Fishing line set with low water resistance buffer structure
By introducing an elastic curved line as a buffer structure into the fishing line set, the problem of the float being difficult to move due to excessive water resistance is solved, and the float can respond promptly when the fish is feeding, thereby improving the fish catching rate.
Patent Information
- Application Number
- CN202421918519.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-08-08
AI Technical Summary
When a fish takes the bait, the existing fishing line set has too much water resistance, which makes it difficult to pull the float. The angler cannot judge whether the fish has taken the bait in time, which affects the fish catching rate.
The fishing line set adopts a low water resistance buffer structure. By setting an elastic curved line on the main line or sub-line as a buffer structure, the elastic curved line is deformed when the fish sucks the bait, reducing water resistance. The elastic curved line rebounds and pulls the float down to signal the angler.
It improves the success rate of fish sucking bait and the fishing rate of catching fish, ensures that the float can respond to the fish's sucking action in time, and reduces the impact of water resistance.
Smart Images

Figure CN223322787U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a fishing line set, in particular to a fishing line set with a low water resistance buffer structure. Background Art
[0002] Modern fishing is divided into two main categories: recreational and competitive. While pursuing the joy of fishing, people are also increasingly focusing on and striving to improve their fishing skills. Competitive competitions push these skills to the extreme. In competitive fishing, many fish are caught repeatedly and then returned to the pond. Anglers call these fish "repeated fish." These repeated fish have become increasingly wary of bait, especially bait that's already on the hook. This repetition allows fish to detect flaws by observing the ease or trajectory of the bait they consume, forming a conditioned reflex. As a fish consumes bait attached to the hook, the water resistance of the line and float prevents their movement. Consequently, the fish must overcome both the resistance of the bait itself and the resistance of the water on the line and float to reach the bait's mouth. The resistance of the fishing line and float in the water is often much greater than the bait itself, so it becomes much more difficult for the fish to suck the bait on the hook. Many times, the fish cannot even suck it into its mouth. If the fish wants to complete the swallowing, it needs greater suction force. Moreover, due to the traction of the fishing line, the bait suction trajectory on the hook will change, which will make the fish alert and even flee the scene.
[0003] To reduce the impact of the fishing line on the bait as the fish takes it, people can adjust the line by reducing the lead weight of the float, the diameter of the fishing line, and the slack in the water. While these methods are feasible, they all have some significant drawbacks. For example, choosing a float with a relatively small lead weight will reduce its buoyancy, making it difficult to straighten the line in the water, causing it to bend in the water. If a fish takes the bait, the bait travels only a few centimeters. This stretch may only slightly straighten the long, slightly bent line in the water, but it does not transmit the tension to the float. Without the float moving, the angler has no way of determining that the fish has taken the bait, missing the opportunity to hook the fish and failing to catch them. Choosing a smaller diameter fishing line, while reducing the water resistance, also reduces the tensile strength of the line. A slight struggle by the fish after a bite can easily cause the line to break and escape. If you adjust the slack of the line group in the water so that the fishing line below the lead sinker bends a little after the bait hits the bottom, then when the fish eats, because part of the fishing line is bent, before this part of the fishing line is straightened, the lead sinker and the fishing line above the lead sinker and the float have no resistance to the bait on the hook, and the bait is easily sucked into the fish's mouth. However, because the lead sinker and the fishing line above the lead sinker and the float are not pulled by the bait, the lead sinker and the fishing line above the lead sinker and the float do not move. The angler does not see the float move and has no way to determine that the fish has taken the hook, missing the opportunity to catch the fish by lifting the rod. Only after the fish swallows the bait and continues to pull the fishing line for a distance, and the fishing line is completely straightened and moved, will the float move, and the angler can determine that a fish has taken the bait and then lift the rod to catch the fish. However, there is only a limited chance that a fish will continue to move the line after taking a bite. To ensure that anglers don't miss every bite, the float must be pulled every time the fish takes a bite, without affecting the bait's entry into the fish's mouth. Therefore, it is necessary to design a new fishing line that can pull the float when a fish takes a bite, but the reaction force from pulling the float must not significantly affect the movement of the bait on the hook as it is being sucked in, thereby increasing the chances of catching fish.
