Lure
By installing a shaker in the inner cavity of the bait that can accept external light and emit light, the problem of difficulty in luring fish after the bait action is stopped is solved, and a higher hooking rate is achieved.
Patent Information
- Application Number
- CN202211389337.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2018-04-19
- Filing Date
- 2018-09-28
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2038-09-28
AI Technical Summary
In bait fishing, it is difficult for the bait to continue to lure fish-eating fish after the action is stopped, resulting in a decrease in the hooking rate.
A lure is designed with a cavity inside and a shaking part is installed in the cavity. The shaking unit can accept external light and emit light, and can still operate after the bait action stops, and continue to lure fish through reflection and vibration of light.
The bait can still effectively lure fish-eating fish after the bait action is stopped, improving the hooking rate.
Smart Images

Figure CN115669621B_ABST
Abstract
Description
[0001] This application is a divisional application of the invention patent application with the application number 201811139285.1 and the invention title "Lure", which was filed on September 28, 2018. Technical Field
[0002] The present invention relates to a lure for fishing. Background Art
[0003] Large fish such as Micropterus salmonides, amberjack and their juveniles, and sea bass prey on small fish. These large fish are called fish eaters. As a method of catching fish eaters, the lure fishing method is popular. In the lure fishing method, a lure that resembles a bait such as a small fish is used. The lure flies in the air by being cast and soon falls into the water. By winding the fishing line, the lure swims in the water. The fish eater that mistakes the lure for a bait bites the lure. The hook installed on the lure pierces the fish eater, and thus the fish eater is caught. The frequency at which the fish eater bites the lure is called the hook-up rate.
[0004] In order to improve the hook-up rate, various improvements have been made to the lure. For example, a shiny coating is applied to the lure. In this lure, when the lure moves, the reflection state of light changes to attract fish eaters. Another lure has a rattle ball in the space inside the lure. When the lure moves, the ball rolls and makes a sound to attract fish eaters. There is also a known lure that vibrates and swims when the lure is pulled. These types of lures have been disclosed in the "2017 Shimano Fishing Gear Catalog" published by Shimano Inc.
[0005]
Prior Art Documents
[0006]
Non-Patent Documents
[0007]
Non-Patent Document 1
[0008]
Technical Problem to be Solved by the Invention
[0009] In the lure fishing method, after the angler casts the lure, the angler repeatedly performs the action of pulling the fishing line and the action of stopping the pulling. When the pulling of the lure is stopped, in a place where the water basically does not flow, such as a still water area or a sea area with little sea current and waves, the movement of the lure basically stops. In order to improve the hook-up rate, there is a need for a lure that can still attract fish eaters after the movement of the lure stops.
[0010] An object of the present invention is to provide a lure that can still attract fish eaters after the movement of the lure stops.
[0011]
Technical Solution for Solving Technical Problems
[0012] The fishing lure involved in the present invention has: a lure body having a cavity inside; and a shaking part that is movably installed in the cavity of the lure body and emits light by receiving light from the outside. The lure body is configured to visually confirm the light from the shaking part from the outside. The shaking part can still move after the lure changes from the operating state to the stopped state.
[0013] Preferably, the shaking part is a reflector. The shaking part can also be a phosphor.
[0014] Preferably, the shaking part is in a plate shape and extends in the front-rear direction of the lure.
[0015] Preferably, the lure further has a spring, and the shaking part is installed on the lure body via the spring. At this time, preferably, the spring is hung on the lure body, and the shaking part is hung at the lower end of the spring. It can be configured that the spring extends in the front-rear direction, both ends of the spring are fixed to the lure body, and the shaking part is hung on the spring.
[0016] It can be configured that the lure further has a suspension rod extending in the cavity, and the shaking part is installed on the lure body by hanging the shaking part on the suspension rod.
[0017] Preferably, the contact part of the suspension rod in contact with the shaking part is in a blade shape.
[0018] It can be configured that the suspension rod extends in the front-rear direction, an installation hole penetrating in its extending direction is provided on the shaking part, the upper surface of the installation hole has a top protruding downward, and the shaking part is installed on the lure body by passing the suspension rod through the installation hole.
[0019] It can be configured that the lure further has a suspension member, the suspension member is installed on the lure body and can swing relative to the lure body, and the shaking part is hung on the suspension member.
[0020] It can be configured that the lure further has a magnet, and the shaking part is installed on the lure body via the magnet.
[0021] Preferably, the movement of the shaking part relative to the lure body is vibration.
[0022] Preferably, the pressure in the cavity is reduced compared to the atmospheric pressure.
[0023]
Advantages of the Invention
[0024] The fishing lure involved in the present invention has a shaking part, which is movably installed in the cavity of the fishing lure body, receives light from the outside, and emits light. The light from the shaking part can be visually confirmed from the outside. The shaking part can still move for a while after the fishing lure changes from the operating state to the stopped state. The visual condition of the light from the shaking part also changes after the fishing lure changes from the operating state to the stopped state. In this fishing lure, even after the operation of the fishing lure stops, it can still attract predatory fish. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 FIG. is a side view showing a fishing lure according to an embodiment of the present invention.
[0026] Figure 2 FIG. shows when Figure 1 the fishing lure is divided into left and right parts, and is an exploded view of the right part.
[0027] Figure 3 FIG. is Figure 2 a partially enlarged view of.
[0028] Figure 4 FIG. is a cross-sectional view along the Figure 3 IV-IV line of.
[0029] Figure 5 FIG. shows when the fishing lure according to another embodiment of the present invention is divided into left and right parts, and is an exploded view of the right part.
[0030] Figure 6 FIG. shows when the fishing lure according to still another other embodiment of the present invention is divided into left and right parts, and is an exploded view of the right part.
[0031] Figure 7 FIG. is a perspective view of a part of the fishing lure according to still another other embodiment of the present invention.
[0032] Figure 8 FIG. is a cross-sectional perspective view along the Figure 7 VIII-VIII line of.
[0033] Figure 9 FIG. is a perspective view of a part of the fishing lure according to still another other embodiment of the present invention.
[0034] Figure 10 FIG. is a perspective view of a part of the fishing lure according to still another other embodiment of the present invention.
[0035] Figure 11 FIG. is a side view of a part of the fishing lure according to still another other embodiment of the present invention.
