Lure

The lure's innovative design with a rotatable rotating member and dual rotating bodies addresses the challenge of limited appeal by creating complex behaviors and enhanced attraction through varied rotational motions and turbulence.

JP7808900B1Active Publication Date: 2026-01-30長野 正寛
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Patent Information

Application Number
JP2025084890
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2026-01-30
Estimated Expiration
2045-05-21

AI Technical Summary

Technical Problem

Existing lures struggle to exhibit complex behaviors and effectively attract specific targets due to limitations in their appeal mechanisms.

Method used

The lure design incorporates a rotatable rotating member with at least two rotating bodies that rotate in conjunction with each other, featuring different configurations such as varying angles, weights, and materials to create complex rotational motions and turbulence, enhancing visual and tactile appeal.

Benefits of technology

The lure effectively attracts targets by mimicking lifelike behaviors through complex rotational motions and turbulence, improving its appeal and attraction capabilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a lure capable of effectively attracting a target. [Solution] Lure X is provided, which comprises a lure body 1 and a rotating member 2 configured to be rotatable, the rotation axis of the rotating member 2 being set approximately perpendicular to the head-to-tail direction of the lure body 1, the rotating member 2 having at least two rotating bodies (a first rotating body and a second rotating body), the first rotating body and the second rotating body being configured to rotate in conjunction with each other, and at least a part of which is arranged so as to be different from each other when viewed in a projection in the direction of the rotation axis.
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Description

[Technical Field]

[0001] The present invention relates to a lure. [Background technology]

[0002] Lures are artificial baits designed to attract fish and other target species (hereafter referred to as targets), and have traditionally been made from metal, plastic, wood, etc. and designed to imitate the appearance and movement of baitfish, crustaceans, insects, etc. These stimulate the predatory instincts of targets by combining materials, shapes, textures, reflective properties, etc.

[0003] In recent years, with the diversification of fishing methods and targets, lures have become more sophisticated in structure and function, with lures equipped with internal rattles (sound generators) and LED light-emitting elements, as well as lures with glossy paint and flared structures to enhance visual stimulation.

[0004] The lures described in Patent Documents 1 to 3 are equipped with a waterwheel-type spinner that rotates in response to water currents, and employ a configuration that attracts targets by stimulating them with turbulence, vibrations, sounds, and the like caused by the movement of the spinner.

[0005] Furthermore, the lure described in Patent Document 4 has a first body on the head side, a shaft extending toward the tail side, a second body supported on the shaft so that it can swing, and a restricting part that restricts the swing range, and adopts a configuration that reproduces biological movements by swinging while the lure swims. [Prior art documents] [Patent documents]

[0006] [Patent Document 1] U.S. Patent Application Publication No. 2021 / 0007338

[0007] [Patent Document 2] Japanese Patent Application Publication No. 2024-179635

[0008] [Patent Document 3] Japanese Utility Model Application Publication No. 60-51980

[0009] [Patent Document 4] Japanese Patent Application Publication No. 2025-009024 Summary of the Invention [Problem to be solved by the invention]

[0010] The lures described in Patent Documents 1 to 4 achieve an attracting effect by using water currents to operate rotating members, etc., but it is difficult to make them exhibit complex behaviors, and there are limits to their appeal to specific targets.

[0011] The present invention has been made in view of the above-mentioned circumstances, and an object of the present invention is to provide a lure that can effectively attract a target. [Means for solving the problem]

[0012] To achieve this object, the present disclosure provides lures [1] to [8].

[0013] [1] The lure comprises a lure body and a rotatable rotating member, The rotation axis of the rotating member is set approximately perpendicular to the head-to-tail direction of the lure body, The rotating member has at least two rotating bodies, and the first rotating body and the second rotating body are configured to rotate in conjunction with each other and are arranged so as to be different from each other in at least a part thereof when viewed in a projection in the direction of the rotation axis. Lure.

