Lure
By designing an undivided shaft structure and a matching half-body structure in the bait, the problems of high deformation and assembly accuracy of existing baits during loading are solved, and high assembling and effective fish-eating seduction effect are achieved.
Patent Information
- Application Number
- CN202110914409.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2020-08-26
- Filing Date
- 2021-08-10
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2041-08-10
AI Technical Summary
When the existing bait loads externally, the main body deforms and may cause the docking part to be offset, hindering the action of the built-in mechanism, and the assembly accuracy requirements are high, resulting in a decrease in assembleability.
A bait is designed, and its main body is composed of the first half and the second half. The shaft is not divided, but is mounted in the cavity through the structure of the rod part, the flange part and the protruding part. The shaft hole of the first half and the base of the second half and the bearing hole are used in conjunction to ensure the stable installation of the shaft.
The bait will not cause the docking part to be offset when loading, avoid hindering the movement of the built-in mechanism, and there is no need for high-precision docking during assembly, which improves assemblyability and effectively attracts fish-eating fish.
Smart Images

Figure CN114097722B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a fishing lure. Background Art
[0002] Large fish such as largemouth bass, yellowtail and its juveniles, and sea bass prey on small fish. These large fish are called piscivorous fish. As a means of catching piscivorous fish, a lure fishing method (lure fishing method) is becoming popular. In the lure fishing method, a lure that mimics bait such as small fish is used. The lure is thrown and flies through the air and finally falls into the water. By winding the fishing line, the lure swims in the water. The piscivorous fish that mistake the lure for bait bite the lure. The hook attached to the lure pierces the piscivorous fish, and thus the piscivorous fish is caught. The frequency at which piscivorous fish bite the lure is called the hook-up rate.
[0003] In order to improve the hook-up rate, in recent years, various mechanisms have been incorporated into lures. For example, Japanese Patent Application Laid-Open No. 2019-187246 discloses a lure in which a cavity is provided inside a transparent main body (bait body), and a swinging portion for reflecting light is provided in the cavity. In this lure, when the swinging portion swings, the state of light reflection changes, thereby attracting piscivorous fish. Another lure has a rattle ball in the cavity. When the lure moves, the ball rolls and makes a sound, thereby attracting piscivorous fish. Various lures with built-in mechanisms are disclosed in the "2019 Shimano Fishing Equipment Catalog" published by Shimano Inc.
[0004] [Prior Art Documents]
[0005] [Patent Documents]
[0006] Patent Document 1: Japanese Patent Application Laid-Open No. 2019-187246
[0007] [Non-Patent Documents]
[0008] Non-Patent Document 1: "2019 Shimano Fishing Equipment Catalog" published by Shimano Inc., Japan Summary of the Invention
[0009] [Technical Problems to be Solved by the Invention]
[0010] Some fishing lures with a cavity inside the body sometimes have an axis extending left and right within the cavity. For example, in the fishing lure of the third embodiment of Japanese Patent Application Laid-Open No. 2019-187246, there is a boom (axis) passing through a hole provided in the swing part in the left-right direction. When assembling the fishing lure, a first half part and a second half part in a shape obtained by dividing the body of the fishing lure into two along the left and right are prepared. Usually, the axis is divided in the center, one part is formed integrally with the first half part, and the other part is formed integrally with the second half part. The first half part and the second half part are fitted together in such a way that the front ends of the divided axes are butted against each other, thus completing the fishing lure. However, in this fishing lure, when an external load is applied, the body deforms, which may cause the butted part to shift. This will hinder the operation of the built-in mechanism. For example, in the fishing lure of Japanese Patent Application Laid-Open No. 2019-187246, the shift of the butted part will hinder the swing of the swing part. Using this fishing lure cannot effectively attract predatory fish. Moreover, in the butted part, due to the requirement of high positional accuracy, the assemblability of the fishing lure will decrease.
[0011] An object of the present invention is to provide a fishing lure having excellent assemblability and capable of attracting predatory fish.