[0036]
DESCRIPTION OF REFERENCE NUMERALS
[0037] 2, 30, 50, 70, 90, 120, 140: Lure; 4, 32, 52: Lure body; 6: Protrusion; 8, 54, 74, 94, 144: Suspension rod; 10, 36, 56, 72, 92, 122, 142: Shaking part; 12, 34: Spring; 14: Head; 16: Tail; 18, 38, 58: Cavity; 20: Notch; 22, 40, 60, 80, 102, 128: Mounting hole; 76: Upper end; 78: Lower end; 82: Top; 84, 106, 134, 154: Storage hole; 96, 126, 148: Counterweight; 98, 150: Main body; 100: Ring; 104: Upper edge of the suspension rod; 108: Inner peripheral surface of the mounting hole; 110: Inner peripheral surface of the ring; 124: Hanging member; 130: Bending part; 132: Straight part; 146: Magnet; 152: Mounting metal part. Detailed implementation mode
[0038] Hereinafter, with appropriate reference to the drawings, the present invention will be described in detail according to the preferred embodiments.
[0039] [First embodiment]
[0040] Figure 1 It is a side view showing the lure 2 according to an embodiment of the present invention. In Figure 1 , the direction shown by the arrow X is the front of the lure 2, and the opposite direction is the rear of the lure 2. The direction shown by the arrow Z is the upper side of the lure 2, and the opposite direction is the lower side of the lure 2. The direction perpendicular to the paper surface is the left - right direction of the lure 2. Figure 2 It is an exploded view of the right - hand part when the Figure 1 lure 2 is divided into left and right parts. This figure is the one after removing the left - hand part of the lure 2. In this figure, the internal structure of the lure 2 can be seen. Figure 3 It is Figure 2 an enlarged view of the front part of Figure 3 . In Figure 4 , for easy understanding, the parts that come into contact with the left - hand part when the left - hand part of the lure 2 is installed are shaded. Figure 4 It is a cross - sectional view along the Figure 3 IV - IV line of
[0041] As Figures 1 to 4 shown, the lure 2 has a lure body 4, a protrusion 6, a suspension rod 8, a shaking part 10 and a spring 12.
[0042] The lure body 4 has an outer shape similar to that of a fishing bait, that is, a small fish. The lure body 4 is formed of a hard material. Typically, the lure body 4 is formed of a synthetic resin composition. The lure body 4 can also be formed of a soft material such as an elastomer. The lure body 4 has a head 14 and a tail 16. AsFigures 2 to 4 As shown, the lure body 4 has a cavity 18 inside. The lure body 4 has transparency to such an extent that light can penetrate into the cavity 18. In the lure body 4, light from the inside can be visually confirmed from the outside.
[0043] In this embodiment, the air pressure inside the cavity 18 is equal to the atmospheric pressure. The air pressure inside the cavity 18 may also be reduced compared with the normal atmospheric pressure. At this time, the air pressure inside the cavity 18 is lower than the atmospheric pressure. The inside of the cavity 18 is a vacuum. In the lure 2, in order to maintain this decompressed state, the right half part and the left half part of the lure body 4 are welded or bonded together. The contact part between the right half part and the left half part of the lure body 4 may also be sealed with rubber.
[0044] The protrusion 6 is formed of a hard material. Typically, the protrusion 6 is formed of a synthetic resin composition. As Figures 1 to 3 shown, the protrusion 6 is installed on the lower side of the lure body 4. The protrusion 6 is located below the head 14. The protrusion 6 contributes to an appropriate underwater posture of the lure 2 during swimming.
[0045] The suspension rod 8 is located in the cavity 18 of the lure body 4. As Figure 2 and Figure 3 shown, the suspension rod 8 extends in the front - rear direction along the upper surface of the cavity 18. The suspension rod 8 is rod - shaped. The front end and the rear end of the suspension rod 8 are fixed to the lure body 4. The suspension rod 8 is typically formed of a synthetic resin composition
[0046] As Figures 2 to 4 shown, the shaking part 10 is located inside the cavity 18. As Figure 2 shown, a plurality of shaking parts 10 are arranged in the front - rear direction. In this embodiment, four shaking parts 10 are located inside the cavity 18. As Figure 3 and Figure 4 shown, the shaking part 10 is plate - shaped. The shaking part 10 extends in the front - rear direction. The shaking part 10 is installed in such a way that its extending direction (width direction) is the front - rear direction.
[0047] The shaking part 10 receives light from the outside and emits light. In this embodiment, the shaking part 10 is a reflector. That is, the surface of the shaking part 10 reflects light. The surface of the shaking part 10 has luster. It is possible to color or apply a pattern on the surface of the shaking part 10. The shaking part 10 is typically formed of a synthetic resin composition. The shaking part 10 may also be formed of metal. As a typical shaking part 10, a holographic plate (holo plate) is exemplified. The shaking part 10 may also be a phosphor.
[0048] As Figure 3As shown, each shaking part 10 has a notch 20 at its upper edge. The notch 20 is located at the center in the width direction of the shaking part 10. The shaking part 10 also has a mounting hole 22 below the notch 20.
[0049] The spring 12 is located inside the notch 20 of the shaking part 10. The upper end of the spring 12 is hung on the suspension rod 8. The spring 12 is suspended on the fishing lure body 4 via the suspension rod 8. The lower end of the spring 12 is hung on the mounting hole 22 of the shaking part 10. The shaking part 10 is hung on the lower end of the spring 12. The shaking part 10 is hung on the suspension rod 8 through the spring 12. The shaking part 10 can vibrate relative to the fishing lure body 4 through the spring 12. The shaking part 10 can swing back and forth, up and down, left and right through the spring 12. The shaking part 10 is movable relative to the fishing lure body 4 through the spring 12. The shaking part 10 is movably mounted on the fishing lure body 4 via the suspension rod 8 and the spring 12.
[0050] This fishing lure 2 may not have the suspension rod 8. The upper end of the spring 12 may also be directly connected to the upper surface of the cavity 18 of the fishing lure body 4. It is sufficient that the shaking part 10 is movably mounted on the fishing lure body 4 via the spring 12.
[0051] In this fishing lure 2, the number of the springs 12 is not limited to one. The shaking part 10 may also be mounted on the fishing lure body 4 by two or more springs.
[0052] Although not shown, this fishing lure 2 also has a line loop, a hook eye, and a hook. The line loop forms a hole through which the line passes. The line loop is formed by bending a metal wire. The line loop is firmly fixed to the fishing lure body 4. The hook eye is formed with a hole for mounting the hook. The hook eye is formed by bending a metal wire. The hook eye is firmly fixed to the fishing lure body 4. The hook is hung on the hook eye. The hook is movably mounted on the hook eye.
