Main wire group with high bearing capacity

By adding a protective layer at the connection between the fishing line and the rod tip, the bending radius of the fishing line is increased, which solves the problem of reduced load-bearing capacity caused by direct contact between the fishing line and the rod tip rope, and improves the tensile strength and overall load-bearing capacity of the fishing line.

CN224055139UActive Publication Date: 2026-03-31姚瑶
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In existing technology, the fishing line is in direct contact with the rod tip rope, causing the fishing line to bend violently, which reduces the load-bearing capacity and reliability of the mainline assemblies.

Method used

A protective layer is placed at the connection between the fishing line and the rod tip to increase the bending radius of the fishing line. The protective layer isolates the fishing line from direct contact with the rod tip rope, forming a loop to improve tensile strength.

Benefits of technology

It reduces excessive bending and wear of the fishing line, and increases the tensile strength of the fishing line at the connection with the rod tip, thereby enhancing the overall load-bearing capacity of the main line rig.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of fishing supplies, in particular to a main line set with high bearing capacity, which comprises a fishing line, the fishing line is provided with a first connecting part and a second connecting part, the first connecting part and the second connecting part of the fishing line are respectively positioned at two ends of the fishing line, and the second connecting part is used for connecting a fishing assembly; a protective layer is arranged on the outer side of the first connecting part of the fishing line, and the part, provided with the protective layer, of the first connecting part of the fishing line is bent to form a parallel part with two parallel strands. According to the embodiment of the invention, by arranging the protective layer at the connecting part of the fishing line and the rod tip in a sleeving manner, the bending radius of the fishing line is increased, the situations of excessive bending and excessive abrasion of the fishing line are reduced, the tensile strength of the fishing line at the connecting part of the fishing line and the rod tip is improved, and thus the overall bearing capacity of the main line group is improved.
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Description

Technical Field

[0001] This application relates to the technical field of fishing supplies, and in particular to a mainline assembly with high load-bearing capacity. Background Technology

[0002] Fishing line and rod are separate components used in fishing. When using them, the fishing line needs to be tied to the rod tip line on the spot. In current technology, one end of the fishing line is usually bent and knotted to form a loop, and then the loop is directly used to make a slip knot to be attached to the rod tip line. The fishing line is in direct and tight contact with the rod tip line. The slip knot formed by the fishing line being attached to the rod tip line has a large curvature and is bent more severely, which will reduce the overall load-bearing capacity of the main line group. Utility Model Content

[0003] To address the shortcomings of existing technologies, this application provides a mainline assembly with high load-bearing capacity. In this embodiment, a protective layer is applied at the connection between the fishing line and the rod tip to increase the bending radius of the fishing line, reduce excessive bending and wear, and improve the tensile strength of the fishing line at the connection with the rod tip, thereby improving the overall load-bearing capacity of the mainline assembly.

[0004] The above-mentioned objective of this application is achieved through the following technical solution:

[0005] A high load-bearing capacity mainline assembly includes a fishing line, the fishing line having a first connecting part and a second connecting part, the first connecting part and the second connecting part being located at both ends of the fishing line, and the second connecting part being used to connect a fishing component.

[0006] The fishing line has a protective layer on the outside of the first connecting part. The part of the first connecting part with the protective layer is bent to form a parallel part with two strands running parallel. The parallel part of the fishing line is knotted as a single strand to form a rope knot, so that the parallel part of the fishing line forms a loop. The position of the rope knot in the parallel part is fixed relative to the parallel part.

[0007] Optionally, the protective layer is formed by tightly spiraling the fishing line around the outside of the first connection portion.

[0008] Optionally, the line tightly wound around the outside of the fishing line compresses the fishing line covered by the protective layer, causing the wound fishing line to deform, and the deformed fishing line forms a snap with the line tightly wound around the outside of the fishing line.

[0009] Optionally, the protective layer is formed by a single wire spirally and tightly wound around the outside of the first connection of the fishing line.

[0010] Optionally, the protective layer is formed by at least two lines spirally and tightly wound side by side around the outside of the first connection of the fishing line.

[0011] Optionally, the parallel section of the fishing line is knotted twice to form a first knot and a second knot, so that the parallel section of the fishing line forms a first loop and a second loop. There is a gap between the first knot and the second knot. The first loop is located at the end of the first knot away from the knot, and the second loop is located between the first knot and the second knot. The positions of the first knot and the second knot in the parallel section are fixed relative to the parallel section.

