Fixing structure of fixing member for fishing rod and fishing rod
Patent Information
- Application Number
- CN202511759111.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-02-20
- Filing Date
- 2025-11-27
- Publication Date
- 2026-08-21
AI Technical Summary
当相对于向竿顶端方向的拉力的强度不足时,则钓竿用固定部件即钓线导件存在有从钓竿脱离的可能性
[0009] According to the present invention described above, a fixing structure is provided that can further improve the fixing force of a rod fixing member with feet fixed to the outer surface of the rod body, making it less likely to detach from the rod during actual fishing, and enabling a more reliable and stable fixing force; and a fishing rod having a rod fixing member through this fixing structure. In particular, a more robust fixing structure can be achieved between the fixing member and the fishing rod on metal fishing rods.
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Figure CN122603821A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a fixing structure for a fishing rod, comprising a line guide fixed to the outer surface of the rod body for guiding the fishing line, and a fishing rod having the fixing structure. Background Technology
[0002] Conventionally, a line guide is a known example of a rod fixing component that has a foot fixed to the rod. When the strength relative to the pulling force towards the rod tip is insufficient, the line guide may detach from the rod. Therefore, various fixing structures for line guides that prevent detachment and have sufficient strength to withstand loads have been proposed.
[0003] Regarding the fixing structure of fishing rod guides, for example, Patent Document 1 discloses a fishing rod in which a lower winding layer with a rigid lower winding line is formed on a predetermined mounting position of a fishing operation auxiliary on the outer peripheral surface of the rod body, and the foot of the fishing operation auxiliary is placed on the lower winding line, and then a mounting line that is softer than the lower winding line is wound around the foot and the lower winding line wound on the outer peripheral surface of the rod body to form a mounting fixing layer for fixing the foot.
[0004] Furthermore, Patent Document 2 discloses a fishing rod with a guide body installed on the rod tube. This guide body consists of a guide foot made of metal, a frame integrally formed with the guide foot, and a guide ring fixed to the frame. Its distinguishing feature is that a vibration-damping layer made of a two-component reactive polyurethane ink is provided on the outer periphery of the guide foot. Moreover, Patent Document 3 discloses a fishing rod with a guide body installed on its rod tube. This guide body includes a guide ring fixing portion and a guide foot. Its distinguishing feature is that a lower line layer is formed on the rod tube to stably hold the guide foot, and then the guide foot is placed on the lower line layer. An upper line layer is formed from the guide foot to the lower line layer to fix the guide foot. While using a line with a larger outer diameter than the lower line layer, both the lower and upper line layers are covered with a synthetic resin material.
[0005] Patent documents Patent Document 1: Japanese Patent No. 5252688 Patent Document 2: Japanese Patent Application Publication No. 2000-236783 Patent Document 3: Japanese Patent Application Publication No. 2000-189009 Summary of the Invention
[0006] However, in any of the embodiments in Patent Documents 1, 2, and 3, the fixing force of the fishing line guide to the fishing rod is not necessarily sufficient. When a certain load is applied, the fishing line guide may detach from the fishing rod. This problem is particularly pronounced when the fishing line guide is fixed to a metal rod tip section. Furthermore, the problems related to the fixing components and structures of fishing rods are not limited to the fishing line guide, but are common to various fishing rod fixing components such as reel seats, hooks, and tail lines that are fixed to the fishing rod.
[0007] To address the aforementioned issues, the technical problem this invention aims to solve is to provide a fixing structure for a fishing rod fixing component that further enhances the fixing force of the fishing rod fixing component, primarily the fishing line guide, on the fishing rod, making it less likely to detach from the fishing rod during actual fishing, and thus providing a more practical and stable fixing function. A fishing rod equipped with the fixing component through this fixing structure is also described. Other objectives of the invention beyond those mentioned above will be apparent from the entire specification.
[0008] To achieve the above objective, the present invention provides a fixing structure for a fishing rod, comprising a foot fixed to the outer surface of the rod body, and a fixing member thereto, characterized in that... have: The first base coat layer is applied to the outside of the rod body; The lower winding layer is wound on top of the first base coat layer; The foot is disposed on the top of the lower winding layer; And the upper winding layer is wound on top of the foot.