[0053] Although not shown, this fishing lure 2 also has a counterweight. The counterweight is located inside the cavity 18. The counterweight is fixed to the fishing lure body 4 inside the cavity 18. The counterweight adjusts the posture of the fishing lure 2 when the fishing lure 2 swims.
[0054] Hereinafter, the effects of the present invention will be described.
[0055] The fishing lure 2 according to the present invention has a shaking part 10 in the cavity 18 of the fishing lure body 4 that receives light from the outside and emits light. The shaking part 10 is a reflector. The surface of the shaking part 10 reflects light. The fishing lure body 4 has a transparency such that light can penetrate into the cavity 18. The light reflected by the shaking part 10 can be visually confirmed from the outside. The light reflected by the shaking part 10 attracts predatory fish. Such a fishing lure 2 can expect a higher hook-up rate.
[0056] The shaking part 10 of the fishing lure 2 is hung on the boom 8 by a spring 12. In the operating state of the fishing lure 2 when the angler pulls the fishing lure 2, when the flow of water or tide is fast, etc., the shaking part 10 swings back and forth, up and down, left and right through the spring 12. Due to the movement of the shaking part 10, the reflection state of light changes. The visual condition of the light emitted by the shaking part 10 changes. The shaking part 10 seems to twinkle. This can effectively attract predatory fish. Such a fishing lure 2 can expect a high hook-up rate.
[0057] The shaking part 10 of the fishing lure 2 is hung on the boom 8 by a spring 12. When the fishing lure 2 changes from the operating state to the stopped state, the spring 12 can still act for a while, where "when the fishing lure 2 changes from the operating state to the stopped state" includes when the angler stops pulling the fishing lure 2, when the flow of water or tide stops, etc. The shaking part 10 can still swing back and forth, up and down, left and right for a while when the fishing lure 2 changes from the operating state to the stopped state. At this time, the shaking part 10 still seems to twinkle. After the fishing lure 2 changes to the stopped state, the shaking part 10 can still effectively attract predatory fish for a while. Such a fishing lure 2 can expect a high hook-up rate.
[0058] The strength of the spring 12 is adjusted according to the weight of the shaking part 10 hung on the spring 12. If the strength of the spring 12 is strong, even when the shaking part 10 is hung, the spring 12 basically will not stretch. If the strength of the spring 12 is weak, when the shaking part 10 is hung, the spring 12 will be in a state where it stretches to the limit. In both cases, it is difficult to cause vertical vibration, and in addition, the duration of the vibration becomes shorter. Appropriately adjust the strength of the spring 12 so that the vibration amplitude becomes larger and the vibration lasts for a longer time. Accordingly, such a fishing lure 2 can expect a high hook-up rate.
[0059] In this embodiment, the air pressure in the cavity 18 is equal to the atmospheric pressure. The fishing lure 2 can be easily and inexpensively manufactured. As described above, it can also be that the air pressure in the cavity 18 is reduced compared to the normal atmospheric pressure. At this time, the inside of the cavity 18 is a vacuum. In this fishing lure 2, the shaking part 10 is hardly affected by air resistance. Compared with the case where the inside of the cavity 18 is not decompressed, the shaking part 10 is easier to shake. Compared with the case where the inside of the cavity 18 is not decompressed, after the fishing lure 2 changes from the operating state to the stopped state, the shaking part 10 can still vibrate for a longer time. After the fishing lure 2 changes to the stopped state, the shaking part 10 can still effectively attract predatory fish. Such a fishing lure 2 can expect a high hook-up rate.
[0060] As described above, after the fishing lure 2 changes from the operating state to the stopped state, the shaking part 10 can still swing back and forth, up and down, left and right for a while. Preferably, the vibration time of the fishing lure 2 is 3 seconds or more, more preferably 5 seconds or more, and further preferably 10 seconds or more.
[0061] As described above, the shaking part 10 is plate-shaped, and preferably, the shaking part 10 is installed so as to extend in the front-rear direction. In this way, it is easy to visually confirm the shaking part 10 from the side of the fishing lure 2. The light reflected by the shaking part 10 effectively attracts predatory fish. Such a fishing lure 2 can expect a high hook-up rate.
[0062] [Second Embodiment]
[0063] Figure 5 FIG. is a view showing a fishing lure 30 according to another embodiment of the present invention. This figure is an exploded view showing the right part when the fishing lure 30 is divided into left and right parts. In Figure 5 , for easy understanding, the parts that come into contact with the left half of the fishing lure 30 when the left half is installed are shaded. In Figure 5 , the direction indicated by the arrow X is the front of the fishing lure 30, and the opposite direction is the rear of the fishing lure 30. The direction indicated by the arrow Z is the upper side of the fishing lure 30, and the opposite direction is the lower side of the fishing lure 30. The direction perpendicular to the paper surface is the left-right direction of the fishing lure 30. The fishing lure 30 includes a lure body 32, a spring 34, and a shaking part 36.
[0064] The lure body 32 is formed of a hard material. Typically, the lure body 32 is formed of a synthetic resin composition. The lure body 32 may also be formed of a soft material such as an elastomer. The lure body 32 has a cavity 38 inside. The lure body 32 has transparency such that light can penetrate into the cavity 38. In the lure body 32, the light from the inside can be visually confirmed from the outside. The air pressure inside the cavity 38 is equal to the atmospheric pressure. The air pressure inside the cavity 38 may also be reduced compared to the normal atmospheric pressure.
[0065] The spring 34 is located inside the cavity 38. The spring 34 extends in the front-rear direction. Both ends of the spring 34 are fixed to the lure body 32.
[0066] The shaking part 36 is located inside the cavity 38. The shaking part 36 is plate-shaped. Although not shown, a plurality of shaking parts 36 are arranged in the front-rear direction. The shaking part 36 extends in the front-rear direction. The shaking part 36 is installed such that its extending direction is the front-rear direction.
[0067] The shaking part 36 receives light from the outside and emits light. In this embodiment, the shaking part 36 is a phosphor. The surface of the shaking part 36 is coated with a fluorescent paint. The surface of the shaking part 36 may be colored or patterned. The shaking part 36 is typically formed of a synthetic resin composition. The shaking part 36 may also be formed of metal. The shaking part 36 may also be a reflector.