[0004] Chinese utility model patent 202222935841.4 discloses a buffer fishing line assembly, comprising a main line with a buffer ring at the bottom end, the buffer ring being made of elastic silicone or elastic rubber. This patent utilizes a powerful buffer ring to provide a buffering force. When encountering a larger fish, the buffer ring's elasticity and cushioning can slowly absorb the impact of the large fish, thereby protecting the fishing line and fishing rod. The buffer ring used in this patent is large in size and has high water resistance. Adding the buffer ring further affects the fish's ability to suck bait. Currently, no fishing line assembly has been found that allows the fish to easily take the bait in without pulling the float. Summary of the Invention
[0005] The technical problem to be solved by the utility model is: to provide a fishing line group with a low water resistance buffer structure, which is formed by arranging an elastic curved line on the main line or the sub-line as a low water resistance buffer line group. When the fish eats the bait, the elastic curved line is easy to deform, so that the fish can easily suck the bait into its mouth without pulling the float. The elastic curved line will rebound after deformation, and the rebound force will pull the float down to signal the angler, thereby improving the fish catching rate.
[0006] The technical solution to solve the above technical problems is: a low water resistance buffer structure fishing line group, including a main line and a sub-line, a buffer structure is provided on the lower part of the main line or the sub-line, and the buffer structure is an elastic bending line.
[0007] Furthermore, a float is installed on the upper part of the main line, a lead is installed on the lower part of the main line, the lower end of the main line is connected to the elastic bending line, and the elastic bending line is connected to the sub-line through a connector.
[0008] Furthermore, a float is installed on the upper part of the main line, a lead is installed on the lower part of the main line, the lower end of the main line is connected to the sub-line, and the elastic bending line is arranged on the sub-line, that is, the sub-line is divided into a sub-line upper section and a sub-line lower section, and the sub-line upper section and the sub-line lower section are connected by an elastic bending line.
[0009] Furthermore, a float is installed on the upper part of the main line, a lead is installed on the lower part of the main line, the lower end of the main line is connected to the upper end of the elastic bending line through a connecting piece, and the lower end of the elastic bending line is connected to the sub-line through a connecting piece.
[0010] Furthermore, a float is installed on the upper part of the main line, a lead is installed on the lower part of the main line, the upper end of the elastic bending line is installed on the lower part of the main line through a sliding joint, the lower end of the elastic bending line and the lower end of the main line are both connected to the connecting piece, the connecting piece is connected to the sub-line, the length of the main line between the sliding joint and the connecting piece is smaller than the length of the elastic bending line after being straightened, and when there is no external force, the main line between the sliding joint and the connecting piece forms a curved shape.
[0011] Furthermore, a float is installed on the upper part of the main line, a lead is installed on the lower part of the main line, the lower end of the main line is connected to the sub-line, and the upper and lower ends of the elastic bending line are respectively installed on the sub-line through two sliding joints. The length of the sub-line between the two sliding joints is smaller than the length of the elastic bending line after being straightened. When there is no external force, the sub-line between the two sliding joints forms a curved shape.
[0012] Furthermore, the connecting piece is a figure eight ring.
