Fishhook winding assembly device and fishhook winding machine

By designing a fishhook winding assembly device and utilizing the cooperation of the hook handle winding piece and the fishing line clamp, automatic line binding of the fishhook is achieved, which solves the problem of low production efficiency in the existing technology and improves the stability and efficiency of line binding.

CN120664401APending Publication Date: 2025-09-19HUIZHOUCITY BESTAM PRECISION MASCH CO LTD
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Patent Information

Application Number
CN202511063715.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-31
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

The existing technology lacks a fully automatic fishhook and line tying device, resulting in low production efficiency, especially for novices who find it difficult to implement complex fishhook and line tying methods.

Method used

A fishhook winding assembly device is designed, which includes a fishhook assembly component and a fishing line routing component. Through the cooperation of the hook handle winding piece and the fishing line clamp, the fishing line is automatically wound around the fishhook handle to form multiple loops of binding line.

Benefits of technology

It realizes the automatic line tying of fish hooks, improves production efficiency, simplifies the operation for novices, and improves the stability and efficiency of line tying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a fishhook winding assembly device and a fishhook winding machine. The fishhook winding and assembling device comprises an assembling table, a fishhook assembling assembly and a fishing line arranging assembly. The fishhook assembling component comprises a fishhook placing table and a hook handle winding piece; the fishing line arrangement assembly comprises a fishing line arrangement frame, a fishing line outlet pipe and a fishing line clamping jaw, the fishing line arrangement frame is arranged on the assembly table, the fishing line outlet pipe and the fishing line clamping jaw are both movably arranged on the fishing line arrangement frame, and the fishing line outlet pipe is used for arranging a fishing line on the hook handle winding piece; and the end part of the fishing line is transferred to the fishing line fixing position of the fishhook placing table. According to the fishing line outlet pipe, the fishing line body is wound on the hook handle winding piece, the fishing line body surrounds the fishhook placing table along with the hook handle winding piece, the fishing line on the hook handle winding piece is wound on a hook handle of a fishhook, therefore, the fishing line is bound in a multi-circle mode, automatic line binding of the fishhook is achieved, and the production efficiency is effectively improved.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of winding machines, and in particular to a fishhook winding assembly device and a fishhook winding machine. Background Art

[0002] Traditionally, fish hooks and fishing lines are sold separately, leaving anglers to tie them together before use. However, for beginners, achieving a stable tie is difficult, especially for certain hook and line tying methods, such as tying a single-line, double-hook hook. Therefore, existing hooks and lines are often sold as a single piece. Currently, there are no fully automated hook and line tying devices. Most hooks and lines are tied together manually, requiring a combination of semi-automatic devices and manual labor, resulting in low production efficiency. Summary of the Invention

[0003] The purpose of the present invention is to overcome the deficiencies in the prior art and provide a fishhook winding assembly device and a fishhook winding machine that effectively improve production efficiency.

[0004] The purpose of this disclosure is achieved through the following technical solutions: The hook shank is connected to the hook shank winding piece, and the hook shank winding piece is used to wind the fishing line around the hook shank of the fishhook; the fishing line wiring assembly comprises a fishing line wiring rack, a fishing line outlet tube and a fishing line clamp, the fishing line wiring rack is arranged on the assembly table, the fishing line outlet tube and the fishing line clamp are both movably arranged on the fishing line wiring rack, the fishing line outlet tube is used to arrange the fishing line on the hook shank winding piece, and the fishing line clamp is used to clamp the end of the fishing line to transfer the end of the fishing line to the fishing line fixing position of the fishhook placement table.

[0005] In one embodiment, the fishhook placement platform includes a placement base and a fishhook clamp, the placement base is rotatably connected to the hook handle winding piece, the fishhook clamp is installed on the placement base, and the fishhook clamp is used to fix and clamp the fishhook.

[0006] In one embodiment, the fishhook placement platform is provided with a clamping claw receiving groove, and the fishhook clamping claw is installed in the clamping claw receiving groove.

