rod. A reciprocating slider is arranged on the guiding sleeve, and the reciprocating slider extends into a threaded reciprocating groove on the reciprocating groove rod. A translation limiting rod is also movably arranged on the guiding sleeve, and both ends of the translation limiting rod are fixed to the main housing.

[0010] Compared with the prior art, the beneficial effects of the utility model are as follows: The utility model designs a clutch switch with a torsion spring. The clutch switch is connected to a clutch cam through the torsion spring. When the clutch switch is opened, the torsion spring is pulled, causing the torsion spring to twist counterclockwise. The clutch switch rotates, and the clutch cam is always in a freely opened state, and the torsion spring always maintains a clockwise torsional force. Even if the wire release switch is pressed at this time, due to the action of a torsional force, the wire release switch will automatically rebound when pressed; it is applicable to the normal fishing process, and the distance of the fishing line can be controlled by manually releasing the wire release switch, and the target location can be reached; when the clutch switch is in the closed state, the torsion spring returns to a state without acting force. Once the wire release switch is pressed, it drives the clutch cam to rotate, and drives the torsion spring to rotate clockwise, and maintains a counterclockwise torsional force, so that the wire release switch cannot rebound. If it is necessary for the wire release switch to rebound, the rocker arm needs to be rotated, and the clutch cam is rotated by the force of the rocker arm, and the torsion spring is restored to the original state to complete the wire release process; it is applicable to the boat fishing process. Since the boat is always moving and the fishing line is freely released, due to the shaking of the hull, one hand needs to hold the boat, and it can only be operated with one hand. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 is a schematic perspective view of the overall structure of the utility model;

[0012] Figure 2 is a schematic internal structure view of the utility model;

[0013] Figure 3 is a schematic structural view of the clutch mechanism of the utility model;

[0014] Figure 4 is a schematic partial structure view of the utility model;

[0015] Figure 5 is a schematic structural view of the translation guiding mechanism of the utility model;

[0016] Figure 6 is a schematic structural view of the connection state between the wire take-up reel and the clutch mechanism of the utility model;

[0017] In the figure: 1, main housing; 2, wire take-up wheel; 3, wire release switch; 4, clutch switch; 5, rocker arm; 6, clutch cam; 7, torsion spring; 8, stroke limiting groove; 9, limiting rod; 10, driving gear; 11, return spring; 12, driven gear; 13, switching block; 14, gear B; 15, gear A; 16, guide sleeve; 17, reciprocating groove rod; 18, reciprocating slider; 19, translation limiting rod; 20, wire take-up reel; 21, clutch connecting shaft; 22, synchronous connecting pin. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0018] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0019] Embodiment 1

[0020] Please refer to Figures 1 to 6 , a technical solution is provided: a fishing reel, including a main housing 1, a winding shaft 20 is rotatably arranged inside the main housing 1, a winding wheel 2 is synchronously rotatably arranged on the winding shaft 20, a manual driving mechanism for driving the rotation of the winding shaft 20 is arranged outside the main housing 1, and the rotation power is transmitted and cut off between the manual driving mechanism and the winding shaft 20 through a clutch mechanism. An elastic-returnable wire-feeding switch 3 for controlling the power transmission and cut-off of the clutch mechanism is also arranged inside the main housing 1. A clutch switch 4 that can be rotated and toggled is arranged on the main housing 1. A torsion spring 7 is arranged on the clutch switch 4. The clutch switch 4 controls the opening and closing of the elastic return of the wire-feeding switch 3 through the torsion spring 7. In this embodiment, preferably, the clutch mechanism includes a clutch connecting shaft 21 that can rotate and expand and contract. The clutch connecting shaft 21 is installed on the main housing 1 and is aligned with the winding shaft 20. A clutch cam 6 arranged inside the main housing 1, and the clutch cam 6 is sleeved on the clutch connecting shaft 21. A stroke limiting groove 8 for limiting the rotation stroke of the clutch cam 6 is arranged on the clutch cam 6. A limiting rod 9 for anti-disengagement is arranged in the stroke limiting groove 8, and one end of the limiting rod 9 is fixed to the main housing 1. The inner end of the torsion spring 7 is fixedly connected to the edge of the limiting rod 9. A communication groove matching the pressing stroke of the wire-feeding switch 3 is arranged on the inner surface of the main housing 1. The extending end of the clutch cam 6 extends into the communication groove and rotates synchronously with the wire-feeding switch 3. A switching block 13 for controlling the expansion and contraction of the clutch connecting shaft 21 is arranged on the clutch cam 6. The switching block 13 is sleeved on the clutch connecting shaft 21 in a limited manner, and the switching block 13 is elastically connected to the main housing 1 through a return spring 11.

