Artificial bait
By creating a hollow section within the lure body and sealing it with a filling component, the problem of increased thickness at the line configuration area is solved, preventing water infiltration and corrosion, and improving the lure's movement ability and attraction effect.
Patent Information
- Application Number
- CN202520417703.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-03-13
- Filing Date
- 2025-03-11
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-11
AI Technical Summary
The increased thickness of the line in existing lures leads to poor adhesion, water penetration, corrosion, and changes in the center of gravity, affecting their mobility and attraction.
A hollow section is provided in the lure body, and the hollow section is sealed by a filling component to inhibit water seepage. A counterweight and a vibrator are configured to improve the movement and attraction performance.
It effectively prevents water infiltration, avoids line corrosion and center of gravity shifts, and enhances the lure's movement and attraction in water.
Smart Images

Figure CN223844716U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of lures. BACKGROUND
[0002] A lure is disclosed in Patent Literature 1 in which a wire made of metal is arranged in a lure body. The wire has a plurality of loop portions to which a fishing line or a hook portion can be connected. The lure body is formed by bonding two half-cut bodies.
[0003] [PRIOR ART DOCUMENTS]
[0004] [Patent Literature]
[0005] Patent Literature 1: Japanese Patent Application Publication No. 2023-177270 SUMMARY
[0006] [Problems to be Solved by the Invention]
[0007] In the lure of the prior art, the portion where the wire is arranged is thickened. Therefore, when the lure body is molded, a sink mark can occur at the portion where the thickness is thickened. When the sink mark occurs in the lure body, a case where the half-cut bodies are not bonded well can occur. In the case where the half-cut bodies are not bonded well, water can penetrate into the lure body. To this end, the occurrence of the sink mark can be suppressed by providing a hollow portion at the portion where the thickness is thickened. Therefore, by providing the hollow portion, penetration of water into the lure body can be suppressed. In the lure provided with the hollow portion, for example, the wire is arranged in the hollow portion.
[0008] However, in the case where the wire is arranged in the hollow portion, water can penetrate between the wire and the lure body. When water penetrates between the wire and the lure body, the lure can malfunction. For example, when water penetrates between the wire and the lure body, the wire can be corroded. In addition, when water penetrates between the wire and the lure body, the center of gravity of the lure can change due to the penetrated water. Therefore, when water penetrates between the wire and the lure body, the movement ability of the lure in water can decrease.
[0009] One of the objects of the utility model is to provide a lure in which the occurrence of an adverse condition (malfunction) is suppressed.
[0010] [Means for Solving the Problems]
[0011] According to the first aspect of the utility model, the lure has a lure body, a wire, and a filling member. The lure body is configured to have a hollow portion. The wire has a plurality of loop portions to which a fishing line or a hook portion can be connected and is configured to be arranged in the hollow portion. The filling member fills the hollow portion and is configured to close the hollow portion.
[0012] According to the lure of the first embodiment, a hollow portion for configuring the line is provided in the lure body, thereby preventing shrinkage marks from forming in the lure body, for example, during lure body molding. By sealing the hollow portion with a filling member, the lure can prevent water from seeping into the hollow portion. Therefore, the lure can prevent the occurrence of adverse conditions. For example, by preventing water from seeping into the hollow portion, the lure can prevent corrosion of the line. In addition, by preventing water from seeping into the hollow portion, the lure can prevent changes in the lure's center of gravity. Therefore, the lure can prevent a decrease in its movement ability in water.
[0013] According to the first embodiment, in the lure of the second embodiment, the filling component is configured as an opening that fills the hollow portion.
[0014] According to the second design, the lure can prevent water from seeping in through the opening in the hollow section. Therefore, the lure can prevent adverse conditions from occurring. For example, it can prevent corrosion of the line. Furthermore, it can prevent a decrease in the lure's movement ability in water.
[0015] According to the first embodiment, in the lure of the third embodiment, the filling component is configured to fill the entire hollow part.
[0016] According to the third embodiment, the lure can suppress water penetration into the hollow portion. For example, even if water penetrates into the opening of the hollow portion, the lure can still prevent water from seeping into the hollow portion from the opening. Therefore, the lure can prevent adverse conditions from occurring. For example, the lure can suppress corrosion of the wire. In addition, the lure can prevent a decrease in the lure's mobility in water.