[0007] In one embodiment, the hook handle winding member includes a fishing line fixing buckle, a fishing line pull hook, a fishing line temporary storage rack and a plurality of fishing line temporary storage telescopic columns, the fishing line temporary storage rack is rotatably connected to the fish hook placement table, and a plurality of the fishing line temporary storage telescopic columns are arranged on the fishing line buffer rack; the fishing line fixing buckle is movably arranged on the fish hook placement table, the fishing line fixing buckle is movably connected to the fish hook placement table, and the fishing line fixing buckle is used to fix the end of the fishing line on the fish hook placement table; the fishing line pull hook is located on the side of the fish hook placement table away from the assembly table, and the fishing line pull hook and the plurality of the fishing line temporary storage telescopic columns are used to wind part of the fishing line.

[0008] In one embodiment, the distance between the fishing line fixing buckle and the fish hook placement platform is smaller than the distance between the fishing line upper hook and the fish hook placement platform, and at least one of the fishing line temporary storage telescopic columns is flush with the end of the hook handle.

[0009] In one embodiment, the fish hook assembly component also includes a line-releasing slider, a line-releasing guide column and a line-releasing spring. The line-releasing guide column is arranged on the fishing line temporary storage rack. The line-releasing slider and the line-releasing spring are both slidably mounted on the line-releasing guide column. The line-releasing spring is respectively connected to the line-releasing slider and the fishing line temporary storage rack. At least one fishing line temporary storage telescopic column is provided on the line-releasing slider.

[0010] In one embodiment, the hook handle winding member also includes a winding motor and a winding swivel, the rotating shaft of the winding motor is connected to the winding swivel, the winding swivel is arranged outside the fish hook placement table, and the fishing line temporary storage rack is connected to the winding swivel so that the fishing line temporary storage rack rotates around the fish hook placement table.

[0011] In one embodiment, the hook handle winding member also includes a winding connecting shaft, a winding fixing disk, a winding lifting disk and at least two winding lifting rods, the winding connecting shaft is rotatably connected to the fish hook placement platform and the winding fixing disk respectively, the winding connecting shaft is also fixedly connected to the fishing line temporary storage rack, the winding fixing disk is located on the side of the fish hook placement platform close to the winding swivel, the winding lifting disk is located between the winding fixing disk and the winding swivel, the winding lifting disk is rotatably connected to the winding fixing disk, and the winding lifting disk is fixedly connected to the winding swivel; the winding fixing disk is provided with at least two lifting through holes, each of the winding lifting rods passes through one of the lifting through holes and is clamped with the fish hook placement platform, the outer wall of the winding lifting disk is provided with a lifting groove, and part of each of the winding lifting rods is slidably arranged in the lifting groove, and the fishing line temporary storage rack corresponds to the descending area of ​​the lifting groove.

[0012] In one embodiment, the lifting groove includes a high-level groove, a low-level groove and two downward grooves, the downward grooves are connected to the high-level groove and the low-level groove respectively, the distance between the high-level groove and the winding swivel is greater than the distance between the low-level groove and the winding swivel, and the low-level groove is arranged opposite to the fishing line temporary storage rack.

[0013] A fishhook winding machine comprises the fishhook winding assembly device described in any one of the above embodiments.

[0014] Compared with the prior art, the present disclosure has at least the following advantages: The fishhook is placed on the fishhook placing table, and the hook handle of the fishhook corresponds to the hook handle winding piece. After one end of the fishing line is fixed to the fishing line fixing position of the fishhook placing table, the fishing line outlet pipe winds the fishing line body around the hook handle winding piece. As the hook handle winding piece surrounds the fishhook placing table, the fishing line on the hook handle winding piece is wound around the hook handle of the fishhook, so that the fishing line is tied in the form of multiple turns, realizing automatic binding of the fishhook and effectively improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present disclosure and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.

