Fishing line winding member
Patent Information
- Application Number
- CN202310978776.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2022-10-14
- Filing Date
- 2023-08-04
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2043-08-04
AI Technical Summary
[0016] According to the present invention, in the fishing line winding component, after the fishing line is wound, it can be easily removed from the spool body and discarded, and the fishing line can be reused in the state where it remains on the spool body after winding. Furthermore, according to the present invention, the fishing line winding component can be made lightweight.
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Figure CN117882685B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a fishing line winding part. Background Technology
[0002] Patent Document 1 discloses a line winding section. The line winding section is a fishing line winding component mounted on a drive device. The line winding section has a flange portion. The line winding section is driven to rotate by the drive device. The flange portion is integrally formed with the line winding section. The flange portion is disposed on the drive device side.
[0003] Non-Patent Document 1 discloses a line reel that is attached as an accessory to the line winding section of Patent Document 1. The line reel is mounted to the line winding member of a drive unit via the line winding section. The line reel rotates integrally with the line winding section of Patent Document 1. The line reel has a line winding body, a first flange, and a second flange. The first flange is disposed adjacent to the flange of Patent Document 1. The second flange is disposed spaced apart from the first flange. The line winding body, the first flange, and the second flange are integrally formed with each other. [Existing Technical Documents] [Patent Literature]
[0004] Patent Document 1: Japanese Patent Publication No. 5189540 [Non-patent literature 1] https: / / www.daiwa.com / jp / fishing / item / terminal_tackle / others_te / pe_line-changer / index.html Summary of the Invention [The technical problem the invention aims to solve]
[0005] In the fishing line winding component of Patent Document 1, the fishing line is prevented from falling off the winding section by providing an enlarged diameter section. In this case, there is a problem that it complicates the structure for providing the enlarged diameter section. In addition, although the wound fishing line can be discarded by reducing the diameter of the enlarged diameter section, if the fishing line is directly rewound onto another fishing reel or washed and then wound back onto the original fishing reel, the fishing line is prone to tangling, making it difficult to reuse the fishing line.
[0006] By attaching the spool of Non-Patent Document 1 to the winding section of Patent Document 1, the aforementioned reuse problem can be solved. However, in this case, with the winding section of Patent Document 1 attached to the drive device, the spool is again attached to the winding section as an accessory, thus increasing the weight of the fishing line winding component. Furthermore, since the first flange and the second flange are integrally formed with the winding body, after the fishing line is wound onto the winding body, for example, if the fishing line intended for reuse is damaged beyond expectations, it becomes difficult to remove the fishing line from the winding body and discard it.
[0007] The object of this invention is to provide a fishing line winding component that allows for easy removal and disposal of the fishing line from the spool body after winding, and enables the reuse of the fishing line in the state remaining on the spool body after winding. Furthermore, the object of this invention is to provide a fishing line winding component that achieves lightweight design. [Technical solutions used to solve technical problems]
[0008] Regarding the first technical solution of the present invention, a fishing line winding component includes a first component and a second component. The first component is driven to rotate by a drive device. The first component has a winding body portion and a first flange portion protruding radially outward from the winding body portion. The second component has a second flange portion, wherein the second flange portion is disposed spaced apart from the first flange portion through the winding body portion. The second component is detachably mounted to the first component.
[0009] In the fishing line winding component of the present invention, the second component is detachably mounted to the first component. In this structure, with the second component mounted to the first component, when the fishing line is wound around the spool body, the second flange prevents the fishing line from detaching from the spool body. On the other hand, by removing the second component, which includes the second flange, from the first component, the fishing line wound around the spool body can be easily removed from the spool body.
[0010] That is, according to this fishing line winding component, the fishing line can be easily removed from the main body of the spool and discarded after being wound, and the fishing line can be reused in the state where it remains on the main body of the spool after being wound.
[0011] Furthermore, in the fishing line winding component of the present invention, the main body of the winding, the first flange, and the second flange can be constituted by the first component and the second component. That is, since there is no need to prepare accessories such as conventional spools, the fishing line winding component can be made lightweight.
