Bionic bait with metal baffle
By designing a bionic fishing bait with a metal baffle and using a connecting arm that can bind fishing line and a closed ring or lure pin, the problems of limited swing amplitude and insufficient stability of existing fishing baits are solved, achieving more realistic bait movements and a higher fishing success rate.
Patent Information
- Application Number
- CN202422486909.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-14
AI Technical Summary
Existing lures have limited swing amplitude and insufficient stability in water, and cannot effectively simulate the movements of real fish baits, thus affecting the success rate of fishing.
A bionic fishing bait with a metal baffle is designed. It uses a connecting arm that can be bound with a fishing line. The metal sheet can swing along the X, Y, and Z axes. It is connected with a closed loop or a lure pin. The metal sheet keeps a distance from the simulated fish head and can swing significantly through the free end of the connecting arm. The specific shape and silk skirt design are combined to enhance the simulation effect.
The metal sheet can swing greatly in the water, which enhances the stability in the water and the realistic bionic effect, and improves the success rate of fishing.
Smart Images

Figure CN223349413U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a lure fishing bait, in particular to a bionic fishing bait with a metal baffle. Background Art
[0002] Compared with traditional fishing methods, lure fishing has been loved by more and more anglers in recent years. Lure fishing seems simple, but there are many different techniques. For novice lure anglers, knowing different lures is the key to learning lure fishing well.
[0003] Currently, there are a wide variety of lure types used in lure fishing, and choosing the right lure depends on the type of fish you're targeting. Lures are realistically designed, often in the shape of various fish, insects, or other aquatic creatures. Each lure has its own unique design and purpose. Lures are broadly categorized by their material: soft lures, hard lures, and metal lures.
[0004] In the prior art, common lure baits include the utility model "A bionic bait with sequins" with patent number ZL202021818044.2 and the utility model "A new type of wiggling bait" with patent number ZL202122127666.1.
[0005] The first patented bait features a fishing line tied to the front corner. After the bait is cast, the metal sequins at the rear continuously flip and vibrate, creating a flashing effect that attracts the fish's attention. However, in this patent, the metal sequins, once connected to the wire, lie in the same plane when stationary, failing to provide effective water resistance. Unable to withstand the impact of water, the composite sequins can only follow the current, flipping and pendulum-like motion at the rear of the wire, creating a certain amount of turbulence and failing to ensure the bait's stability in the water.
[0006] The second patented bait features a metal plate at the head, connected to a pin to which the fishing line is tied. When the bait is cast and the line is reeled in, the metal plate experiences water resistance, causing it to swing sideways at a certain angle. This causes the lead head and the hook behind it to vibrate, attracting the fish's attention. However, the problem with this patent is that the metal plate is connected to the lead head, and the lower edge of the metal plate has a certain width. The lead head also has a certain width, which greatly limits the left and right swing range of the metal plate. After turning to a certain angle, it will get stuck, preventing it from swinging further left and right.
[0007] In summary, the existing lure fishing bait structure in the above patent still has the disadvantages of limited swing amplitude and inability to maintain stability in water. In order to improve the success rate of lure fishing, further improvement and perfection of the existing lure is needed. Utility Model Content
[0008] The technical problem to be solved by the utility model is to provide a bionic fish bait with a metal baffle and a more realistic bionic effect in response to the above-mentioned existing technical status.
[0009] The technical solution adopted by the utility model to solve the above-mentioned technical problems is: a bionic fishing bait with a metal baffle, comprising a simulated fish head and a fish hook connected to the bottom of the simulated fish head, characterized in that: the simulated fish head is connected to a movable metal sheet through a connecting arm to which a fishing line can be bound, and the metal sheet can swing along the three directions of the X, Y and Z axes respectively, wherein the connecting arm includes a bending portion in the shape of a "J" structure, and a first arm portion and a second arm portion respectively located at both ends of the bending portion.
[0010] Preferably, in order to allow the connecting arm to rely on elasticity to make the entire bait bounce away when encountering an obstacle underwater, ensuring that the metal sheet can swing to simulate a real bait while the fish hook is submerged in water, the first arm portion forms an angle β with respect to the second arm portion and the range is 40°≤β≤90°. If the angle β is too small, the elasticity provided is insufficient and the purpose of making the bait bounce away cannot be achieved; if the angle β is too large, such as greater than 90 degrees, it cannot bounce back and cannot avoid obstacles; the first arm portion is cast and fixed to the simulated fish head.