[0016] Figure 1 A schematic diagram of a fishhook winding assembly device according to an embodiment; Figure 2 is a schematic diagram of a fishhook assembly component in one embodiment; Figure 3 is a schematic diagram of a fishing line routing assembly according to one embodiment; Figure 4 is a schematic diagram of a fishing line support member in one embodiment; Figure 5 is a schematic diagram of a fishhook winding assembly device according to another embodiment; Figure 6 Schematic diagram of a rear-mounted cylinder power component in one embodiment. DETAILED DESCRIPTION

[0017] To facilitate understanding of the present disclosure, a more comprehensive description of the present disclosure will be provided below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present disclosure. However, the present disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the disclosure.

[0018] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.

[0019] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this disclosure pertains. The terms used herein in the specification of this disclosure are for the purpose of describing specific embodiments only and are not intended to limit this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0020] The present disclosure relates to a fishhook winding assembly device. In one embodiment, the fishhook winding assembly device includes an assembly platform, a fishhook assembly component, and a fishline routing component; the fishhook assembly component includes a fishhook placement platform and a hook handle winding piece, the fishhook placement platform is rotatably connected to the hook handle winding piece, the fishhook placement platform is used to vertically place the fishhook so that the hook handle of the fishhook protrudes; the hook handle winding piece is arranged on the assembly platform, the hook handle winding piece rotates relative to the fishhook placement platform, and the hook handle winding piece is used to wind the fishing line around the hook handle of the fishhook; the fishline routing component includes a fishline routing rack, a fishline outlet tube, and a fishline clamp, the fishline routing rack is arranged on the assembly platform, the fishline outlet tube and the fishline clamp are both movably arranged on the fishline routing rack, the fishline outlet tube is used to arrange the fishing line on the hook handle winding piece, and the fishline clamp is used to clamp the end of the fishing line to transfer the end of the fishing line to the fishline fixing position of the fishhook placement platform. The fishhook is placed on the fishhook placing table, and the hook handle of the fishhook corresponds to the hook handle winding piece. After one end of the fishing line is fixed to the fishing line fixing position of the fishhook placing table, the fishing line outlet pipe winds the fishing line body around the hook handle winding piece. As the hook handle winding piece surrounds the fishhook placing table, the fishing line on the hook handle winding piece is wound around the hook handle of the fishhook, so that the fishing line is tied in the form of multiple turns, realizing automatic binding of the fishhook and effectively improving production efficiency.

[0021] See also Figure 1 , which is a structural diagram of a fishhook winding assembly device according to an embodiment of the present disclosure.

[0022] The fishhook winding assembly device 10 of one embodiment includes an assembly platform 100, a fishhook assembly component 200, and a fishline routing component 300. Figure 2The fishhook assembly component 200 includes a fishhook placement platform 210 and a hook handle winding member 220. The fishhook placement platform 210 is rotatably connected to the hook handle winding member 220. The fishhook placement platform 210 is used to vertically place the fishhook 20 so that the hook handle of the fishhook 20 protrudes. The hook handle winding member 220 is set on the assembly platform 100. The hook handle winding member 220 rotates relative to the fishhook placement platform 210 and is used to wind the fishing line around the hook handle. Please refer to Figure 3 The fishing line wiring assembly 300 includes a fishing line wiring rack 310, a fishing line outlet tube 320 and a fishing line clamp 330. The fishing line wiring rack 310 is set on the assembly table 100. The fishing line outlet tube 320 and the fishing line clamp 330 are both movably set on the fishing line wiring rack 310. The fishing line outlet tube 320 is used to arrange the fishing line on the hook handle winding member 220. The fishing line clamp 330 is used to clamp the end of the fishing line to transfer the end of the fishing line to the fishing line fixing position of the hook placement table 210.

[0023] In this embodiment, the fishhook is placed on the fishhook placement platform 210, and the hook handle of the fishhook corresponds to the hook handle winding piece 220. After one end of the fishing line is fixed to the fishing line fixing position of the fishhook placement platform 210, the fishing line outlet tube 320 winds the fishing line body around the hook handle winding piece 220. As the hook handle winding piece 220 surrounds the fishhook placement platform 210, the fishing line on the hook handle winding piece 220 is wound around the hook handle of the fishhook, so that the fishing line is tied in the form of multiple turns, realizing automatic binding of the fishhook, and effectively improving production efficiency.

