Lure
The lure's shaft and spring configuration restricts the swing body's rotation, preventing interference and maintaining vibration integrity during assembly, enhancing operational efficiency and duration.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- SHIMANO INC
- Filing Date
- 2021-11-26
- Publication Date
- 2026-04-27
AI Technical Summary
In lures with a swing body supported by a spring inside a hollow body, the spring may move during the joining of the body halves, causing the swing body to be positioned closer to the body than intended, leading to interference and hindered vibration swinging.
The lure incorporates a first and second shaft portion with engaging portions that restrict rotation of the oscillating body, supported by first and second springs extending in non-orthogonal directions, preventing the swing body from shifting during body assembly and minimizing interference.
This design maintains the swing body's appropriate position, ensuring uninterrupted vibration swinging and reducing energy loss, allowing for prolonged and effective operation.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a lure.
Background Art
[0002] Some lures have a swing body supported by a spring inside a hollow body. For example, in the lure of Patent Document 1, a reflector as a swing body is suspended by a spring inside the body. The spring extends in the front-rear direction, and the front end and the rear end of the spring are fixed to the body.
[0003] In such a lure, the swing body can strongly appeal to a fish eater by vibration swinging. For example, in the lure of Patent Document 1, even after the movement of the lure stops, the vibration swinging of the reflector continues, so that the light reflected by the reflector can be seen shining. Thereby, it can strongly appeal to a fish eater.
Prior Art Documents
Patent Documents
[0004]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0005] By the way, in some lures, a body is formed by joining a first half body and a second half body to each other. In such a lure, when the above-described swing body and spring are provided, the spring may move during the joining of the body, so that the swing body may be arranged closer to the body than the appropriate design position. In this case, when the swing body vibration swings, the swing body is likely to interfere with the body. When the swing body interferes with the body, the vibration swinging of the swing body is hindered, making it difficult to fully perform its function.
[0006] The object of the present invention is that in a lure, when the body is joined, the position of the oscillating body shifts, causing the oscillating body vibration The goal is to prevent it from being hindered. [Means for solving the problem]
[0007] A lure according to one aspect of the present invention comprises a body, a oscillating body, a first shaft portion, and a first spring. The body is hollow. The body includes a first half and a second half. The second half is joined to the first half. The oscillating body is located inside the body. vibration The first shaft portion is provided on at least one of the first half and the second half. The first shaft portion extends toward the other half of the first half and the second half. The first spring is connected to the oscillating body. The first spring supports the oscillating body in a vibratory manner. The first spring includes a first engaging portion. The first engaging portion engages with the first shaft portion such that rotation around the first shaft portion is restricted.
[0008] The lure may further comprise a second shaft and a second spring. The second shaft may be provided on at least one of the first half and the second half. The second shaft may extend toward the other half of the first half and the second half. The second spring may be connected to the oscillating body. The second spring may support the oscillating body in a vibratory manner. The second spring may include a second engaging portion. The second engaging portion may engage with the second shaft so as to restrict rotation around the second shaft.
[0009] The first spring may extend in the first direction. The second spring may extend in the second direction. The first and second directions may be arranged non-orthogonally.
[0010] The second spring may have the same winding direction as the first spring. The second spring may have the opposite winding direction to the first spring.
[0011] The oscillating body may be supported by a first spring and a second spring so as to be able to vibrate, such that the time required for one oscillation is 0.1 seconds or longer.
[0012] The first engaging portion may be positioned in front of the oscillating body. The second engaging portion may be positioned behind the oscillating body.
[0013] The first engaging portion may be positioned above the oscillating body. The second engaging portion may be positioned below the oscillating body.
[0014] The lure may also be equipped with a weight. The weight may be attached to the oscillating body.
[0015] The oscillating body may include a hole. The lure may further have a protrusion. The protrusion may be located inside the body. The protrusion may be located through the hole. When the oscillating body is stationary, the protrusion may be separated from the edge of the hole.
[0016] The first shaft portion may include a flat surface. The first engaging portion may include a straight section. The straight section may be in contact with the flat surface.
[0017] At least one of the first shaft portion and the first engagement portion may have a polygonal shape. At least one of the first shaft portion and the first engagement portion may have a quadrilateral shape.
[0018] The first shaft portion may include a main shaft portion and an auxiliary shaft portion. The auxiliary shaft portion may be positioned away from the main shaft portion. The first engaging portion may include a main engaging portion and an auxiliary engaging portion. The main engaging portion may engage with the main shaft portion. The auxiliary engaging portion may be connected to the main engaging portion. The auxiliary engaging portion may prevent the main engaging portion from rotating relative to the main shaft portion by contacting the auxiliary shaft portion.
