Stepless-adjustable fishing gear fort structure
By using a linkage structure between the spring and the rotating component, the problems of inconvenient adjustment and insufficient stability of existing fishing gear turret supports are solved, achieving stepless adjustment and self-locking, thus improving operational efficiency and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-03-06
AI Technical Summary
Existing fishing tackle rig supports are inconvenient to operate when adjusting the support angle, have a complex structure, lack stability, and the screws are prone to loosening, causing the fishing rod to sway or shift at the angle.
It adopts a linkage structure between the retaining spring and the rotating part. Through the linkage between the retaining spring and the extended end of the fixed frame, stepless adjustment and self-locking are achieved. The angle locking is stable and reliable, and the operation is convenient.
It achieves hovering and locking at any angle, is easy to operate, and provides stable angle locking, improving adjustment efficiency and stability while reducing usage costs.
Smart Images

Figure CN223968503U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fishing gear technology, specifically to a fishing gear turret structure that can be infinitely adjusted. Background Technology
[0002] Fishing is becoming an increasingly popular outdoor sport. Nowadays, fishing enthusiasts often carry fishing stands to effectively stabilize and support their rods, reducing the burden on anglers during fishing. This rod support structure is called a rod holder, and existing rod holders can be divided into ground-mounted rod holders, rod holders for fishing platforms, and rod holders for fishing boxes. However, current rod holders for fishing boxes generally use a fixed design, making it impossible to adjust the support angle. Adjusting the angle requires repeatedly tightening and loosening screws, which is time-consuming, laborious, and inconvenient. Furthermore, they lack stability: the screws are prone to loosening, causing the rod to wobble or shift at the angle.
[0003] For example, the fishing rig bracket disclosed in Chinese utility model patent CN216533377U has a connecting fixing block that runs through the top of a fixed support plate. A fixed support block is welded to the middle of the top of the fixed support plate. An L-shaped connecting plate is rotatably connected to the fixed support block at the position corresponding to the sliding limit groove. A linkage tube is welded to one end of the L-shaped connecting plate. A fixing screw is embedded in the inner side of the limit threaded hole. A load-bearing tube is welded to one end of the fixed limit plate. The bracket is fixed by the support fixing plate and the connecting fixing block. The load-bearing tube drives the fixed limit plate to rotate. In this technical solution, adjustment and fixation are achieved directly by tightening and loosening the screws, which is not convenient to use. Utility Model Content
[0004] I. Technical problems to be solved
[0005] This utility model addresses the aforementioned deficiencies in the existing technology by proposing a steplessly adjustable fishing gear turret structure, thus solving the technical problems of inconvenient support angle adjustment and complex structure in existing fishing gear turret structures.
[0006] II. Technical Solution
[0007] To solve the above-mentioned technical problems, this utility model provides a steplessly adjustable fishing gear turret structure, including a turret mounting frame and a turret body mounted on the turret mounting frame.
[0008] The turret mounting bracket has a protruding end on its side; the main body of the turret includes a rotating component, a spring release mechanism, a spring, and a turret sleeve.
[0009] The rotating component is inserted into the protruding end of the fixed frame and rotatedly connected to the protruding end of the fixed frame. The retaining spring is sleeved on the outside of the protruding end of the fixed frame. The retaining spring includes at least a first protruding end and a second protruding end. The first protruding end is fixedly installed with the rotating component, and the second protruding end is fixedly installed with the retaining spring release actuating component.
[0010] The turret sleeve is connected to the rotating component, and rotating the turret sleeve can drive the rotating component to rotate synchronously. When the turret sleeve or the object fixed on the turret sleeve is lifted upward, the spring and the extended end of the fixed frame are disengaged. After the rotation stops, the spring clamps the outer wall of the extended end of the fixed frame to achieve the positioning of the turret body to the predetermined position.
[0011] The spring release actuator is rotatably mounted on the turret mounting frame or the turret body. By rotating the spring release actuator, one end of the spring can be rotated, creating a gap between the spring and the extended end of the mounting frame and releasing the spring from its clamped state, thereby allowing the turret body to rotate downwards.
[0012] The spring release actuating component includes a sleeve and an actuating block disposed on the outer wall of the sleeve, with the sleeve sleeved on the spring.
[0013] The inner wall of the sleeve is provided with a second slot, and the spring release actuating component engages with the second extended end of the spring through the second slot.
[0014] The rotating component is provided with a first slot, which engages with the first protruding end.
[0015] The rotating component is also equipped with a gun turret sleeve clamping block at its end, and a protruding side connecting block is provided on the side of the gun turret sleeve. The rotating component is fixed to the gun turret sleeve by the cooperation of the gun turret sleeve clamping block and the side connecting block.