[0017] According to any of the first to third embodiments, in the lure of the fourth embodiment, the hollow portion includes a first hollow portion and a second hollow portion. The second hollow portion is configured to be isolated from the first hollow portion by a partition wall. The wire is configured to be disposed in the second hollow portion. The filling component is configured to fill the second hollow portion.
[0018] According to the fourth embodiment, the lure can suppress water seepage into the second hollow portion where the line is located. By suppressing water seepage into the second hollow portion, the lure can also suppress water seepage from the second hollow portion into the first hollow portion. Therefore, the lure can suppress the occurrence of adverse conditions. For example, by suppressing water seepage into the second hollow portion, the lure can suppress corrosion of the line located in the second hollow portion. By suppressing water seepage into the second hollow portion, the lure can suppress changes in its center of gravity. By suppressing water seepage into the first hollow portion, the lure can suppress changes in its center of gravity. Therefore, the lure can prevent a decrease in its movement ability in water.
[0019] According to the fourth embodiment, the lure of the fifth embodiment has a counterweight. The counterweight is disposed in the first hollow portion and configured to move within the first hollow portion.
[0020] According to the 5th aspect, the lure according to the 6th aspect has an urging portion. The urging portion urges the weight portion to the ring portion side of the plurality of ring portions to which the fishing line can be connected.
[0021] According to the 5th aspect, the lure according to the 6th aspect has an urging portion. The urging portion urges the weight portion to the ring portion side of the plurality of ring portions to which the fishing line can be connected.
[0022] According to the 6th aspect, the lure can suppress the urging of the urging portion to the weight portion from being hindered by suppressing the water from entering the 1st hollow portion. Thus, in a case where the lure is in the water, the lure can hold the weight portion to the ring portion side to which the fishing line is connected by the urging portion. Thus, the lure can suppress a decrease in the movement ability of the lure in the water.
[0023] According to the 4th aspect, the lure according to the 7th aspect has a vibration body. The vibration body is disposed in the 1st hollow portion and configured to be connected to the lure body in a vibratable manner. The lure body is configured in such a manner that light transmits through the 1st hollow portion. The vibration body is configured in such a manner that light is reflected.
[0024] According to the 7th aspect, the lure can suppress the operation of the vibration body from being hindered by suppressing the water from entering the 1st hollow portion. For example, in a case where the water enters the 1st hollow portion, the vibration of the vibration body can be hindered by the water. In addition, in a case where the water that has entered the 1st hollow portion evaporates and a component contained in the water adheres to the vibration body or the like, the vibration of the vibration body can be hindered. The lure can suppress the vibration of the vibration body from being hindered by suppressing the water from entering the 1st hollow portion. Thus, the lure can attract a living organism that is a capture target well. The lure can suppress a case where light reflection is hindered by suppressing the water from entering the 1st hollow portion. For example, the lure can suppress a decrease in the reflectance of the vibration body. In addition, the lure can suppress a decrease in the transmittance of light caused by the lure body. Thus, the lure can attract a living organism that is a capture target well.
[0025] In the lure according to the 1st to 7th aspects, in the lure according to the 8th aspect, the lure body is made of resin.
[0026] According to the 8th aspect, in a case where the lure body made of resin is molded, the lure can suppress a sink mark from being generated in the lure body. The lure can suppress the water from entering the hollow portion formed in the lure body made of resin. Thus, the lure can suppress the occurrence of a bad case.
[0027] [Invention effect]
[0028] According to the artificial bait of the present application, occurrence of adverse situations can be suppressed. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 is a side view of the artificial bait according to the first embodiment.
[0030] Figure 2 is a side view of the artificial bait according to the first embodiment, after the second half body is detached.
[0031] Figure 3 is a plan view of the artificial bait according to the first embodiment.
[0032] Figure 4 is a side view of the first half body as viewed from the second half body.
[0033] Figure 5 is a side view of the second half body as viewed from the first half body.
[0034] Figure 6 is a side view of the artificial bait according to the first embodiment, after the second half body and the filling member are detached.
[0035] Figure 7 is a VII-VII sectional view of Figure 1
[0036] Figure 8 is a sectional view corresponding to Figure 7 of the artificial bait according to the modified example.
[0037] Figure 9 is a side view of the artificial bait according to the modified example, after the second half body is detached.
[0038] Figure 10 is a side view of the artificial bait according to the second embodiment, after the second half body is detached.