[0012] [Technical solutions for solving technical problems]
[0013] The fishing lure according to the present invention has a body and an axis. The body has a first half part and a second half part, and has a structure in which the first half part and the second half part are fitted together. The inside of the body has a cavity. The axis is installed between the first half part and the second half part within the cavity. The axis has a rod part, a flange part, and a protrusion part. The flange part is connected to the first end of the rod part. The protrusion part protrudes from the flange part toward the side opposite to the rod part (the direction opposite to the rod part). The first half part has a shaft hole on its inner surface. The second half part has a pedestal and a bearing hole. The pedestal protrudes from the inner surface. The bearing hole is recessed from the surface of the pedestal. The second end of the rod part is inserted into the shaft hole, the protrusion part is inserted into the bearing hole, and the flange part is in contact with the pedestal.
[0014] Preferably, the size of the surface of the pedestal in contact with the flange part is greater than or equal to the size of the surface of the flange part in contact with the pedestal.
[0015] Preferably, the shaft hole has an inclined part and an equal-diameter part. The diameter of the inclined part gradually narrows from the opening toward the depth direction. The equal-diameter part is continuous with the inclined part and has a constant diameter.
[0016] Preferably, the diameter of the equal-diameter part is greater than the diameter of the rod part.
[0017] Preferably, the center line of the rod portion coincides with the center line of the protrusion portion.
[0018] Preferably, the diameter of the protrusion portion is smaller than the diameter of the rod portion.
[0019] Preferably, the fishing lure has a luminous swinging portion which has a hole through which the shaft passes and is movably mounted in the cavity on the main body, and the main body can visually confirm the light from the swinging portion from the outside.
[0020] Preferably, the swinging portion can still move after the fishing lure changes from the action state to the stop state.
[0021] [Advantages of the Invention]
[0022] In the fishing lure according to the present invention, the shaft has a rod portion, a flange portion connected to the rod portion, and a protrusion portion protruding from the flange portion to the opposite side of the rod portion. One end of the rod portion is inserted into the shaft hole of the first half body portion, the protrusion portion is inserted into the bearing hole provided on the surface of the pedestal of the second half body portion, and the flange portion contacts the pedestal. In this fishing lure, since the shaft is not divided, there is no docking portion that requires high positional accuracy. The fishing lure is easy to assemble. In this fishing lure, since there is no docking portion, even if the fishing lure is loaded with a load, there will be no offset of the docking portion. The operation of the built-in mechanism will not be hindered. This fishing lure can effectively attract predatory fish. Description of the Drawings
[0023] Figure 1 is a side view showing a fishing lure according to an embodiment of the present invention.
[0024] Figure 2 is a cross-sectional view obtained by cutting the fishing lure along the front-rear direction Figure 1 thereof.
[0025] Figure 3 is along Figure 2 a cross-sectional view taken along line III-III of the fishing lure thereof.
[0026] Figure 4 is showing Figure 1 a perspective view of the internal structure of the fishing lure thereof.
[0027] Figure 5 of (a) is Figure 3 a magnified cross-sectional view of the vicinity of one end of the shaft thereof, Figure 5 of (b) is Figure 3 a magnified cross-sectional view of the vicinity of the other end of the shaft thereof.
[0028] Description of the Reference Numerals:
[0029] 2: Lure; 4: Main body; 4a: First half body part; 4b: Second half body part; 6: Oscillating part; 8: Elastic body (spring); 10: Shaft; 12: Line loop; 14: Hook connecting loop; 16: Fishing hook; 18: Head; 20: Tail; 22: Cavity; 24: Front wall; 26: Rear wall; 28: Hole; 29: Notch; 30: Rod part; 32: Flange part; 34: Protrusion part; 35: Bottom surface of the flange part; 36: Shaft hole; 38: Tapered part; 40: Equal diameter part; 42: Pedestal; 44: Bearing hole; 46: Side surface of the pedestal; 48: Fishing line. Detailed implementation mode
[0030] Next, while appropriately referring to the drawings, the present invention will be described in detail according to the preferred implementation modes.
[0031] Figure 1 It is a side view showing the lure 2 according to an implementation mode of the present invention. In Figure 1 , the direction indicated by the arrow X is the front of the lure 2, and the opposite direction is the rear of the lure 2. The direction indicated by the arrow Z is the upper side of the lure 2, and the opposite direction is the lower side of the lure 2. The direction perpendicular to the paper surface is the left-right direction of the lure 2. Figure 2 It is a cross-sectional view of the lure 2 cut along the front-rear direction Figure 1 . Figure 3 It is a cross-sectional view along Figure 2 III-III. In Figure 3 , the direction indicated by the arrow Y is the right side of the lure 2, and the opposite direction is the left side of the lure 2. The direction indicated by the arrow Z is the upper side of the lure 2, and the opposite direction is the lower side of the lure 2. The direction perpendicular to the paper surface is the front-rear direction of the lure 2. As Figures 1 - 3 shows, the lure 2 has a main body 4, an oscillating part 6, an elastic body 8, a shaft 10, a line loop 12, a hook connecting loop 14, and a fishing hook 16.
