A type of water-resistant float

By designing an anti-current float with a water-facing and regulating section, the problem of vertical floats tilting in flowing water was solved, enabling them to stand stably in flowing water and quickly transmit fish bite signals, thus improving the fishing experience.

CN224267933UActive Publication Date: 2026-05-26明会丽

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
明会丽
Filing Date
2025-07-07
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing vertical floats are easily impacted by the current in flowing water, causing them to tilt at an excessive angle, which affects anglers' ability to judge the fish's bite signal and impacts the fishing experience.

Method used

Design a current-resistant float with a structure consisting of a water-facing section and an adjustment section. The water-facing section is curved, and the adjustment section is pointed. Combined with a streamlined design and a weather vane design, along with a rotating float seat, this ensures that the float stands stably in the water and can quickly transmit fish bite signals.

Benefits of technology

In flowing water, the float maintains a smaller tilt angle, approaching verticality, to reduce the impact of the water flow, improve the fishing experience, and ensure rapid signal transmission.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224267933U_ABST
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Abstract

This utility model discloses an anti-current float, mainly relating to the field of fishing tackle technology. It includes a float tip, a float body, and a float stem. The float body has a vertically arranged mounting hole. The bottom end of the float tip is inserted into and fixed in the mounting hole from top to bottom. The top end of the float stem is inserted into and fixed in the mounting hole from bottom to top. The axis of the mounting hole divides the float body into two parts: the part in front of the axis is the water-facing part, and the part behind the axis is the adjustment part. The volume of the water-facing part is the same as the volume of the adjustment part, and the projected area of ​​the adjustment part on the vertical plane is larger than that of the water-facing part on the vertical plane. This utility model can reduce the impact of water flow on the float, allowing anglers to have a better fishing experience in flowing water.
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Description

Technical Field

[0001] This utility model relates to the field of fishing gear technology, specifically to an anti-current float. Background Technology

[0002] Vertical floats are a commonly used type of float, known for their high sensitivity and accuracy. Anglers can adjust the sensitivity by changing the weight of the float and adjusting the setup. However, vertical floats are less stable and easily affected by water currents. In flowing water, traditional vertical floats can tilt too much, sometimes even having the part of the float above the water washed underwater, making it difficult for anglers to detect bites and negatively impacting the fishing experience. Summary of the Invention

[0003] The purpose of this invention is to solve the problems existing in the prior art and provide a current-resistant float that can reduce the impact of water flow on the float. Under the same water flow impact force and buoyancy, it has a smaller tilt angle in the water than traditional vertical floats, or is easier to stand vertically in the water. This allows the signal of a fish taking the bait to be transmitted to the float body more quickly, giving anglers a better fishing experience in flowing water.

[0004] To achieve the above objectives, this utility model provides the following technical solution: an anti-current float, comprising a float tail, a float body, and a float foot. The float body has a vertically arranged mounting hole. The bottom end of the float tail is inserted into and fixed in the mounting hole from top to bottom. The top end of the float foot is inserted into and fixed in the mounting hole from bottom to top. The axis of the mounting hole divides the float body into two parts: the part in front of the axis of the mounting hole is the water-facing part, and the part behind the axis of the mounting hole is the adjustment part. The volume of the water-facing part is the same as the volume of the adjustment part, and the projected area of ​​the adjustment part on the vertical plane is greater than the projected area of ​​the water-facing part on the vertical plane.

[0005] Preferably, both the top and bottom ends of the float are pointed.

[0006] Preferably, the front end of the water-facing part is an arc-shaped surface, and the rear end of the adjusting part is a pointed tip.

[0007] Preferably, the float body is flat.

[0008] Preferably, the distance between the front end of the water-facing part and the axis of the mounting hole increases first and then decreases from top to bottom, then increases again and then decreases again; the distance between the rear end of the adjusting part and the axis of the mounting hole increases first and then decreases from top to bottom.

[0009] Preferably, the float tip is made of fiberglass rod and the float foot is made of carbon rod.

[0010] Preferably, the float foot is mounted on a rotating float seat.

[0011] Preferably, the rotating float seat includes a first silicone tube, a rotating buckle, a second silicone tube, and a connector arranged sequentially from top to bottom. The first silicone tube is used to insert the float foot, and the first silicone tube and the second silicone tube are rotatably connected by the rotating buckle.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] 1. The float body of this utility model adopts the wind vane design concept, which can automatically align itself. In flowing water, the water-facing part is always facing the direction of the water flow, which can reduce the impact of the water flow on the float. Under the same water flow impact force and the same buoyancy, it has a smaller tilt angle in the water than traditional vertical floats, or is easier to stand vertically in the water. This allows the underwater fish bite signal to be transmitted to the float body more quickly, giving anglers a better fishing experience in flowing water.