[0016] The turret mounting bracket also includes a connecting slider, which is used to snap onto and install the turret onto a fishing platform, fishing chair, or fishing box. The connecting slider is also equipped with a locking screw, which locks and secures the connecting slider by means of the first fastening screw.
[0017] The protruding end of the mounting bracket and the mounting bracket of the turret are designed separately. The protruding end of the mounting bracket includes a central through hole and an inner shoulder set in the central through hole. A limiting screw passes through the central through hole and is non-lockingly connected to the rotating part.
[0018] The extended end of the fixing frame is provided with a groove to accommodate the connecting slider, and the connecting slider is locked and fixed to the extended end of the fixing frame by screws.
[0019] The turret sleeve is also equipped with a second fastening screw.
[0020] III. Beneficial Effects
[0021] Compared with existing technologies, this utility model achieves a technical effect of suspending and locking the main body of the fishing rod at any angle by adopting a linkage structure of the spring, the rotating component, and the extended end of the fixed frame. Specifically, the spring and the extended end of the fixed frame clamping design achieve stepless adjustment and self-locking, ensuring stable and reliable angle locking, and is easy to operate. When it is necessary to adjust the angle of the fishing rod upward, simply lift the fishing rod upward, thereby driving the rotating component to rotate synchronously. At this time, the rotation of the rotating component will force the spring to expand, increasing its inner diameter, so that it can rotate normally. After reaching the predetermined position, slightly raise it a little more than the allowance, and the fishing rod will be suspended and locked in the predetermined position. The adjustment method is simple and reliable. At the same time, the spring release lever can be unlocked with one button, allowing for quick angle adjustment with one hand, improving adjustment efficiency.
[0022] Furthermore, the split-type mounting bracket extends outwards, facilitating production and installation and reducing usage costs. The connecting slider is designed for multi-scenario adaptability, making it compatible with fishing platforms, fishing chairs, and fishing boxes, thus expanding its application scenarios. Attached Figure Description
[0023] Figure 1 This is a three-dimensional view of the entire utility model;
[0024] Figure 2 This is an exploded view of the turret mounting bracket and rotating components of this utility model;
[0025] Figure 3 This is a perspective view of the main body of the turret and the extended end of the fixing frame of this utility model;
[0026] Figure 4 This is an exploded view of the main body of the turret and the extended end of the fixing frame of this utility model.
[0027] Figure 5 This is a perspective view of the extended end of the fixing bracket in this utility model.
[0028] In the picture:
[0029] 1 is the gun turret mounting bracket;
[0030] 11 is the connecting slider; 12 is the extended end of the fixing bracket; 12a is the central through hole; 12b is the inner shoulder; 12c is the limit screw; 13 is the first fastening screw;
[0031] 2 represents the main body of the turret;
[0032] 21 is a rotating component; 21a is a first slot; 21b is a turret sleeve locking block; 22 is a spring release actuating component; 22a is a sleeve; 22b is an actuating block; 22c is a second slot; 23 is a spring; 23a is a first protruding end; 23b is a second protruding end; 24 is a turret sleeve; 24a is a side connecting block; 24b is a second locking screw. Detailed Implementation
[0033] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0034] Example 1:
[0035] like Figure 1 and Figure 4 As shown, the steplessly adjustable fishing gear turret structure of this embodiment includes a turret mounting frame 1 and a turret body 2 mounted on the turret mounting frame 1.
[0036] The gun turret mounting bracket 1 has a mounting bracket extension end 12 on its side; the gun turret body 2 includes a rotating component 21, a spring release actuating component 22, a spring 23, and a gun turret sleeve 24.
[0037] The rotating component 21 is inserted into the protruding end 12 of the fixed frame and rotates and sleeves with the protruding end 12 of the fixed frame. The retaining spring 23 is sleeved on the outside of the protruding end 12 of the fixed frame. The retaining spring 23 includes at least a first protruding end 23a and a second protruding end 23b. The first protruding end 23a is fixedly installed with the rotating component 21, and the second protruding end 23b is fixedly installed with the retaining spring release actuating component 22. Specifically, regarding the fixing of the retaining spring 23, in this embodiment, the retaining spring release actuating component 22 includes a sleeve 22a and an actuating block 22b disposed on the outer wall of the sleeve 22a. The sleeve 22a is sleeved on the retaining spring 23. The inner wall of the sleeve 22a is provided with a second slot 22c. The retaining spring release actuating component 22 is engaged with the second protruding end 23b of the retaining spring 23 through the second slot 22c. The rotating component 21 is provided with a first slot 21a, which engages with the first protruding end 23a.