[0032] The main body 4 has an outer shape similar to that of a small fish as bait. The main body 4 is formed of a hard material. Typically, the main body 4 is formed of a synthetic resin composition. The main body 4 can also be formed of a soft material such as a thermoplastic elastomer. The front part of the main body 4 is called the head 18, and the rear part is called the tail 20.
[0033] As Figure 3 shows, the main body 4 has a first half body part 4a and a second half body part 4b. The first half body part 4a and the second half body part 4b extend along the front-rear direction respectively. The main body 4 is formed by fitting the first half body part 4a and the second half body part 4b from the left-right direction. The main body 4 has a structure formed by fitting the first half body part 4a and the second half body part 4b from the left-right direction. In other words, Figure 2 the cross-sectional view is the side view of the lure 2 when the second half body part 4b is removed.
[0034] As Figure 2 and 3 shown, the main body 4 has a cavity 22 inside. In this embodiment, the main body 4 has transparency to such an extent that light passes through the cavity 22. Therefore, although not depicted in Figure 1 , the inside of the cavity 22 can be visually confirmed from the outside. The swinging portion 6 in this fishing lure 2 can be visually confirmed from the outside. As Figure 2 shown, the main body 4 also has a front wall 24 and a rear wall 26. The area between the front wall 24 and the rear wall 26 forms the cavity 22.
[0035] The swinging portion 6 is located inside the cavity 22. Figure 4 is a perspective view showing the vicinity of the swinging portion 6. As Figure 2 and Figure 4 shown, the swinging portion 6 extends in the front-rear direction. The swinging portion 6 is plate-shaped. As Figures 2 - 4 shown, the swinging portion 6 has a hole 28 penetrating in the thickness direction. As Figure 2 shown, notches 29 are respectively provided at the front end portion and the rear end portion of the swinging portion 6.
[0036] The swinging portion 6 receives light from the outside and emits light. In this embodiment, the swinging portion 6 is a reflector. That is, the surface of the swinging portion 6 reflects light. The surface of the swinging portion 6 has luster. Coloration or a pattern may also be applied to the surface of the swinging portion 6. The swinging portion 6 is typically formed of a synthetic resin composition. The swinging portion 6 may also be formed of metal. As a typical swinging portion 6, a hologram sheet is exemplified.
[0037] The elastic body 8 is located inside the cavity 22. In this embodiment, the elastic body 8 is a spring 8. As Figure 2 shown, in this embodiment, there are a first spring 8a and a second spring 8b. The first spring 8a is hooked to the notch 29 at the front end portion of the swinging portion 6. The first spring 8a extends forward from the front end of the swinging portion 6. The second spring 8b is hooked to the notch 29 at the rear end portion of the swinging portion 6. The second spring 8b extends rearward from the rear end of the swinging portion 6. The swinging portion 6 is mounted between the first spring 8a and the second spring 8b.
[0038] As Figure 2 shown, the front end of the first spring 8a is hooked to the front wall 24. The rear end of the second spring 8b is hooked to the rear wall 26. The swinging portion 6 is mounted to the main body 4 by the spring 8. The swinging portion 6 can vibrate relative to the main body 4 by the spring 8. The swinging portion 6 can swing in the front-rear, up-down, and left-right directions by this spring 8. The swinging portion 6 can move relative to the main body 4 by the spring 8. The swinging portion 6 is movably mounted to the main body 4 by the spring 8.
[0039] As Figure 3 and Figure 4As shown, the shaft 10 is mounted between the first half portion 4a and the second half portion 4b. One end of the shaft 10 is mounted on the first half portion 4a, and the other end of the shaft 10 is mounted on the second half portion 4b. The shaft 10 passes through the hole 28 of the swing portion 6. As Figure 3 shown, the shaft 10 has a rod portion 30, a flange portion 32, and a protrusion portion 34.