[0039] [Explanation of reference numerals]
[0040] 2: bait; 4: bait body; 6: wire; 8: filling member; 10: weight portion; 14: hollow portion; 16: first hollow portion; 18: second hollow portion; 20: first half split body; 20a: joint surface; 22: first recess; 24: second recess; 24a: first groove portion; 24b: second groove portion; 24c: third groove portion; 36a: first communication hole; 36b: second communication hole; 36c: third communication hole; 50: second half split body; 50a: joint surface; 52: first recess; 54: second recess; 54a: first groove portion; 54b: second groove portion; 54c: third groove portion; 66a: first communication hole; 66b: second communication hole; 66c: third communication hole; 80: first communication hole; 82: second communication hole; 84: third communication hole; 90: ring portion; 90a: first ring portion; 90b: second ring portion; 90c: third ring portion; 92: connecting portion; 100: main body portion; 102: first mounting portion; 104: second mounting portion; 106: shaft; 110a: opening portion; 110b: opening portion; 110c: opening portion; 120: bait; 122: vibrating body; 124: bait body; 142: first half split body. DETAILED DESCRIPTION
[0041] (First Embodiment)
[0042] Reference Figures 1-7 The bait 2 according to the first embodiment is described. The bait 2 is, for example, a bait for catching large fish (fish eaters) that prey on small fish. The large fish include largemouth bass, barracuda, juvenile barracuda, and sea bass. The bait 2 is shaped to imitate a small fish.
[0043] Further, in the present specification, the following terms indicating directions, "front", "rear", "front direction (front side)", "rear direction (rear side)", "left", "right", "left direction", "right direction", "up", "down", "upper direction", and "lower direction", and any other similar terms indicating directions are defined as follows.
[0044] "Front" and "front direction (front side)" indicate a traveling direction in which the bait 2 is drawn by a fishing line and travels in the bait 2 connected to the fishing line. "Rear" and "rear direction (rear side)" are directions opposite to the traveling direction. The "front-rear direction" corresponds to a lengthwise direction of the bait 2.
[0045] "Up" and "upper direction" indicate a direction toward a water surface in a state in which the bait 2 travels forward in water. "Down" and "lower direction" indicate a direction toward a water bottom in a state in which the bait 2 travels forward in water. "Left", "left direction", "right", and "right direction" are defined based on "up" and "down".
[0046] As Figure 1As shown, the decoy 2 has a decoy body 4 and a wire 6. As Figure 2 As shown, the decoy 2 has a filling member 8. The decoy 2 has a weight portion 10. The decoy 2 has a force applying portion 12.
[0047] As Figure 1 As shown, the decoy body 4 is formed to extend in the front-rear direction. The decoy body 4 is configured to have a hollow portion 14. The hollow portion 14 includes a first hollow portion 16 and a second hollow portion 18. The decoy body 4 is made of resin. As Figure 3 As shown, the decoy body 4 includes a first half 20 and a second half 50. The decoy body 4 is divided into the first half 20 and the second half 50 in the left-right direction.
[0048] As Figure 4 As shown, the first half 20 is formed with a first recess 22 and a second recess 24. Each recess 22, 24 is formed in a manner of being recessed toward the right from the side of the second half 50 (see Figure 3 ).
[0049] The first recess 22 is provided with a first support portion 26, a second support portion 28, and a pressing plate 30. The first support portion 26 protrudes from an inner side surface 22a of the first recess 22 toward the second half 50 (see Figure 3 ). The first support portion 26 is formed with a first insertion hole 32. The first insertion hole 32 is, for example, a semicircular shape when the first support portion 26 is viewed from the front-rear direction.
[0050] The second support portion 28 is provided at a position further toward the rear than the first support portion 26. The second support portion 28 protrudes from the inner side surface 22a of the first recess 22 toward the second half 50 (see Figure 3 ). The second support portion 28 is formed with a second insertion hole 34. The second insertion hole 34 is, for example, a semicircular shape when the second support portion 28 is viewed from the front-rear direction.
[0051] The pressing plate 30 is provided between the first support portion 26 and the second support portion 28. The pressing plate 30 protrudes from the inner side surface 22a of the first recess 22 toward the second half 50 (see Figure 3 ).