[0012] Regarding the second technical solution of the present invention, in the fishing line winding component according to the first technical solution, the fishing line winding component further includes a mounting component, which is disposed between the drive device and the first component. The mounting component is mounted to the main body of the drive device in a non-rotatable manner. The first component rotates integrally with the rotation axis of the drive device.
[0013] Regarding the third technical solution of the present invention, in the fishing line winding component according to the second technical solution, the first component has a rotation axis. The fishing line winding component also has a fishing line guiding component. The fishing line guiding component guides the fishing line to the winding body. The fishing line guiding component is disposed on the mounting component such that at least a portion of it moves along the rotation axis.
[0014] Regarding the fourth technical solution of the present invention, in the fishing line winding component involved in any of the first to third technical solutions, the main body of the winding portion has a first hole, a second hole, and a locking portion. The first hole is used to accommodate the rotating shaft of the drive device. The second hole is used to mount a second component. The locking portion is provided in the second hole. The second component also has a locking portion that engages with the locking portion.
[0015] Regarding the fifth technical solution of the present invention, in the fishing line winding component involved in the fourth technical solution, the second component further has a pinching part, which is configured to release the engagement between the locked part and the locking part. [Invention Effects]
[0016] According to the present invention, in the fishing line winding component, after the fishing line is wound, it can be easily removed from the spool body and discarded, and the fishing line can be reused in the state where it remains on the spool body after winding. Furthermore, according to the present invention, the fishing line winding component can be made lightweight. Attached Figure Description
[0017] Figure 1 This is a side view of a fishing reel and line winding device. Figure 2 This is a 3D view of the fishing line winding component. Figure 3 This is a side view of the fishing line winding component. Figure 4 This is a side view of the fishing line winding component. Figure 5 yes Figure 2 A cross-sectional view of the fishing line winding component at the cutting line V. Figure 6 This is a side view of the fishing line winding device after the second component has been removed from the first component. [Explanation of reference numerals in the attached figures] 3: Drive unit; 5: Fishing line winding component; 9: Motor; 9a: Rotating shaft of motor; 13: First component; 15: Second component; 17: Mounting component; 19: Fishing line guiding component; 21: Main body of the reel; 23: First flange; 29: First hole; 1, 31a, 31b: Second hole; 33, 33a, 33b: Engaged part; 35: Second flange; 39, 39a, 39b: Engaged part; 43, 43a, 43b: Grip part; 45, 45a, 45b: Grip part protective part; RL: Fishing line; X1: Rotating shaft of the first component. Detailed Implementation
[0018] The embodiments of the fishing line winding component according to the present invention will be described below with reference to the accompanying drawings. Figure 1 The fishing line winding device 1 is used to change the fishing line RL of the fishing reel 100. Figure 1 In order to clearly show the structure of the fishing line winding device 1, the fishing reel 100 is shown in scale.
[0019] like Figure 1 As shown, the fishing line winding device 1 includes a drive unit 3 and a fishing line winding component 5. The drive unit 3 includes a housing 7, a motor 9, and an operating switch 11. The housing 7 constitutes the main body of the drive unit 3. The motor 9 is disposed inside the housing 7. The motor 9 has a rotating shaft 9a. The top end of the rotating shaft 9a protrudes from the housing 7.
[0020] The operating switch 11 is used to turn the rotation of the motor 9 on and off. When the operating switch 11 is pressed, the motor 9 rotates. When the operating switch 11 is released, the rotation of the motor 9 stops.
[0021] The fishing line winding component 5 is detachably mounted to the drive unit 3. For example, the fishing line winding component 5 is detachably mounted to the housing 7 of the drive unit 3. Figures 2-4 As shown, the fishing line winding component 5 has a first component 13 and a second component 15. (As...) Figure 3 and Figure 4 As shown, the fishing line winding component 5 also has a mounting component 17 and a fishing line guiding component 19.
[0022] like Figure 1 As shown, the first component 13 is disposed on the drive unit 3 across the mounting component 17. Figures 2-4 The first component 13 shown is composed of Figure 1 The drive device 3 shown drives the rotation. Specifically, as... Figures 2-4 As shown, the first component 13 has a rotation axis PX. The rotation axis PX of the first component 13 is... Figure 1The rotation axis MX of the rotating shaft 9a of the motor 9 shown is concentrically arranged. In this state, the first component 13 rotates integrally with the rotating shaft 9a of the motor 9.