[0038] Regarding the retaining spring 23, the retaining spring is similar to a spring structure and also has a spiral or open ring elastic metal element. Its inner diameter is slightly smaller than the outer diameter of the clamped shaft. Generally, when no external force is applied, the retaining spring relies on its own elasticity to maintain a small inner diameter, tightly wrapping the shaft and preventing the shaft from rotating or moving through friction, thus being in a naturally clamped state. Furthermore, in this embodiment, when a fishing rod is installed on the turret sleeve 24, the radial pressure generated under its gravity on the rotating part 21 will further increase the tightening tendency of the retaining spring, similar to "the more it rotates, the tighter it becomes," enhancing the braking and positioning effect and forming a self-locking effect. The working principle of the retaining spring is that elastic deformation generates clamping force. The preload design of the spring allows it to generate sufficient radial pressure in its natural state, forming static friction. When the external force is released, that is, when the radial force is applied by the retaining spring release actuating part 22, the retaining spring is forcibly expanded, the inner diameter increases, and it separates from the shaft, that is, from the outer wall of the fixed bracket protrusion end 12, thereby allowing the turret body 2 to rotate freely.
[0039] In this embodiment, the clamping spring and the extended end of the fixed frame are designed to clamp together, achieving stepless adjustment and self-locking. The angle locking is stable and reliable, and the operation is convenient. When it is necessary to adjust the fishing rod angle upward, simply lift the fishing rod upward, thereby driving the rotating component to rotate synchronously. At this time, the rotation of the rotating component will force the clamping spring to expand, increasing its inner diameter, so that it can rotate normally. After reaching the predetermined position, lift it slightly higher by the allowance, and the fishing rod will be suspended and locked in the predetermined position. The adjustment method is simple and reliable. At the same time, the clamping spring release lever can be unlocked with one button, allowing for quick angle adjustment with one hand, improving adjustment efficiency.
[0040] like Figures 2-4 As shown, the turret sleeve 24 is connected to the rotating component 21, and rotating the turret sleeve 24 can drive the rotating component 21 to rotate synchronously. When the turret sleeve 24 is lifted upward or the object fixed on the turret sleeve 24 is lifted upward, the retaining spring 23 is disengaged from the fixed frame protrusion end 12. After the rotation stops, the retaining spring 23 clamps the outer wall of the fixed frame protrusion end 12 to achieve the positioning of the turret body 2 rotated to the predetermined position.
[0041] like Figure 5 As shown, the turret mounting bracket 1 has a cylindrical mounting bracket extension end 12 on its side, which has a central through hole 12a and an inner shoulder 12b inside. The rotating component 21 is inserted into the mounting bracket extension end 12 and connected by a limiting screw 12c. The limiting screw 12c passes through the central through hole 12a and is loosely connected to the rotating component 21, allowing the rotating component 21 to rotate with the mounting bracket extension end 12. The mounting bracket extension end 12 is manufactured separately from the turret mounting bracket 1. The connecting slider 11 is locked by a groove and screw, which facilitates disassembly and maintenance. The limiting screw 12c cooperates with the inner shoulder 12b to prevent the rotating component 21 from axially disengaging and ensure structural stability. At the same time, the end of the mounting bracket extension end 12 has a groove to accommodate the connecting slider 11, and the connecting slider 11 is locked and fixed to the mounting bracket extension end 12 by screws.
[0042] The spring-releasing actuating element 22 is rotatably mounted on the turret mounting bracket 1 or the turret body 2. By rotating the spring-releasing actuating element 22, one end of the spring 23 can be rotated, creating a gap between the spring 23 and the extended end 12 of the mounting bracket and releasing the spring from its clamping state. This allows the turret body 2 to rotate downwards. Specifically, in its normal state, the spring 23 clamps the outer wall of the extended end 12 of the mounting bracket and locks the rotation angle of the turret body 2 through friction, thereby achieving stepless adjustment and self-locking. The elastic clamping force of the spring 23 provides uniform frictional resistance. Users can freely rotate the turret sleeve 24 to any angle and automatically lock it without additional operation. Furthermore, it can also achieve quick unlocking. When the turret sleeve 24 or the fishing rod is lifted upwards, the spring 23 disengages from the extended end 12 of the mounting bracket due to axial displacement, and the friction disappears, allowing for free angle adjustment. Therefore, it can be done in one step without any prior operation. Simply lift it to the predetermined position to fix it.
[0043] The rotating component 21 is also provided with a gun turret sleeve clamping block 21b at its end, and a protruding side connecting block 24a is provided on the side of the gun turret sleeve 24. The rotating component 21 and the gun turret sleeve 24 are fixed by the cooperation of the gun turret sleeve clamping block 21b and the side connecting block 24a.