[0009] According to the present invention described above, a fixing structure is provided that can further improve the fixing force of a rod fixing member with feet fixed to the outer surface of the rod body, making it less likely to detach from the rod during actual fishing, and enabling a more reliable and stable fixing force; and a fishing rod having a rod fixing member through this fixing structure. In particular, a more robust fixing structure can be achieved between the fixing member and the fishing rod on metal fishing rods. Attached Figure Description
[0010] Figure 1 This is a diagram illustrating a fishing rod according to one embodiment of the present invention. Figure 2 This is a diagram illustrating the fixing structure 100 of the fishing line guide 10 according to the first embodiment of the present invention. Figure 3 This figure illustrates the fixing structure 100 of the fishing line guide 10 according to the second embodiment of the present invention. Figure 4This figure illustrates the fixing structure 100 of the fishing line guide 10 according to the third embodiment of the present invention. Figure 5 This figure illustrates the fixing structure 100 of the fishing line guide 10 according to the third embodiment of the present invention. Figure 6 This is a conceptual diagram illustrating each layer of the fixing structure 100 of the fishing line guide 10 according to the third embodiment of the present invention. Symbol Explanation 1-Fishing rod; 2-Rod body; 3-First section of rod; 5-Middle section of rod; 6-Fishing reel; 7-Tip section of rod; 8-Granular body; 9-Fishing reel holder; 10-Fishing line guide; 11-Swivel retainer; 12-Feet (fixed part); 13-First base coat layer; 14-Lower reel layer; 15-Fishing rod fixing component; 16-Upper reel layer; 17-Second base coat layer; 18-Line binder layer; 100-Fixing structure. Detailed Implementation
[0011] The fixing structure of the fixing member for a fishing rod according to the present invention, and embodiments of a fishing rod having the fixing member by means of the fixing structure, will now be described in detail with reference to the accompanying drawings. In the various drawings, common components are labeled with the same reference numerals. For ease of explanation, the drawings are not necessarily described to an exact scale; this should be noted.
[0012] Figure 1 This diagram illustrates one embodiment of the fishing rod according to the present invention. As shown, the fishing rod 1 includes: a rod body 2; a fishing reel 6, mounted on the rod body 2 via a fishing reel holder 9; and a fishing line guide 10, mounted on the rod body 2. In the illustrated embodiment, the fishing reel holder 9 and the fishing line guide 10 each correspond to a fishing rod fixing member 15 mounted on the outer peripheral surface of the rod body.
[0013] As an embodiment of the present invention, refer to Figures 2 to 6 A representative example of a fixing structure 100 for fixing the fishing line guide 10 to the rod body 2 using the fixing component 15 of the fishing rod will be described.
[0014] (First Implementation) Figure 2This is a diagram illustrating a first embodiment of the fixing structure according to the present invention. As shown, the fixing structure 100 of the fishing line guide 10 according to the first embodiment includes: a ring retaining portion 11 for retaining a guide ring 11a through which the fishing line passes and guides; and a foot portion 12 extending from the ring retaining portion 11 and fixed to the outer surface of the rod body 2(a) (in this embodiment, as an example, it is shown as a solid metal rod tip section), and is configured to include: a first bottom coating layer 13 coated on the outside of the rod body 2(a); a lower winding layer 14 wound around the top of the first bottom coating layer 13; the foot portion 12 disposed on the top of the lower winding layer 14; and an upper winding layer 16 wound around the top of the foot portion 12. Here, the first bottom coating layer 13 refers to the base layer. Furthermore, the rod fixing component 15 fixed to the rod body 2 is not limited to the fishing line guide 10. It can be a reel holder, hook, tail line, etc., with feet for fixing to the fishing rod. Any component (part) with feet for fixing to the surface of the fishing rod is acceptable and is not particularly limited. In addition, the line used for each reel layer can be made of materials such as nylon, silk, polyester, acrylic, etc.