[0011] Preferably, to ensure the connection between the simulated fish head and the connecting arm is not susceptible to breakage, the first arm and the bend are made of a first wire diameter of equal size, while the second arm is made of a second wire diameter that gradually decreases from 8-12 mm above the bend toward the metal sheet. This ensures the strength of the connecting arm's bend and the first arm while reducing the strength and rigidity of the second arm. This reduces the first arm's restriction on the metal sheet's vibration, thereby further increasing the metal sheet's vibration amplitude.
[0012] In order to ensure the connection between the metal sheet and the connecting arm while keeping the metal sheet movable, as one of the preferred embodiments, two symmetrical through holes are provided on the metal sheet. Accordingly, the other end of the connecting arm passes through the two through holes in sequence along the axial direction of the metal sheet, and wraps back to the main body of the connecting arm to form a closed loop.
[0013] In order to further improve the flexibility of the metal sheet and expand the swing range, as another preferred embodiment, two symmetrical through holes are opened on the metal sheet, and a closed metal ring is passed through the two through holes. Accordingly, the other end of the connecting arm passes through the metal ring and goes back to the main body of the connecting arm to form a closed ring.
[0014] In order to facilitate disassembly and assembly and increase the swing range of the metal sheet, as another preferred embodiment, two symmetrical through holes are opened on the metal sheet, and the large ends of the lure pins are passed through the two through holes. Accordingly, the other end of the connecting arm passes through the small end of the lure pin and goes back to the main body of the connecting arm to form a closed loop.
[0015] Preferably, the two through holes on the metal sheet may be symmetrically opened along the length direction or symmetrically opened along the width direction.
[0016] Preferably, the shape of the metal sheet can be flexible and varied, such as oval, hexagonal, or quadrilateral. The shape of the metal sheet is selected mainly based on the activity of the fish, the main shaking direction of the bait, and the required sinking speed of the bait, so as to achieve the most suitable effect.
[0017] In order to allow the lure to show more movements underwater and achieve a more realistic fishing lure simulation effect, the lure preferably further includes a silk skirt arranged at the bottom of the simulated fish head. The silk skirt can usually be made of colorful rubber material.
[0018] In order to effectively prevent the hooked fish from escaping, preferably, one side of the fish hook is further provided with a barbed hook cast and fixed to the simulated fish head.
[0019] Compared with the prior art, the advantages of the present invention are: the metal sheet is connected to the connecting arm to which the fishing line can be tied, and the metal sheet maintains a certain distance from the simulated fish head. The free end of the connecting arm can be used to swing in three directions in space. The range of motion is larger than that of the design of the prior art, and it can simulate a more realistic lure effect; secondly, the metal sheet adopts various geometric shapes and cooperates with the closed loop connection structure with the connecting arm. The two effects are superimposed together to combine a design scheme that is most suitable for specific fishing conditions, so that the movement of the bait is closer to the shape of the bait fish in the current season and water conditions, allowing the bait to run more stably in the target water depth for fishing, thereby helping the angler catch more fish; furthermore, the connecting arm adopts a bending structure at a certain angle, and the metal sheet and the second arm can form a vertical connection at a certain angle. This connection method allows the metal sheet to be supported by the connecting arm and not in the same plane as the simulated fish head, which can generate water resistance perpendicular to the water surface, thereby ensuring the balance of the entire lure in the water. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the overall structure of the lure fishing bait according to an embodiment of the present utility model.
[0021] Figure 2 This is a schematic diagram of a first connection method between a metal sheet and a steel wire according to an embodiment of the present utility model.
[0022] Figure 3 This is a schematic diagram of a second connection method between a metal sheet and a steel wire according to an embodiment of the present utility model.
[0023] Figure 4 This is a schematic diagram of a third connection method between a metal sheet and a steel wire according to an embodiment of the present utility model.
[0024] Figure 5 This is one of the schematic diagrams of the metal sheet shape structure of an embodiment of the present utility model.