[0068] The upper end of the shaking part 36 bulges. On the shaking part 36, a mounting hole 40 penetrating in its extending direction is provided in the bulging part. The spring 34 passes through the mounting hole 40. Accordingly, the shaking part 36 is suspended on the spring 34. By the vibration of the spring 34, the shaking part 36 can vibrate relative to the lure body 32. The shaking part 36 can shake back and forth, up and down, and left and right through the spring 34. The shaking part 36 is movable relative to the lure body 32 through the spring 34. The shaking part 36 is movably mounted on the lure body 32 via the spring 34.
[0069] The position where the mounting hole 40 is provided can also be the central part of the shaking part 36. The spring 34 passes through the mounting hole 40 located at the center of the shaking part 36. The position where the mounting hole 40 is provided can also be between the upper end and the central part of the shaking part 36.
[0070] The lure 30 according to the present invention has a shaking part 36 that receives light from the outside and emits light in the cavity 38 of the lure body 32. The shaking part 36 is a phosphor. The lure body 32 has transparency such that light can penetrate into the cavity 38. The light emitted by the shaking part 36 can be visually confirmed from the outside. The light from the shaking part 36 attracts predatory fish. Such a lure 30 can expect a high hook-up rate.
[0071] The shaking part 36 of the lure 30 is suspended on the spring 34, where the spring 34 extends in the front-rear direction and its two ends are fixed to the lure body 32. The shaking part 36 can shake up and down, back and forth, and left and right relative to the lure body 32. When the angler pulls the lure 30, when the flow of water or tide is fast, etc., in the operating state of the lure 30, the shaking part 36 shakes up and down, back and forth, and left and right. Due to the movement of the shaking part 36, the visual condition of the light emitted by the shaking part 36 changes. The shaking part 36 appears to twinkle. This can effectively attract predatory fish. Such a lure 30 can expect a high hook-up rate.
[0072] When the lure 30 changes from the operating state to the stopped state, the shaking part 36 of the lure 30 can still move for a while through the spring 34, where "when the lure 30 changes from the operating state to the stopped state" includes when the angler stops pulling the lure 30, when the flow of water or tide stops, etc. The shaking part 36 can still shake back and forth, up and down, and left and right for a while when the lure 30 changes from the operating state to the stopped state. At this time, the shaking part 36 still appears to twinkle. The shaking part 36 can still effectively attract predatory fish for a while after the lure 30 changes to the stopped state. Such a lure 30 can expect a high hook-up rate.
[0073] [Third Embodiment]
[0074] Figure 6 is a perspective view showing a lure 50 according to another embodiment of the present invention. In Figure 6In this case, the direction indicated by arrow X is the front of the fishing lure 50, and the opposite direction is the rear of the fishing lure 50. The direction indicated by arrow Y is the left side of the fishing lure 50, and the opposite direction is the right side of the fishing lure 50. The direction indicated by arrow Z is the upper side of the fishing lure 50, and the opposite direction is the lower side of the fishing lure 50.
[0075] Figure 6 FIG. is an exploded view showing the right side portion when the fishing lure 50 is divided into left and right portions. This figure is a view after removing the left half portion of the fishing lure 50. In this figure, for easy understanding, the portions that come into contact with the left half portion when the left half portion of the fishing lure 50 is installed are shaded. In this figure, the front side portion of the fishing lure 50 is shown. The fishing lure 50 has a lure body 52, a suspension rod 54, and a shaking portion 56.
[0076] The lure body 52 is formed of a hard material. Typically, the lure body 52 is formed of a synthetic resin composition. The lure body 52 may also be formed of a soft material such as an elastomer. The lure body 52 has a cavity 58 inside. The lure body 52 has transparency to such an extent that light can penetrate into the cavity 58. In the lure body 52, light from the inside can be visually confirmed from the outside. The air pressure inside the cavity 58 is equal to the atmospheric pressure. The air pressure inside the cavity 58 may also be reduced compared to the normal atmospheric pressure.
[0077] The suspension rod 54 is located in the cavity 58 of the lure body 52. As Figure 6 shown, a plurality of suspension rods 54 extending in the left-right direction are arranged in the front-rear direction. Each suspension rod 54 is rod-shaped. The right end of the suspension rod 54 is fixed to the lure body 52. In Figure 6 the figure, the suspension rod 54 is only drawn halfway, but the left end of the suspension rod 54 is also fixed to the lure body 52. The suspension rod 54 is typically formed of a synthetic resin composition.
[0078] The shaking portion 56 is located inside the cavity 58. As Figure 6 shown, the shaking portion 56 is plate-shaped. A plurality of shaking portions 56 are arranged in the front-rear direction. The shaking portion 56 extends in the front-rear direction. The shaking portion 56 is installed in such a way that its extending direction is the front-rear direction.
[0079] The shaking portion 56 receives light from the outside and emits light. In this embodiment, the shaking portion 56 is a reflector. That is, the surface of the shaking portion 56 reflects light. The surface of the shaking portion 56 has luster. It is possible to color or apply a pattern to the surface of the shaking portion 56. The shaking portion 56 is typically formed of a synthetic resin composition. The shaking portion 56 may also be formed of metal. As a typical shaking portion 56, a holographic plate (holo plate) is exemplified.
[0080] As Figure 6As shown, each shaking part 56 has a mounting hole 60. The mounting hole 60 penetrates the shaking part 56 in the thickness direction of the shaking part 56. The suspension rod 54 passes through the mounting hole 60. Accordingly, the shaking part 56 is hung on the suspension rod 54. As shown in the figure, the inner diameter of the mounting hole 60 is larger than the outer diameter of the suspension rod 54. The shaking part 56 can vibrate relative to the suspension rod 54. The shaking part 56 can swing left and right relative to the suspension rod 54. The shaking part 56 is movably mounted to the fishing lure body 52 via the suspension rod 54.
[0081] The fishing lure 50 according to the present invention has a shaking part 56 that receives light from the outside and emits light in the cavity 58 of the fishing lure body 52. The shaking part 56 is a reflector. The surface of the shaking part 56 reflects light. The fishing lure body 52 has a transparency such that light can penetrate into the cavity 58. The light reflected by the shaking part 56 can be visually confirmed from the outside. The light reflected by the shaking part 56 attracts predatory fish. In this fishing lure 50, a high hook-up rate can be expected.
[0082] The shaking part 56 of the fishing lure 50 is hung on the suspension rod 54. The shaking part 56 can swing left and right relative to the suspension rod 54. In the operating state of the fishing lure 50 such as when the angler pulls the fishing lure 50 or when the flow of water or tide is fast, the shaking part 56 swings left and right. Due to the movement of the shaking part 56, the reflection state of light changes. The visual condition of the light emitted by the shaking part 56 changes. The shaking part 56 appears to twinkle. This can effectively attract predatory fish. Such a fishing lure 50 can be expected to have a high hook-up rate.