[0024] In one embodiment, see Figure 2 The fishhook placement platform 210 includes a placement base 212 and a fishhook clamp 214. The placement base 212 is rotatably connected to the hook shank winding member 220. The fishhook clamp 214 is mounted on the placement base 212 and is used to securely clamp the fishhook. In this embodiment, the placement base 212 serves as a fixed platform for the fishhook. The placement base 212 is provided with the fishhook clamp 214, which clamps the fishhook. Specifically, the fishhook clamp 214 clamps part of the hook shank of the fishhook, so that the remaining part of the hook shank protrudes from the fishhook clamp 214, making it easier to wind the protruding hook shank. The fishhook is a fishhook without a hook hole, and the fishing line is tied by wrapping and knotting the hook shank, for example, in the way of tying a candied haws line.

[0025] Furthermore, the hook placement platform 210 is provided with a jaw receiving groove 202, within which the hook jaw 214 is mounted. In this embodiment, the jaw receiving groove 202 is located at the top of the hook placement platform 210, with the notch of the jaw receiving groove 202 facing away from the assembly platform 100. The hook jaw 214 is partially located within the jaw receiving groove 202. The hook jaw 214 is mounted on the hook placement platform 210 via the jaw receiving groove 202, facilitating the stable placement of the fishhook on the hook placement platform 210.

[0026] In one embodiment, see Figure 2 The hook handle winding member 220 includes a fishing line fixing buckle 222, a fishing line pull hook 224, a fishing line temporary storage rack 226 and a plurality of fishing line temporary storage telescopic columns 228. The fishing line temporary storage rack 226 is rotatably connected to the fish hook placement platform 210, and a plurality of the fishing line temporary storage telescopic columns 228 are arranged on the fishing line buffer rack; the fishing line fixing buckle 222 is movably arranged on the fish hook placement platform 210, and the fishing line fixing buckle 222 is movably connected to the fish hook placement platform 210, and the fishing line fixing buckle 222 is used to fix the end of the fishing line on the fish hook placement platform 210; the fishing line pull hook 224 is located on the side of the fish hook placement platform 210 away from the assembly platform 100, and the fishing line pull hook 224 and the plurality of the fishing line temporary storage telescopic columns 228 are used to wind part of the fishing line. In this embodiment, the fishing line fixing buckle 222 is located on the fishing line fixing position of the fish hook placement platform 210, and a fishing line fixing passage is formed between the fishing line fixing buckle 222 and the fish hook placement platform 210. The fishing line outlet tube 320 and the fishing line clamp 330 move the fishing line between the fishing line fixing buckle 222 and the fish hook placement platform 210, so that the fishing line fixing buckle 222 can fix the end of the fishing line on the fishing line fixing position of the fish hook placement platform 210.

[0027] The fishing hook 224 corresponds to the hook placement platform 210. Specifically, the fishing hook 224 is located above the hook placement platform 210, so that the fishing hook 224 is opposite to the hook handle of the fishhook. After the fishing line clamp 330 releases the fishing line, the fishing line outlet tube 320 moves toward the fishing hook 224, and the fishing line in the fishing line outlet tube 320 is pulled out. The fishing line outlet tube 320 moves around the fishing hook 224, making it easier for the fishing line to be hooked on the fishing hook 224, so that a portion of the fishing line corresponds to the hook handle of the fishhook, thereby facilitating the hook handle winding member 220 to wrap this portion of the fishing line around the hook handle in a multiple-turn binding manner.

[0028] The temporary fishing line storage rack 226 is located outside the hook placement platform 210 and moves around the hook placement platform 210. A plurality of temporary fishing line storage telescopic columns 228 are mounted on the temporary fishing line storage rack 226, serving as a plurality of turning nodes for routing the fishing line, facilitating the temporary storage of a certain length of fishing line between the plurality of temporary fishing line storage telescopic columns 228 by winding. During the winding process of the temporary fishing line storage rack 226, the fishing line on the plurality of temporary fishing line storage telescopic columns 228 binds the portion of the fishing line between the fishing line fixing buckle 222 and the fishing line pull hook 224 to the hook handle, thereby achieving automated line binding of the hook handle.