[0014] 2. The front end of the water-facing part of this utility model is an arc-shaped surface, and the rear end of the adjustment part is a pointed tip, which allows the water to flow more smoothly over the surface of the float, reduces fluid separation and eddy current generation, thereby reducing frictional resistance and pressure resistance, making the float itself more resistant to the impact of water flow and more stable in the water.

[0015] 3. The float body of this utility model adopts a flat body design, with a smaller water-facing surface to cope with the water flow, thereby reducing the impact force of the water flow and making the float stand more stably in the water.

[0016] 4. The float foot of this utility model is used in conjunction with the rotating float seat. When the water flow continuously impacts the float, the float can make multiple or continuous rotation adjustments using its own design features, so as to stand more stably in the water. Attached Figure Description

[0017] Figure 1 This is a front view of the present invention.

[0018] Figure 2 This is a side view of the present invention.

[0019] Figure 3 This is a schematic diagram of the cross-section of the float.

[0020] Figure 4 This is a schematic diagram of the rotating float seat.

[0021] The following are the labels in the attached diagram: 1. Float tail; 2. Float body; 21. Mounting hole; 22. Water-facing part; 23. Adjustment part; 3. Float foot; 4. Rotating float seat; 41. First silicone tube; 42. Rotating buckle; 43. Second silicone tube; 44. Connector. Detailed Implementation

[0022] The present invention will be further illustrated below with reference to specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of the present invention. Furthermore, it should be understood that after reading the teachings of this invention, those skilled in the art can make various alterations or modifications to the present invention, and these equivalent forms also fall within the scope defined in this application.

[0023] Example: As attached Figure 1-4 The present invention describes an anti-current float, comprising a float tail 1, a float body 2, and a float foot 3, wherein the float tail 1 is made of fiberglass rod and the float foot 3 is made of carbon rod.

[0024] The float body 2 is vertically provided with mounting holes 21. The bottom end of the float tail 1 is inserted into the mounting hole 21 from top to bottom and fixed in the mounting hole 21. The top end of the float foot 3 is inserted into the mounting hole 21 from bottom to top and fixed in the mounting hole 21.

[0025] The centerline of the mounting hole 21 divides the float body 2 into two parts. The part in front of the centerline of the mounting hole 21 is the water-facing part 22, and the part in back of the centerline of the mounting hole 21 is the adjustment part 23 (for easy demonstration of the water-facing part 22 and the adjustment part 23, see attached diagram). Figure 1 , 3 In the diagram, the adjusting part 23 is labeled as a, and the water-receiving part 22 is labeled as b).

[0026] The volume of the water-facing part 22 is the same as that of the adjusting part 23, so that the buoyancy of the water-facing part 22 and the adjusting part 23 is balanced, allowing the float to stand upright in the water like a traditional float. When the float stands upright in the water and in flowing water, the water-facing part 22 is always facing the direction of the water flow. At this time, this embodiment adopts the streamline principle in fluid dynamics, designing the front end of the water-facing part 22 as circular and the rear end of the adjusting part 23 as pointed. That is, the front end of the water-facing part 22 is an arc surface and the rear end of the adjusting part 23 is a pointed tip, similar to the shape of a submarine. This design shape allows the water flow to pass more smoothly over the surface of the float, reducing fluid separation and eddy current generation, thereby reducing frictional resistance and pressure difference resistance, making the float itself more resistant to the impact of the water flow and more stable in the water.

[0027] The projected area of ​​the adjusting part 23 on the vertical plane is greater than that of the water-facing part 22 on the vertical plane. The float body 2 adopts the wind vane design concept, applies the torque balance principle, and has a fish-shaped streamlined design. Through the difference in area of ​​the float body 2 (i.e., the projected areas of the adjusting part 23 and the water-facing part 22 on the vertical plane are different), the projected area of ​​the adjusting part 23 on the vertical plane is greater than that of the water-facing part 22 on the vertical plane. When the water flow impacts, the adjusting part 23, due to its larger area, receives greater water pressure, generating a torque perpendicular to the adjusting part 23, which pushes the adjusting part 23 to rotate in the direction of the water flow. This design is used to keep the float upright in the water, and in the flowing water state, the water-facing part 22 is always facing the direction of the water flow.