[0025] Figure 6 This is the second schematic diagram of the metal sheet shape structure of an embodiment of the present utility model.
[0026] Figure 7 This is the third schematic diagram of the metal sheet shape structure of an embodiment of the present utility model.
[0027] Figure 8 This is the fourth schematic diagram of the metal sheet shape structure of an embodiment of the present utility model.
[0028] Figure 9 This is the fifth schematic diagram of the metal sheet shape structure of an embodiment of the present utility model. DETAILED DESCRIPTION
[0029] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments.
[0030] This embodiment discloses a lure bait, such as Figure 1 As shown, the lure includes a simulated fish head 1, a connecting arm 2 and a metal sheet 3.
[0031] The simulated fish head 1 is usually a lead fish head with a certain weight, which makes it easier for the entire bait to sink into the water; the connecting arm 2 is used to connect the simulated fish head 1 and the metal sheet 3, and is also used to bind the fishing line; the bottom of the simulated fish head 1 is connected to the fish hook 4; in order to allow the lure to show more movements underwater and achieve a more realistic bait simulation effect, the bottom of the simulated fish head 1 is also provided with a silk skirt 5 made of colorful rubber material; in order to effectively prevent the hooked fish from escaping, one side of the fish hook 4 is also provided with a barbed hook 6 cast and fixed to the simulated fish head 1.
[0032] Among them, the connecting arm 2 is a metal steel wire with a bending structure, and the connecting arm 2 includes a first arm portion 21, a second arm portion 22 and a bending portion 23 connecting the first arm portion 21 and the second arm portion 22 located in the same plane. The first arm portion 21 forms an angle β relative to the second arm portion 22. The purpose is to allow the metal steel wire to rely on elasticity to allow the entire bait to bounce away when encountering an obstacle underwater, while protecting the fish hook behind to prevent the fish hook from hooking an obstacle; if the angle β is too small, the elasticity provided is insufficient, and the purpose of allowing the bait to bounce away cannot be achieved; if the angle β is too large, such as greater than 90 degrees, it cannot be bounced back and the obstacle cannot be avoided; therefore, the value range of the angle β is preferably 40°≤β≤90°.
[0033] The bent portion 23 is shaped like a Chinese character "J." The first side of the "J" shape connects to the first arm 21, and the second side of the "J" shape connects to the second arm 22. Furthermore, the first arm 21 is connected to the simulated fish head 1, and the second arm 22 is swingably connected to the metal sheet 3. The "J" shape of the bent portion 23 can be used to tie a fishing line. The three-stage bending structure of the connecting arm 2 enables better coordination between the metal sheet 3 and the fish hook 4, achieving the best effect of simulating a real fishing bait.
[0034] In order to ensure the reliability of the connection, the first arm portion 21 is fixed to the lead simulated fish head 1 by casting; in order to facilitate the connection and disassembly of the metal sheet 3 and the connecting arm 2, two symmetrically arranged through holes 31 are opened on the metal sheet 3. Accordingly, the second arm portion 22 of the connecting arm 2 passes through the above two through holes 31 in sequence along the axial direction of the metal sheet 3, and is wound back to the body of the connecting arm 2 in the form of a closed loop 24 (similar to a teardrop shape), as shown in FIG. Figure 2 shown.
[0035] In existing fishing lure designs, the metal sheet 3 is directly connected to the lead fish head, and the lower edge of the metal sheet 3 has a certain width. The lead fish head also has a certain width. This greatly limits the left and right swing range of the metal sheet 3. After rotating to a certain angle, it will get stuck and cannot swing more left and right. In this embodiment, when the metal sheet 3 is immersed in water and in a stationary state, the metal sheet 3 is in a substantially vertical position relative to the second arm portion 22 of the connecting arm 2. This design allows the metal sheet to remain substantially perpendicular to the water surface after the bait is placed in the water, thereby generating a certain amount of water resistance. This water resistance can maintain the balance of the bait and slow the bait's sinking speed, which can better attract fish to prey on the bait. At the same time, because it is far away from the lead fish head, its range of movement can be larger than that of existing designs, and it has three-dimensional spatial jitter, which can simulate a more realistic bait effect and provide a better fishing experience.