[0023] Hereinafter, the axial direction extending along the rotation axis PX of the first component 13 will be referred to as the axial direction. The radial direction away from the rotation axis PX of the first component 13 will be referred to as the radial direction. The circumferential direction around the rotation axis PX of the first component 13 will be referred to as the circumferential direction.
[0024] like Figures 2-5 As shown, the first component 13 has a line winding body portion 21 and a first flange portion 23. The fishing line RL is wound around the outer periphery of the line winding body portion 21. The line winding body portion 21 has a cylindrical body portion 25 and multiple groove portions 27. Figure 5 As shown, the main body of the winding 21 also has a first hole 29, a second hole 31, and a locking part 33.
[0025] like Figures 2-4 As shown, the main body 25 of the cylindrical section is substantially cylindrical. Multiple grooves 27 are provided on the outer peripheral surface of the main body 25 of the cylindrical section. The multiple grooves 27 are arranged at intervals from each other in the circumferential direction. Each of the multiple grooves 27 extends along the rotation axis PX of the first component 13.
[0026] like Figure 5 As shown, the first hole 29 extends through the cylindrical body 25 along the rotation axis PX of the first component 13. The center of the first hole 29 is concentric with the rotation axis PX of the first component 13. The rotation shaft 9a of the drive device 3 is disposed in the first hole 29. Specifically, the top end of the rotation shaft 9a of the motor 9 is disposed in the first hole 29 such that the cylindrical body 25 and the rotation shaft 9a of the motor 9 rotate as a unit. In this embodiment, the top end of the rotation shaft 9a of the motor 9 is fitted into the first hole 29.
[0027] like Figure 5 As shown, the second hole 31 is used to mount the second component 15. The second hole 31 includes at least one second hole 31, for example, a pair of second holes 31a and 31b.
[0028] A pair of second holes 31a and 31b penetrate the cylindrical body 25 along the rotation axis PX of the first component 13. The pair of second holes 31a and 31b are arranged circumferentially spaced apart from each other. Specifically, the pair of second holes 31a and 31b penetrate the cylindrical body 25 along the rotation axis PX of the first component 13 on the radially outer side of the first hole 29. In this embodiment, the pair of second holes 31a and 31b penetrate the cylindrical body 25 radially on both sides of the first hole 29 along the rotation axis PX of the first component 13.
[0029] like Figure 5As shown, the engaging portion 33 engages with the engaging portion 39 described later. The engaging portion 33 includes at least one engaging portion 33, for example, a pair of engaging portions 33a and 33b. The pair of engaging portions 33a and 33b are respectively disposed in a pair of second holes 31a and 31b. The pair of engaging portions 33a and 33b protrude from the inner surfaces of the pair of second holes 31a and 31b. Specifically, the pair of engaging portions 33a and 33b protrude radially outward from the inner surfaces of the pair of second holes 31a and 31b.
[0030] like Figures 2-5 As shown, the first flange portion 23 protrudes radially outward from the main body 25 of the cylindrical portion. Specifically, the first flange portion 23 is integrally formed with the main body 25 of the cylindrical portion in a manner that protrudes radially outward from the main body 25 of the cylindrical portion. Figure 2 and Figure 5 As shown, a hole 23a is provided on the first flange 23 for inserting the tip of the fishing line RL. With the fishing line winding member 5 mounted on the drive unit 3, the first flange 23 and... Figure 1 The housing 7 of the drive unit 3 shown is arranged adjacent to each other.
[0031] like Figures 2-5 As shown, the second component 15 is detachably mounted to the first component 13. When mounted to the first component 13, the second component 15 rotates integrally with the first component 13. Figures 2-4 As shown, the second component 15 has a second flange portion 35. (As indicated...) Figure 5 As shown, the second component 15 also has a positioning protrusion 37, a locking portion 39, and a slit portion 41. (As shown...) Figures 2-4 As shown, the second component 15 also has a gripping part 43 and a gripping part protective member 45.