[0029] Furthermore, the distance between the fishing line fixing buckle 222 and the fish hook placement platform 210 is smaller than the distance between the fishing line upper hook 224 and the fish hook placement platform 210, and at least one of the fishing line temporary storage telescopic columns 228 is flush with the end of the fishing line. In this embodiment, the fishing line between the fishing line fixing buckle 222 and the fishing line upper hook 224 serves as the inner portion of the winding and binding line. By setting the fishing line upper hook 224 at a position higher than the fishing line fixing buckle 222, the fishing line from the end of the fishing line to the position of the fishing line upper hook 224 is pulled upward and tilted. Moreover, at least one of the fishing line temporary storage telescopic columns 228 is flush with the end of the hook handle. Specifically, the first fishing line temporary storage telescopic column 228 for winding the fishing line upper hook 224 to the fishing line temporary storage rack 226 is flush with the end of the hook handle, which facilitates the binding of the hook handle.

[0030] In another embodiment, the fishing line temporary storage rack 226 moves downward synchronously while rotating, so that the fishing line on the hook handle is tied in a spiral manner.

[0031] Furthermore, the fishhook assembly 200 further includes a line-releasing slider 230, a line-releasing guide post 240, and a line-releasing spring 250. The line-releasing guide post 240 is disposed on the fishing line temporary storage rack 226. The line-releasing slider 230 and the line-releasing spring 250 are both slidably sleeved on the line-releasing guide post 240. The line-releasing spring 250 is respectively connected to the line-releasing slider 230 and the fishing line temporary storage rack 226. The line-releasing slider 230 is provided with at least one fishing line temporary storage telescopic post 228. In this embodiment, the line-releasing slider 230 is provided with the fishing line temporary storage telescopic post 228, that is, the line-releasing slider 230 corresponds to a portion of the fishing line, and the line-releasing guide post 240 serves as a sliding guide rail for the line-releasing slider 230, facilitating the sliding of the line-releasing slider 230 along the line-releasing guide post 240, thereby facilitating the sliding of the line-releasing slider 230 to release a portion of the fishing line when the line is tied to the hook handle. The line-releasing spring 250 is sleeved with the line-releasing guide post 240. The line-releasing spring 250 serves as a sliding buffer for the line-releasing slider 230, so that the fishing line is slowly released, avoiding the situation where the line is tangled due to loose fishing line, that is, reducing the probability of excessive tension in the fishing line during winding. Moreover, the line-releasing spring 250 releases its elastic force after the hook handle is tied, so that the line-releasing slider 230 returns to its initial position, which is convenient for the temporary storage and winding of the fishing line next time.

[0032] In another embodiment, the fishing line temporary storage telescopic column 228 has a telescopic function. Before the line binding is completed, the fishing line temporary storage telescopic column 228 is extended to facilitate the temporary storage of the fishing line; after the line binding is completed, the fishing line temporary storage telescopic column 228 is retracted to facilitate the cutting and grabbing of the fishing line.

[0033] Furthermore, the hook handle winding member 220 further includes a winding motor 221 and a winding swivel 223. The rotating shaft of the winding motor 221 is connected to the winding swivel 223. The winding swivel 223 is sleeved outside the fishhook placement platform 210. The fishing line temporary rack 226 is connected to the winding swivel 223 so that the fishing line temporary rack 226 rotates around the fishhook placement platform 210. In this embodiment, the winding motor 221 serves as the power source for the fishing line temporary rack 226. The winding motor 221 drives the fishing line temporary rack 226 to perform a circular motion via the winding swivel 223, so that the fishing line temporary rack 226 rotates around the outer side of the fishhook placement platform 210. The diameter of the winding swivel 223 is larger than the diameter of the fishhook placement platform 210.