[0019] The lure may further comprise a weight and a biasing member. The weight may be located inside the body. The weight may be movable relative to the body. The biasing member may elastically deform in conjunction with the movement of the weight. The biasing member may bias the weight by elastic restorative deformation. The weight may move, at least during casting, to elastically deform the biasing member.
[0020] The body may include a first body part, a second body part, and a connecting part. The second body part may be separate from the first body part. The connecting part may connect the first body part and the second body part.
[0021] At least a part of the body may transmit light. The swinging body may be able to reflect light. The first half body and the second half body may be joined to each other by welding.
Advantages of the Invention
[0022] According to the lure according to one aspect of the present invention, the first spring is engaged with the first shaft portion so that rotation around the first shaft portion is restricted at the first engagement portion. Therefore, when the body is joined, the operation of the first spring is restricted, so that the swinging body is prevented from deviating from the appropriate design position. Thereby, it is possible to prevent the swinging body from being hindered by interference between the swinging body and the body. vibration is prevented from being hindered.
Brief Description of the Drawings
[0023] z [Figure 1] It is a side view of the lure according to the embodiment. [Figure 2] It is a top view of the lure according to the embodiment. [Figure 3] It is a perspective view of the first half body. [Figure 4] It is a side view of the first half body. [Figure 5] It is an enlarged side view of the first spring and its surroundings. [Figure 6] It is an enlarged side view of the second spring and its surroundings. [Figure 7] It is a side view showing the inside of the lure according to the first modification. [Figure 8] It is a side view showing the inside of the lure according to the second modification. [Figure 9] It is a side view showing the inside of the lure according to the third modification. [Figure 10] It is a side view showing the inside of the lure according to the fourth modification. [Figure 11]This is a side view showing the inside of the lure according to the fifth modified example. [Figure 12] This is a side view showing the inside of the lure according to the sixth modified example. [Figure 13] This is a side view of the lure according to the seventh modified example. [Figure 14] This is a side view showing the inside of the lure according to the seventh modified example. [Modes for carrying out the invention]
[0024] The lure according to the embodiment will be described below with reference to the drawings. Figure 1 is a side view of the lure 1 according to the embodiment. Figure 2 is a top view of the lure 1 according to the embodiment. As shown in Figures 1 and 2, the lure 1 includes a body 2. The body 2 includes a head 3 and a tail 4. A fishing line connector 5 for tying a fishing line is attached to the head 3.
[0025] In this specification, the following terms indicating direction, "front," "rear," "forward," "backward," "left," "right," "side," "upward," and "downward," as well as any other similar terms indicating direction, In lure 1 to which a fishing line is connected, the direction in which lure 1 moves when pulled by the fishing line is determined as "forward" and "straight ahead," and the direction toward the water surface when lure 1 is moving forward in the water is determined as "upward," and the direction toward the seabed is determined as "downward."
[0026] As shown in Figure 2, body 2 includes a first half-body 11 and a second half-body 12. Body 2 is divided into left and right halves, the first half-body 11 and the second half-body 12. The first half-body 11 and the second half-body 12 are each made of resin. The first half-body 11 and the second half-body 12 are separate parts and are joined to each other by welding. For example, the first half-body 11 and the second half-body 12 are joined to each other by ultrasonic welding.
[0027] The first half-body 11 includes a joint surface 13A. The second half-body 12 includes a joint surface 13B. The first half-body 11 and the second half-body 12 are joined to each other at the joint surfaces 13A and 13B. The joint surfaces 13A and 13B extend in the front-rear direction. The body 2 is hollow and has an internal space 14.
[0028] Figure 3 is a perspective view of the first half-body 11. Figure 4 is a side view of the first half-body 11. As shown in Figures 2 to 4, the lure 1 includes a oscillating body 15, a first shaft portion 16, a second shaft portion 17, a first spring 18, and a second spring 19. The oscillating body 15, the first shaft portion 16, the first spring 18, the second shaft portion 17, and the second spring 19 are arranged within the internal space 14 of the body 2. The oscillating body 15 is located within the body 2. vibration It is possible to arrange it.
[0029] The oscillating body 15 is made of a metal plate. Alternatively, the oscillating body 15 may be made of another material such as resin. The oscillating body 15 is reflective. For example, the surface of the oscillating body 15 may be treated with a mirror finish such as plating, or with a holographic finish. At least the portion of the body 2 facing the oscillating body 15 is transparent. As a result, the body 2 transmits the light reflected by the oscillating body 15.