[0052] The second recess 24 includes a first groove portion 24a, a second groove portion 24b, and a third groove portion 24c. The first groove portion 24a is formed at a position further toward the front than the first recess 22. The first groove portion 24a is formed at a front end side of the first half 20. The first groove portion 24a is communicated with the outside through a first communication hole 36a. The first communication hole 36a is formed in a manner of extending toward the front from the first groove portion 24a.
[0053] The second groove 24b is formed at a position rearward than the first recess 22. The second groove 24b is formed on the rear end side of the first half-section 20. The second groove 24b communicates with the outside through the second connecting hole 36b. The second connecting hole 36b is formed in such a way that it extends rearward from the second groove 24b.
[0054] The third groove 24c is formed at a position lower than the first recess 22. The third groove 24c extends in the front-rear direction. The third groove 24c communicates with the first groove 24a and the second groove 24b. The third groove 24c communicates with the outside through a third connecting hole 36c. The third connecting hole 36c is formed such that it extends downward from the third groove 24c. Multiple third connecting holes 36c may be formed in the front-rear direction.
[0055] The first half-section 20 includes a mating surface 20a. The mating surface 20a is formed along the periphery of the first recess 22. The mating surface 20a is also formed along the periphery of the second recess 24, the first connecting hole 36a, the second connecting hole 36b, and the third connecting hole 36c.
[0056] like Figure 5 As shown, a first recess 52 and a second recess 54 are formed in the second half 50. Each recess 52, 54 extends from the first half 20 (see reference 20). Figure 3 It is formed by a concave shape to the left.
[0057] A first support portion 56, a second support portion 58, and a pressure plate 60 are provided in the first recess 52. The first support portion 56 extends from the inner side surface 52a of the first recess 52 towards the first half-section 20 (see reference). Figure 3 The first support portion 56 is provided at the first support portion 26 provided with the first half-body 20 (refer to...). Figure 3 The relative positions. A first insertion hole 62 is formed in the first support portion 56. When the first support portion 56 is viewed from the front and rear directions, the first insertion hole 62 is, for example, semi-circular in shape.
[0058] The second support portion 58 is located further rearward than the first support portion 56. The second support portion 58 extends from the inner side surface 52a of the first recess 52 towards the first half-section 20 (see reference). Figure 3 The second support portion 58 is provided at the second support portion 28 provided with the first half-body 20 (refer to...). Figure 3 The relative positions. A second insertion hole 64 is formed in the second support portion 58. When viewed from the front and rear directions, the second insertion hole 64 is, for example, semi-circular in shape.
[0059] A pressure plate 60 is disposed between the first support portion 56 and the second support portion 58. The pressure plate 60 extends from the inner side surface 52a of the first recess 52 towards the first half-section 20 (see reference). Figure 3) is set to a position opposite to the pressing plate 30 (refer to Figure 3 ) set to the first half-cut body 20.
[0060] The second recess 54 includes a first groove portion 54a, a second groove portion 54b, and a third groove portion 54c. The first groove portion 54a is formed at a position further forward than the first recess 52. The first groove portion 54a is formed at the front end side of the second half-cut body 50. The first groove portion 54a communicates with the outside through a first communication hole 66a. The first communication hole 66a is formed so as to extend forward from the first groove portion 54a.
[0061] The second groove portion 54b is formed at a position further rearward than the first recess 52. The second groove portion 54b is formed at the rear end side of the second half-cut body 50. The second groove portion 54b communicates with the outside through a second communication hole 66b. The second communication hole 66b is formed so as to extend rearward from the second groove portion 54b.
[0062] The third groove portion 54c is formed at a position further downward than the first recess 52. The third groove portion 54c is formed so as to extend in the front-rear direction. The third groove portion 54c communicates with the first groove portion 54a and the second groove portion 54b. The third groove portion 54c communicates with the outside through a third communication hole 66c. The third communication hole 66c is formed so as to extend downward from the third groove portion 54c. The third communication hole 66c can be formed in a plurality in the front-rear direction.
[0063] The second half-cut body 50 includes a joint surface 50a. The joint surface 50a is formed along the periphery of the first recess 52. The joint surface 50a is formed along the periphery of the second recess 54, the first communication hole 66a, the second communication hole 66b, and the third communication hole 66c.
