Lure
The lure's swinging oscillator and elastic connections enhance fish attraction by randomly changing light reflection, addressing the monotonous reflection issue of conventional lures.
Patent Information
- Application Number
- JP2021192516
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-11-26
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2041-11-26
AI Technical Summary
Conventional lures with light-transmitting stones fixed to the surface of body parts result in monotonous light reflection, reducing the effectiveness of fish attraction.
A lure design featuring a first body with a space containing a swinging oscillator connected via elastic springs, allowing the oscillator to randomly change direction and reflect light, enhancing fish attraction.
The lure effectively attracts fish by randomly changing light direction and reflection, improving attraction compared to conventional techniques.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a lure. [Background technology]
[0002] Some conventional lures have light-transmitting stones attached to multiple body parts. For example, the lure in Patent Document 1 has multiple body parts, a connecting structure, and multiple light-transmitting stones. The light-transmitting stones are fixed to the surface of each body part. The connecting structure connects the multiple body parts individually. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Utility Model Registration No. 3211458 Summary of the Invention [Problem to be solved by the invention]
[0004] In the above-mentioned prior art, since the light-transmitting stones are fixed to the surface of each body part, even if the light-transmitting stones reflect light, the light reflected by the light-transmitting stones becomes monotonous, and there is a risk that the effect of attracting fish will be reduced. An object of the present invention is to provide a lure that can effectively attract fish. [Means for solving the problem]
[0005] A lure according to one aspect of the present invention comprises a first body, a second body, and a first swinging body. The first body has a first space therein. The first body is at least partially light-transmitting. The second body is connected to the first body via a connecting structure. The first swinging body is disposed in the first space. The first swinging body is connected to the first body via a connecting portion so as to be able to vibrate.
[0006] In this configuration, the first oscillator is disposed in the first space of the first body. In this state, the first oscillator oscillates relative to the first body via the connecting portion. This allows the first oscillator to randomly change the direction of the light. This allows the lure to attract fish more effectively than conventional techniques.
[0007] In a lure according to another aspect of the present invention, the connecting portion has a first connecting portion and a second connecting portion. The first connecting portion is preferably connected to the front side of the first swinging body. In this case, the second connecting portion is connected to the rear side of the first swinging body.
[0008] In the lure according to another aspect of the present invention, the connecting portion preferably includes an elastic body.
[0009] In a lure according to another aspect of the present invention, the first body preferably has a recess. In this case, the recess accommodates at least a portion of the connecting portion therein.
[0010] In a lure according to another aspect of the present invention, the recess and at least a portion of the connecting structure preferably overlap when viewed from a direction perpendicular to the front-rear direction of the first body.
[0011] In a lure according to another aspect of the present invention, the lure preferably further comprises a weight. In this case, the weight is provided on the first oscillator.
[0012] In a lure according to another aspect of the present invention, the first swinging body preferably has a hole. In this case, the first body has a protrusion. The protrusion is inserted into the hole. The outer diameter of the protrusion is smaller than the inner diameter of the hole.
[0013] In a lure according to another aspect of the present invention, the connecting structure preferably has a first support member, a second support member, and a connecting member. In this case, the first support member is provided on the first body. The second support member is provided on the second body. The connecting member is supported so as to be swingable relative to the first support member and the second support member.
[0014] In a lure according to another aspect of the present invention, it is preferable that the lure further comprises a second swinging body. In this case, the second body has a second space therein. The second swinging body is disposed in the second space. The second swinging body is connected to the second body so as to be able to vibrate.
[0015] In a lure according to another aspect of the present invention, the second swinging body is preferably configured to reflect light.
[0016] In the lure according to another aspect of the present invention, the second oscillator is preferably a fluorescent material.
[0017] In a lure according to another aspect of the present invention, the first swinging body is preferably configured to reflect light.
[0018] In the lure according to another aspect of the present invention, the first oscillator is preferably a fluorescent material.