[0014] [2] The lure comprises a lure body and a rotatable rotating member, The rotation axis of the rotating member is set approximately perpendicular to the head-to-tail direction of the lure body, The rotating member has at least two rotating bodies, The first rotating body and the second rotating body are configured to rotate in conjunction with each other, and are configured to be structurally different from each other in at least a part thereof. Lure.

[0015] [3] The lure comprises a lure body and a rotatable rotating member, The rotation axis of the rotating member is set approximately perpendicular to the head-to-tail direction of the lure body, The rotating member has at least one rotating body, The center of gravity of the rotating body is eccentric with respect to the rotation axis. Lure.

[0016] [4] the rotating body includes a blade, The blades of the first rotor and the blades of the second rotor are arranged so as to be different from each other in at least a part thereof when viewed in a projection in the direction of the rotation axis. [1] Lure.

[0017] [5] the rotating body includes a blade, The blades of the first rotor and the blades of the second rotor are configured to be structurally different from each other at least in part. [2] Lure.

[0018] [6] The rotating member is substantially entirely hidden by the lure body when viewed from the tail side of the lure body. Any lure from [1] to [3].

[0019] [7] The lure body has a waterway passing through the rotating member, The waterway branches in at least two directions. Any lure from [1] to [3].

[0020] [8] The lure body has a fin portion, The fin portion is configured to be driven by rotation of the rotating member. Any lure from [1] to [3]. [Effects of the Invention]

[0021] According to the present invention, it is possible to provide a lure that can effectively attract a target. [Brief explanation of the drawings]

[0022] [Figure 1] 1 is a perspective view of a lure according to a first embodiment of the present invention. FIG. [Figure 2] FIG. 2 is a side view of the rotating body according to the first embodiment of the present invention. [Figure 3] FIG. 1 is a perspective view of a rotating member according to a first embodiment of the present invention. [Figure 4] FIG. 4 is a cross-sectional view of the lure according to the first embodiment of the present invention taken along the line IV-IV. [Figure 5] FIG. 10 is a cross-sectional view of a lure according to a second embodiment of the present invention. [Figure 6] FIG. 10 is a partial bottom view of a lure according to a second embodiment of the present invention. [Figure 7] FIG. 1 is a partially exploded perspective view of a lure according to an application example of an embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0023] First Embodiment A first embodiment of the present invention will be described with reference to Figs. 1 to 4. Here, the symbol X indicates a lure according to this embodiment. The embodiments and their modifications described below are merely representative examples of the present invention, and the present invention is not limited to these. Each component element can be replaced, omitted, added, or combined as necessary.

[0024] The lure X is preferably attachable to a fishing line, for example, the lure X preferably includes a ring for tying the fishing line.

[0025] The lure X preferably includes at least one fishing hook. Furthermore, the lure X is more preferably configured so that the fishing hook can be attached and detached. For example, the lure X may be configured so that the fishing hook can be attached using a connecting ring.

[0026] As shown in Figure 1, the lure X includes a lure body 1. The design of the lure body 1 can be freely changed depending on the target and the environment in which it is used. For example, the lure body 1 may be formed in a shape that imitates a small fish, crustacean, insect, or the like that the target recognizes as prey.

[0027] Hereinafter, the head-to-tail direction, the ventral-dorsal direction, and the left-to-right direction perpendicular to these directions will be defined for the lure X based on the design of the lure body 1. Usually, the entire lure X is elongated along the head-to-tail direction.

[0028] The lure body 1 may be configured as a hard lure made of a hard material (e.g., hard plastic, wood, metal) or a soft lure made of a soft material (e.g., soft plastic, rubber, elastomer), but the present invention is not limited to these.

[0029] The lure X includes a rotating member 2 attached to a lure body 1. The rotating member 2 is configured to be rotatable when subjected to a water flow.

[0030] The rotating member 2 has at least two rotating bodies. In this embodiment, the rotating member 2 has a first rotating body 21 and a second rotating body 22.

[0031] The first rotating body 21 and the second rotating body 22 are configured to rotate in conjunction with each other. For example, the first rotating body 21 and the second rotating body 22 are fixed to each other at their sides, to the same shaft, and / or by other means, thereby rotating in conjunction with each other.