[0040] The rod portion 30 extends in the left - right direction. In this embodiment, the cross - sectional shape of the rod portion 30 is circular. The cross - sectional shape of the rod portion 30 may not be circular. The cross - sectional shape of the rod portion 30 may be elliptical or polygonal. In addition, in this specification, the direction extending from the center line of the rod portion 30 in a direction perpendicular to the length direction of the rod portion 30 is referred to as the "radial direction" of the shaft 10. Further, the outer diameter of the smallest circle enclosing the cross - section of the rod portion 30 is referred to as the "diameter of the rod portion 30". When the cross - section of the rod portion 30 is circular, the "diameter of the rod portion 30" coincides with the outer diameter of the circle. The meanings of the following "diameter of the flange portion 32" and "diameter of the protrusion portion 34" are the same as this.
[0041] The flange portion 32 is connected to the first end of the rod portion 30. The flange portion 32 protrudes radially outward from the rod portion 30. In other words, the diameter of the flange portion 32 is larger than the diameter of the rod portion 30. In this embodiment, the cross - sectional shape of the flange portion 32 is circular. The cross - sectional shape of the flange portion 32 may not be circular. The cross - sectional shape of the flange portion 32 may be elliptical or polygonal.
[0042] The protrusion portion 34 protrudes from the flange portion 32 toward the opposite side (the second half portion 4b side) of the rod portion 30. The protrusion portion 34 protrudes from the surface (the bottom surface 35 of the flange portion 32) opposite to the surface of the flange portion 32 connected to the rod portion 30. The diameter of the protrusion portion 34 is smaller than the diameter of the flange portion 32. In this embodiment, the cross - sectional shape of the protrusion portion 34 is circular. The cross - sectional shape of the protrusion portion 34 may not be circular. The cross - sectional shape of the protrusion portion 34 may be elliptical or polygonal.
[0043] In this embodiment, the rod portion 30, the flange portion 32, and the protrusion portion 34 are formed integrally. These may also be formed separately and bonded together. A typical material of the shaft 10 is a synthetic resin composition. The shaft 10 may also be formed of metal.
[0044] Figure 5 Figure (a) shows an enlarged cross - sectional view of the joint portion between the shaft 10 and the first half portion 4a. As Figure 5As shown in (a) of [reference], the first half body portion 4a has a shaft hole 36 on its inner surface. The shaft hole 36 has an inclined portion 38 and an equal-diameter portion 40. In the inclined portion 38, the diameter gradually narrows from the opening toward the depth direction. The equal-diameter portion 40 is continuous with the inclined portion 38. The diameter of the equal-diameter portion 40 is constant. In this embodiment, the cross-sectional shape of the inclined portion 38 of the shaft hole 36 and the cross-sectional shape of the equal-diameter portion 40 are both circular. The cross-sectional shapes of the inclined portion 38 and the equal-diameter portion 40 may not be circular. These cross-sectional shapes may be elliptical or polygonal. In addition, in the inclined portion 38 whose cross-sectional shape is not circular, "the diameter gradually narrows" means that the area of the cross-section of the inclined portion 38 gradually decreases. "The diameter of the equal-diameter portion 40 is constant" means that this cross-sectional shape is the same throughout the equal-diameter portion 40.
[0045] As Figure 5 shown in (a) of [reference], the second end of the rod portion 30 (the end opposite to the flange portion 32 side) is inserted into the shaft hole 36. The rod portion 30 extends until it enters the equal-diameter portion 40 of the shaft hole 36.
[0046] Figure 5 (b) of [reference] is an enlarged cross-sectional view showing the joint portion between the shaft 10 and the second half body portion 4b. As Figure 5 shown in (b) of [reference], the second half body portion 4b has a pedestal 42 protruding from its inner surface and a bearing hole 44 recessed from the surface of the pedestal 42 on the first half body portion 4a side (the side surface 46 of the pedestal 42). In this embodiment, the shape of the side surface 46 of the pedestal 42 is circular. The shape of the side surface 46 of the pedestal 42 may not be circular. The shape of the side surface 46 of the pedestal 42 may be elliptical or polygonal. In this embodiment, the cross-sectional shape of the bearing hole 44 is circular. The cross-sectional shape of the bearing hole 44 may not be circular. The cross-sectional shape of the bearing hole 44 may be elliptical or polygonal.