[0019] In a lure according to another aspect of the present invention, the lure preferably further comprises a third body. In this case, the third body is connected to either the first body or the second body.
[0020] In a lure according to another aspect of the present invention, the lure preferably further comprises a ring-shaped member. In this case, the ring-shaped member is provided on the first body for connecting a fishing line. [Effects of the Invention]
[0021] According to the present invention, the lure can attract fish effectively. [Brief explanation of the drawings]
[0022] [Figure 1] FIG. 1 is a side view of a lure according to an embodiment. [Figure 2] FIG. 2 is a side view of the lure according to the embodiment with the second half, fourth half, and sixth half removed. [Figure 3] FIG. 1 is a top view of a lure according to an embodiment. [Figure 4] 3 is a partially enlarged side view of the first connection structure in FIG. 2. FIG. [Figure 5] 3 is a partially enlarged side view of the second connection structure in FIG. 2. FIG. [Figure 6] FIG. 10 is a side view of the lure according to the first modification example, with the second half, fourth half, and sixth half removed. [Figure 7] FIG. 10 is a side view of the lure head according to Modification 2 with the second half removed. DETAILED DESCRIPTION OF THE INVENTION
[0023] Hereinafter, a lure 1 according to an embodiment will be described with reference to the drawings. As shown in Fig. 1, the lure 1 comprises a head 2 (an example of a first body), a body 3 (an example of a second body), a tail 4 (an example of a third body), a first connecting structure 5, and a second connecting structure 6. As shown in Fig. 2, the lure 1 comprises a first swinging body 7, a first spring 8 (an example of a first connecting portion), and a second spring 9 (an example of a second connecting portion). As shown in Figs. 1 and 2, the lure 1 further comprises a fishing line connecting portion 10 (an example of a ring-shaped member).
[0024] In this specification, the following directional terms, "front," "rear," "forward (front side)," "backward (rear side)," "left," "right," "side," "upward," and "downward," as well as any other similar directional terms, are defined as follows:
[0025] "Front" and "forward (front side)" refer to the direction in which the lure 1, to which the fishing line is connected, moves as it is pulled by the fishing line. "Back" and "rear (rear side)" refer to the opposite direction of the moving direction. The "front-to-rear direction" corresponds to the longitudinal direction of the lure 1. "Front (front side)" corresponds to one side of the longitudinal direction. "Rear (rear side)" corresponds to the other side of the longitudinal direction.
[0026] For example, the left side of FIG. 1 corresponds to "front" and "forward (front side)." The right side of FIG. 1 corresponds to "rear" and "rear (rear side)." The left-right direction of FIG. 1 corresponds to "front-rear direction."
[0027] "Up" and "upper" indicate the direction toward the water surface when the lure 1 is moving forward in the water. "Down" and "lower" indicate the direction toward the bottom of the water. "Left", "right", and "side" are defined based on the above "up" and "lower". For example, the upper side of Figure 1 corresponds to "up" and "upper". The lower side of Figure 1 corresponds to "lower" and "lower". The upper side of Figure 3 corresponds to "right". The lower side of Figure 3 corresponds to "left".
[0028] The head 2 shown in Figure 1 is at least partially light-transmitting. In this embodiment, the head 2 is entirely light-transmitting. As shown in Figures 2 and 3, the head 2 has a first space S1 therein.
[0029] As shown in FIG. 3, the head 2 includes a first half body 11 and a second half body 12. The head 2 is divided into the 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 separate bodies. The first half body 11 and the second half body 12 are made of resin. For example, the first half body 11 and the second half body 12 are formed from a transparent or translucent resin.
[0030] The first half body 11 and the second half body 12 are joined to each other by welding. For example, the first half body 11 includes a joining surface 11a. The second half body 12 includes a joining surface 12a. The joining surfaces 11a, 12a extend in the front-to-rear direction. The first half body 11 and the second half body 12 are joined to each other at the joining surfaces 11a, 12a. For example, by joining the joining surfaces 11a, 12a to each other by ultrasonic welding, a first space S1 is formed between the first half body 11 and the second half body 12.