[0032] The first rotating body 21 and the second rotating body 22 are configured to cause different rotational motions from each other. For example, the first rotating body 21 and the second rotating body 22 cause different rotational motions from each other at least in part by (i) being arranged differently from each other in a projection view in the direction of the rotation axis, (ii) being configured differently from each other structurally, and / or by other means.

[0033] The lure X can exhibit the effect of visually appealing to a target by exhibiting complex, lifelike behavior due to the first rotating body 21 and the second rotating body 22 causing different rotational motions. That is, the motion of the first rotating body 21 and the motion of the second rotating body 22 transmit forces of different directions and / or magnitudes to the lure body 1, which can cause the behavior of the lure body 1 to be complex. In addition, the motion of the first rotating body 21 and the motion of the second rotating body 22 generate complex turbulence, which can also cause the behavior of the lure body 1 to be complex.

[0034] The lure X can also exert an effect of making a tactile and / or auditory appeal to the target by the turbulence generated by the rotational movement of the rotating member 2 and the complex behavior of the lure body 1 reaching the target.

[0035] Regarding (i), for example, the first rotating body 21 and the second rotating body 22 may be arranged at different angles from each other when viewed in a projection along the rotation axis direction. As a result, even if the first rotating body 21 and the second rotating body 22 are structurally identical to each other and arranged to have the same rotation axis, the first rotating body 21 and the second rotating body 22 will cause rotational motions with different rotation phases from each other.

[0036] Furthermore, for example, the first rotating body 21 and the second rotating body 22 may be arranged so that their rotation axes are different from each other when viewed in a projected view in the direction of the rotation axes. As a result, even if the first rotating body 21 and the second rotating body 22 are structurally identical to each other and arranged at the same angle to each other, the first rotating body 21 and the second rotating body 22 will cause rotational motions with rotation axes different from each other.

[0037] Regarding (ii), for example, the first rotating body 21 and the second rotating body 22 may be configured to be different from each other in at least one of shape, size, weight, and material. As a result, even if the first rotating body 21 and the second rotating body 22 are arranged to be identical to each other when viewed in a projection in the direction of the rotation axis, the first rotating body 21 and the second rotating body 22 will cause different rotational motions from each other.

[0038] If the first rotating body 21 and the second rotating body 22 have different shapes and / or dimensions, the shapes and / or dimensions of the surfaces receiving the water flow will be different, and they will receive different forces from each other in response to the same water flow, causing them to rotate differently.

[0039] If the first rotating body 21 and the second rotating body 22 have different weights, they will accelerate at different rotational accelerations relative to the same water flow, causing different rotations.

[0040] If the first rotating body 21 and the second rotating body 22 are made of different materials, the rigidity and surface properties of the surfaces receiving the water flow will differ, and they will receive different forces from the same water flow, causing them to rotate differently.

[0041] The center of gravity of the rotating body (first rotating body 21 and / or second rotating body 22) is preferably eccentric with respect to the rotation axis. For example, the center of gravity of the rotating body can be eccentric with respect to the rotation axis by forming the rotating body in a shape that does not have rotational symmetry or by forming the rotating body from a plurality of materials.

[0042] As a result, even when focusing on a single rotating body (first rotating body 21 or second rotating body 22), the rotational motion thereof becomes complex, and the behavior of the lure body 1 can become complex.

[0043] In this case, with regard to (i), it is preferable that the centers of gravity of the first rotor 21 and the second rotor 22 are arranged so as to be at different positions when viewed in a projected view in the direction of the rotation axis.

[0044] More specifically, the rotors (first rotor 21 and / or second rotor 22) are preferably waterwheel-shaped rotors. That is, the rotors preferably include at least one blade (blade 211 of first rotor 21 and / or blade 221 of second rotor 22) and a central body (central body 212 of first rotor 21 and / or central body 222 of second rotor 22) that defines the rotation axis of the blade.