[0036] Specifically, the connection between the metal sheet 3 and the connecting arm 2 can be achieved in the following three ways.
[0037] The first method is to use the connecting arm 2 itself to directly connect the metal sheet 3, such as Figure 2 As shown, two symmetrical through holes 31 are opened on the metal sheet 3. Correspondingly, the second arm portion 22 of the connecting arm 2 passes through the two through holes 31 in sequence along the axial direction of the metal sheet 3, and wraps back to the main body of the connecting arm 2 to form a closed ring 24 (similar to a water drop shape).
[0038] The second method is to connect the connecting arm 2 and the metal sheet 3 through a closed metal ring 7, such as Figure 3 As shown, two symmetrical through holes 31 are opened on the metal sheet 3, and a closed metal ring 7 is passed through the two through holes 31. Accordingly, the other end of the connecting arm 2 passes through the metal ring 7 and goes back to the body of the connecting arm 2 to form a closed ring 24.
[0039] The third method is to connect the connecting arm 2 and the metal sheet 3 by using the lure pin 8, such as Figure 4 As shown, the metal sheet 3 is provided with two symmetrical through holes 31, through which the large ends of the lure pins 8 are passed. Correspondingly, the other end of the connecting arm 2 passes through the small end of the lure pin 8 and wraps back to the body of the connecting arm 2 to form a closed loop 24. The lure pin 8 can be easily opened and closed, making installation more convenient and simple.
[0040] like Figures 5 to 9 As shown, the cross-sectional shape of the metal sheet 3 can be varied. The metal sheet 3 can be elliptical (see Figure 5 ) or waist drum type (see Figure 6 ) or quadrilateral (see Figure 7 ) or hexagonal (see Figure 8 、 Figure 9 ), the shape of the metal sheet 3 is mainly selected according to the activity of the fish, the main shaking direction requirements of the bait and the different requirements of the sinking speed of the bait, so as to configure metal sheets 3 of different shapes to achieve the most suitable effect.
[0041] For example, Figures 5 to 8 The four shapes of metal sheets 3 have the same horizontal width. Figure 7 The rectangular metal piece 3 has the largest area and thus produces greater resistance, so it has the smallest vibration amplitude and makes the bait sink the slowest. On the contrary, Figure 5 The oval metal piece 3 has the smallest area, so it generates less resistance and has the largest vibration amplitude, allowing the bait to sink the fastest. Figure 6 and Figure 7The shape of the metal sheet 3 is similar, but the design of the long side is different, so when comparing the two, Figure 7 The vibration amplitude of the rectangular metal sheet 3 in the horizontal direction is Figure 6 The waist drum-shaped metal piece 3 is larger, and the vibration amplitude in the vertical direction is larger than Figure 6 3 small waist drum-shaped metal pieces, Figure 7 The final swing amplitude of the bait is also Figure 7 Compare Figure 6 Big, but Figure 7 The up and down swing amplitude brought to the bait is greater than Figure 6 Small.
[0042] pass Figure 8 and Figure 9 It can be seen from the comparison that the two through holes 31 on the metal sheet 3 can be opened symmetrically along the length direction or can also be opened symmetrically along the width direction.
[0043] In order to ensure that the connection position between the simulated fish head 1 and the connecting arm 2 is not easily broken, and at the same time, further improve the shaking effect of the metal sheet 3, the connecting arm 2 of this embodiment also adopts a variable diameter design.
[0044] Among them, the first arm portion 21 and the bending portion 23 use a first wire diameter of equal proportion, and the size range of the first wire diameter can be 0.9mm to 1.2mm. Depending on the product, there will be different design standards of 0.9mm, 1.0mm, 1.1mm and 1.2mm.
[0045] The second arm portion 22 utilizes a second wire diameter that gradually decreases from 8-12 mm above the bend portion 23 toward the metal sheet 3. The thinnest portion of the second wire diameter ranges from 0.5 mm to 0.7 mm. Typically, different design standards of 0.5 mm, 0.6 mm, and 0.7 mm are used depending on the product. This ensures the strength of the bend portion of the connecting arm 2 and the first arm portion 21 while reducing the strength and rigidity of the second arm portion 22. This reduces the restriction on the vibration of the metal sheet 3 by the first arm 21, thereby further increasing the vibration amplitude of the metal sheet 3.