[0032] like Figure 2 As shown, the second flange portion 35 is substantially formed in the shape of a circular plate. The second flange portion 35 is disposed at a distance from the first flange portion 23, separated by the winding body portion 21. For example, as... Figure 3 and Figure 4 As shown, the second flange portion 35 is axially aligned with the end of the cylindrical body 25 of the first component 13. Specifically, as... Figure 5 As shown, the second flange portion 35 abuts against the end of the cylindrical body portion 25 in the axial direction.
[0033] like Figure 5As shown, a positioning protrusion 37 is provided on the second flange portion 35. The positioning protrusion 37 protrudes from the inner surface 35a of the second flange portion 35, which faces the first flange portion 23. The positioning protrusion 37 is formed in a ring shape in the circumferential direction. The second flange portion 35 is positioned radially relative to the winding body portion 21 by the positioning protrusion 37. Specifically, the second flange portion 35 is positioned radially relative to the cylinder body portion 25 by the positioning protrusion 37.
[0034] like Figure 5 As shown, the engaging portion 39 includes at least one engaging portion 39, for example, a pair of engaging portions 39a and 39b. The pair of engaging portions 39a and 39b are disposed on the second flange portion 35. The pair of engaging portions 39a and 39b protrude from the inner surface 35a of the second flange portion 35, which faces the first flange portion 23. Specifically, the pair of engaging portions 39a and 39b protrude from the inner surface 35a of the second flange portion 35 at a position radially inward than the positioning protrusion 37.
[0035] A pair of engaging portions 39a and 39b are respectively formed in a claw shape. The pair of engaging portions 39a and 39b engage with a pair of engaged portions 33a and 33b respectively. Specifically, the pair of engaging portions 39a and 39b engage elastically with a pair of engaged portions 33a and 33b respectively.
[0036] like Figure 2 and Figure 5 As shown, the slit portion 41 includes at least one slit portion 41, for example, a pair of slit portions 41a and 41b. The pair of slit portions 41a and 41b are disposed on the second flange portion 35. The pair of slit portions 41a and 41b pass through the second flange portion 35 such that they respectively surround a pair of gripping portions 43a and 43b. When the second component 15 is mounted on the first component 13, the pair of slit portions 41a and 41b are respectively formed in a C-shape along the inner surfaces of the pair of second holes 31a and 31b.
[0037] Figures 2-5 The shown gripping portion 43 is used to disengage the engaging portion 39 from the engaged portion 33. The gripping portion 43 includes at least one gripping portion 43, for example, a pair of gripping portions 43a and 43b. The pair of gripping portions 43a and 43b are disposed on the second flange portion 35. Specifically, as... Figure 5 As shown, a pair of gripping portions 43a and 43b protrude from the outer surface 35b of the second flange portion 35. The outer surface 35b of the second flange portion 35 is the surface opposite to the inner surface 35a of the second flange portion 35.
[0038] like Figure 5As shown, a pair of gripping portions 43a and 43b are respectively disposed radially outside a pair of slit portions 41a and 41b. The pair of gripping portions 43a and 43b are connected to a pair of engaging portions 39a and 39b and extend axially. By pressing the pair of gripping portions 43a and 43b together radially inward, the engagement of the pair of engaging portions 39a and 39b and the pair of engaged portions 33a and 33b is released.
[0039] like Figures 2-5 As shown, the gripping part protection member 45 includes at least one gripping part protection member 45, for example, a pair of gripping part protection members 45a and 45b. The pair of gripping part protection members 45a and 45b are disposed on the second flange portion 35 at a position further radially outward than the pair of gripping parts 43a and 43b.
[0040] like Figure 2 and Figure 5 As shown, a pair of gripping protective members 45a and 45b protrude in an arc shape from the outer side 35b of the second flange portion 35. The pair of gripping protective members 45a and 45b are arranged circumferentially spaced apart from each other. The pair of gripping portions 43a and 43b can be easily pressed using the circumferential gap between them.