[0045] The materials that make up at least a portion of the blades (blade 211 and / or blade 221) and central body (central body 212 and / or central body 222) are not particularly limited, and can be appropriately selected from, for example, wood, plastic, rubber, elastomer, metal, etc.

[0046] The blades (blade 211 and / or blade 221) are not particularly limited as long as they have a shape that can receive the water flow, and are preferably formed in the shape of a flat plate or a curved plate, for example.

[0047] It is preferable that the blades (blade 211 and / or blade 221) are arranged so as to form a predetermined angle (e.g., 30 degrees or more, 45 degrees or more, 60 degrees or more) with respect to the rotation plane of the rotor (first rotor 21 and / or second rotor 22), and it is particularly preferable that they are arranged approximately perpendicular.

[0048] The blades (blade 211 and / or blade 221) are preferably arranged radially from the central body (central body 212 and / or central body 222). For example, the blades are preferably arranged in a row at approximately equal intervals along the circumferential direction of rotation.

[0049] At least a part of the blades 211 and 221 are arranged differently from each other when projected in the direction of the rotation axis, corresponding to (i), or are configured to be structurally different from each other, corresponding to (ii).

[0050] 2(a), the first rotor 21 and the second rotor 22 may be arranged such that the relative position of the blades 211 to the central body 212 and the relative position of the blades 221 to the central body 222 are different from each other when viewed in a projection along the rotation axis direction. As a result, even if the first rotor 21 and the second rotor 22 are structurally identical to each other and are arranged such that the central bodies 212 and 222 are in the same position from each other when viewed in a projection along the rotation axis direction, the first rotor 21 and the second rotor 22 will cause rotational motions with different rotation phases from each other.

[0051] 2(b), the first rotor 21 and the second rotor 22 may be disposed such that the central body 212 and the central body 222 are at different positions when viewed in a projection in the direction of the rotation axis. As a result, even if the first rotor 21 and the second rotor 22 are structurally identical to each other and the relative positions of the blades 211 to the central body 212 and the relative positions of the blades 221 to the central body 222 are identical to each other, the first rotor 21 and the second rotor 22 will cause rotational motions with different rotation axes.

[0052] Regarding (ii), for example, the first rotating body 21 and the second rotating body 22 may be configured so that at least one of the shape (surface shape, etc.), dimensions (area, thickness, etc.), weight (density, etc.), material, and quantity of the blades (blade 211 and blade 221) is different from each other.

[0053] It is preferable that the first rotating body 21 and / or the second rotating body 22 include a weight (weight 213 of the first rotating body 21 and / or weight 223 of the second rotating body 22) that makes the center of gravity of the rotating body (first rotating body 21 and / or second rotating body 22) eccentric with respect to the rotation axis.

[0054] In this case, with regard to (i), it is preferable that the first rotating body 21 and the second rotating body 22 are arranged so that, when projected in the direction of the rotation axis, the relative position of the weight 213 to the central body 212 and the relative position of the weight 223 to the central body 222 are different from each other.

[0055] The material constituting at least a portion of the weight (weight 213 and / or weight 223) is not particularly limited, and can be appropriately selected from, for example, wood, plastic, rubber, elastomer, metal, etc. The weight (weight 213 and / or weight 223) is preferably formed from a material with a higher density than the blades (blades 211 and / or blades 221).

[0056] Regardless of the use of weights (weight 213 and / or weight 223), the center of gravity of the rotating body (first rotating body 21 and / or second rotating body 22) may be made eccentric with respect to the rotation axis, for example, by arranging the blades (blade 211 and / or blade 221) non-periodically in the circumferential direction of rotation, by making at least one of the blades out of a material different from the other blades, and / or by other means.

[0057] 3, in this embodiment, five blades (blade 211 and / or blade 221), which are flat plastic plates, are arranged on and integrally connected to a central body (central body 212 and / or central body 222), which is a plastic cylinder. In addition, one weight (weight 213 and / or weight 223), which is a metal sphere, is arranged between two of the blades.