[0047] As Figure 5 shown in (b) of [reference], the protrusion 34 of the shaft 10 is inserted into the bearing hole 44. At this time, the flange portion 32 contacts the pedestal 42. Specifically, the side surface 46 of the pedestal 42 contacts the bottom surface 35 of the flange portion 32. In this embodiment, the size of the side surface 46 of the pedestal 42 is the same as that of the bottom surface 35 of the flange portion 32. The side surface 46 of the pedestal 42 may also be larger than the bottom surface 35 of the flange portion 32. That is, the side surface 46 of the pedestal 42 may protrude radially from the bottom surface 35 of the flange portion 32. As long as the bottom surface 35 of the flange portion 32 does not protrude from the side surface 46 of the pedestal 42.
[0048] The wire loop 12 is installed at the front end of the head 18. The connecting hook loop 14 is installed near the center of the main body 4 and the tail 20. The wire loop 12 and the connecting hook loop 14 are formed by bending a metal wire. Both ends of the metal wire are buried in the main body 4. The wire loop 12 and the connecting hook loop 14 are firmly fixed to the main body 4. A fishing line 48 is installed on the wire loop 12. Fishing hooks 16 are respectively installed on the connecting hook loop 14. In this embodiment, the number of fishing hooks 16 is 2.
[0049] When assembling the fishing lure 2, prepare the first half body 4a, the second half body 4b, the metal wire for forming the wire loop 12 and the connecting hook loop 14, the first spring 8a, the second spring 8b, the swinging part 6 and the shaft 10. Install the metal wire for forming the wire loop 12 and the connecting hook loop 14, the first spring 8a, the second spring 8b and the swinging part 6 on the first half body 4a. The rod part 30 of the shaft 10 passes through the hole 28 of the swinging part 6, and the second end of the rod part 30 is inserted into the shaft hole 36 of the first half body 4a. The second half body 4b covers the first half body 4a, and the protruding part 34 of the shaft 10 is inserted into the bearing hole 44 of the pedestal 42 on the second half body 4b. The surfaces of the first half body 4a and the second half body 4b that are in contact with each other are welded together. Thus, the fishing lure 2 is completed.
[0050] Next, the effects of the present invention will be described.
[0051] In the fishing lure 2 according to the present invention, the shaft 10 has a rod part 30, a flange part 32 and a protruding part 34 that protrudes from the flange part 32 to the opposite side of the rod part 30. By inserting the second end of the rod part 30 into the shaft hole 36 of the first half body 4a and inserting the protruding part 34 into the bearing hole 44 of the pedestal 42 provided on the second half body 4b, the shaft 10 is installed on the main body 4. This installation is easily carried out. The fishing lure 2 is easily assembled.
[0052] In this fishing lure 2, since the shaft 10 is not divided, there is no part for docking one part of the divided shaft 10 with the other part as in conventional fishing lures. In this fishing lure 2, high docking accuracy is not required during assembly. The fishing lure 2 is easily assembled.
[0053] Since there is no docking part in this fishing lure 2, even if the fishing lure 2 is loaded with a load, there will be no offset of the docking part. The action of the swinging part 6 will not be hindered due to the offset of the docking part. In this fishing lure 2, the action of the built-in mechanism for attracting predatory fish will not be hindered. This fishing lure 2 effectively attracts predatory fish.
[0054] In this fishing lure 2, the flange part 32 of the shaft 10 contacts the pedestal 42 of the second half body 4b. By the flange part 32 protruding from the rod part 30 contacting the pedestal 42, the shaft 10 is stably installed on the main body 4. Even if the fishing lure 2 is loaded with a load or impacted, the shaft 10 can be prevented from detaching from the main body 4.
[0055] Preferably, the size of the side surface 46 of the pedestal 42 is the same as or larger than the bottom surface 35 of the flange portion 32. By setting it in this way, the shaft 10 is more stably mounted on the main body 4. Even if a load or impact is applied to the fishing lure 2, it is possible to prevent the shaft 10 from detaching from the main body 4. From this point of view, it is more preferable that the side surface 46 of the pedestal 42 is larger than the bottom surface 35 of the flange portion 32.
[0056] In this embodiment, the shaft hole 36 has an inclined portion 38 whose diameter gradually narrows from the opening toward the depth direction. When assembling the fishing lure 2, this inclined portion 38 guides the end portion of the shaft 10 toward the equal-diameter portion 40. When assembling the fishing lure 2, the shaft 10 can be easily inserted into the equal-diameter portion 40 of the shaft hole 36. The fishing lure 2 is easily assembled.