[0012] In summary, this application has the following beneficial technical effects:

[0013] This embodiment of the application increases the bending radius of the fishing line by adding a protective layer at the connection between the fishing line and the rod tip, reducing excessive bending and wear, and improving the tensile strength of the fishing line at the connection with the rod tip, thereby improving the overall load-bearing capacity of the main line assembly. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the process of tying the main line to the tip of the rod in the existing technology;

[0015] Figure 2 This is a schematic diagram of a fishing line according to one embodiment of this application;

[0016] Figure 3 This is a schematic diagram of a fishing line after the protective layer has been installed according to one embodiment of this application;

[0017] Figure 4 This is a schematic diagram of a fishing line with a protective layer bent to form a parallel section according to an embodiment of this application;

[0018] Figure 5 This is a schematic diagram of a parallel section knotting according to one embodiment of this application;

[0019] Figure 6 This is another schematic diagram of the parallel section knotting according to one embodiment of this application;

[0020] Figure 7 This is a schematic diagram of the main line group formed after the parallel section is knotted according to one embodiment of this application;

[0021] Figure 8 This is a comparative schematic diagram of a first embodiment of the present application, showing the main line group being tied to the rod tip;

[0022] Figure 9 This is a schematic diagram of a single wire spirally wound to form a protective layer according to an embodiment of this application;

[0023] Figure 10 This is a schematic diagram of a protective layer formed by spirally winding two wires according to an embodiment of this application;

[0024] Figure 11 This is a schematic diagram of the main wire group forming a protective layer by spiral winding of wire according to an embodiment of this application;

[0025] Figure 12 This is a schematic diagram of the main line group of the double-knot structure according to one embodiment of this application;

[0026] Figure 13 This is a schematic diagram of a double-knot main wire group in one embodiment of this application, where the wire is spirally wound to form a protective layer.

[0027] Reference numerals: 10, fishing line; 11, first connecting part; 12, second connecting part;

[0028] 20. Protective layer; 21. Parallel section;

[0029] 30. Knot; 31. First knot; 32. Second knot;

[0030] 40. Ring; 41. First ring; 42. Second ring. Detailed Implementation

[0031] The present application will be further described in detail below with reference to the accompanying drawings.

[0032] To better understand the technical solutions presented in the embodiments of this application, a brief introduction to the existing mainline group will be given first.

[0033] like Figure 1 As shown, in existing technology, one end of the main line group is typically bent and knotted, such as... Figure 1 As shown in Figure AB, a loop is formed. The circumference of this loop remains essentially constant. In field use, as... Figure 1 As shown in C, wrap the end of the main line with the loop around the outside of the rod tip to form a slipknot. Then, use a stopper or similar device to tighten and secure the slipknot before use.

[0034] When in use, the loop formed by the main line is in direct and close contact with the rod tip line. The slip knot formed by the fishing line looping on the rod tip line has a large curvature and is bent more severely, which will reduce the overall load-bearing capacity of the main line group.

[0035] Furthermore, the fishing line is in direct contact with the rod tip rope. During use, the alternating load will cause continuous friction between the fishing line and the rod tip rope, which will cause wear on the main line assembly, thereby reducing the reliability of the main line assembly and reducing its overall load-bearing capacity.

[0036] To address the aforementioned technical problems, embodiments of this application provide a mainline assembly with high load-bearing capacity, such as... Figure 2As shown, the fishing line 10 includes a first connecting part 11 and a second connecting part 12. The first connecting part 11 and the second connecting part 12 are respectively located at both ends of the fishing line 10. Both the first connecting part 11 and the second connecting part 12 are part of the fishing line 10. Both the first connecting part 11 and the second connecting part 12 of the fishing line 10 have a certain length for bending. The outside of the fishing line 10 can be fitted with components such as space beans and lead weights. The second connecting part 12 is used to connect fishing components such as fish hooks or figure-eight swivels.

[0037] like Figure 3 As shown, a protective layer 20 is provided on the outer side of the first connecting portion 11 of the fishing line 10, and the portion of the first connecting portion 11 of the fishing line 10 with the protective layer 20 is bent to form a shape as shown. Figure 4 The parallel section 21 shown is actually a double-stranded fishing line 10 formed by bending the first connecting part 11 of the fishing line 10 with the protective layer 20. The aforementioned double strands refer to the two parallel strands of a fishing line 10 forming a partial fishing line 10, rather than the number of strands inside the fishing line 10.