[0083] When the fishing lure 50 changes from the operating state to the stopped state, the shaking part 56 of the fishing lure 50 can still vibrate for a while, where "when the fishing lure 50 changes from the operating state to the stopped state" includes when the angler stops pulling the fishing lure 50 or when the flow of water or tide stops. At this time, the shaking part 56 still appears to twinkle. After the fishing lure 50 changes to the stopped state, the shaking part 56 can still effectively attract predatory fish for a while. Such a fishing lure 50 can be expected to have a high hook-up rate.
[0084] [Fourth Embodiment]
[0085] Figure 7 is a perspective view showing the shaking part 72 and the suspension rod 74 of a fishing lure 70 according to another embodiment of the present invention. In Figure 7 it, the direction indicated by the arrow X is the front of the fishing lure 70, and the opposite direction is the rear of the fishing lure 70. The direction indicated by the arrow Y is the left of the fishing lure 70, and the opposite direction is the right of the fishing lure 70. The direction indicated by the arrow Z is the upper side of the fishing lure 70, and the opposite direction is the lower side of the fishing lure 70. Although not shown, the fishing lure 70 also has a fishing lure body.
[0086] The lure body is formed of a hard material. Typically, the lure body is formed of a synthetic resin composition. The lure body may also be formed of a soft material such as an elastomer. The lure body has a cavity inside. The lure body has a transparency such that light can penetrate into the cavity. In the lure body, light from the inside can be visually confirmed from the outside. The air pressure inside the cavity is equal to the atmospheric pressure. The air pressure inside the cavity may also be reduced as compared with the normal atmospheric pressure.
[0087] The suspension rod 74 is located in the cavity of the lure body. The suspension rod 74 extends in the front-rear direction along the upper surface of the cavity. The suspension rod 74 is rod-shaped. The front end and the rear end of the suspension rod 74 are fixed to the lure body.
[0088] The shaking part 72 is located inside the cavity. Although not shown, a plurality of shaking parts 72 are arranged in the front-rear direction. As Figure 7 shown, the shaking part 72 is plate-shaped with the upper end part 76 and the lower end part 78 bulging. The shaking part 72 extends in the front-rear direction. The shaking part 72 is installed in such a way that its extending direction is the front-rear direction.
[0089] The shaking part 72 receives light from the outside and emits light. In this embodiment, the shaking part 72 is a reflector. The surface of the shaking part 72 reflects light. The surface of the shaking part 72 has luster. A color or a pattern may be applied to the surface of the shaking part 72. The material of the shaking part 72 is selected to have a small friction with the suspension rod 74. Typically, the shaking part 72 is formed of a synthetic resin composition. The shaking part 72 may also be formed of metal. As a typical shaking part 72, a holographic plate is exemplified.
[0090] Figure 8 is a cross-sectional perspective view of the shaking part 72 cut along the line VIII-VIII. This is a cross-section of the shaking part 72 cut along its extending direction at the center in the thickness direction of the shaking part 72. As Figure 7 and Figure 7 and Figure 8 shown, mounting holes 80 that penetrate in the extending direction of the upper end part 76 are provided in the upper end part 76. Mounting holes 80 that penetrate in the extending direction of the shaking part 72 are provided in the shaking part 72. As Figure 8 shown, on this cross-section, the upper surface of the mounting hole 80 protrudes downward in a conical shape. The upper surface of the mounting hole 80 has a top 82 that protrudes downward.
[0091] The suspension rod 74 passes through the mounting hole 80. Accordingly, the shaking part 72 is hung on the suspension rod 74. As Figure 7 and Figure 8As shown, the inner diameter of the mounting hole 80 is larger than the outer diameter of the suspension rod 74. In this shaking portion 72, the suspension rod 74 abuts against the top 82 of the mounting hole 80. The shaking portion 72 can vibrate with this apex 82 as a base point. The shaking portion 72 can shake in the rotational direction with respect to the vertical axis, the rotational direction with respect to the left - right axis, and the rotational direction with respect to the front - rear axis with this top 82 as a base point. The shaking portion 72 is movably mounted on the fishing lure body via the suspension rod 74.
[0092] As Figure 7 and Figure 8 shown, a storage hole 84 penetrating in the front - rear direction is provided at the lower end portion 78 of the shaking portion 72. Although not shown, a counterweight for maintaining the balance of the fishing lure body can be stored in this storage hole 84.
[0093] The fishing lure 70 according to the present invention has a shaking portion 72 that receives light from the outside and emits light in the cavity of the fishing lure body. This shaking portion 72 is a reflector. The surface of the shaking portion 72 reflects light. The fishing lure body has a transparency such that light can penetrate into the cavity. The light reflected by the shaking portion 72 can be visually confirmed from the outside. The light reflected by the shaking portion 72 attracts predatory fish. Such a fishing lure 70 can expect a high hook - up rate.
[0094] The shaking portion 72 of this fishing lure 70 is suspended on the suspension rod 74. In the operating state of the fishing lure 70 such as when the angler pulls the fishing lure 70 or when the flow of water or tide is relatively fast, the shaking portion 72 vibrates. This shaking portion 72 shakes in the rotational direction with respect to the vertical axis, the rotational direction with respect to the left - right axis, and the rotational direction with respect to the front - rear axis with the top 82 of the mounting hole 80 as a base point. Through the movement of this shaking portion 72, the reflection state of light effectively changes. The shaking portion 72 appears to twinkle. This can effectively attract predatory fish. Such a fishing lure 70 can expect a high hook - up rate.
[0095] When the fishing lure 70 changes from the operating state to the stopped state, the shaking portion 72 of this fishing lure 70 can still shake for a while in the rotational direction with respect to the vertical axis, the rotational direction with respect to the left - right axis, and the rotational direction with respect to the front - rear axis, where "when the fishing lure 70 changes from the operating state to the stopped state" includes when the angler stops pulling the fishing lure 70, when the flow of water or tide stops, etc. At this time, the shaking portion 72 still appears to twinkle. After the fishing lure 70 changes to the stopped state, the shaking portion 72 can still effectively attract predatory fish for a while. Such a fishing lure 70 can expect a high hook - up rate
[0096] As described above, the shaking part 72 is in the shape of a plate with the upper end part 76 bulging. The bulging part of the shaking part 72 also reflects light. In the fishing lure 70, it is also easy to visually confirm the shaking part 72 from the upper surface side. The light reflected from the upper surface side of the shaking part 72 effectively attracts predatory fish. For such a fishing lure 70, a higher hook-up rate can be expected.