[0057] Preferably, the diameter of the equal-diameter portion 40 is larger than the diameter of the rod portion 30. That is, preferably, when the rod portion 30 is inserted into the equal-diameter portion 40, there is a gap between the rod portion 30 and the equal-diameter portion 40. By setting it in this way, the rod portion 30 of the shaft 10 can be easily inserted into the equal-diameter portion 40. The fishing lure 2 is easily assembled.
[0058] In this shaft 10, preferably, the center line of the rod portion 30 coincides with the center line of the protrusion portion 34. By setting it in this way, the force applied to the shaft 10 from the first half body portion 4a side and the force applied to the shaft 10 from the second half body portion 4b side are loaded on this center line in opposite directions. Accordingly, even if a load is applied to the fishing lure 2 from the left-right direction, it is possible to prevent the shaft 10 from detaching from the main body 4.
[0059] In this shaft 10, preferably, the diameter of the protrusion portion 34 is smaller than the diameter of the rod portion 30. The small-diameter protrusion portion 34 can be easily inserted into the bearing hole 44 of the pedestal 42. The fishing lure 2 is easily assembled.
[0060] In this embodiment, the fishing lure 2 has a luminous swinging portion 6 in the cavity 22 of the main body 4. The swinging portion 6 is a reflector. The surface of the swinging portion 6 reflects light. The main body 4 has a transparency such that light can pass through the cavity 22. The light reflected by the swinging portion 6 can be visually confirmed from the outside. The light reflected by the swinging portion 6 attracts predatory fish. In this fishing lure 2, a high hook-up rate can be expected.
[0061] In this embodiment, the swinging portion 6 is mounted on the main body 4 by a spring 8. When the angler pulls the fishing lure 2, or when the action state of the fishing lure 2 is such that the water or tide flow is fast, etc., the spring 8 causes the swinging portion 6 to swing back and forth, up and down, and left and right. Due to the movement of the swinging portion 6, the reflection state of the light changes. The visual representation of the light emitted by the swinging portion 6 changes. The swinging portion 6 looks as if it is blinking. In this way, predatory fish can be effectively attracted. In this fishing lure 2, a high hook-up rate can be expected.
[0062] In this embodiment, the swing part 6 is movably mounted on the main body 4 by a spring 8. When the angler stops pulling the fishing lure 2, or when the flow of water or the tide stops and the fishing lure 2 changes from the operating state to the stopped state, the spring 8 will also act temporarily. When the fishing lure 2 changes from the operating state to the stopped state, the swing part 6 will also swing temporarily in the front-back, up-down, left-right directions. At this time, the swing part 6 will also look as if it is blinking. After the fishing lure 2 becomes stationary, the swing part 6 will also effectively attract predatory fish for a while. In this fishing lure 2, a high hook-up rate can be expected.
[0063] In this embodiment, the shaft 10 passes through the hole 28 of the swing part 6. In the normal posture of the fishing lure 2 during swimming, when the swing part 6 is stationary, the shaft 10 does not contact the inner surface of the hole 28 of the swing part 6. When the swing part 6 moves, the swing part 6 can contact the shaft 10. The shaft 10 restricts the movable range of the swing part 6 in the front-back, up-down directions. Through this shaft 10, it is possible to prevent the swing part 6 from being clamped by the structures inside the cavity 22 or being hooked by the structures due to excessive movement of the swing part 6. It is possible to prevent the swing part 6 from being fixed in an abnormal position. Moreover, through the shaft 10, it is possible to suppress the swing of the swing part 6 from becoming too large. The swing part 6 can swing at a higher frequency. The swing part 6 can look as if it is blinking. In this way, it is possible to more effectively attract predatory fish. In this fishing lure 2, a high hook-up rate can be expected.
[0064] Preferably, the swing part 6 is mounted between the first spring 8a and the second spring 8b. By setting it in this way, it is possible to suppress the swing of the swing part 6 from becoming too large. The swing part 6 can swing at a higher frequency. The swing part 6 can look as if it is blinking. In this way, it is possible to more effectively attract predatory fish. In this fishing lure 2, a high hook-up rate can be expected.