[0013] When a fish sucks in bait, the suction force is generated by the fish's gills rapidly shifting the water flow. This action is very fast, and the bait is also pulled very quickly. Compared to a line group without a low-water-resistance buffer structure, the line group of the present invention with a low-water-resistance buffer structure has a very small elastic force when the bait is quickly pulled. The elastic bending wire in the buffer structure has a very small elastic force, which is generally less than one-fifth of the float's buoyancy without special use. Therefore, the elastic bending wire in the buffer structure first deforms to respond to the movement of the bait when the float is slightly pulled downward, giving the bait only a very small deformation elastic force, allowing the bait to quickly enter the fish's mouth. In this process, because there is a buffer structure between the float and the fishhook, the buffer structure deforms to lengthen the line group as a whole. When the float moves slightly downward or almost does not move downward, the fishhook can be sucked into the fish's mouth through the displacement compensation of the lengthened buffer structure. For a line group without a low water resistance buffer structure, when the fish sucks the bait, the bait drives the line group to move a corresponding distance, and the line group drives the float to move a corresponding displacement, which makes the speed of the bait moving and the speed of the float moving respond synchronously, and the linear velocity of the float moving is close to the linear velocity of the bait moving. According to the water resistance formula F=1 / 2ρAv²Cd, the faster the object moves in the water, the greater the water resistance. Since the bait is sucked in very quickly, the float is pulled at a very fast speed, so the resistance of the float in the water is very large, which makes the pulling force of the fishhook on the float greater than the buoyancy of the float and the resistance of the water to the float when the movement is accelerated, so that the float can be pulled. Compared to the two, it is much easier for fish to inhale bait from the line set with the buffer structure of the present invention than from the line set without the buffer structure. This increases the probability of fish ingesting bait from the line set with the buffer structure. Furthermore, the elastically curved line of the buffer structure of the present invention rebounds after deformation, generating a rebound force. This small rebound force is sufficient to pull the float downward, signaling the angler. This is because the buffer structure of the present invention dampens the speed at which the fish pulls the entire line set when ingesting the bait, slowing the line set's response. As the water resistance formula indicates, the slower the speed, the lower the water resistance. Therefore, by reducing the line set's response speed, the present invention reduces the water resistance when the fish ingests the bait, making it easier for the fish to ingest the bait while allowing the float to be pulled downward by the small rebound force of the buffer structure. Therefore, using the fishing line set with the low water resistance buffer structure of the present invention increases the probability of catching fish.
[0014] The technical features of the fishing line set with a low water resistance buffer structure of the present invention will be further described below with reference to the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 : Schematic diagram of a fishing line set with a low water resistance buffer structure according to Example 1 of the present invention.
[0016] Figure 2: Schematic diagram of a fishing line set with a low water resistance buffer structure according to Example 2 of the present invention.
[0017] Figure 3 : Schematic diagram of a fishing line set with a low water resistance buffer structure according to Example 3 of the present invention.
[0018] Figure 4 : Schematic diagram of a fishing line set with a low water resistance buffer structure according to Example 4 of the present invention.
[0019] Figure 5 : Schematic diagram of a fishing line set with a low water resistance buffer structure according to Example 5 of the present invention.
[0020] Figure 6 : A diagram showing the use status of a fishing line group with a low water resistance buffer structure according to the present invention.
[0021] In the picture, 1-fishing rod, 2-main line, 3-float, 4-lead, 5-elastic bending line, 6-figure-eight ring, 7-sub-line, 8-fish hook, 9-float seat, 10-space bean, 11-lead seat, 12-sliding joint. DETAILED DESCRIPTION Example 1
[0022] A fishing line set with low water resistance and buffer structure, such as Figure 1 As shown, it includes a main line 2, a sub-line 7 and a buffer structure, wherein the buffer structure is an elastic bending line 5. A float seat 9 is installed on the upper part of the main line through a space bean 10, and a float 3 is installed on the float seat. A lead seat 11 is installed on the lower part of the main line through a space bean 10, and a lead sheet 4 is installed on the aluminum seat. The lower end of the main line passing through the lead seat is connected to the elastic bending line 5, and the elastic bending line 5 is connected to the sub-line 7 through an eight-shaped ring 6. The bottom end of the sub-line is installed with a fish hook 8. Example 2
[0023] A fishing line set with low water resistance and buffer structure, such as Figure 2 As shown, it includes a main line 2, a sub-line 7 and a buffer structure, wherein the buffer structure is an elastic bending line 5. A float seat 9 is installed on the upper part of the main line through a space bean 10, and a float 3 is installed on the float seat. A lead seat 11 is installed on the lower part of the main line through a space bean 10, and a lead sheet 4 is installed on the aluminum seat. The lower end of the main line passing through the lead seat is connected to the sub-line through an eight-shaped ring 6. The elastic bending line 5 is set on the sub-line 7, that is, the sub-line is divided into a sub-line upper section and a sub-line lower section, and the sub-line upper section and the sub-line lower section are connected by the elastic bending line 5. A fish hook 8 is installed at the bottom end of the sub-line. Example 3