[0046] The metal sheet 3 of this embodiment is not directly connected to the lead fish head. When the metal sheet 3 is immersed in water and is in a stationary state, the metal sheet 3 is in a basically vertical state relative to the second arm portion 22 of the connecting arm 2, so it can generate a certain water-blocking resistance, which is much stronger than the design of the prior art. At the same time, since it is far away from the lead fish head, its range of movement can be larger than the prior design, and it has three-directional shaking in space, which can simulate a more realistic bait effect and obtain the best fishing experience.
[0047] In the specification and claims of the present invention, directional terms such as "front," "back," "up," "down," "left," "right," "side," "top," and "bottom" are used to describe various exemplary structural parts and components of the present invention. However, these terms are used herein for convenience of description only and are based on the exemplary orientations shown in the accompanying drawings. Since the embodiments disclosed in the present invention can be arranged in different orientations, these directional terms are intended for illustrative purposes only and should not be construed as limiting. For example, "up" and "down" are not necessarily limited to directions opposite to or consistent with the direction of gravity.
Claims
1. A bionic fishing bait with a metal baffle, comprising a simulated fish head (1) and a fish hook (4) connected to the bottom of the simulated fish head (1), characterized in that: The simulated fish head (1) is connected to a movable metal sheet (3) via a connecting arm capable of binding a fishing line, and the metal sheet (3) can swing along three directions of the X, Y and Z axes respectively, wherein the connecting arm includes a bending portion (23) in a "J"-shaped structure, and a first arm portion (21) and a second arm portion (22) respectively located at two ends of the bending portion (23).
2. The bionic fishing bait with a metal baffle according to claim 1, characterized in that: The first arm portion (21) forms an angle β with respect to the second arm portion (22) and the range is 40°≤β≤90°. The first arm portion (21) is cast-connected and fixed to the simulated fish head (1).
3. The bionic fishing bait with a metal baffle according to claim 2, characterized in that: The first arm portion (21) and the bending portion (23) use a first wire diameter of equal size, and the second arm portion (22) uses a second wire diameter that starts from 8-12 mm upward from the bending portion (23) and gradually decreases toward the metal sheet (3).
4. The bionic fishing bait with a metal baffle according to claim 1, characterized in that: The metal sheet (3) is provided with two symmetrically arranged through holes (31). Accordingly, the other end of the connecting arm (2) passes through the two through holes (31) in sequence along the axial direction of the metal sheet (3) and wraps back to the main body of the connecting arm (2) to form a closed loop (24).
5. The bionic fishing bait with a metal baffle according to claim 1, characterized in that: The metal sheet (3) is provided with two symmetrically arranged through holes (31), and a closed metal ring (7) is passed through the two through holes (31). Accordingly, the other end of the connecting arm (2) passes through the metal ring (7) and wraps back to the main body of the connecting arm (2) to form a closed ring (24).
6. The bionic fishing bait with a metal baffle according to claim 1, characterized in that: The metal sheet (3) is provided with two symmetrical through holes (31), and the large ends of the lure pins (8) are passed through the two through holes (31). Correspondingly, the other end of the connecting arm (2) passes through the small ends of the lure pins (8) and is wound back to the main body of the connecting arm (2) to form a closed loop (24).
7. The bionic fishing bait with a metal baffle according to claim 5 or 6, characterized in that: The two through holes (31) on the metal sheet (3) are symmetrically opened along the length direction or symmetrically opened along the width direction.
8. The bionic fishing bait with a metal baffle according to claim 1, characterized in that: The metal sheet (3) is elliptical, hexagonal or quadrilateral.
9. The bionic fishing bait with a metal baffle according to claim 1, characterized in that: The fishing bait further comprises a silk skirt (5) arranged at the bottom of the simulated fish head (1).
10. The bionic fishing bait with a metal baffle according to claim 1, characterized in that: One side of the fish hook (4) is further provided with a barbed hook (6) cast and fixed to the simulated fish head (1).
Citation Information
Patent Citations
Bionic bait with paillettes
CN212753880U
Novel swinging bait
CN215531015U