[0058] The first rotor 21 and the second rotor 22 are arranged so that the central bodies 212 and 222 are at the same position. The blades 211 and 221 are arranged so that they are alternately positioned in the circumferential direction of rotation when viewed in a projection along the rotation axis. The weights 213 and 223 are arranged so that they are positioned opposite each other in the circumferential direction of rotation.

[0059] Furthermore, the rotary member 2 preferably has a partition 23 that separates the plurality of rotary bodies (first rotary body 21 and second rotary body 22).

[0060] The lure X can generate a more complex turbulent flow by using the partition 23 to branch and separate the turbulent flows generated by the first rotating body 21 and the second rotating body 22, respectively.

[0061] The material that constitutes at least a part of the partition 23 is not particularly limited, and can be appropriately selected from, for example, wood, plastic, rubber, elastomer, metal, and the like.

[0062] The partition 23 is not particularly limited as long as it has a shape that separates the first rotor 21 and the second rotor 22, and is preferably formed into a flat disk, for example.

[0063] In this embodiment, a partition 23, which is a flat disk made of plastic, is disposed between the first rotating body 21 and the second rotating body 22 and is integrally connected thereto.

[0064] The rotating member 2 can be placed anywhere on the lure body 1 as long as it can receive the water current. The rotation axis of the rotating member 2 is preferably set approximately perpendicular to the head-to-tail direction of the lure body 1, and is particularly preferably set along the ventral-dorsal or left-to-right direction of the lure body 1.

[0065] The lure body 1 preferably has a housing 11 that houses a part or all of the rotating member 2. The housing 11 is provided so as to form a space inside the lure body 1. The housing 11 is formed so as to encompass the outer shape of the rotating member 2, and in particular, it is preferable that the housing 11 is formed so as to substantially follow the outer shape of the rotating member 2.

[0066] The storage section 11 can be located at any position on the lure body 1 as long as the rotating member 2 can receive the water flow.

[0067] It is preferable that an opening a is formed in the storage section 11 to allow a water flow to pass through the rotating member 2. The shape and arrangement of the opening a are not particularly limited as long as the rotating member 2 can receive the water flow. It is preferable that the opening a is formed so that the blades (blade 211 and blade 221) are exposed to the outside of the lure body 1.

[0068] As shown in FIG. 4, in this embodiment, the storage section 11 is disposed on the back of the lure body 1 and is formed so that more than half of the rotating member 2 is stored therein.

[0069] The lure X preferably includes a shaft 3 fixed to the lure body 1 and supporting the rotating member 2. This allows the lure X to transmit the rotational motion of the rotating member 2 to the lure body 1 via the shaft 3.

[0070] The arrangement of the shaft body 3 is not particularly limited, but it is preferably set at a position inside the housing part 11. In addition, the shaft body 3 is preferably fixed approximately perpendicular to the head-to-tail direction of the lure body 1.

[0071] In this embodiment, the shaft body 3 is inserted through the central body 212 and the central body 222 and fixed in the left-right direction inside the housing portion 11, thereby supporting the rotating member 2.

[0072] The shaft 3 may support the rotary member 2 via a bearing.

[0073] Second Embodiment A second embodiment of the present invention will be described with reference to Figs. 5 and 6. Continuing on, the symbol X indicates a lure according to this embodiment. The embodiments and their modifications described below are merely representative examples of the present invention, and the present invention is not limited to these. Each component element can be replaced, omitted, added, or combined as necessary.

[0074] In the second embodiment, the same configuration as in the first embodiment can be selectively adopted, and the description of such a configuration will be omitted below.

[0075] 5, it is preferable that substantially the entire rotating member 2 is hidden by the lure body 1 when viewed from the tail side of the lure body 1. This prevents the rotating member 2 from being subjected to air resistance during casting, thereby preventing the lure X from shortening the casting distance.

[0076] Meanwhile, it is preferable that at least a part of the rotating member 2 is exposed from the lure body 1 when viewed from the head side of the lure body 1. This makes it easier for the rotating member 2 of the lure X to be subjected to a water flow during electrophoresis.