[0030] The first shaft portion 16 is connected to the inner surface 11A of the first half-body 11 and extends toward the second half-body 12. Alternatively, the first shaft portion 16 may be connected to the inner surface 12A of the second half-body 12 and extend toward the first half-body 11. The first shaft portion 16 extends in the left-right direction of the lure 1. The first shaft portion 16 is positioned in front of the oscillating body 15.
[0031] The second shaft portion 17 is connected to the inner surface 11A of the first half-body 11 and extends toward the second half-body 12. Alternatively, the second shaft portion 17 may be connected to the inner surface 12A of the second half-body 12 and extend toward the first half-body 11. The second shaft portion 17 extends in the left-right direction of the lure 1. The second shaft portion 17 is positioned behind the oscillating body 15.
[0032] The first spring 18 is positioned in front of the oscillating body 15. The first spring 18 is connected to the oscillating body 15. The first spring 18 supports the oscillating body 15 so that it can vibrate. Figure 5 is an enlarged side view of the first spring 18 and its surroundings. As shown in Figure 5, the first spring 18 includes a first coil portion 21, a first fixing portion 22, and a first engaging portion 23.
[0033] The first coil portion 21 is located between the first fixing portion 22 and the first engaging portion 23. The first fixing portion 22 is positioned behind the first coil portion 21. The first fixing portion 22 is fixed to the oscillating body 15. The first fixing portion 22 has a bent shape. The first fixing portion 22 has a rectangular shape. The first fixing portion 22 is fixed to the side surface of the oscillating body 15. The first fixing portion 22 is fixed to the oscillating body 15 by the first mounting plate 24. As a result, the oscillating body 15 is fixed to the first fixing portion 22 so that its rotation around the first fixing portion 22 is restricted.
[0034] The first engaging portion 23 is positioned in front of the first coil portion 21. The first engaging portion 23 engages with the first shaft portion 16. The first engaging portion 23 has a shape formed by bending a wire into a hook shape. The first engaging portion 23 has a rectangular shape. The first engaging portion 23 includes a first straight portion 25. The first straight portion 25 extends in the vertical direction. The first straight portion 25 is located in front of the first shaft portion 16.
[0035] The first shaft portion 16 has a shape that extends in the vertical direction. The first shaft portion 16 includes a first flat surface 26. The first flat surface 26 extends in the vertical direction. The first straight portion 25 is positioned along the first flat surface 26 and is in contact with the first flat surface 26. As a result, the first engaging portion 23 engages with the first shaft portion 16 so as to restrict its rotation around the first shaft portion 16.
[0036] The second spring 19 is positioned behind the oscillating body 15. The second spring 19 is connected to the oscillating body 15. The second spring 19 supports the oscillating body 15 so that it can vibrate. The second spring 19 has the same winding direction as the first spring 18. For example, the first spring 18 and the second spring 19 are wound clockwise from front to back. Alternatively, the first spring 18 and the second spring 19 may be wound counterclockwise from front to back.
[0037] Figure 6 is an enlarged side view of the second spring 19 and its surroundings. Figure 6 As shown, the second spring 19 includes a second coil portion 31, a second fixing portion 32, and a second engaging portion 33. The second coil portion 31 is located between the second fixing portion 32 and the second engaging portion 33. The second fixing portion 32 is positioned in front of the second coil portion 31. The second fixing portion 32 is fixed to the oscillating body 15. The second fixing portion 32 has a bent shape. The second fixing portion 32 has a rectangular shape. The second fixing portion 32 is fixed to the side surface of the oscillating body 15. The second fixing portion 32 is fixed to the oscillating body 15 by a second mounting plate 34. Thus, the oscillating body 15 is fixed to the second fixing portion 32 so that its rotation around the second fixing portion 32 is restricted.
[0038] The second engaging portion 33 is located behind the second coil portion 31. The second engaging portion 33 engages with the second shaft portion 17. The second engaging portion 33 has a shape formed by bending a wire into a hook shape. The second engaging portion 33 has a rectangular shape. The second engaging portion 33 includes a second straight portion 35. The second straight portion 35 extends in the vertical direction. The second straight portion 35 is located behind the second shaft portion 17.