[0097] As described above, in the shaking part 72, a storage hole 84 penetrating in the front-rear direction is provided in the bulging part at the lower end. A weight used for adjusting the posture can be located in the storage hole 84. In the fishing lure 70, the weight is not visible from the outside. The fishing lure 70 has an excellent appearance.
[0098] [Fifth Embodiment]
[0099] Figure 9 It is a perspective view showing a shaking part 92, a suspension rod 94, and a weight 96 of a fishing lure 90 according to another embodiment of the present invention. In Figure 9 it, the direction indicated by the arrow X is the front of the fishing lure 90, and the opposite direction is the rear of the fishing lure 90. The direction indicated by the arrow Y is the left side of the fishing lure 90, and the opposite direction is the right side of the fishing lure 90. The direction indicated by the arrow Z is the upper side of the fishing lure 90, and the opposite direction is the lower side of the fishing lure 90. Although not shown, the fishing lure 90 also has a lure body.
[0100] The lure body is formed of a hard material. Typically, the lure body is formed of a synthetic resin composition. The lure body may also be formed of a soft material such as an elastomer. The lure body has a cavity inside. The lure body has a transparency that allows light to penetrate into the cavity. In the lure body, the light from the inside can be visually confirmed from the outside. The air pressure in the cavity is equal to the atmospheric pressure. The air pressure in the cavity may also be reduced compared to the normal atmospheric pressure.
[0101] The shaking part 92 is located inside the cavity. Although not shown, a plurality of shaking parts 92 are arranged in the front-rear direction. As Figure 9 shown, the shaking part 92 has a plate-shaped main body 98 and rings 100. In this embodiment, the shaking part 92 has two rings 100. The main body 98 extends in the front-rear direction. The main body 98 has two mounting holes 102. Each mounting hole 102 penetrates the main body 98 in the thickness direction of the main body 98. Each ring 100 passes through the corresponding mounting hole 102 of the main body 98. The number of the rings 100 and the mounting holes 102 may be one, or may be three or more.
[0102] The main body 98 receives light from the outside and emits light. In this embodiment, the main body 98 is a reflector. The surface of the main body 98 reflects light. The surface of the main body 98 has luster. It is possible to color or apply a pattern to the surface of the main body 98. Typically, the main body 98 is formed of a synthetic resin composition. The main body 98 can also be formed of metal. As a typical main body 98, a holo plate is exemplified.
[0103] The hanger 94 is located in the cavity of the lure body. Although not shown, the hanger 94 extends in the front-rear direction along the upper surface of the cavity. The front end and the rear end of the hanger 94 are fixed to the lure body. The upper edge 104 of the hanger 94 is sharp. In this hanger 94, the upper edge 104 is in the shape of a blade.
[0104] The hanger 94 passes through the ring 100. Accordingly, the shaking part 92 is hung on the hanger 94. The blade-shaped part of the hanger 94 comes into contact with the ring 100. The shaking part 92 is hung on the hanger 94 in such a manner as to come into contact with the blade-shaped part of the hanger 94. The ring 100 of this shaking part 92 can swing left and right with respect to the hanger 94. The ring 100 of this shaking part 92 can swing back and forth with respect to the hanger 94. This shaking part 92 can swing back and forth, left and right with respect to the hanger 94. The shaking part 92 is movably mounted on the lure body via the hanger 94.
[0105] As Figure 9 shown, a receiving hole 106 penetrating in the front-rear direction is provided at the lower end part of the shaking part 92. The weight body 96 is received in the receiving hole 106. The weight body 96 maintains the balance of the lure body so that the lure 90 is in an appropriate posture.
[0106] The lure 90 according to the present invention has a shaking part 92 in the cavity of the lure body that receives light from the outside and emits light. This shaking part 92 is a reflector. The surface of the main body 98 of the shaking part 92 reflects light. The lure body has transparency to such an extent that light can penetrate into the cavity. The light reflected by the shaking part 92 can be visually confirmed from the outside. The light reflected by the shaking part 92 attracts predatory fish. In this lure 90, a high hook-up rate can be expected.
[0107] The shaking part 92 of this lure 90 is hung on the hanger 94 in such a manner as to come into contact with the blade-shaped upper edge 104 of the hanger 94. Since the blade-shaped upper edge 104 has a narrow width, the ring 100 of the shaking part 92 can easily swing left and right with respect to the hanger 94. Furthermore, the ring 100 of the shaking part 92 can also swing back and forth with respect to the hanger 94. In the action state of the lure 90 when the angler pulls the lure 90, when the flow of water or tide is fast, etc., the shaking part 92 vibrates. By the action of this shaking part 92, the reflection state of light effectively changes. The shaking part 92 looks like it is twinkling. This can effectively attract predatory fish.
[0108] When the fishing lure 90 changes from the operating state to the stopped state, the shaking part 92 of the fishing lure 90 can still shake in the front-back, left-right directions for a while. Herein, "when the fishing lure 90 changes from the operating state to the stopped state" includes when the angler stops pulling the fishing lure 90, when the flow of water or tide stops, etc. At this time, the shaking part 92 still seems to be flashing. After the fishing lure 90 changes to the stopped state, the shaking part 92 can still effectively attract predatory fish for a while. Such a fishing lure 90 can expect a relatively high hook-up rate.
[0109] The inner peripheral surface 108 of the mounting hole 102 of the main body 98 can be knife-edge shaped. The main body 98 can easily shake left and right relative to the ring 100. The inner peripheral surface 110 of the ring 100 can be knife-edge shaped. The ring 100 can easily shake back and forth relative to the suspension rod 94, and the main body 98 can easily shake back and forth relative to the ring 100. The shaking part 92 can effectively attract predatory fish. Such a fishing lure 90 can expect a relatively high hook-up rate.
[0110] [Sixth Embodiment]
[0111] Figure 10 is a perspective view showing the shaking part 122, the suspension member 124, and the counterweight 126 of the fishing lure 120 according to another other embodiment of the present invention. In Figure 10 it, the direction indicated by the arrow X is the front of the fishing lure 120, and the opposite direction is the rear of the fishing lure 120. The direction indicated by the arrow Y is the left of the fishing lure 120, and the opposite direction is the right of the fishing lure 120. The direction indicated by the arrow Z is the upper side of the fishing lure 120, and the opposite direction is the lower side of the fishing lure 120. Although not shown, the fishing lure 120 also has a fishing lure body.