[0064] The first half-cut body 20 (refer to Figure 3 ) and the second half-cut body 50 are joined by ultrasonic welding. The first half-cut body 20 and the second half-cut body 50 can also be joined by adhesion. The first half-cut body 20 and the second half-cut body 50 are joined to each other at the joint surfaces 20a (refer to Figure 4 ), 50a. By being joined to each other at the joint surfaces 20a, 50a, the first half-cut body 20 and the second half-cut body 50 form the first hollow portion 16 and the second hollow portion 18 as shown in Figure 1 . The first hollow portion 16 is formed by the first recess 22 (refer to Figure 4 ) of the first half-cut body 20 and the first recess 52 (refer to Figure 5 ) of the second half-cut body 50. The second hollow portion 18 is formed by the second recess 24 (refer to Figure 4 ) of the first half-cut body 20 and the second recess 54 (refer to Figure 5) is formed. The second hollow portion 18 is partitioned from the first hollow portion 16 by the partition wall 4a. The partition wall 4a partitions the first hollow portion 16 from the second hollow portion 18 in front of the first hollow portion 16, below the first hollow portion 16, and behind the first hollow portion 16.
[0065] By joining the first half 20 and the second half 50, the first communication hole 36a (refer to Figure 4 ), 66a (refer to Figure 5 ) forms the first communication hole 80 (refer to Figure 4 , Figure 5 ). By joining the first half 20 and the second half 50, the second communication hole 36b (refer to Figure 4 ), 66b (refer to Figure 5 ) forms the second communication hole 82 (refer to Figure 4 , Figure 5 ). By joining the first half 20 and the second half 50, the third communication hole 36c (refer to Figure 4 ), 66c (refer to Figure 5 ) forms the third communication hole 84 (refer to Figure 4 , Figure 5 ).
[0066] As shown in Figure 6 , the wire 6 has a plurality of loop portions 90. The wire 6 has a connection portion 92. The wire 6 is made of metal. For example, the wire 6 is a plate-like member. The wire 6 can also be a wire-like material. The wire 6 is configured to be disposed in the second hollow portion 18.
[0067] The plurality of loop portions 90 can connect a fishing line or a hook portion. The plurality of loop portions 90 includes a first loop portion 90a, a second loop portion 90b, and a third loop portion 90c. Each loop portion 90a to 90c is disposed so that at least a portion thereof is exposed from the lure body 4.
[0068] The first loop portion 90a is disposed on the front end side of the lure 2. A portion of the first loop portion 90a is disposed in the first communication hole 80. A fishing line is connected to the first loop portion 90a. The second loop portion 90b is disposed on the rear end side of the lure 2. A portion of the second loop portion 90b is disposed in the second communication hole 82. A hook portion is connected to the second loop portion 90b. The third loop portion 90c is disposed on the lower end side of the lure 2. The third loop portion 90c is disposed between the first loop portion 90a and the second loop portion 90b. A portion of the third loop portion 90c is disposed in the third communication hole 84 and the third groove portion 24c (refer to Figure 4 ), 54c (refer to Figure 5 ). A hook portion is connected to the third loop portion 90c. The third loop portion 90c can be provided in a plurality in the front-rear direction.
[0069] The connection portions 92 connect the plurality of ring portions 90. The connection portions 92 are formed so as to extend in the front-rear direction. The connection portions 92 are provided to the second hollow portion 18. A part of the front end side of the connection portions 92 is provided to the first communication hole 80. A part of the rear end side of the connection portions 92 is provided to the second communication hole 82.
[0070] As shown in Figure 7 , the filling member 8 is configured to fill the second hollow portion 18. The filling member 8 is a member having waterproofness. The filling member 8 is silicone, epoxy resin, or the like. The filling member 8 is filled so as to cover the connection portions 92 provided to the second hollow portion 18. The filling member 8 is configured to close the second hollow portion 18. As shown in Figure 2 , the filling member 8 is configured to fill the entire second hollow portion 18.
[0071] As shown in Figure 2 , the weight portion 10 is disposed to the first hollow portion 16. The weight portion 10 is configured to move within the first hollow portion 16. The weight portion 10 has a main body portion 100, a first mounting portion 102, and a second mounting portion 104.
[0072] As shown in Figure 7 , the main body portion 100 is disposed to a position lower than the pressure plates 30, 60. As shown in Figure 2 , the first mounting portion 102 is formed so as to protrude upward from the main body portion 100. The first mounting portion 102 is provided to the front end side of the main body portion 100. A through hole is formed in the first mounting portion 102. The through hole penetrates the first mounting portion 102 in the front-rear direction. The second mounting portion 104 is formed so as to protrude upward from the main body portion 100. The second mounting portion 104 is provided to a position further rearward than the first mounting portion 102. A through hole is formed in the second mounting portion 104. The through hole penetrates the second mounting portion 104 in the front-rear direction.