[0044] The turret sleeve 24 is equipped with a second fastening screw 24b for locking the inserted fishing rod or other accessories. The assembly process is simplified by the plug-in design of the locking block 21b and the side connecting block 24a. The second fastening screw 24b allows the turret sleeve 24 to accommodate fishing rods of different diameters and prevents slippage.
[0045] Example 2:
[0046] Compared to Example 1, such as Figure 2 As shown, the rig mounting bracket 1 also includes a connecting slider 11, which is used for snap-fit installation with the fishing platform, fishing chair, or fishing box. The connecting slider 11 is also provided with a locking screw 13, which locks and fixes the connecting slider 11. The groove design enhances the fit with the extended end 12 of the mounting bracket. At the same time, the universal installation structure design is compatible with a variety of fishing equipment, and users can switch usage scenarios without changing the rig.
[0047] The above are merely preferred embodiments of this utility model. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model.
Claims
1. A continuously adjustable fishing gun structure, characterized by, The stepless adjustable fishing gear fort structure comprises a fort fixing frame (1) and a fort body (2) arranged on the fort fixing frame (1); The fort fixing frame (1) is provided with a fixing frame extension end (12) on the side; the fort body (2) comprises a rotating part (21), a clamping spring loosening knob (22), a clamping spring (23) and a fort sleeve (24); The rotating part (21) is inserted into the fixing frame extension end (12) and is rotatably connected with the fixing frame extension end (12); the clamping spring (23) is arranged outside the fixing frame extension end (12); the clamping spring (23) comprises at least a first extension end (23a) and a second extension end (23b); the first extension end (23a) is fixedly connected with the rotating part (21); the second extension end (23b) is fixedly connected with the clamping spring loosening knob (22); The fort sleeve (24) is connected with the rotating part (21); the rotating part (21) is driven to rotate synchronously by rotating the fort sleeve (24); when the fort sleeve (24) is lifted upward or an object fixed on the fort sleeve (24) is lifted upward, the clamping spring (23) is separated from the fixing frame extension end (12); after the rotation is stopped, the fort body (2) is positioned at a predetermined position by the clamping spring (23) clamping the outer wall of the fixing frame extension end (12).
2. A continuously adjustable fishing block structure according to claim 1, wherein The clamping spring loosening knob (22) is rotatably arranged on the fort fixing frame (1) or the fort body (2); the clamping spring (23) is driven to rotate at one end by rotating the clamping spring loosening knob (22); a gap is formed between the clamping spring (23) and the fixing frame extension end (12) to separate the clamping spring (23) from the fixing frame extension end (12), so that the fort body (2) can be rotated downward.
3. A continuously adjustable fishing tower structure according to claim 2, wherein The clamping spring loosening knob (22) comprises a sleeve (22a) and a knob (22b) arranged on the outer wall of the sleeve (22a); the sleeve (22a) is arranged on the clamping spring (23); A second clamping groove (22c) is arranged on the inner wall of the sleeve (22a); the clamping spring loosening knob (22) is clamped with the second extension end (23b) of the clamping spring (23) through the second clamping groove (22c).
4. A continuously adjustable fishing tower structure according to claim 1, wherein A first clamping groove (21a) is arranged on the rotating part (21); the first clamping groove (21a) is clamped with the first extension end (23a).
5. A continuously adjustable fishing tower structure according to claim 4, wherein A fort sleeve clamping block (21b) is arranged on the end of the rotating part (21); a side connecting block (24a) is arranged on the side of the fort sleeve (24); the rotating part (21) is fixed with the fort sleeve (24) through the cooperation of the fort sleeve clamping block (21b) and the side connecting block (24a).
6. A continuously adjustable fishing tower structure according to claim 1, wherein The fort fixing frame (1) further comprises a connecting sliding block (11); the connecting sliding block (11) is used for clamping installation with a fishing platform, a fishing chair or a fishing box; a first fastening screw (13) is arranged on the connecting sliding block (11); the connecting sliding block (11) is locked and fixed through the first fastening screw (13).
7. A continuously adjustable fishing tower structure according to claim 6, wherein The fixed frame extension end (12) is designed in a split type with the fixed frame (1), the fixed frame extension end (12) comprises a center through hole (12a) and an inner shaft shoulder (12b) arranged in the center through hole (12a), and a limiting screw (12c) is arranged through the center through hole (12a) and is non-lockingly connected with the rotating part (21); The fixed frame extension end (12) is provided with a groove for accommodating the connecting sliding block (11), and the connecting sliding block (11) is locked and fixed with the fixed frame extension end (12) through a screw.
8. A continuously adjustable fishing tower structure according to claim 1, wherein The gun emplacement sleeve (24) is further provided with a second fastening screw (24b).
Citation Information
Patent Citations
Fort support for fishing
CN216533377U