[0041] like Figures 3-5 As shown, the mounting member 17 is mounted to the housing 7 of the drive unit 3 in a non-rotatable manner. The mounting member 17 is positioned between the housing 7 of the drive unit 3 and the first member 13. In this state, the first member 13 rotates relative to the mounting member 17 together with the rotating shaft 9a of the motor 9.
[0042] Specifically, such as Figure 5 As shown, the mounting component 17 has a main body 17a and a third hole 17b. The main body 17a is mounted to the housing 7 of the drive unit 3 in a non-rotatable manner. The third hole 17b passes through the main body 17a. The top end of the rotating shaft 9a of the motor 9 is inserted into the third hole 17b. The top end of the rotating shaft 9a of the motor 9 is fitted into the first hole 29 of the first component 13. In this state, when the rotating shaft 9a of the motor 9 rotates, the first component 13 rotates relative to the mounting component 17.
[0043] like Figure 1 As shown, the fishing line guide member 19 guides the fishing line RL of the fishing reel 100 to the spool body 21. The fishing line guide member 19 is disposed on the mounting member 17 such that at least a portion of the fishing line guide member 19 moves along the rotation axis PX of the first member 13.
[0044] like Figures 2-5As shown, the fishing line guide member 19 has a mounting part 19a, a guide part 19b, and an operating part 19c. The mounting part 19a is mounted to the mounting member 17 in a swingable manner. Specifically, the mounting part 19a is mounted to the mounting member 17 such that the swing axis RX of the mounting part 19a intersects the rotation axis PX of the first member 13.
[0045] like Figures 2-5 As shown, the guide portion 19b is integrally formed with the mounting portion 19a. The guide portion 19b extends axially from the mounting portion 19a at a position radially outward of the first flange portion 23. The guide portion 19b is arranged facing the outer peripheral surface of the bobbin body 25 in the line winding body portion 21. A fishing line guide hole 19d is provided on the guide portion 19b. The fishing line guide hole 19d penetrates the guide portion 19b. The fishing line guide hole 19d extends toward the outer peripheral surface of the bobbin body 25. In this embodiment, the fishing line guide hole 19d extends toward the rotation axis PX of the first component 13.
[0046] like Figures 2-5 As shown, the operating part 19c is integrally formed with the guide part 19b. The operating part 19c extends axially from the guide part 19b. The operating part 19c is disposed on the housing 7 side of the drive unit 3. Figure 3 and Figure 4 As shown, when the fishing line winding member 5 is viewed from the radial outside, the swing axis RX is positioned between the guide portion 19b and the operating portion 19c. By operating the operating portion 19c, the fishing line guide hole 19d moves along the rotation axis PX of the first member 13.
[0047] In the fishing line winding device 1 with the above-described structure, the top end of the rotating shaft 9a of the motor 9 is inserted into the third hole 17b of the mounting member 17, and the main body 17a of the mounting member 17 is mounted on the housing 7 of the drive device 3. The top end of the rotating shaft 9a of the motor 9 protrudes from the main body 17a of the mounting member 17 via the third hole 17b.
[0048] In this state, the top end of the rotating shaft 9a of the motor 9 is fitted into the first hole 29 of the first component 13. A pair of engaging portions 39a and 39b in the second component 15 are elastically engaged with a pair of engaging portions 33a and 33b in the first component 13, respectively.
[0049] The fishing line winding device 1 is used as follows. First, the tip of the fishing line RL of the fishing reel 100 is inserted into the fishing line guide hole 19d of the fishing line guide member 19. Next, the tip of the fishing line RL is inserted into the hole 23a of the first flange portion 23. The tip of the fishing line RL can also be fixed to the outer peripheral surface of the cylinder body 25 in the spool body portion 21 by means of tape or the like. Next, when the operation switch 11 of the drive device 3 is pressed, the rotating shaft 9a of the motor 9, the first component 13, and the second component 15 rotate. Figure 1 As shown, by rotating the first part 13 and the second part 15, the fishing line RL of the fishing reel 100 is wound around the main body 25 of the cylinder of the reel body 21.