[0024] A fishing line set with low water resistance and buffer structure, such as Figure 3As shown, it includes a main line 2, a sub-line 7, and a buffer structure, wherein the buffer structure is an elastic bend line 5. The upper part of the main line is mounted with a float seat 9 through a space bean 10, and a float 3 is mounted on the float seat. The lower part of the main line is mounted with a lead seat 11 through a space bean 10, and a lead sheet 4 is mounted on the aluminum seat. The lower end of the main line passing through the lead seat is connected to the upper end of the elastic bend line 5 through an eight-shaped ring 6, and the lower end of the elastic bend line is connected to the sub-line 7 through an eight-shaped ring. The bottom end of the sub-line is mounted with a fish hook 8. Example 4
[0025] A fishing line set with low water resistance and buffer structure, such as Figure 4 As shown, it includes a main line 2, a sub-line 7 and a buffer structure, and the buffer structure is an elastic bending line 5. A float 3 is installed on the upper part of the main line 2, and a lead sheet 4 is installed on the lower part of the main line. The upper end of the elastic bending line 5 is installed on the lower part of the main line 2 through a sliding joint 12, that is, the sliding joint 12 is clamped between the space beans 10 installed on the lower part of the main line, and the installation position of the sliding joint 12 can be adjusted by moving the space beans. The lower end of the elastic bending line and the lower end of the main line are both connected to the figure-eight ring 6, the figure-eight ring is connected to the sub-line 7, and the bottom end of the sub-line is installed with a fishhook 8. The length of the main line between the sliding joint and the figure-eight ring is less than the length of the elastic bending line after being straightened. When there is no external force, the main line 2 between the sliding joint 12 and the figure-eight ring 6 forms a curved shape, that is, the main line 2 between the sliding joint 12 and the figure-eight ring 6 is pulled into a curved line by the tension of the elastic bending line. With this design, when the hook end is subjected to force, the section of the main line bent by the elastic bending wire is straightened and subjected to the primary tensile force. However, the elastic bending wire 5, protected by the straightening protection of the curved main line, can be stretched but not straightened (the length of the main line between the sliding joint and the figure-eight ring is less than the length of the elastic bending wire after straightening). This eliminates the need for the bending wire to be subjected to significant tensile force, allowing the wire diameter to be made very small. Because the force applied does not exceed the plastic deformation force of the material, the bent shape remains unchanged, resulting in a longer-lasting hook. The elastic bending wire 5 can be made of nickel-titanium shape memory alloy wire, and even if accidentally deformed, it can be restored to its original curved shape by being placed in hot water. Example 5
[0026] A fishing line set with low water resistance and buffer structure, such as Figure 5As shown, it includes a main line 2, a sub-line 7 and a buffer structure, wherein the buffer structure is an elastic bending line 5. A float 3 is installed on the upper part of the main line 2, and a lead sheet 4 is installed on the lower part of the main line. The lower end of the main line is connected to the sub-line, and the upper and lower ends of the elastic bending line are respectively installed on the sub-line 7 through two sliding joints 12. The length of the sub-line 7 between the two sliding joints is less than the length of the elastic bending line 5 after being straightened. When there is no external force, the sub-line 7 between the two sliding joints 12 forms a curved shape, that is, the tension of the elastic bending line pulls the sub-line between the two sliding joints 12 into a curved line. The purpose of this design is also to protect the elastic bending line 5 and make it less likely to deform.
[0027] The curved elastic line buffer structure described in each embodiment of the present invention is a curved elastic line structure with a certain elastic force configured as a portion of the force-bearing line on a fishing line assembly. Specifically, the elastic curved line buffer structure can be formed by elastically bending the fishing line itself, or it can be formed by elastically bending a wire made of another material. When subjected to a force greater than its elastic limit, the elastic curved line structure can be straightened. The tensile strength after straightening is equal to the tensile strength of the wire material itself, or slightly lower than the ultimate tensile strength of the wire material due to the shaping process.
[0028] The rebound force of the elastic curved wire buffer structure described in each embodiment of the present invention can be made into different values according to the material or diameter of the wire, generally between 0.001N and 0.05N. Buffer structures with different rebound forces can be selected according to the needs of the fishing conditions. However, the only similarity is that the rebound force of the buffer structure is much smaller than the buoyancy of the float. When the force applied to the buffer structure is greater than its bending elastic rebound force, the bent wire of the buffer structure is straightened, and the tensile strength of the straightened wire is the breaking force of the wire material. The breaking force of the buffer structure wire can be equal to or greater than the tension of the main line of the fishing line, so that the buffer structure will not be broken during the process of catching a fish and the fish pulling.