[0039] The second shaft portion 17 has a shape that extends in the vertical direction. The second shaft portion 17 includes a second flat surface 36. The second flat surface 36 extends in the vertical direction. The second straight portion 35 is positioned along the second flat surface 36 and is in contact with the second flat surface 36. As a result, the second engaging portion 33 engages with the second shaft portion 17 so as to restrict its rotation around the second shaft portion 17.
[0040] The first spring 18 extends in a first direction, and the second spring 19 extends in a second direction. The first and second directions are not orthogonal to each other. The first and second directions are generally parallel to each other. In this embodiment, the first and second directions generally coincide with the front-to-back direction of the lure 1. However, the first and second directions do not have to be perfectly parallel to each other.
[0041] As shown in Figure 4, the lure 1 includes a weight 37. The weight 37 is attached to the oscillating body 15. The weight 37 has a shape that extends in the front-rear direction. The weight 37 is positioned below the first spring 18 and the second spring 19. The oscillating body 15 includes a first notch 38 and a second notch 39. The first notch 38 has a shape that is recessed rearward from the front edge of the oscillating body 15. The second notch 39 is positioned rearward from the first notch 38. The second notch 39 has a shape that is recessed upward from the lower edge of the oscillating body 15. The weight 37 is attached to the first notch 38 and the second notch 39.
[0042] The first spring 18 and the second spring 19 support the oscillating body 15 in a buoyant state that allows it to vibrate. When the lure 1 hits the water or when movement is imparted to the lure 1, the oscillating body 15 moves, and the first spring 18 and the second spring 19 undergo elastic deformation. Subsequently, the oscillating body 15 moves in the opposite direction due to the elastic force between the first spring 18 and the second spring 19. As this operation is repeated, even after the lure 1 comes to a stop, the oscillating body 15 continues to move due to the elastic force between the first spring 18 and the second spring 19. vibration Repeat this process.
[0043] The first spring 18 and the second spring 19 support the oscillating body 15 so that it can vibrate without contacting the inner surface of the body 2. Therefore, the oscillating body 15 does not collide with the inner surface of the body 2. vibration Energy loss is suppressed. As a result, even after the lure 1 comes to a stop after it hits the water or after movement is imparted to the lure 1, the oscillating body 15 vibration This allows for a longer duration of use.
[0044] Preferably, after the lure 1 comes to a stop, the oscillating body 15 moves back and forth one or more times from side to side. vibration It is possible. Preferably, once the oscillating body 15 vibration The oscillating body 15 is supported by the first spring 18 and the second spring 19 such that the time taken for the oscillation has a period of 0.1 seconds or more. That is, the oscillation frequency of the oscillating body 15 is preferably 10 Hz or less. The oscillation frequency of the oscillating body 15 is preferably 2 Hz or more. For example, the oscillation frequency of the oscillating body 15 is about 6 Hz. However, the frequency of the oscillating body 15 is not limited to these values and may be changed.
[0045] The oscillating body 15 includes a hole 41. The hole 41 penetrates the oscillating body 15 in the left-right direction. The body 2 includes a protrusion 42. The protrusion 42 is located in the internal space 14 of the body 2. The protrusion 42 extends in the left-right direction. The protrusion 42 extends from the first half-body 11 toward the second half-body 12. Alternatively, the protrusion 42 may extend from the second half-body 12 toward the first half-body 11. The protrusion 42 is located through the hole 41. When the oscillating body 15 is stationary, the protrusion 42 is away from the edge of the hole 41. The diameter of the hole 41 is set such that, if the amplitude of the oscillating body 15 is excessively large, the protrusion 42 and the edge of the hole 41 come into contact, thereby suppressing the amplitude of the oscillating body 15.
[0046] As described above, in the lure 1 according to this embodiment, the first spring 18 is engaged with the first shaft portion 16 at the first engagement portion 23 such that its rotation around the first shaft portion 16 is restricted. Therefore, when the body 2 is joined, the up and down movement of the first spring 18 is restricted. Similarly to the first spring 18, the up and down movement of the second spring 19 is also restricted when the body 2 is joined. As a result, in the lure 1 according to this embodiment, when the first half body 11 and the second half body 12 are joined, the oscillating body 15 is prevented from shifting from its appropriate design position. As a result, interference between the oscillating body 15 and the body 2 causes the oscillating body 15 to... vibration This helps to minimize the disruption of this process.
[0047] Although one embodiment of the present invention has been described above, the present invention is not limited to the above embodiment, and various modifications are possible without departing from the spirit of the invention.