[0112] The fishing lure body is formed of a hard material. Typically, the fishing lure body is formed of a synthetic resin composition. The fishing lure body can also be formed of a soft material such as an elastomer. The fishing lure body has a cavity inside. The fishing lure body has a transparency such that light can penetrate into the cavity. In the fishing lure body, light from the inside can be visually confirmed from the outside. The air pressure inside the cavity is equal to the atmospheric pressure. The air pressure inside the cavity can also be reduced compared to the normal atmospheric pressure.
[0113] The shaking part 122 is located inside the cavity. Although not shown, a plurality of shaking parts 122 are arranged in the front-back direction. The shaking part 122 is plate-shaped. The shaking part 122 extends in the front-back direction. As Figure 10 shown, the shaking part 122 has a mounting hole 128. In this embodiment, the shaking part 122 has two mounting holes 128. Each mounting hole 128 penetrates the shaking part 122 in the thickness direction of the shaking part 122.
[0114] The shaking part 122 receives light from the outside and emits light. In this embodiment, the shaking part 122 is a reflector. The surface of the shaking part 122 reflects light. The surface of the shaking part 122 has luster. It is possible to color or apply a pattern to the surface of the shaking part 122. The material of the shaking part 122 is selected to have a small friction with the hanging member 124. Typically, the shaking part 122 is formed of a synthetic resin composition. The shaking part 122 can also be formed of metal. As a typical shaking part 122, a holoplate is exemplified.
[0115] The hanging members 124 are located in the cavity of the lure body. In this embodiment, there are two hanging members 124. Each hanging member 124 extends in the left - right direction. The central part of the hanging member 124 bends downward. In other words, the hanging member 124 has a central bending part 130 and a pair of straight parts 132 located on both sides of the bending part 130. The two ends of the hanging member 124 are mounted on the lure body. The hanging member 124 can rotate around the axis of the straight part 132. That is, the bending part 130 of the hanging member 124 can shake in the front - rear direction. The hanging member 124 can shake relative to the lure body.
[0116] Each hanging member 124 passes through the corresponding mounting hole 128. Accordingly, the shaking part 122 is hung on the hanging member 124. The shaking part 122 is hung on the bottom of the bending part 130. The shaking part 122 can shake back and forth together with the bending part 130. Furthermore, the shaking part 122 can shake in the left - right direction relative to the hanging member 124. The shaking part 122 can shake back - and - forth and left - and - right relative to the lure body. The shaking part 122 is movably mounted on the lure body via the hanging member 124.
[0117] The number of the hanging members 124 and the number of the mounting holes 128 can also be one respectively. The number of the hanging members 124 and the number of the mounting holes 128 can also be three or more respectively.
[0118] Although not shown, if the hanging member can shake in the left - right direction relative to the lure body, the shaking part can also be hung on the hanging member.
[0119] As Figure 10 shown, a receiving hole 134 penetrating in the front - rear direction is provided at the lower end of the shaking part 122. The weight body 126 is received in the receiving hole 134. The weight body 126 maintains the balance of the lure body so that the lure 120 is in an appropriate posture.
[0120] The fishing lure 120 according to the present invention has a shaking part 122 in the cavity of the lure body that receives light from the outside and emits light. The shaking part 122 is a reflector. The surface of the shaking part 122 reflects light. The lure body has a transparency such that light can penetrate into the cavity. The light reflected by the shaking part 122 can be visually confirmed from the outside. The light reflected by the shaking part 122 attracts predatory fish. In this fishing lure 120, a high hook-up rate can be expected.
[0121] The shaking part 122 of the fishing lure 120 is hung at the bottom of the bent part 130 of the hanging member 124. The bent part 130 of the hanging member 124 can shake in the front-rear direction. The shaking part 122 can shake back and forth relative to the lure body together with the bent part 130. Furthermore, the shaking part 122 can shake left and right relative to the hanging member 124. When the angler pulls the fishing lure 120, when the flow of water or tide is relatively fast, etc., in the operating state of the fishing lure 120, the shaking part 122 vibrates. Due to the movement of the shaking part 122, the light reflection state effectively changes. The shaking part 122 appears to twinkle. This can effectively attract predatory fish.
[0122] When the fishing lure 120 changes from the operating state to the stopped state, the shaking part 122 of the fishing lure 120 can still shake in the front, rear, left, and right directions for a while, where "when the fishing lure 120 changes from the operating state to the stopped state" includes when the angler stops pulling the fishing lure 120, when the flow of water or tide stops, etc. At this time, the shaking part 122 still appears to twinkle. After the fishing lure 120 changes to the stopped state, the shaking part 122 can still effectively attract predatory fish for a while. Such a fishing lure 120 can expect a high hook-up rate.
[0123] [Seventh Embodiment]
[0124] Figure 11 is a perspective view showing the shaking part 142, the hanging rod 144, the magnet 146, and the counterweight 148 of the fishing lure 140 according to another embodiment of the present invention. In Figure 11 it, the direction indicated by the arrow X is the front of the fishing lure 140, and the opposite direction is the rear of the fishing lure 140. The direction indicated by the arrow Z is the upper side of the fishing lure 140, and the opposite direction is the lower side of the fishing lure 140. Although not shown, the fishing lure 140 also has a lure body.
[0125] The lure body is formed of a hard material. Typically, the lure body is formed of a synthetic resin composition. The lure body can also be formed of a soft material such as an elastomer. The lure body has a cavity inside. The lure body has a transparency such that light can penetrate into the cavity. In this lure body, the light from the inside can be visually confirmed from the outside. The air pressure inside the cavity is equal to the atmospheric pressure. The air pressure inside the cavity can also be reduced compared to the normal atmospheric pressure.
[0126] The shaking part 142 is located inside the cavity. Although not shown, a plurality of shaking parts 142 are arranged in the front-rear direction. As Figure 11 shown, the shaking part 142 has a plate-shaped main body 150 and mounting metal fittings 152. The main body 150 extends in the front-rear direction. The mounting metal fittings 152 are fixed to the upper part of the main body 150. In this embodiment, two mounting metal fittings 152 are fixed to the upper part of the main body 150. The mounting metal fittings 152 are made of metal. Typical materials for the mounting metal fittings 152 are steel and aluminum alloy.