[0050] At this time, the fishing line RL is wound evenly in the axial direction around the outer peripheral surface of the cylindrical body 25 of the line winding body 21 between the first flange 23 and the second flange 35 by the swinging operation of the fishing line guide member 19. In this way, when the fishing line RL is wound, the first flange 23 and the second flange 35 can prevent the fishing line RL from falling off the line winding body 21.
[0051] After the fishing line RL of the fishing reel 100 is wound onto the main body 25 of the barrel section, a pair of gripping portions 43a, 43b in the second component 15 are pressed. Accordingly, the engagement of a pair of engaging portions 39a, 39b in the second component 15 and a pair of engaged portions 33a, 33b in the first component 13 is released. In this state, by stretching the second component 15 axially away from the first component 13, as... Figure 6 As shown, the second component 15 is removed from the first component 13.
[0052] Finally, as Figure 6 As shown, the fishing line RL, wound on the main body 25 of the spool body 21, is detached from the main body 25 of the spool body 25 in an axial direction away from the first flange 23. Thus, after the fishing line RL is wound, it can be easily removed from the spool body 21 and discarded. When reusing the fishing line RL, with the second part 15 installed on the first part 13, the fishing line RL is cleaned / dried, and then wound back onto the fishing reel.
[0053] The main body 21 of the coil can also be represented as follows. For example... Figure 5 As shown, in the main body 21 of the line winding, for example, the main body 25 of the cylinder has an outer cylinder 25a, an inner cylinder 25b and a locking part 33. The outer cylinder 25a has a fishing line RL wound on its outer surface. The inner cylinder 25b is disposed radially inside the outer cylinder 25a and is provided with the rotating shaft 9a of the drive device 3. The locking part 33 is provided on either the inner surface of the outer cylinder 25a or the outer surface of the inner cylinder 25b.
[0054] The inner circumferential surface of the inner cylindrical portion 25b forms a first hole 29. The outer cylindrical portion 25a and the inner cylindrical portion 25b are connected by a pair of connecting portions 25c. The outer cylindrical portion 25a, the inner cylindrical portion 25b, and the pair of connecting portions 25c are integrally formed. The pair of connecting portions 25c are arranged spaced apart from each other in the circumferential direction. A pair of second holes 31a and 31b are provided between the pair of connecting portions 25c in the circumferential direction.
[0055] In this embodiment, a pair of engaging portions 33a and 33b are respectively provided on the outer surface of the inner cylindrical portion 25b in a pair of second holes 31a and 31b. Alternatively, a pair of engaging portions 33a and 33b may be respectively provided on the inner surface of the outer cylindrical portion 25a in a pair of second holes 31a and 31b. [Industry Availability]
[0056] This invention can be used in fishing line winding components.
Claims
1. A fishing line winding component, characterized in that, It has a first component and a second component, wherein, The first component is driven to rotate by a drive device and has a winding body portion and a first flange portion protruding radially outward from the winding body portion; The second component has a second flange and is detachably mounted to the first component, wherein the second flange is disposed spaced apart from the first flange by the winding body portion. The main body of the line reel has an outer tube portion and an inner tube portion, wherein the outer tube portion is used to wind the fishing line, and the inner tube portion is disposed radially inside the outer tube portion. The second flange portion is detachably mounted to the inner tube portion. The main body of the winding has a first hole, a second hole, and a locking portion. The first hole is used to accommodate the rotating shaft of the drive device, the second hole is used to mount the second component, and the locking portion is located in the second hole. The second component also has an engaging portion that engages with the engaging portion.
2. The fishing line winding component according to claim 1, characterized in that, It also includes a mounting component disposed between the drive unit and the first component. The mounting component is mounted to the main body of the drive device in a non-rotatable manner. The first component rotates integrally with the rotation axis of the drive device.
3. The fishing line winding component according to claim 2, characterized in that, The first component has a rotation axis. The fishing line winding component also has a fishing line guiding component, which is disposed on the mounting component such that at least a portion of it moves along the axis of rotation, for guiding the fishing line to the winding body.
4. The fishing line winding component according to claim 1, characterized in that, The second component also has a pinching part for releasing the engagement between the locked part and the locking part.
Citation Information
Patent Citations
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