[0031] As shown in Fig. 1, the head 2 has a first slit 13 and a second slit 14. The first slit 13 and the second slit 14 are provided at the rear of the head 2. The first slit 13 and the second slit 14 are arranged spaced apart in the up-down direction when the first half-body 11 and the second half-body 12 are joined together. As shown in Fig. 4, a first plate 28 and a second plate 29 of a first connecting structure 5, which will be described later, are arranged in the first slit 13 and the second slit 14.
[0032] As shown in Figures 2 and 3, the head 2 has a first shaft portion 15, a second shaft portion 16, a recessed portion 17, and a protruding portion 18. The first shaft portion 15 is disposed in the first space S1. For example, the first shaft portion 15 is disposed in the front portion of the first space S1. The first shaft portion 15 is disposed in front of the first oscillator 7.
[0033] As shown in Figure 3, first shank 15 is connected to the inner surface 11b of first half 11. First shank 15 extends from the inner surface 11b of first half 11 toward second half 12. First shank 15 may be connected to the inner surface 12b of second half 12 and extend toward first half 11. First shank 15 extends in the left-right direction of lure 1.
[0034] As shown in FIGS. 2 and 3, the second shaft portion 16 is disposed in the first space S1. For example, the second shaft portion 16 is disposed in the rear part of the first space S1. The second shaft portion 16 is disposed behind the first oscillator 7. As shown in FIG. 2, at least a portion of the second shaft portion 16 is disposed inside the recessed portion 17. In this embodiment, a portion of the second shaft portion 16 is disposed inside the recessed portion 17. The entire second shaft portion 16 may also be disposed inside the recessed portion 17.
[0035] As shown in Figure 3, second shank 16 is connected to the inner surface 11b of first half 11. Second shank 16 extends from the inner surface 11b of first half 11 toward second half 12. Second shank 16 may be connected to the inner surface 12b of second half 12 and extend toward first half 11. Second shank 16 extends in the left-right direction of lure 1.
[0036] As shown in Fig. 2, the recess 17 forms a part of the first space S1. The recess 17 opens forward. As shown in Fig. 4, when the head 2 is viewed from the outside in a direction perpendicular to the front-rear direction, the recess 17 overlaps with at least a part of the first connecting structure 5. In this embodiment, when the head 2 is viewed from the outside in the up-down direction, the recess 17 overlaps with a part of the first connecting structure 5. In detail, when the head 2 is viewed from the outside in the up-down direction, the recess 17 overlaps with the front end of a first connecting member 27 (a first plate 28 and a second plate 29) of the first connecting structure 5, which will be described later.
[0037] The recess 17 is provided at the rear of the first oscillator 7. For example, the recess 17 is provided at the rear of the first oscillator 7 when the first half 11 and the second half 12 are joined together. The recess 17 accommodates at least a portion of the second spring 9 therein. In this embodiment, the recess 17 accommodates the rear end of the second spring 9, which engages with the second shaft portion 16, therein.
[0038] As shown in Figures 2 and 3, the protrusion 18 is disposed in the first space S1. The protrusion 18 is connected to the inner surface 11b of the first half 11. The protrusion 18 extends from the inner surface 11b of the first half 11 toward the second half 12. The protrusion 18 may be connected to the inner surface 12b of the second half 12 and extend toward the first half 11. The protrusion 18 extends in the left-right direction of the lure 1. The protrusion 18 is inserted into a hole 7a of the first swinging body 7, which will be described later.