[0073] The shaft 106 is inserted into each of the through holes. The shaft 106 is formed so as to extend in the front-rear direction. The front end side of the shaft 106 is inserted into the first insertion hole 32 of the first support portion 26 and the first insertion hole 62 (refer to Figure 5 ) of the first support portion 56 (refer to Figure 5 ). The rear end side of the shaft 106 is inserted into the second insertion hole 34 of the second support portion 28 and the second insertion hole 64 (refer to Figure 5 ) of the second support portion 58 (refer to Figure 5 ). The shaft 106 is supported by the first support portions 26, 56 and the second support portions 28, 58. The weight portion 10 is movable in the front-rear direction along the shaft 106.
[0074] The urging portion 12 urges the weight portion 10 toward the 1st ring portion 90a, to which the fishing line can be connected, among the plurality of ring portions 90. The urging portion 12 is a compression coil spring. The shaft 106 is inserted into the urging portion 12. The urging portion 12 is inserted into the through hole of the 2nd mounting portion 104. The front end of the urging portion 12 abuts against the 1st mounting portion 102. The rear end of the urging portion 12 abuts against the 2nd support portion 28, 58 (see FIG. 6). Alternatively, the front end of the urging portion 12 can abut against the 2nd mounting portion 104. Figure 5
[0075] When the lure 2 is cast, the weight portion 10 moves rearward against the urging force of the urging portion 12 due to inertia. When the lure 2 enters the water, the weight portion 10 moves forward by the urging force of the urging portion 12. The weight portion 10 is held in the forward direction by the urging force of the urging portion 12 in the water. When the weight portion 10 swings upward, the main body portion 100 abuts against the pressure plates 30, 60. That is, the weight portion 10 is restricted from moving upward by the pressure plates 30, 60. Thus, the flexing of the shaft 106 can be suppressed. The pressure plates 30, 60 are provided in a manner extending in the front-rear direction so that the weight portion 10 can move in the front-rear direction even when the weight portion 10 swings upward.
[0076] Next, a manufacturing method of the lure 2 will be described. The 1st half 20 and the 2nd half 50 are manufactured, for example, by injection molding, respectively. The 2nd recess 24 is formed in the 1st half 20. Thereby, in the 1st half 20, the portion where the wire 6 is disposed is not thickened in thickness. Thus, in the 1st half 20, the occurrence of sink marks at the portion where the wire 6 is disposed can be suppressed. Also, the 2nd recess 54 is formed in the 2nd half 50. Thereby, in the 2nd half 50, the portion where the wire 6 is disposed is not thickened in thickness. Thus, in the 2nd half 50, the occurrence of sink marks at the portion where the wire 6 is disposed can be suppressed. That is, the 2nd recesses 24, 54 are thinning portions (reduced adhesive) for suppressing the occurrence of sink marks.
[0077] The filling member 8 and the wire 6 are integrated by overmolding the filling member 8 on the outer periphery of the wire 6. Alternatively, the filling member 8 can be integrated by being adhered to the wire 6.
[0078] For example, the wire 6 and the filling member 8 are disposed in the 2nd recess 24 of the 1st half 20. Also, the weight portion 10 and the like are disposed in the 1st recess 22 of the 1st half 20. Then, the lure 2 is manufactured by joining the 1st half 20 and the 2nd half 50.
[0079] Alternatively, the wire 6 may not be integrated with the filling member 8, but may be disposed, for example, in the second recess 24 of the first half 20. In this case, the first half 20 and the second half 50 are joined with the wire 6 disposed in the second recess 24. Then, the filling member 8 is filled into the second hollow portion 18 formed by the joined first half 20 and second half 50. That is, after the first half 20 and the second half 50 are assembled, the filling member 8 fills the second hollow portion 18. The filling member 8 fills the second hollow portion 18 from at least one of the first connecting hole 80, the second connecting hole 82, and the third connecting hole 84.