[0038] The parallel double strands 21 of the fishing line 10 are knotted as a single strand to form a knot 30, creating a loop 40. The aforementioned parallel double strands 21, treated as a single strand, are knotted together as a single line. The knot 30, after knotting, has a fixed shape and can withstand the expansion of the loop 40 and the stress of the fishing line 10. The position of the knot 30 relative to the parallel strands 21 is fixed; that is, during use, the position of the knot 30 does not change. In other words, the knot 30 is a dead knot relative to the parallel strands 21 and the fishing line 10. The knotting method can be as follows: Figure 5 or Figure 6 As shown, after knotting, it forms the following shape: Figure 7 The aforementioned main line group.

[0039] The following section will provide further details based on specific usage scenarios.

[0040] In use, the user places the end of the fishing line 10 with the protective layer 20 close to the rod tip, and then uses the loop 40 formed by the knot on the fishing line 10 to attach the fishing line 10 to the rod tip. The attachment method is as shown in the attached figure. Figure 1 As shown in C.

[0041] After the main line is installed, the operator can attach fishing components such as lead weights, floats, stoppers, connectors, or hooks to the main line.

[0042] During use, the fishing line 10 does not directly contact the rod tip rope; the protective layer 20 is in direct contact with the rod tip rope. The fishing line 10 and the rod tip rope are separated by the protective layer 20. Figure 8 As shown, Figure 8 In case A, the mainline is in direct contact with the rod tip rope in the existing technology. Figure 8 In embodiment B, the protective layer 20 separates the fishing line 10. It can be seen that after the protective layer 20 separates the rod tip rope and the fishing line 10, the bending radius a1 of the fishing line 10 is less than a2. From this point of view, the bending radius of the fishing line 10 at the connection with the rod tip is smaller than that of the prior art, thereby reducing the excessive bending of the fishing line 10, improving the tensile strength of the fishing line 10 at the connection with the rod tip, and thus improving the overall load-bearing capacity of the main line assembly.

[0043] Based on this, in this embodiment of the application, the connection between the fishing line 10 and the rod tip is covered by a protective layer 20. In this way, during use, the protective layer 20 can isolate the rod tip rope from the fishing line 10, prevent the fishing line 10 from being worn excessively, improve the tensile strength of the fishing line 10 at the connection with the rod tip, and thus improve the overall load-bearing capacity of the main line assembly.

[0044] In summary, the embodiments of this application increase the bending radius of the fishing line 10 by applying a protective layer 20 at the connection between the fishing line 10 and the rod tip, thereby reducing excessive bending and wear of the fishing line 10 and improving the tensile strength of the fishing line 10 at the connection with the rod tip, thus improving the overall load-bearing capacity of the main line assembly.

[0045] It should be understood that in this embodiment of the application, the parallel double strands 21 of the fishing line 10 are knotted as a single strand to form a knot 30, so that the parallel double strands 21 of the fishing line 10 form a loop 40. The parallel double strands of the fishing line 10, together with the protective layer 20, are knotted as a whole. Since the aforementioned knot 30 is a dead knot relative to the parallel double strands 21 and the fishing line 10, it can be understood that the two ends of the loop 40 formed by the protective layer 20 are fixed relative to the aforementioned knot 30. In this way, the position of the protective layer 20 relative to the fishing line 10 is restricted, and the protective layer 20 is prevented from sliding relative to the fishing line 10.

[0046] As a feasible specific implementation of this application, the protective layer 20 is formed by tightly spiraling the fishing line 10 around the outside of the first connecting portion 11, such as... Figure 9 As shown, the protective layer 20 can be considered as a line spirally wound around the outside of the fishing line 10, or it can be like... Figure 10 As shown, this is formed by two lines tightly wrapped side by side around the outside of the fishing line 10. Of course, two or more lines can also be wrapped side by side in the same way. Figure 10 The winding is performed as shown, resulting in a shape as shown. Figure 11 The main line group shown.

[0047] The protective layer 20 formed by the spiral winding is not only wear-resistant, but also allows for better compatibility with the rod tip rope, such as... Figure 1 As shown in Figure C, in this embodiment of the application, after the loop 40 is on the rod tip rope, the outer side of the protective layer 20 formed by spiral winding has several protrusions and grooves. When the main line at the rod tip rope is tightened, the protective layer 20 with several protrusions and grooves on the outer side is tightly attached to the soft rod tip rope under the action of tightening pressure and forms a clamp. In this way, when the other end of the main line group is subjected to alternating stress, the relative rotation between the fishing line 10 and the rod tip rope will be reduced. This will further reduce the wear of the fishing line 10, improve the tensile strength of the fishing line 10 at the connection with the rod tip, and thus improve the overall load-bearing capacity of the main line group.