[0021] In this embodiment, preferably, a synchronous groove is provided at the inner end of the clutch connecting shaft 21, and a synchronous connecting pin 22 matching the synchronous groove is provided at one end of the winding shaft 20. When the wire feeding switch 3 is not pressed, the clutch connecting shaft 21 and the winding shaft 20 are connected and synchronized through the synchronous groove and the synchronous connecting pin 22 to rotate synchronously. In this embodiment, preferably, when the clutch switch 4 is in the natural state, the torsion spring 7 is in the natural state. When the wire feeding switch 3 is pressed, the clutch cam 6 rotates counterclockwise, squeezing the switching block 13 and the clutch connecting shaft 21 to extend outward synchronously. The synchronous connecting pin 22 on the winding shaft 20 is completely separated from the synchronous groove on the clutch connecting shaft 21, and the torsion spring 7 maintains a counterclockwise torque, so that the clutch cam 6 and the wire feeding switch 3 do not reset after the wire feeding switch 3 is released, and the winding shaft 20 and the winding wheel 2 can rotate freely to feed the wire. By the force of the rocker arm 5, the clutch cam 6 rotates, and the torsion spring 7 returns to the original state; when the clutch switch 4 is in the pressed and opened state and the torsion spring 7 is in the counterclockwise torsion state, when the wire feeding switch 3 is pressed, the clutch cam 6 rotates counterclockwise, and the winding shaft 20 is separated from the clutch connecting shaft 21 to realize free wire feeding. After the wire feeding switch 3 is released, since the torsion spring 7 always maintains a clockwise torque; the torsion spring 7 drives the clutch cam 6 and the wire feeding switch 3 to reset, and the clutch connecting shaft 21 and the winding shaft 20 resume synchronous rotation, stopping the free rotation and wire feeding of the winding shaft 20 and the winding wheel 2. In this embodiment, preferably, the manual driving mechanism includes a rocker arm 5 provided outside, and the rocker arm 5 is rotationally connected to the main housing 1 through 23. A driving gear 10 that rotates synchronously is provided on 23, and the driving gear 10 is located inside the main housing 1. A driven gear 12 that rotates synchronously is provided on the clutch connecting shaft 21 located inside the main housing 1. The driving gear 10 and the driven gear 12 are meshed and driven for stable transmission. In this embodiment, preferably, a translation guiding mechanism is further provided at the front end of the main housing 1. The translation guiding mechanism includes a reciprocating groove rod 17 rotatably provided at the front end of the winding wheel 2. One end of the reciprocating groove rod 17 extends into the main housing 1, and a gear B14 is provided at one end of the reciprocating groove rod 17. A gear A15 meshing with the gear B14 is provided on 23. A guiding sleeve 16 is sleeved on the reciprocating groove rod 17. A reciprocating slider 18 is provided on the guiding sleeve 16, and the reciprocating slider 18 extends into the threaded reciprocating groove on the reciprocating groove rod 17. A translation limiting rod 19 is also movably provided on the guiding sleeve 16. Both ends of the translation limiting rod 19 are fixed to the main housing 1 to enable the guiding sleeve 16 to stably perform horizontal reciprocating motion, so that the fishing line passing through the guiding sleeve 16 can be evenly wound onto the winding wheel 2.

[0022] Although the embodiments of the present utility model have been shown and described (see the above detailed description), those of ordinary skill in the art will understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A water drop wheel, comprising a main housing (1), a reel (20) rotatably disposed inside the main housing (1), a reel (2) rotatably disposed on the reel (20), a manual drive mechanism for driving the reel (20) to rotate is disposed outside the main housing (1), a clutch mechanism is used to transmit and cut off the rotational power between the manual drive mechanism and the reel (20), and the characteristics are: The inner side of the main housing (1) is also provided with a line-releasing switch (3) for controlling the power transmission and cutting off of the clutch mechanism and capable of elastic reset. The main housing (1) is provided with a rotatable and toggleable clutch switch (4), and the clutch switch (4) is provided with a torsion spring (7). The clutch switch (4) controls the opening and closing of the elastic reset of the line-releasing switch (3) through the torsion spring (7).