[0048] The shapes of the first spring 18 and the second spring 19 are not limited to those of the embodiment described above and may be changed. For example, the winding direction of the second spring 19 may be opposite to that of the first spring 18. For example, the first spring 18 may be wound clockwise from front to back, and the second spring 19 may be wound counterclockwise from front to back. Alternatively, the second spring 19 may be wound clockwise from front to back, and the first spring 18 may be wound counterclockwise from front to back.
[0049] The shapes of the first engaging portion 23, the first shaft portion 16, the second engaging portion 33, or the second shaft portion 17 are not limited to those of the above embodiment and may be changed. Figure 7 is a side view showing the inside of the lure 1 according to the first modified example. As shown in Figure 7, the first shaft portion 16 may have a rectangular shape. Similarly to the first shaft portion 16, the second shaft portion 17 may also have a rectangular shape.
[0050] Figure 8 is a side view showing the inside of the lure 1 according to the second modified example. As shown in Figure 8, the first shaft portion 16 may have a triangular shape. Similarly, the second shaft portion 17 may also have a triangular shape. Also, as shown in Figure 8, the first engaging portion 23 may have a triangular shape. Similarly, the second engaging portion 33 may also have a triangular shape.
[0051] Figure 9 is a side view showing the interior of the lure 1 according to the third modified example. As shown in Figure 9, the first shaft portion 16 includes a main shaft portion 51 and an auxiliary shaft portion 52. The auxiliary shaft portion 52 is positioned away from the main shaft portion 51. The first engaging portion 23 includes a main engaging portion 53 and an auxiliary engaging portion 54. The main engaging portion 53 engages with the main shaft portion 51.
[0052] The auxiliary engaging portion 54 is connected to the main engaging portion 53. The main engaging portion 53, the main shaft portion 51, and the auxiliary shaft portion 52 have a circular shape. However, the auxiliary shaft portion 52 may have a polygonal shape such as a square or triangle. The auxiliary engaging portion 54 has a linear shape. The auxiliary engaging portion 54 prevents the main engaging portion 53 from rotating relative to the main shaft portion 51 by contacting the auxiliary shaft portion 52.
[0053] Figure 10 is a side view showing the inside of the lure 1 according to the fourth modified example. As shown in Figure 10, the auxiliary engagement portion 54 may have a circular shape.
[0054] Figure 11 is a side view showing the interior of the lure 1 according to the fifth modified example. As shown in Figure 11, the first spring 18 may be positioned above the oscillating body 15. The second spring 19 may be positioned below the oscillating body 15. In this case, the first shaft portion 16 and the first engaging portion 23 may be positioned above the oscillating body 15. The second shaft portion 17 and the second engaging portion 33 may be positioned below the oscillating body 15. The lure 1 may include a plurality of oscillating bodies 15. The plurality of oscillating bodies 15 may be arranged in a line in the front-rear direction.
[0055] Figure 12 is a side view showing the interior of the lure 1 according to the sixth modified example. As shown in Figure 12, the lure 1 according to the sixth modified example comprises a weight portion 61 and a biasing member 62. The weight portion 61 is located in the internal space 14 of the body 2. The weight portion 61 is movable relative to the body 2. In detail, a guide member 63 is located inside the body 2. The guide member 63 extends in the front-rear direction. The weight portion 61 is movable back and forth along the guide member 63. By moving, the weight portion 61 changes the center of gravity of the lure 1.
[0056] The biasing member 62 is connected to the weight portion 61. The biasing member 62 is positioned behind the weight portion 61. The biasing member 62 is, for example, a spring. The biasing member 62 elastically deforms as the weight portion 61 moves. The weight portion 61 is biased by elastic restorative deformation. The weight portion 61 moves to elastically deform the biasing member 62, at least when casting the lure 1 towards the water surface. ru. The lure 1 according to the sixth modified example flies with its tail 4 leading when cast. During the flight of the lure 1, the weight 61 moves toward the tail 4 due to inertia, compressing the biasing member 62. As a result, the center of gravity of the lure 1 is located toward the tail 4 during flight, resulting in a long casting distance. When the lure 1 lands on the water, the weight 61 is pushed back toward the head 3 by the elastic force of the biasing member 62. As a result, the center of gravity of the lure 1 moves to a position where an appropriate underwater posture or behavior can be obtained. As described above, in the lure 1 according to the fifth modified example, the center of gravity of the lure 1 can be moved to an appropriate position by changing the position of the weight 61 during flight and in the water.