[0029] The working process of this utility model is:
[0030] After bait is attached to the hook of the present invention, it is thrown into the water. The weight of the lead is adjusted to ensure that the bait touches or does not touch the bottom, and the float protrudes one or more meshes above the water surface. When a fish inhales the bait from the hook, the bait pulls the hook and sub-line toward the fish's mouth. Because the buffer structure in the present invention is closer to the hook end than the float and lead sinker, the tension is first transmitted to the buffer structure. When the buffer structure is subjected to tension, as long as the tension is greater than the buffer structure's rebound force, the bent wire of the buffer structure will gradually straighten. At the same time, the buffer structure exerts a reaction force equal to the rebound force on the hook end, acting on the hook and bait. Because the reaction force exerted by the buffer structure on the hook end is very small, the hook and the bait on the hook can easily overcome this reaction force and be sucked into the fish's mouth. When the buffer structure is deformed by the hook end, because it is connected to the float end, it also exerts a tension equal to the elastic rebound force on the float end. Although the elastic rebound force of the buffer structure is very small, far lower than the buoyancy of the float, when this force is added to the system of the float and lead weight suspended in balance in the water, the downward force of the system is greater than the upward buoyancy. The system cannot maintain balance and will be pulled downward, causing the float to move down, giving the angler a signal so that the angler can lift the rod and catch the fish.
[0031] During this process, all parts of the fishing line group are tightly connected, and the force is transmitted in time. Although the buffer structure is stretched, the force transmission to the hook end and the float end connected to it is synchronous and timely, and there is no pause before transmitting the pulling force.
Claims
1. A fishing line set with a low water resistance buffer structure, comprising a main line (2) and a sub-line (7), wherein a float (3) is installed on the upper part of the main line (2), and a lead sheet (4) is installed on the lower part of the main line, characterized in that: A buffer structure is provided on the lower part of the main line or the sub-line, and the buffer structure is an elastic bending line (5). The rebound force of the buffer structure is smaller than the buoyancy of the float.
2. The fishing line assembly with a low water resistance buffer structure according to claim 1, characterized in that: The lower end of the main line is connected to the elastic bending line, and the elastic bending line is connected to the sub-line (7) through a connecting piece.
3. The fishing line assembly with a low water resistance buffer structure according to claim 1, characterized in that: The lower end of the main line is connected to the sub-line, and the elastic bending line (5) is arranged on the sub-line (7), that is, the sub-line is divided into a sub-line upper section and a sub-line lower section, and the sub-line upper section and the sub-line lower section are connected via the elastic bending line (5).
4. The fishing line assembly with a low water resistance buffer structure according to claim 1, characterized in that: The lower end of the main line is connected to the upper end of the elastic bending line (5) through a connecting piece, and the lower end of the elastic bending line is connected to the sub-line (7) through a connecting piece.
5. The fishing line assembly with a low water resistance buffer structure according to claim 1, characterized in that: The upper end of the elastic bending line is mounted on the lower end of the main line via a sliding joint (12); the lower end of the elastic bending line and the lower end of the main line are both connected to a connector; the connector is connected to the sub-line (7); the length of the main line between the sliding joint and the connector is less than the length of the elastic bending line after being straightened; when there is no external force, the main line between the sliding joint and the connector forms a curved shape.
6. The fishing line assembly with a low water resistance buffer structure according to claim 1, characterized in that: The lower end of the main line is connected to the sub-line, and the upper and lower ends of the elastic bending line are respectively installed on the sub-line (7) through two sliding joints (12). The length of the sub-line between the two sliding joints is less than the length of the elastic bending line after being straightened. When there is no external force, the sub-line between the two sliding joints forms a curved shape.
7. A fishing line assembly with a low water resistance buffer structure according to claim 2, 4 or 5, characterized in that: The connecting piece is an eight-shaped ring (6).
Citation Information
Patent Citations
Buffering fishing line set
CN218898014U