[0039] As shown in Figures 2 and 3, the first oscillator 7 is disposed in the first space S1. For example, the first oscillator 7 is disposed between the first half body 11 and the second half body 12 in the left-right direction (see Figure 3). The first oscillator 7 is disposed between the first shaft portion 15 and the second shaft portion 16 in the front-rear direction. More specifically, the first oscillator 7 is connected to the head 2 via a first spring 8 and a second spring 9 so as to be able to vibrate. The first oscillator 7 is configured to reflect light. The first oscillator 7 may be a fluorescent material.
[0040] As shown in FIGS. 2 and 3, the first oscillator 7 has a hole 7a. The hole 7a penetrates the first oscillator 7. The hole 7a is formed in a circular shape. The inner diameter of the hole 7a is larger than the outer diameter of the protrusion 18. A C-shaped or U-shaped notch may be used instead of the hole 7a. In this case, the inner dimension of the notch in the front-to-rear direction is larger than the outer diameter of the protrusion 18.
[0041] A protrusion 18 is inserted into the hole 7a. When the first oscillator 7 is stationary, the protrusion 18 moves away from the inner edge of the hole 7a. When the amplitude of the first oscillator 7 is excessively large, the protrusion 18 comes into contact with the inner edge of the hole 7a. This suppresses the amplitude of the first oscillator 7. The amplitude of the first oscillator 7 is controlled by the gap between the inner edge of the hole 7a and the outer surface of the protrusion 18.
[0042] As shown in Figures 2 and 3, the first spring 8 supports the first oscillator 7 so that it can vibrate. The first spring 8 is disposed in the first space S1. The first spring 8 is disposed in front of the first oscillator 7. The first spring 8 is connected to the front side of the first oscillator 7. For example, the front end of the first spring 8 is connected to the first shaft portion 15. The rear end of the first spring 8 is connected to the front part of the first oscillator 7. The first spring 8 may be an elastic body other than a spring.
[0043] The second spring 9 supports the first oscillator 7 so that it can vibrate. The second spring 9 is disposed in the first space S1. The second spring 9 is disposed behind the first oscillator 7. The second spring 9 is connected to the rear side of the first oscillator 7. For example, the front end of the second spring 9 is connected to the first oscillator 7. The rear end of the second spring 9 is connected to the second shaft portion 16. The second spring 9 may be an elastic body different from a spring.
[0044] The first spring 8 and the second spring 9 support the first swinging body 7 in a floating state within the first space S1. When the first swinging body 7 moves due to the landing of the lure 1 on the water or the application of movement to the lure 1, the first spring 8 and the second spring 9 are elastically deformed. Thereafter, the first swinging body 7 moves in the opposite direction due to the elastic forces of the first spring 8 and the second spring 9. By repeating the above-mentioned operation, even after the lure 1 has come to a standstill, the first swinging body 7 continues to swing due to the elastic forces of the first spring 8 and the second spring 9.
[0045] As shown in FIG. 2, the fishing line connecting portion 10 is provided on the head 2 for connecting a fishing line. For example, the fishing line connecting portion 10 is formed in an eight shape. The fishing line connecting portion 10 has an attachment portion 10a and a fishing line locking portion 10b. The attachment portion 10a is attached to the front of the head 2 so as to be able to swing. For example, the attachment portion 10a is formed in an annular shape and is attached to the attachment shaft 11c of the first half body 11 so as to be able to swing. The fishing line locking portion 10b is formed integrally with the attachment portion 10a. The fishing line locking portion 10b is also formed in an annular shape.
[0046] 2, the body 3 is connected to the head 2 via a first connecting structure 5, which will be described later. For example, the front part of the body 3 is connected to the rear part of the head 2 via the first connecting structure 5. Details of the first connecting structure 5 will be described later.
[0047] As shown in Fig. 3, the body 3 includes a third half 19 and a fourth half 20. The body 3 is divided into the third half 19 and the fourth half 20 on the left and right sides. The third half 19 and the fourth half 20 are separate bodies. The third half 19 and the fourth half 20 are made of resin.