[0057] Figure 13 is a side view of the lure 1 according to the seventh modified example. As shown in Figure 13, in the lure 1 according to the seventh modified example, the body 2 includes a first body portion 71, a second body portion 72, a third body portion 73, a first connecting portion 74, and a second connecting portion 75. The first body portion 71, the second body portion 72, and the third body portion 73 are separate from each other.
[0058] The first connecting portion 74 connects the first body portion 71 and the second body portion 72. The connecting portion connects the first body portion 71 and the second body portion 72 so that they can swing relative to each other. The first body portion 71 and the second body portion 72 swing relative to each other from side to side. The second connecting portion 75 connects the second body portion 72 and the third body portion 73. The second connecting portion 75 connects the second body portion 72 and the third body portion 73 so that they can swing relative to each other. The second body portion 72 and the third body portion 73 swing relative to each other from side to side.
[0059] Figure 14 is a side view showing the interior of the first body portion 71. As shown in Figure 14, the oscillating body 15, the first shaft portion 16, the second shaft portion 17, the first spring 18, and the second spring 19, similar to those in the embodiment described above, are arranged inside the first body portion 71. Note that the same configuration as the oscillating body 15, the first shaft portion 16, the second shaft portion 17, the first spring 18, and the second spring 19 may also be arranged inside the second body portion 72 or the third body portion 73.
[0060] The configurations of the first to sixth modifications described above may be applied to the lure 1 according to the seventh modification. In the lure 1 according to the seventh modification, the body 2 is divided into three parts. However, the number of divisions of the body 2 may be two, or more than three. [Industrial applicability]
[0061] According to the present invention, in a lure, when the body is joined, the position of the oscillating body shifts, causing the oscillating body vibration This helps to minimize the disruption of this process. [Explanation of Symbols]
[0062] 2: Body, 11: First half-body, 12: Second half-body, 15: Oscillating body, 16: First shaft section, 17: Second shaft section, 18: First spring, 19: Second spring, 23: First engaging section, 25: First straight section, 26: First flat surface, 37: Weight, 41: Hole, 42: Protrusion, 51: Main shaft section, 52: Auxiliary shaft section, 53: Main engaging section, 54: Auxiliary engaging section, 61: Weight, 62: Biasing member, 71: First body section, 72: Second body section, 74: First connecting section
Claims
1. A hollow body comprising a first half-body and a second half-body joined to the first half-body, A vibrating body is arranged within the aforementioned body, A first shaft portion is provided on at least one of the first half-body and the second half-body, extending toward the other. A first spring is connected to the oscillating body and supports the oscillating body so as to vibrate, including a first engaging portion that engages with the first shaft portion so as to restrict rotation around the first shaft portion, Equipped with, The first shaft portion includes a flat surface, The first engaging portion includes a straight portion that contacts the flat surface, Lure.
2. At least one of the first shaft portion and the first engagement portion has a polygonal shape. The lure according to claim 1.
3. At least one of the first shaft portion and the first engagement portion has a rectangular shape. The lure according to claim 1 or 2.
4. A hollow body comprising a first half-body and a second half-body joined to the first half-body, A vibrating body is arranged within the aforementioned body, A first shaft portion is provided on at least one of the first half-body and the second half-body, extending toward the other. A first spring is connected to the oscillating body and supports the oscillating body in a vibratory manner, including a first engaging portion that engages with the first shaft portion so as to restrict rotation around the first shaft portion, Equipped with, The first shaft portion is The main shaft and, An auxiliary shaft portion is positioned away from the main shaft portion, Includes, The first engagement portion is, A main engaging portion that engages with the main shaft portion, Connected to the main engaging portion and in contact with the auxiliary shaft portion, the main shaft portion Auxiliary engaging part that prevents the main engaging part from rotating including, Lure.
5. A weight portion disposed within the body and movable relative to the body, A biasing member that elastically deforms as the weight moves and biases the weight by elastic restorative deformation, Furthermore, The lure according to any one of claims 1 to 4, wherein the weight portion moves to elastically deform the biasing member at least during casting.
6. The aforementioned body is First body section, The first body part and the second body part, which are separate, A connecting portion that connects the first body portion and the second body portion, including, A lure according to any one of claims 1 to 5.
7. The body is such that at least a portion of it transmits light. A lure according to any one of claims 1 to 6.
8. The aforementioned oscillating body is capable of reflecting light. A lure according to any one of claims 1 to 7.
9. The first half-body and the second half-body are joined to each other by welding. A lure according to any one of claims 1 to 8.
Citation Information
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