[0080] Alternatively, the filler component 8 can also be formed by double molding (two-color molding) with the first half 20 and the second half 50. In this case, a portion of the filler component 8 is double-molded in the second recess 24 of the first half 20. Additionally, a portion of the filler component 8 is double-molded in the second recess 54 of the second half 50. The wire 6 is disposed, for example, on the filler component 8 formed in the first half 20. Then, the first half 20 and the second half 50 are joined. Preferably, after the first half 20 and the second half 50 are joined, the filler component 8 is injected from at least one of the first connecting hole 80, the second connecting hole 82, and the third connecting hole 84.
[0081] In addition, such as Figure 8 As shown, preferably, the filler 8 is formed such that the welded surface 8a of the filler 8 is offset from the center line P of the line 6 in the left-right direction. If the welded surface of the filler 8 is aligned with the center line P of the line 6 in the left-right direction, for example, when a fish bites the hook and a force is applied to the line 6 in the up-down direction, the force applied to the line 6 acts directly on the welded surface of the filler 8. In contrast, by forming the filler 8 such that the welded surface 8a of the filler 8 is offset from the center line P of the line 6 in the left-right direction, the lure 2 can reduce the force applied to the welded surface 8a of the filler 8. That is, by setting the welded surface 8a of the filler 8 to be offset from the center line P of the line 6 in the left-right direction, the lure 2 can improve the holding strength of the line 6. Alternatively, the filler 8 can be formed such that the welded surface 8a of the filler 8 is located outside the area projected downwards from the line 6 in the left-right direction.
[0082] like Figure 9 As shown, the filling member 8 can also fill the openings 110a to 110c of the second hollow portion 18. The opening 110a includes the front end portion of the first groove 24a of the first half-body 20. The opening 110a includes the portion of the first groove 24a of the first half-body 20 that communicates with the first communicating hole 36a. The opening 110a includes the first groove 54a of the second half-body 50 (see reference). Figure 5) and the 1st communication hole 66a (refer to Figure 5 ) of the 1st half-cut 20. That is, the opening portion 110a includes a portion that communicates with the 2nd communication hole 82 (refer to Figure 4 、 Figure 5 ) of the 1st half-cut 20. The filling member 8 is provided in a manner to close the portion in the 2nd hollow portion 18 that communicates with the 2nd communication hole 82.
[0083] The opening portion 110b includes the 2nd groove portion 24b of the 1st half-cut 20 on the rear end side. The opening portion 110b includes a portion in the 2nd groove portion 24b of the 1st half-cut 20 that communicates with the 2nd communication hole 36b. The opening portion 110b includes a portion in the 2nd groove portion 54b (refer to Figure 5 ) of the 2nd half-cut 50 that communicates with the 2nd communication hole 66b (refer to Figure 5 ). That is, the opening portion 110b includes a portion that communicates with the 2nd communication hole 82 (refer to Figure 4 、 Figure 5 ) of the 1st half-cut 20. The filling member 8 is provided in a manner to close the portion in the 2nd hollow portion 18 that communicates with the 2nd communication hole 82.
[0084] The opening portion 110c includes a portion in the 3rd groove portion 24c of the 1st half-cut 20 that communicates with the 3rd communication hole 36c. The opening portion 110c includes a portion in the 3rd groove portion 54c (refer to Figure 5 ) of the 2nd half-cut 50 that communicates with the 3rd communication hole 66c (refer to Figure 5 ). That is, the opening portion 110c includes a portion that communicates with the 3rd communication hole 84 (refer to Figure 4 、 Figure 5 ) of the 1st half-cut 20. The filling member 8 is provided in a manner to close the portion in the 2nd hollow portion 18 that communicates with the 3rd communication hole 84.
[0085] The 2nd hollow portion 18 can also include the 1st communication hole 80, the 2nd communication hole 82, and the 3rd communication hole 84. The filling member 8 can also fill the 1st communication hole 80, the 2nd communication hole 82, and the 3rd communication hole 84.
[0086] (2nd Embodiment)
[0087] Referring to Figure 10 , the dummy bait 120 related to the 2nd embodiment will be described. The description of the same structure as the 1st embodiment will be omitted.