[0048] The third half body 19 and the fourth half body 20 are joined to each other by welding. For example, the third half body 19 includes a joining surface 19a. The fourth half body 20 includes a joining surface 20a. The joining surfaces 19a, 20a extend in the front-rear direction. The third half body 19 and the fourth half body 20 are joined to each other at the joining surfaces 19a, 20a. For example, the joining surfaces 19a, 20a are joined to each other by ultrasonic welding.
[0049] As shown in Fig. 1, the body 3 has a third slit 30 and a fourth slit 31. The third slit 30 and the fourth slit 31 are provided in the front of the body 3. The third slit 30 and the fourth slit 31 are arranged spaced apart in the up-down direction when the third half body 19 and the fourth half body 20 are joined together. As shown in Fig. 4, a first plate 28 and a second plate 29 of the first connecting structure 5, which will be described later, are arranged in the third slit 30 and the fourth slit 31.
[0050] As shown in Figure 2, the tail section 4 is connected to the body section 3 via a second connecting structure 6, which will be described later. For example, the front part of the tail section 4 is connected to the rear part of the tail section 4 via the second connecting structure 6. Details of the second connecting structure 6 will be described later.
[0051] As shown in Figure 3, the tail section 4 includes a fifth half body 21 and a sixth half body 22. The tail section 4 is divided into the fifth half body 21 and the sixth half body 22 on the left and right sides. The fifth half body 21 and the sixth half body 22 are separate bodies. The fifth half body 21 and the sixth half body 22 are made of resin.
[0052] The fifth half body 21 and the sixth half body 22 are joined to each other by welding. For example, the fifth half body 21 includes a joining surface 21a. The sixth half body 22 includes a joining surface 22a. The joining surfaces 21a, 22a extend in the front-rear direction. The fifth half body 21 and the sixth half body 22 are joined to each other at the joining surfaces 21a, 22a. For example, the joining surfaces 21a, 22a are joined to each other by ultrasonic welding.
[0053] As shown in Fig. 4, the first connecting structure 5 connects the head 2 and the body 3. The first connecting structure 5 connects the head 2 and the body 3 so that the head 2 and the body 3 can swing relative to each other. In this embodiment, the head 2 and the body 3 swing left and right relative to each other.
[0054] The first connecting structure 5 has a first support member 25, a second support member 26, and a first connecting member 27. The first support member 25 is provided on the head 2. For example, the first support member 25 is a shaft member that is long in one direction. The first support member 25 is attached to the rear of the head 2 so that the longitudinal direction of the first support member 25 is arranged in the up-down direction.
[0055] The second support member 26 is provided on the body 3. For example, the second support member 26 is a shaft member that is long in one direction. The second support member 26 is attached to the rear of the head 2 so that the longitudinal direction of the second support member 26 is arranged in the up-down direction. As a result, the second support member 26 is arranged parallel to the first support member 25.
[0056] The first connecting member 27 is supported so as to be able to swing relative to the first support member 25 and the second support member 26. The first connecting member 27 has a first plate 28 and a second plate 29. The first plate 28 has a pair of first insertion holes 28a, 28b. The first support member 25 is inserted into the first insertion hole 28a. The second support member 26 is inserted into the first insertion hole 28b. The second plate 29 has a pair of second insertion holes 29a, 29b. The first support member 25 is inserted into the second insertion hole 29a. The second support member 26 is inserted into the second insertion hole 29b.
[0057] Specifically, first support member 25 is inserted through first insertion hole 28a and second insertion hole 29a, and second support member 26 is inserted through first insertion hole 28b and second insertion hole 29b. In this state, first support member 25 is sandwiched between first half body 11 and second half body 12. Second support member 26 is sandwiched between third half body 19 and fourth half body 20.
[0058] As a result, the front portion of the first plate 28 and the front portion of the second plate 29 are respectively positioned in the first slit 13 and the second slit 14. The rear portion of the first plate 28 and the rear portion of the second plate 29 are respectively positioned in the third slit 30 and the fourth slit 31. In this state, the longitudinal direction of the first support member 25 is arranged in the vertical direction. The longitudinal direction of the second support member 26 is arranged in the vertical direction.