[0015] According to this fixing structure 100, a fixing structure 100 can be provided that can further improve the fixing force of the rod body 2(a) relative to the fishing line guide 10, making it less likely for the fishing line guide 10 to detach from the rod body 2(a) during actual fishing, and enabling the fishing line guide 10 to perform its function more reliably and stably. In particular, by providing (clamping) an elastic bottom coating layer 13 on the outside of the rod body 2(a), and since the lower winding layer 14 is in contact with the rod body 2(a), the tension when the fishing line guide 10 is fixed to the rod body 2(a) can be increased, thereby improving the fixing force of the fishing line guide 10 relative to the rod body 2(a).
[0016] (Second Implementation) Figure 3 This is a diagram illustrating a second embodiment of the fixing structure 100 according to the present invention. As shown, the fixing structure 100 of the fishing line guide 10 according to the second embodiment is configured to have granular material 8 in the first bottom coating layer 13. Here, granular material can be, for example, glass beads, sand, plastic, ceramic, or organic media (bamboo, walnut shells, wood chips, etc.). According to this fixing structure 100, since the hook of the lower winding layer 14 can be hooked and wound around the granular material 8 formed in the first bottom coating layer 13, it is possible to wind it with higher tension, thereby further improving the fixing force of the fishing line guide 10 relative to the rod body 2(a).
[0017] In addition, as in Figure 3As shown, in the fixing structure 100 of the fishing line guide 10, the granular body 8 is configured to be exposed on the surface of the first bottom coating layer 13. According to this fixing structure 100, since the line hook of the lower winding layer 14 can be hooked and wound around the granular body 8 formed in the first bottom coating layer 13, it is possible to wind it with higher tension, thereby further improving the fixing force of the fishing line guide 10 relative to the rod body 2(a).
[0018] In addition, as in Figure 3 As shown, the particle size of the granules 8 is configured to be larger than the thickness of the first bottom coating layer 13. Here, the thickness of the first bottom coating layer 13 is, for example, in the range of 10 μm to 20 μm, and the particle size of the granules 8 is, for example, 100 μm. According to this fixing structure 100, since the granules 8 are easily exposed from the first bottom coating layer 13, the line hook of the lower winding layer 14 can be hooked and wound around the granules 8, thereby enabling winding with higher tension, and thus further improving the fixing force of the fishing line guide 10 relative to the rod body 2(a).
[0019] In this fixing structure 100, it is preferable that the adhesion ratio (adhesion area) of the granules 8 formed in the first bottom coating layer 13 is 50% or more relative to the surface area of the first bottom coating layer. Furthermore, it is preferable that the adhesion range of the granules 8 formed in the first bottom coating layer 13 is at least 1 mm from the starting point of the winding of the lower winding layer 14 (in the direction of winding (the extension direction of the foot 12)), and it is also preferable that the adhesion ratio (adhesion area) of the granules 8 formed in the first bottom coating layer 13 is 50% or more relative to the surface area of the first bottom coating layer. Furthermore, it is preferable that the granules 8, when viewed in the thickness direction of the first bottom coating layer 13, protrude at least 50% of the height of the granules from the first bottom coating layer 13. Furthermore, it is preferable that, in the space between the first bottom coating layer 13 and the lower winding layer 14, in areas where no granules 8 are provided, a second bottom coating impregnated from the second bottom coating layer 17 (described later) is provided in a dispersed manner with a thickness of 1 μm or more. According to the fixing structure 100, the fixing force of the fishing line guide 10 relative to the rod body 2(a) can be further improved.
[0020] (Third implementation method) Figure 4This is a diagram illustrating a third embodiment of the fixing structure according to the present invention. As shown, the fixing structure 100 of the fishing line guide 10 according to the third embodiment is configured to include a second bottom coating layer 17 coated on the upper winding layer 16. Here, the second bottom coating layer 17 refers to an impregnation layer. According to this fixing structure 100, since the first bottom coating (e.g., epoxy resin) from the first bottom coating layer 13 and the second bottom coating (e.g., epoxy resin) from the second bottom coating layer 17 can easily impregnate the line of the upper winding layer 16 and the line of the lower winding layer 14, it is possible to wind with higher tension, thereby further improving the fixing force of the fishing line guide 10 relative to the rod body 2(a). In particular, in the configuration where the first bottom coating layer 13 has granules 8, the second bottom coating can easily impregnate the gap between the lower winding layer 14 formed by the granules 8 and the first bottom coating layer 13, which can achieve a more significant effect in improving the fixing force.