[0077] In this embodiment, the lure body 1 has a shielding portion 12 provided on the tail side of the storage portion 11. The shielding portion 12 is configured to hide almost the entire rotating member 2 when viewed from the tail side.

[0078] The shielding portion 12 is provided on the tail side of the opening a of the lure body 1. As a result, the rotating member 2 is almost entirely hidden by the shielding portion 12 when viewed from the tail side.

[0079] The lure X preferably includes a center-of-gravity moving part 4 configured to be able to move the center of gravity of the lure body 1 in the head-to-tail direction. This allows the lure X to set its center of gravity relatively toward the tail when casting and relatively toward the head when swimming, thereby improving the difficulty of movement due to resistance from air and / or water.

[0080] In this embodiment, the center of gravity shifting section 4 preferably has a weight 41 and a sliding section 42 that accommodates the weight 41 so that the weight 41 is slidable in the head-to-tail direction.

[0081] The material that constitutes at least a portion of weight 41 is not particularly limited, and can be appropriately selected from, for example, wood, plastic, rubber, elastomer, metal, etc. Weight 41 is preferably formed from a material with a higher density than lure body 1.

[0082] The sliding portion 42 is provided so as to form a space inside the lure body 1 along the head-to-tail direction.

[0083] When the lure X is cast, the weight 41 slides toward the tail side of the sliding part 42, thereby setting the center of gravity of the lure body 1 relatively toward the tail side, and when it swims, the weight 41 slides toward the head side of the sliding part 42, thereby setting the center of gravity of the lure body 1 relatively toward the head side.

[0084] The lure body 1 preferably has a water channel b formed therein that passes through the rotary member 2. In particular, the water channel b is formed so as to pass through the container 11.

[0085] It is preferable that the water channel b branches in at least two directions, which complicates the force that the lure body 1 receives from the water passing through the water channel b, and may complicate the behavior of the lure body 1.

[0086] As shown in Fig. 6, at least two openings different from opening a are formed in storage section 11, and these openings are preferably provided on the opposite side of opening a in the ventral-dorsal direction. In this embodiment, openings c1 and c2 are formed in storage section 11, with opening a on the dorsal side and openings c1 and c2 on the ventral side. As a result, water from opening a is divided between openings c1 and c2, which makes the force that the lure body 1 receives complex.

[0087] The openings (opening c1 and opening c2) are preferably arranged so as to be aligned on the left and right.

[0088] In this embodiment, the rotating member 2 is not limited to that of the first embodiment, and a water wheel type, a propeller type, or other general configurations can be adopted.

[0089] <Example of change> The materials, shapes, dimensions, and arrangements of the components shown in the above-described embodiments are merely examples, and modifications are possible.

[0090] For example, the rotating member 2 may have a third or subsequent rotating body in addition to the first rotating body 21 and the second rotating body 22. In this case, the rotating member 2 preferably has a partition similar to the partition 23 that separates the rotating bodies.

[0091] For example, the rotating member 2 may have only the first rotating body 21. In this modified example, the eccentricity of the first rotating body 21 may cause the behavior of the lure body 1 to become complicated.

[0092] For example, the center of gravity of the rotating body (first rotating body 21 and / or second rotating body 22) does not have to be eccentric with respect to the rotation axis. In this modified example, the behavior of the lure body 1 may become complicated due to the multiple rotating bodies.

[0093] For example, partition 23 may be formed as at least a part of lure body 1. In this case, lure body 1 has a thin plate-like structure along a plane approximately perpendicular to the left-right direction as partition 23. In this case, first rotating body 21 and second rotating body 22 are arranged to sandwich partition 23 formed in lure body 1, and are fixed via shaft body 3.

[0094] For example, the lure X may include a plurality of rotating members 2. In this modification, the behavior of the lure body 1 may become more complex due to the plurality of rotating members 2.