[0059] As shown in Figure 5, the second connecting structure 6 connects the body section 3 and the tail section 4. The second connecting structure 6 connects the body section 3 and the tail section 4 so that the body section 3 and the tail section 4 can swing relative to each other. In this embodiment, the body section 3 and the tail section 4 swing left and right relative to each other.
[0060] The second connecting structure 6 has a third support member 32 and a second connecting member 33. The third support member 32 is provided on the tail section 4. For example, the third support member 32 has a pair of mounting portions 32a, 32b, a first engagement portion 32c, and a second engagement portion 32d. The pair of mounting portions 32a, 32b are attached to the front of the tail section 4.
[0061] The first engagement portion 32c is formed in a U-shape. The first engagement portion 32c is formed integrally with the attachment portion 32a and the second engagement portion 32d. The second engagement portion 32d is also formed in a U-shape. The second engagement portion 32d is formed integrally with the attachment portion 32b and the first engagement portion 32c.
[0062] The second connecting member 33 is supported so as to be able to swing relative to the third support member 32. The second connecting member 33 has a first engaging member 35 and a second engaging member 36. The first engaging member 35 has an attachment portion 35a and a first annular portion 35b.
[0063] The mounting portion 35a is attached to the rear of the body 3. The first annular portion 35b is formed integrally with the mounting portion 35a. The first engaging portion 32c engages with the first annular portion 35b. The second engaging member 36 has a mounting portion 36a and a second annular portion 36b. The mounting portion 36a is attached to the rear of the body 3. The second annular portion 36b is formed integrally with the mounting portion 36a. The second engaging portion 32d engages with the second annular portion 36b.
[0064] Specifically, the third support member 32 is inserted through the first annular portion 35b of the first engagement member 35 and the second annular portion 36b of the second engagement member 36. As a result, the first engagement portion 32c of the third support member 32 engages with the first annular portion 35b of the first engagement member 35, and the second engagement portion 32d of the third support member 32 engages with the second annular portion 36b of the second engagement member 36.
[0065] In this state, the mounting portion 35a of the first engaging member 35 and the mounting portion 36a of the second engaging member 36 are sandwiched between the third half body 19 and the fourth half body 20. The mounting portions 32a, 32b of the third support member 32 are sandwiched between the fifth half body 21 and the sixth half body 22. As a result, the first annular portion 35b of the first engaging member 35 and the second annular portion 36b of the second engaging member 36 are arranged spaced apart in the vertical direction.
[0066] (Variation) The above embodiment can be modified as follows.
[0067] Variation 1 As shown in Fig. 6, the lure 1 may further include a second swinging body 41. The body 3 has a second space S2 inside. The second swinging body 41 is disposed in the second space S2. The second swinging body 41 is swingably connected to the body 3. The body 3 is at least partially light-transmitting. In this embodiment, the body 3 is entirely light-transmitting.
[0068] For example, the second oscillator 41 is disposed between the fifth half body 21 and the sixth half body 22 in the left-right direction. The second oscillator 41 is disposed between the third shaft portion 42 and the fourth shaft portion 43 in the front-rear direction. The second oscillator 41 is configured to reflect light. The second oscillator 41 may be a fluorescent material.
[0069] In detail, the second oscillator 41 is connected to the body 3 so as to be able to vibrate via a third spring 44 and a fourth spring 45. The third spring 44 is connected to the front side of the second oscillator 41. For example, the front end of the third spring 44 is connected to the third shaft portion 42. The rear end of the third spring 44 is connected to the front part of the second oscillator 41. The third spring 44 may be an elastic body other than a spring.