[0065] As described above, when the fishing lure 2 changes from the operating state to the stopped state, the swing part 6 will also swing temporarily in the front-back, up-down, left-right directions. The time for the fishing lure 2 to vibrate is preferably 3 seconds or more, more preferably 5 seconds or more, and further preferably 10 seconds or more.
[0066] From the viewpoint of effectively attracting predatory fish, the reflectivity of the swing part 6 is preferably 0.3 or more, more preferably 0.5 or more, and further preferably 0.7 or more.
[0067] In the embodiment described above, the elastic body is the spring 8. The elastic body may not be the spring 8. For example, the elastic body may be rubber. As long as the elastic body can vibrate the swing part.
[0068] In the above-described embodiment, the swinging part 6 is a reflector. The swinging part may also be a phosphor or a phosphorescent substance that receives light from the outside and emits light. The swinging part may also be a transmissive body that receives light from the outside and condenses or diffuses it. As typical transmissive bodies, lenses and prisms are exemplified.
[0069] The swinging part may be a light-emitting body that emits light by itself. As typical light-emitting bodies, chemiluminescent bodies that emit light by a chemical reaction can be cited. As other examples of light-emitting bodies, light-emitting devices can be cited. For example, a swinging part on which a light-emitting diode and a battery are fixed to its main body can be used.
[0070] In the above, an embodiment of a fishing lure for fish is cited to explain the present invention. Although not cited here, the present invention can also be applied to fishing lures for fish and shellfish other than fish, such as bait logs.
[0071] As described above, the fishing lure according to the present invention can effectively attract fish-eating fish. Moreover, the assemblability of this fishing lure is excellent. From this, it can be seen that the advantages of the present invention are obvious.
[0072] [Industrial Applicability]
[0073] The fishing lure according to the present invention is suitable for fishing in various places such as lakes, ponds, reservoirs, rivers, and seas.
Claims
1. A fishing lure, characterized in that, it has a main body and a shaft, wherein, the main body has a first half body part and a second half body part, and has a structure in which the first half body part and the second half body part are joined together, and the inside of the main body has a cavity; the shaft is mounted between the first half body part and the second half body part within the cavity, one end of the shaft is mounted on the first half body part, and the other end of the shaft is mounted on the second half body part, the shaft has a rod part, a flange part and a protrusion part, wherein, the flange part is connected to the first end of the rod part; the protrusion part protrudes from the flange part to the opposite side of the rod part, the first half body part has a shaft hole on its inner surface, the second half body part has a pedestal and a bearing hole, wherein, the pedestal protrudes from the inner surface; the bearing hole is recessed from the surface of the pedestal, the second end of the rod part is inserted into the shaft hole, the protrusion part is inserted into the bearing hole, and the flange part is in contact with the pedestal, the fishing lure has a luminous swinging part, which has a hole through which the shaft passes and is movably mounted on the main body within the cavity, the main body is configured to be able to visually confirm the light from the swinging part from the outside, the swinging part can still move after the fishing lure changes from the action state to the stop state, a first spring and a second spring exist inside the cavity, the first spring is hooked on the notch of the front end part of the swinging part and extends forward from the front end of the swinging part, the second spring is hooked on the notch of the rear end part of the swinging part and extends backward from the rear end of the swinging part, the swinging part is mounted between the first spring and the second spring, the swinging part can vibrate relative to the main body through the first spring and the second spring, swing back and forth, up and down, left and right, and is movably mounted on the main body.
2. The fishing lure according to claim 1, characterized in that, the size of the surface of the pedestal in contact with the flange part is greater than or equal to the size of the surface of the flange part in contact with the pedestal.
3. The fishing lure according to claim 1 or 2, characterized in that, the shaft hole has an inclined part and an equal-diameter part, wherein the diameter of the inclined part gradually narrows from the opening to the depth direction; the equal-diameter part is continuous with the inclined part and has a constant diameter.
4. The fishing lure according to claim 3, characterized in that, the diameter of the equal-diameter part is greater than the diameter of the rod part.
5. The fishing lure according to any one of claims 1 to 4, characterized in that, the center line of the rod part coincides with the center line of the protrusion part.
6. The fishing lure according to any one of claims 1 to 5, characterized in that, the diameter of the protrusion part is smaller than the diameter of the rod part.
Citation Information
Patent Citations
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