[0127] The main body 150 receives light from the outside and emits light. In this embodiment, the main body 150 is a reflector. The surface of the main body 150 reflects light. The surface of the main body 150 has luster. It is possible to color or apply a pattern to the surface of the main body 150. The main body 150 is typically formed of a synthetic resin composition. As a typical main body 150, a holographic plate is exemplified.
[0128] The suspension rod 144 is located in the cavity of the fishing lure body. Although not shown, the suspension rod 144 extends in the front-rear direction along the upper surface in this cavity. The front end and the rear end of the suspension rod 144 are fixed to the fishing lure body. In this embodiment, the suspension rod 144 is a prism. The cross-section of the suspension rod 144 is quadrilateral.
[0129] The magnet 146 is fixed to the suspension rod 144. The magnet 146 is fixed to the bottom surface of the suspension rod 144. In this embodiment, two magnets 146 are fixed to the suspension rod 144. The distance between these magnets 146 is equal to the distance between the mounting metal fittings 152 of the shaking part 142. The lower surface of each magnet 146 is a hemispherical shape convex downward.
[0130] Each mounting metal fitting 152 of the shaking part 142 is attracted to the corresponding magnet 146. Accordingly, the shaking part 142 is suspended on the suspension rod 144. The shaking part 142 can shake back and forth, left and right with respect to the magnet 146. The shaking part 142 can shake back and forth, left and right with respect to the fishing lure body. The shaking part 142 is movably mounted to the fishing lure body via the suspension rod 144 and the magnet 146.
[0131] The fishing lure 140 may not have the suspension rod 144. The magnet 146 may be directly fixed to the upper surface of the cavity of the fishing lure body. It is sufficient that the shaking part 142 is movably mounted to the fishing lure body via the magnet 146.
[0132] In the fishing lure 140, the number of magnets 146 and the number of mounting metal parts 152 can also be one each. At this time, the mounting metal part 152 is located at the center in the front-rear direction of the main body 150. The shaking part 142 is mounted on the lure body by one magnet 146. The shaking part 142 can shake back and forth, left and right with respect to the magnet 146. The shaking part 142 is movably mounted on the lure body via the magnet 146. The number of magnets 146 and the number of mounting metal parts 152 can also be three or more each.
[0133] As Figure 11 shown, a receiving hole 154 penetrating in the front-rear direction is provided at the lower end of the shaking part 142. The weight 148 is received in the receiving hole 154. The weight 148 maintains the balance of the lure body so that the fishing lure 140 is in an appropriate posture.
[0134] The fishing lure 140 according to the present invention has a shaking part 142 in the cavity of the lure body that receives light from the outside and emits light. The main body 150 of the shaking part 142 is a reflector. The surface of the main body 150 of the shaking part 142 reflects light. The lure body has a transparency such that light can penetrate into the cavity. The light reflected by the shaking part 142 can be visually confirmed from the outside. The light reflected by the shaking part 142 attracts predatory fish. Such a fishing lure 140 can expect a high hook-up rate.
[0135] In the shaking part 142 of the fishing lure 140, its mounting metal part 152 is attracted to the lower surface of the magnet 146. The lower surface of the magnet 146 is hemispherical. The shaking part 142 can shake back and forth, left and right with respect to the magnet 146. When the angler pulls the fishing lure 140, when the flow of water or tide is fast, etc., in the operating state of the fishing lure 140, the shaking part 142 vibrates. Due to the movement of the shaking part 142, the reflection state of light effectively changes. The shaking part 142 appears to twinkle. This can effectively attract predatory fish.
[0136] When the fishing lure 140 changes from the operating state to the stopped state, the shaking part 142 of the fishing lure 140 can still shake back and forth, left and right for a while, where "when the fishing lure 140 changes from the operating state to the stopped state" includes when the angler stops pulling the fishing lure 140, when the flow of water or tide stops, etc. At this time, the shaking part 142 still appears to twinkle. After the fishing lure 140 changes to the stopped state, the shaking part 142 can still effectively attract predatory fish for a while. Such a fishing lure 140 can expect a high hook-up rate.
[0137] [Other Embodiments]
[0138] The method of movably mounting the shaking part on the fishing lure body is not limited to the above-described embodiments. For example, the shaking part can be mounted on the fishing lure body via rubber. The shaking part can also be mounted on the fishing lure body via a hinge. The shaking part can further be mounted on the fishing lure body via a universal joint. After the fishing lure changes from the operating state to the stopped state, in order to enable the shaking part to still move relative to the fishing lure body for a while, it is sufficient to mount the shaking part on the fishing lure body.
[0139] As described above, embodiments of the fishing lure for fish have been used to illustrate the present invention. Although not exemplified herein, the present invention can also be applied to fishing lures for aquatic animals other than fish, such as bait logs.
[0140] As shown in the above description, the fishing lure according to the present invention can effectively attract predatory fish. The fishing lure can still attract predatory fish after changing from the operating state to the stopped state. Based on this point, the superiority of the present invention is obvious.
[0141]
Industrial Applicability
[0142] The fishing lure according to the present invention is applicable to fishing in various places such as lakes, ponds, reservoirs, rivers, and the ocean.
Claims
1. A fishing lure, characterized in that it has: a lure body having a cavity inside; a shaking part which is movably installed in the cavity of the lure body and emits light by receiving light from the outside; and a spring, the shaking part is installed on the lure body via the spring extending in the vertical direction, the lure body is configured to be able to visually confirm the light from the shaking part from the outside, the shaking part can still move after the fishing lure changes from the operating state to the stopped state, there are multiple shaking parts and multiple springs, the multiple shaking parts are arranged in the front-rear direction, the multiple shaking parts are respectively installed on the lure body via the multiple springs extending in the vertical direction, the shaking part is plate-shaped, the shaking part extends in the front-rear direction of the fishing lure.
2. The fishing lure according to claim 1, characterized in that the shaking part is a reflector.
3. The fishing lure according to claim 1, characterized in that the shaking part is a phosphor.
4. The fishing lure according to any one of claims 1 to 3, characterized in that the spring is suspended on the lure body, and the shaking part is suspended at the lower end of the spring.
5. The fishing lure according to any one of claims 1 to 3, characterized in that it further has a suspension rod extending in the cavity, by suspending the shaking part on the suspension rod, the shaking part is installed on the lure body.
6. The fishing lure according to any one of claims 1 to 3, characterized in that the movement of the shaking part relative to the lure body is vibration.
7. The fishing lure according to any one of claims 1 to 3, characterized in that the inside of the cavity is decompressed compared with the atmospheric pressure.
Citation Information
Patent Citations
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