[0088] The dummy bait 120 has a vibrating body 122. The vibrating body 122 is disposed in the 1st hollow portion 16. The vibrating body 122 is disposed closer to the pressure plate 30, 60 (refer to Figure 7The vibrator 122 is plate-shaped and designed to reflect light. It extends in the front-to-back direction and is connected to the lure 124 in a vibratory manner. The vibrator 122 is connected to the lure 124 via a first spring 126 and a second spring 128. The first spring 126 connects the front end of the vibrator 122 to the first shaft portion 130 of the lure 124. The second spring 128 connects the rear end of the vibrator 122 to the second shaft portion 132 of the lure 124. A hole 122a is formed in the vibrator 122. The hole 122a extends through the vibrator 122 in the left-to-right direction. A protrusion 134 of the lure 124 is inserted into the hole 122a. The hole 122a is, for example, circular. The diameter of the hole 122a is larger than the diameter of the protrusion 134. The shape of the hole 122a is not limited to a circle. The hole 122a and the protrusion 134 are formed such that, when the vibrating body 122 is stationary, the inner edge of the hole 122a does not contact the protrusion 134. When the amplitude of the vibrating body 122 is too large, the inner edge of the hole 122a contacts the protrusion 134. This suppresses the amplitude of the vibrating body 122. A counterweight 140 is mounted on the vibrating body 122. The counterweight 140 is mounted on the lower side of the vibrating body 122. The counterweight 140 extends in the front-rear direction.
[0089] The first shaft portion 130 extends, for example, from the inner surface 144a of the first recess 144 of the first half-body 142 toward the second half-body 50 (see reference). Figure 3 The first shaft portion 130 is positioned forward of the vibrator 122. The second shaft portion 132 protrudes, for example, from the inner surface 144a of the first recess 144 of the first half-section 142 toward the second half-section 50. The second shaft portion 132 is positioned rearward of the vibrator 122. A protrusion 134 is provided between the first shaft portion 130 and the second shaft portion 132. The protrusion 134 protrudes from the inner surface 144a of the first recess 144 toward the second half-section 50. The first shaft portion 130, the second shaft portion 132, and the protrusion 134 may also be provided in the second half-section 50. When the first shaft portion 130, the second shaft portion 132, and the protrusion 134 are provided in the second half-section 50, the first shaft portion 130, the second shaft portion 132, and the protrusion 134 protrude toward the first half-section 142.
[0090] The lure body 124 is configured such that light can pass through the first hollow portion 16. At least one of the first half-body 142 and the second half-body 50 is configured to be light-transmitting. At least one of the first half-body 142 and the second half-body 50 is made of transparent or translucent resin. For example, the first half-body 142 and the second half-body 50 are made of transparent or translucent resin.
[0091] The dummy bait 120 can also have the vibrating body 122 without the weight portion 10. The surface of the dummy bait body 4, 124 can also be decorated by painting, printing, pasting cloth, or the like. The decoration of the surface of the dummy bait body 4, 124 is preferably translucent.
[0092] The expression "at least one" used in the present specification means "one or more of desired options". As an example, the expression "at least one" used in the present specification means "only one option" or "both of two options" if the number of options is two. As another example, the expression "at least one" used in the present specification means "only one option" or "a combination of two or more arbitrary options" if the number of options is three or more.
Claims
1. A lure characterized by comprising a lure body, a wire, and a filling member, wherein the lure body is configured to have a hollow portion; the wire has a plurality of ring portions to which a fishing line or a hook portion is connectable and is configured to be disposed in the hollow portion; the filling member fills the hollow portion and is configured to close the hollow portion.
2. The lure according to claim 1, characterized in that the filling member is configured to fill an opening portion of the hollow portion.
3. The lure according to claim 1, characterized in that the filling member is configured to fill the entire hollow portion.
4. The lure according to claim 1, characterized in that the hollow portion includes a first hollow portion and a second hollow portion, wherein the second hollow portion is configured to be isolated from the first hollow portion by a partition wall, the wire is configured to be disposed in the second hollow portion, the filling member is configured to fill the second hollow portion.
5. The lure according to claim 4, characterized by comprising a weight portion that is disposed in the first hollow portion and is configured to move within the first hollow portion.
6. The lure according to claim 5, characterized by comprising an urging portion that urges the weight portion toward a ring portion of the plurality of ring portions to which the fishing line is connectable.
7. The lure according to claim 4, characterized by comprising a vibration body that is disposed in the first hollow portion and is configured to be connected to the lure body in a vibratable manner, the lure body is configured in such a manner that light transmits through the first hollow portion, the vibration body is configured in such a manner that light is reflected.
8. The lure according to claim 1, characterized in that the lure body is made of a resin.
Citation Information
Patent Citations
Fishing lure
JP2023177270A