[0070] The fourth spring 45 is connected to the rear side of the second oscillator 41. For example, the front end of the fourth spring 45 is connected to the rear part of the second oscillator 41. The rear end of the fourth spring 45 is connected to the fourth shaft portion 43. The fourth spring 45 may be an elastic body different from a spring.
[0071] Variation 2 As shown in Fig. 7, the lure 1 may further include weights 37a and 37b. The weights 37a and 37b are provided on the first oscillator 7. For example, the weights 37a and 37b are disposed below the first spring 8 and the second spring 9. The weights 37a and 37b are attached to the lower end of the first oscillator 7. The weights allow the first oscillator 7 to easily swing.
[0072] The weights 37a and 37b may be provided on the second oscillator 41 of the above-described modified example 1. In this case, the weights 37a and 37b are disposed below the third spring 44 and the fourth spring 45.
[0073] (Other embodiments) (A) In the above embodiment, an example has been shown in which the lure 1 is composed of a head portion 2, a body portion 3, and a tail portion 4. The lure 1 may be composed of the head portion 2 and the tail portion 4 without using the body portion 3. In this case, the head portion 2 and the tail portion 4 are connected to each other by the first connecting structure 5, as in the above embodiment. Furthermore, the lure 1 may be formed such that the body portion 3 and the tail portion 4 are integrally formed without using the second connecting structure 6. In this case, the head portion 2, the body portion 3, and the tail portion 4 swing relative to each other. [Industrial Applicability]
[0074] According to the present invention, the lure can attract fish effectively. [Explanation of symbols]
[0075] 1. Lure 2 heads 3. Torso 4 Tail 5 First connection structure 6 Second connection structure 7 First oscillator 7a Hole 8 First spring 9 Second spring 10 Fishing line connection 17 Recess 18 Convex part 25 First support member 26 Second support member 27 First connecting member 28 Plate 1 29 Second Plate 32 third support member 33 Second connecting member 41 Second oscillator 44 Third Spring 45 4th spring S1 1st space S2 2nd space
Claims
1. a first body having a first space therein and at least partially transmitting light; a second body connected to the first body via a connecting structure; a first oscillator disposed in the first space and connected to the first body via a connecting portion so as to be capable of oscillation; Equipped with the first body has a recess that accommodates at least a portion of the connection portion therein; the recess and at least a portion of the connecting structure overlap when viewed from a top-bottom direction perpendicular to the front-rear direction of the first body, Lure.
2. The connection portion has a first connection portion connected to a front side of the first oscillator and a second connection portion connected to a rear side of the first oscillator. The lure according to claim 1.
3. The connection portion includes an elastic body. The lure according to claim 1 or 2.
4. a weight provided on the first oscillator; The lure according to any one of claims 1 to 3, further comprising:
5. the first oscillator has a hole, the first body has a protrusion inserted into the hole, The outer diameter of the protrusion is smaller than the inner diameter of the hole. The lure according to any one of claims 1 to 4.
6. The connecting structure includes a first support member provided on the first body, a second support member provided on the second body, and a connecting member supported to be swingable relative to the first support member and the second support member. The lure according to any one of claims 1 to 5.
7. the second body has a second space therein; a second oscillator disposed in the second space and connected to the second body so as to be capable of vibrating; The lure according to any one of claims 1 to 6, further comprising:
8. The second oscillator is configured to reflect light. The lure according to claim 7.
9. The second oscillator is a phosphor. The lure according to claim 7.
10. The first oscillator is configured to reflect light. The lure according to any one of claims 1 to 9.
11. The first oscillator is a phosphor. The lure according to any one of claims 1 to 9.
12. a third body connected to either the first body or the second body; The lure according to any one of claims 1 to 11, further comprising:
13. an annular member provided on the first body for connecting a fishing line; The lure according to any one of claims 1 to 12, further comprising:
Citation Information
Patent Citations
Lure
JP2005218314A
Lure
JP2019187246A
Lure
JP2020191816A
Lure
JP2021061798A
Lure
JP3211458U