[0034] Furthermore, the hook handle winding member 220 also includes a winding connecting shaft 220a, a winding fixing disk 220b, a winding lifting disk 220c and at least two winding lifting rods 220d, the winding connecting shaft 220a is rotatably connected to the fish hook placement platform 210 and the winding fixing disk 220b respectively, the winding connecting shaft 220a is also fixedly connected to the fishing line temporary storage rack 226, the winding fixing disk 220b is located on the side of the fish hook placement platform 210 close to the winding swivel 223, and the winding lifting disk 220c is located between the winding fixing disk 220b and the winding swivel 223. The winding lifting disk 220c is rotatably connected to the winding fixed disk 220b, and the winding lifting disk 220c is fixedly connected to the winding swivel 223; the winding fixed disk 220b is provided with at least two lifting holes 204, and each of the winding lifting rods 220d passes through one of the lifting holes 204 and is engaged with the fishhook placement platform 210, and the outer wall of the winding lifting disk 220c is provided with a lifting groove 206, and each of the winding lifting rods 220d is partially slidably set in the lifting groove 206, and the fishing line temporary storage rack 226 corresponds to the descending area of ​​the lifting groove 206. In this embodiment, the winding connecting shaft 220a is located between the fish hook placement platform 210 and the winding fixing disk 220b, one end of the winding connecting shaft 220a is rotatably abutted against the fish hook placement platform 210, and the other end of the winding connecting shaft 220a is rotatably abutted against the winding fixing disk 220b, and the middle part of the winding connecting shaft 220a is fixedly connected to the fishing line temporary storage rack 226. When the fishing line temporary storage rack 226 rotates around, it drives the winding connecting shaft 220a to rotate together, that is, the fishing line temporary storage rack 226 rotates with the winding connecting shaft 220a as the center line, so that the fishing line temporary storage rack 226 can circulate around the fish hook placement platform 210.

[0035] The winding lifting plate 220c is fixedly connected to the winding swivel 223 and is also rotatably connected to the winding fixed plate 220b. When the fishing line temporary storage rack 226 rotates, the winding lifting plate 220c rotates relative to the winding fixed plate 220b, so that the winding lifting plate 220c rotates synchronously with the winding connecting shaft 220a as the centerline. The winding lifting rod 220d is disposed in the lifting hole 204, and a portion of the winding lifting rod 220d moves along the lifting groove 206, which has a descending area and an ascending area. When part of the winding lifting rod 220d moves to the ascending area, the winding lifting rod 220d is lifted, so that the end of the winding lifting rod 220d away from the lifting groove 206 is engaged with the fish hook placement platform 210; and when part of the winding lifting rod 220d moves to the descending area, the winding lifting rod 220d descends, so that the end of the winding lifting rod 220d away from the lifting groove 206 is out of contact with the fish hook placement platform 210 and shrinks into the lifting through hole 204. Moreover, the fishing line temporary storage rack 226 corresponds to the descending area of ​​the lifting groove 206. When the fishing line temporary storage rack 226 rotates to be close to the winding lifting rod 220d, the winding lifting rod 220d begins to descend to avoid the fishing line temporary storage rack 226 from colliding with the winding lifting rod 220d. At this time, at least one winding lifting rod 220d remains in a raised state, that is, at least one winding lifting rod 220d passes through the lifting through hole 204 and is engaged with the fish hook placement platform 210, ensuring that the fish hook placement platform 210 does not deflect, thereby improving the stability of the fish hook when tying the line.

[0036] Furthermore, the lifting groove 206 includes a high-order groove 2062, a low-order groove 2064 and two downward grooves 2066, and the downward grooves 2066 are respectively connected to the high-order groove 2062 and the low-order groove 2064. The distance between the high-order groove 2062 and the winding swivel 223 is greater than the distance between the low-order groove 2064 and the winding swivel 223, and the low-order groove 2064 is arranged opposite to the fishing line temporary storage rack 226. In this embodiment, the high-step groove 2062 and the low-step groove 2064 form a stepped structure for use together. When the end of the winding lifting rod 220d slides in the high-step groove 2062, the winding lifting rod 220d passes through the lifting hole 204 and engages with the hook placement platform 210. When the end of the winding lifting rod 220d slides in the low-step groove 2064, the winding lifting rod 220d descends and retracts into the lifting hole 204. The lower groove 2066 serves as a connecting groove between the high-step groove 2062 and the low-step groove 2064, making the lifting and lowering of the winding lifting rod 220d smoother.