[0028] Preferably, both the top and bottom ends of the float body 2 are pointed. The float body 2 adopts a pointed top and pointed bottom shape, which has better water-breaking ability. After the float enters the water, it descends faster than traditional floats and reaches the fishing water layer more quickly, thereby reducing the influence of water flow on the float after entering the water and allowing it to drift to the fishing spot further.

[0029] Preferably, the float body 2 is flat. The flat body design of the float body 2 allows for a smaller water-facing surface to cope with the water flow, thereby reducing the impact of the water flow and making the float stand more stably in the water.

[0030] Preferred options are listed below. Figure 1 As shown, the distance between the front end of the water-receiving part 22 and the axis of the mounting hole 21 increases first and then decreases from top to bottom, then increases again and then decreases again; the distance between the rear end of the adjusting part 23 and the axis of the mounting hole 21 increases first and then decreases from top to bottom.

[0031] Preferably, the float foot 3 is installed on the rotating float seat 4. When this utility model is used in conjunction with the rotating float seat 4, the float can make multiple or continuous rotation adjustments by utilizing its own design features when the water flow continuously impacts the float, so as to stand in the water better and more stably.

[0032] The rotating float seat 4 can be an existing rotating float seat. Preferably, the rotating float seat 4 includes, from top to bottom, a first silicone tube 41, a rotating buckle 42, a second silicone tube 43, and a connector 44. The connector 44 can be a carbon rod. After inserting one end of the carbon rod into the second silicone tube 43, it is fixed by adhesive. The rotating buckle 42 is a metal rotating buckle, as shown in the attached figure. Figure 4 As shown, the rotating buckle 42 includes a connecting sleeve. The inner walls of the upper and lower ends of the connecting sleeve are provided with retaining rings extending inward. The upper and lower ends of the connecting sleeve are provided with stepped connecting members. One end of the connecting member inserted into the connecting sleeve is provided with a limiting ring extending outward. The other end of the connecting member is inserted into the corresponding silicone tube and fixed by adhesive. The first silicone tube 41 is used to insert the float foot 3. The first silicone tube 41 and the second silicone tube 43 are rotatably connected by the rotating buckle 42.

Claims

1. A current-resistant float, comprising a float tip (1), a float body (2), and a float foot (3), wherein the float body (2) is vertically provided with a mounting hole (21), the bottom end of the float tip (1) is inserted into the mounting hole (21) from top to bottom and fixed in the mounting hole (21), and the top end of the float foot (3) is inserted into the mounting hole (21) from bottom to top and fixed in the mounting hole (21), characterized in that: The axis of the mounting hole (21) divides the float body (2) into two parts. The part in front of the axis of the mounting hole (21) is the water-facing part (22), and the part behind the axis of the mounting hole (21) is the adjustment part (23). The volume of the water-facing part (22) is the same as that of the adjustment part (23), and the projected area of ​​the adjustment part (23) on the vertical plane is greater than that of the water-facing part (22) on the vertical plane.

2. The anti-current buoy according to claim 1, characterized in that: The upper and lower ends of the float (2) are both pointed.

3. The anti-current buoy according to claim 1, characterized in that: The front end of the water-facing part (22) is an arc-shaped surface, and the rear end of the adjustment part (23) is a pointed tip.

4. The anti-current buoy according to claim 1, characterized in that: The float (2) is flat.

5. The anti-current buoy according to claim 1, characterized in that: The distance between the front end of the water-facing part (22) and the axis of the mounting hole (21) increases first and then decreases from top to bottom, then increases again and then decreases again; the distance between the rear end of the adjusting part (23) and the axis of the mounting hole (21) increases first and then decreases from top to bottom.

6. The anti-current buoy according to claim 1, characterized in that: The float tail (1) is made of fiberglass rod, and the float foot (3) is made of carbon rod.

7. The anti-current buoy according to claim 1, characterized in that: The float foot (3) is installed on the rotating float seat (4).

8. The anti-current buoy according to claim 7, characterized in that: The rotating float seat (4) includes a first silicone tube (41), a rotating buckle (42), a second silicone tube (43), and a connector (44) arranged sequentially from top to bottom. The first silicone tube (41) is used to insert the float foot (3), and the first silicone tube (41) and the second silicone tube (43) are rotatably connected by the rotating buckle (42).