[0095] For example, the lure X may not include the shaft 3. In this case, the storage section 11 is formed to surround the rotating member 2 so that the rotating member 2 does not detach from the lure body 1. In other words, the opening a is formed so that the rotating member 2 cannot pass through. In this modification, the lure X can transmit the rotational motion of the rotating member 2 to the lure body 1 via the wall surface of the storage section 11.

[0096] <Application example> As shown in Figure 7, the lure body 1 may have fins 13 that can be driven by the rotation of the rotating member 2. Preferably, the lure body 1 imitates a small fish. The rotating member 2 may have any configuration that can rotate when subjected to a water current.

[0097] The shape and arrangement of the fin portion 13 are not particularly limited, but it is preferable that they imitate the fins of a small fish.

[0098] It is preferable that the fin portion 13 is connected to the rotating member 2 so that it can be driven by the rotation of the rotating member 2. It is also preferable that the fin portion 13 is provided with a driving means (for example, a driving gear) that drives the fin portion 13 by the rotation of the rotating member 2.

[0099] In this embodiment, the rotating member 2 and the shaft body 3 are fixed together as a unit, and are arranged so that the rotation axis is aligned in the head-to-tail direction. The fin portion 13 is formed to mimic the caudal fin of a small fish, and is fixed to the tip of the tail side of the shaft body 3. In this application example, the rotation of the rotating member 2 can mimic the movement of a small fish.

[0100] <Other> Other possible changes include:

[0101] For example, the rotating member 2 may be configured to be replaceable.

[0102] For example, the rotation member 2 may be configured so that substantially the entirety thereof can be stored in the storage section 11 by folding or moving.

[0103] For example, the rotating member 2 may be connected to a rotating electrical generator. [Explanation of symbols]

[0104] X: Lure 1: Lure body 11: Storage section 12: Shield part 13:Fin part 2: Rotating member 21: First rotating body 211: Feather 213: Weight 22: Second rotating body 221: Feather 223: Weight b: waterway

Claims

1. The lure comprises a lure body and a rotatable rotating member, The lure body has a housing portion that houses a part of the rotary member, and a shielding portion provided on the tail side of the housing portion, the shielding portion is configured to substantially hide the entire portion of the rotating member that is not accommodated in the accommodation portion when viewed from the tail side of the lure body, and to expose at least a portion of the portion when viewed from the head side of the lure body, The rotation axis of the rotating member is set approximately perpendicular to the head-to-tail direction of the lure body, the rotating member has a rotating body, the rotating body includes a central body that defines a rotation axis of the rotating member, and blades that are radially arranged from the central body, The rotating body is configured such that the center of gravity of the rotating body is eccentric from the position of the rotation axis of the rotating member. Lure.

2. The rotating body is made of a plurality of materials so that the center of gravity of the rotating body is eccentric from the position of the rotation axis of the rotating member. The lure according to claim 1.

3. The rotating body is configured in a shape that does not have rotational symmetry with respect to the rotation axis of the rotating member so that the center of gravity of the rotating body is eccentric from the position of the rotation axis of the rotating member. The lure according to claim 1.

4. The shielding portion is extended from the tail end of the storage portion so as to approximately follow the rotating member. The lure according to any one of claims 1 to 3.

5. A center of gravity moving part configured to be able to move the center of gravity of the lure body in the head-to-tail direction, The center of gravity moving unit has a weight and a sliding unit that accommodates the weight slidably in the head-to-tail direction. The lure according to any one of claims 1 to 3.

6. the rotating member has at least two rotating bodies, The first rotating body and the second rotating body are configured to rotate in conjunction with each other. The lure according to any one of claims 1 to 3.

7. The rotating member has at least two rotating bodies, and has a partition separating the first rotating body from the second rotating body, At least two openings are formed in the housing portion, The first opening and the second opening are arranged at positions in the storage section opposite to each other with respect to the partition. The lure according to any one of claims 1 to 3.

Citation Information

Patent Citations

  • Fishing lure

    JP2003102340A

  • Egi having elastic material and elastic material holding tool

    JP2010178725A

  • Fishing lure

    JP2014223071A

  • Lure

    JP2024179635A

  • lure

    JP3038066U