[0021] In addition, such as Figure 5 As shown, a line-fixing layer 18 can also be provided above the second bottom coating layer 17. In this case, the viscosity of the first bottom coating layer 13 and the second bottom coating layer 17 is configured to be higher than the viscosity of the line-fixing layer 18. Here, the line-fixing layer 18 can be, for example, epoxy resin, UV material, etc. According to this fixing structure 100, since the first bottom coating (e.g., epoxy resin) from the first bottom coating layer 13 and the second bottom coating (e.g., epoxy resin) from the second bottom coating layer 17 easily impregnate the line of the upper winding layer 16 and the line of the lower winding layer 14, winding can be performed with higher tension, thereby further improving the fixing force of the fishing line guide 10 relative to the rod body 2(a). Furthermore, Figure 6 The pattern shows the fixed structure of this composition.
[0022] Furthermore, according to the fixing structure 100, since the lower winding layer 14 and the upper winding layer 16 are formed by continuously winding the same line, the misalignment of the upper winding layer 16 relative to the lower winding layer 14 can be effectively suppressed, and the tension formed by the line of the upper winding layer 16 can be further increased. Therefore, the fixing force of the fishing line guide 10 relative to the rod body 2(a) can be further increased.
[0023] The fixing structure of the present invention can further enhance its effectiveness when the rod body 2(a) is applied to a solid metal rod tip section as described in the above embodiments. However, the rod body 2(a) can also be made of hollow metal or solid or hollow FRP. When the rod body 2 is made of metal, the friction between the fixing member and the rod body 2 is weak, especially in the case of small-diameter metal rod tips with reduced contact area. In existing fixing structures, the fixing force between the fixing member 15 and the rod body 2 is insufficient, which may lead to the fixing member 15 detaching from the rod body 2 during actual fishing. However, the fixing structure 100 according to the present invention can effectively prevent such detachment.
[0024] Furthermore, as mentioned above, the fixing structure involved in this invention is not limited to fishing line guides, and can also be used to fix reel seats, hooks, tail ropes, etc., which have feet fixed to the fishing rod to the fishing rod.
Claims
1. A fixing structure for a fixing component of a fishing rod, comprising a fixing component for a fishing rod having a foot fixed to the outer surface of the rod body, and a fixing structure for the fishing rod relative to the fishing rod, characterized in that, have: The first base coat layer is applied to the outside of the rod body; The lower winding layer is wound on top of the first base coat layer; The foot is disposed on the top of the lower winding layer; And the upper winding layer is wound on top of the foot.
2. The fixing structure of the fixing component for fishing rods according to claim 1, characterized in that, The first bottom coating layer has granular material.
3. The fixing structure of the fixing component for fishing rods according to claim 2, characterized in that, The granules are exposed on the surface of the first bottom coating layer.
4. The fixing structure for the fixing component of the fishing rod according to claim 2, characterized in that, The particle size of the granules is larger than the thickness of the first bottom coating layer.
5. The fixing structure of the fixing component for fishing rods according to claim 1, characterized in that, Above the upper winding layer, there is also a second bottom coating layer.
6. The fixing structure of the fixing component for a fishing rod according to claim 5, characterized in that, A wire-fixing agent layer is also provided on top of the second bottom coating layer, and the viscosity of the first bottom coating layer and the second bottom coating layer is higher than that of the wire-fixing agent layer.
7. The fixing structure of the fixing component for a fishing rod according to claim 1, characterized in that, The lower winding layer and the upper winding layer are formed by continuously winding the same thread.
8. The fixing structure of the fixing component for a fishing rod according to claim 1, characterized in that, The fixing component for the fishing rod is any one of the following: fishing line guide, reel seat, hook, and tail line.
9. A fishing rod, characterized in that, It has a rod body, a fixing component for the fishing rod, and a fixing structure as described in any one of claims 1 to 8.
10. The fishing rod according to claim 9, characterized in that, The rod body is made of solid or hollow metal.
11. The fishing rod according to claim 9, characterized in that, The rod body is made of solid or hollow FRP.
Citation Information
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