2. A water drop wheel according to claim 1, characterized in that: The clutch mechanism comprises a rotatable and retractable clutch connecting shaft (21), the clutch connecting shaft (21) being mounted on the main housing (1) and aligned with the reeling shaft (20), a clutch cam (6) being arranged in the main housing (1), and the clutch cam (6) being sleeved on the clutch connecting shaft (21), the clutch cam (6) being provided with a stroke limiting groove (8) for limiting the rotation stroke of the clutch cam (6), a limiting rod (9) for preventing disengagement being provided in the stroke limiting groove (8), and one end of the limiting rod (9) being fixed to the main housing (1), and the torque One inner end of the spring (7) is fixedly connected to the edge of the limiting rod (9); the inner surface of the main housing (1) is provided with a connecting groove matching the pressing stroke of the line-releasing switch (3); the extending end of the clutch cam (6) extends to the connecting groove and rotates synchronously with the line-releasing switch (3); the clutch cam (6) is provided with a switching block (13) for controlling the extension and retraction of the clutch connecting shaft (21); the switching block (13) is limitedly sleeved on the clutch connecting shaft (21), and the switching block (13) is elastically connected to the main housing (1) via a reset spring (11).

3. A water drop wheel according to claim 2, characterized in that: A synchronous groove is arranged at one inner end of the clutch connecting shaft (21), and a synchronous connecting pin (22) matching the synchronous groove is arranged at one end of the winding shaft (20). When the line-releasing switch (3) is not pressed down, the clutch connecting shaft (21) and the winding shaft (20) are connected through the synchronous groove and the synchronous connecting pin (22) to maintain synchronous rotation.

4. A water drop wheel according to claim 3, characterized in that: When the clutch switch (4) is in a natural state, the torsion spring (7) is in a natural state. When the pay-off switch (3) is pressed down, the clutch cam (6) rotates counterclockwise, the extrusion switching block (13) and the clutch connecting shaft (21) extend outward synchronously, the synchronous connecting pin (22) on the winding shaft (20) is completely separated from the synchronous groove on the clutch connecting shaft (21), and the clutch cam (6) and the pay-off switch (3) are not reset after the pay-off switch (3) is released. When the clutch switch (4) is in a pressed-on state, the torsion spring (7) is in a counterclockwise twisting state. When the pay-off switch (3) is pressed down, the clutch cam (6) rotates counterclockwise, the winding shaft (20) is separated from the clutch connecting shaft (21), and after the pay-off switch (3) is released, the clutch cam (6) and the pay-off switch (3) are reset by the torsion spring (7), and the clutch connecting shaft (21) and the winding shaft (20) resume synchronous rotation.

5. The water drop wheel according to claim 1, characterized in that: The manual drive mechanism comprises a rocker arm (5) arranged outside, and the rocker arm (5) is rotatably connected to the main housing (1) via (23), a synchronously rotating driving gear (10) is arranged on the (23), and the driving gear (10) is located inside the main housing (1), and a synchronously rotating driven gear (12) is arranged on a clutch connection shaft (21) located inside the main housing (1), and the driving gear (10) and the driven gear (12) are meshed and transmitted.

6. A water drop wheel according to claim 5, characterized in that: The front end of the main housing (1) is also provided with a translation guide mechanism, and the translation guide mechanism includes a reciprocating groove rod (17) rotatably arranged at the front end of the winding wheel (2), one end of the reciprocating groove rod (17) extends into the interior of the main housing (1), and one end of the reciprocating groove rod (17) is provided with a gear B (14), and the (23) is provided with a gear A (15) meshing with the gear B (14) for transmission, a guide sleeve (16) is sleeved on the reciprocating groove rod (17), a reciprocating slider (18) is provided on the guide sleeve (16), and the reciprocating slider (18) extends into the threaded reciprocating groove on the reciprocating groove rod (17), and a translation limiting rod (19) is movably arranged on the guide sleeve (16), and the two ends of the translation limiting rod (19) are respectively fixed to the main housing (1).