[0048] Correspondingly, after the fishing line 10 loop 40 is wrapped around the rod tip line, the protective layers 20 are tightly attached to each other under the tension of the fishing line 10. Since the outer side of the protective layer 20 has several protrusions and grooves arranged linearly, the contact parts between the protective layers 20 will also form a lock, reducing the probability of slippage and thus improving the overall load-bearing capacity of the main line group.

[0049] The line is wound around the fishing line 10. The two ends of the line need to be fixed. The two ends of the line can be fixed by applying glue, that is, the two ends of the protective layer 20 are fixed to the line and the fishing line 10 by applying glue; the two ends of the line can also be fixed by tying knots on the two ends of the line; or the end of the line can be fixed by tightly winding the end of the line together with the fishing line 10 during the winding process.

[0050] In one possible implementation of this application embodiment, the fishing line 10 tightly wound spirally around the outside of the fishing line 10 compresses the fishing line 10 covered by the protective layer 20, causing the wound fishing line 10 to deform. The deformed fishing line 10 then forms a snap-fit ​​with the fishing line tightly wound around the outside of the fishing line 10. Figure 9 and Figure 10 As shown, when the line is tightly wound, the flexibility of the line and fishing line 10 and the tightening force during winding will cause the line and fishing line 10 to deform, thereby embedding the line into the fishing line 10. The protective layer 20 formed in this way will be tightly locked with the fishing line 10, reducing the relative slippage between the protective layer 20 and the fishing line 10, improving the tensile strength of the fishing line 10 at the connection with the rod tip, and thus improving the overall load-bearing capacity of the main line assembly.

[0051] As one possible specific implementation of the embodiments of this application, such as Figure 12As shown, the parallel section 21 of the fishing line 10 is knotted twice to form a first knot 31 and a second knot 32, thus forming a first loop 41 and a second loop 42 on the parallel section 21 of the fishing line 10. There is a gap between the first knot 31 and the second knot 32. The first loop 41 is located at the end of the first knot 31 away from the knot 30, and the second loop 42 is located between the first knot 31 and the second knot 32. The first knot 31 and the second knot 32 are fixed relative to the parallel section 21. In this way, the loop 40 located between the first knot 31 and the second knot 32 can be used to form a slip knot with the fishing line 10 to connect the rod tip line. The other loop 40 can be used as a handle to control the diameter of the aforementioned slip knot to quickly complete the untying and disassembly, which is convenient to use.

[0052] In a fishing line rig with two loops 40, the protective layer 20 on the outside of the fishing line 10 can also be formed by spirally winding the line around the outside of the fishing line 10, such as... Figure 13 As shown.

[0053] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A mainline assembly with high load-bearing capacity, characterized in that, The fishing line (10) has a first connecting part (11) and a second connecting part (12), the first connecting part (11) and the second connecting part (12) of the fishing line (10) are respectively at both ends of the fishing line (10), and the second connecting part (12) is used for connecting a fishing assembly. The first connecting part (11) of the fishing line (10) is provided with a protective layer (20) outside, the part of the first connecting part (11) of the fishing line (10) with the protective layer (20) is bent to form a double-parallel parallel part (21), the parallel part (21) of the fishing line (10) is knotted to form a knot (30), the parallel part (21) of the fishing line (10) forms a loop (40), and the knot (30) is fixed relative to the parallel part (21) at the position of the parallel part (21).

2. The main line set according to claim 1, wherein The protective layer (20) is a wire spirally and tightly wound outside the first connecting part (11) of the fishing line (10).

3. The main line set according to claim 2, wherein The wire spirally and tightly wound outside the fishing line (10) compresses the fishing line (10) covered by the protective layer (20), so that the wound fishing line (10) is deformed, and the deformed fishing line (10) is clamped with the wire spirally and tightly wound outside the fishing line (10).

4. The main line set according to claim 2, wherein The protective layer (20) is a single wire spirally and tightly wound outside the first connecting part (11) of the fishing line (10).

5. The main line set according to claim 2, wherein The protective layer (20) is at least two wires spirally and tightly wound side by side outside the first connecting part (11) of the fishing line (10).

6. The main line set having high load capacity according to any one of claims 1 to 5, wherein The parallel part (21) of the fishing line (10) is knotted twice to form a first knot (31) and a second knot (32), so that the parallel part (21) of the fishing line (10) forms a first loop (41) and a second loop (42), the first knot (31) and the second knot (32) have a spacing, the first loop (41) is located at one end of the first knot (31) away from the knot (30), the second loop (42) is located between the first knot (31) and the second knot (32), and the first knot (31) and the second knot (32) are fixed relative to the parallel part (21) at the position of the parallel part (21).