[0037] In another embodiment, the downward inclination angle of the downward sliding groove 2066 is 8° to 15°, so as to reduce the lateral tension received by the fishing line when the fishing line temporary storage rack 226 is wrapped around, thereby reducing the possibility of damage to the fishing line.

[0038] In another embodiment, the fishhook assembly 200 further includes a line cutting knife 260. The line cutting knife 260 is positioned on the fishhook placement platform 210 and aligned with the hook shank. The line cutting knife 260 is used to cut the fishing line after the line is tied. In this embodiment, the line cutting knife 260 is connected to a telescopic cylinder to move the line cutting knife 260 away from or closer to the hook shank. Before the line is tied, the line cutting knife 260 is away from the hook shank. After the line is tied, the telescopic cylinder drives the line cutting knife 260 toward the hook shank to cut excess fishing line, facilitating the removal of the hook and line.

[0039] In another embodiment, the hook 224 on the fishing line is connected to a telescopic cylinder. When tying the line, the telescopic cylinder pushes the hook 224 on the fishing line to the top of the hook placement platform 210; after the line tying is completed, the telescopic cylinder moves the hook 224 on the fishing line away from the hook placement platform 210.

[0040] In another embodiment, the fishing line fixing buckle 222 is connected to a telescopic cylinder. For example, the fishing line fixing buckle 222 is magnetically connected to the telescopic end of the telescopic cylinder. Before tying the line, the telescopic cylinder pushes the fishing line fixing buckle 222 away from the hook placement platform 210 to form a fishing line fixing aisle, i.e., a fishing line fixing position. When tying the line, the telescopic cylinder pulls the fishing line fixing buckle 222 back, and the telescopic cylinder is disengaged from the fishing line fixing buckle 222, so that the fishing line fixing buckle 222 squeezes the fishing line onto the hook placement platform 210. Specifically, the fishing line fixing buckle 222 has a "Π"-shaped structure. The hook placement platform 210 is provided with a fixing through hole 208. The fishing line fixing buckle 222 is inserted into the fixing through hole 208, so that the portion of the fishing line fixing buckle 222 outside the fixing through hole 208 fixes the fishing line to the hook placement platform 210.

[0041] In another embodiment, the fish hooks are fed by a linear feeding vibrator and fixed on the fish hook placement table 210 by a feeding clamp.

[0042] In another embodiment, please refer to Figure 1 and Figure 4The fishhook assembly component 200 also includes a fish line supporting part 270 and a fishhook blanking part 280. The fish line supporting part 270 includes a fish line supporting cylinder 272 and a fish line pressing head 274. The fish line supporting cylinder 272 is arranged on the assembly table 100. The fish line supporting cylinder 272 is arranged opposite to the hook handle winding part 220. The telescopic shaft of the fish line supporting cylinder 272 is connected to the fish line pressing head 274, and the fish line pressing head 274 is used to press the fishing line on the hook handle; the fishhook blanking part 280 includes a blanking bracket 282 and a fishhook blanking claw 284. The blanking bracket 282 is arranged on the assembly table 100. The fishhook blanking claw 284 is slidably arranged on the blanking bracket 282. The fishhook blanking claw 284 is used to grab the fishhook after the line is tied. In this embodiment, after the hook is tied, the line-holding cylinder 272 extends the line-holding head 274, causing it to press against the line on the hook shank, thereby preventing the line on the hook shank from falling off due to stress release during cutting. After cutting is completed, the line-holding cylinder 272 drives the line-holding head 274 to retract, and the hook-feeding claw 284 moves to a position corresponding to the hook, allowing the hook to be quickly removed.

[0043] In another embodiment, the number of the fishhook assembly components 200 is at least two, and the at least two fishhook assembly components 200 are arranged opposite to each other, see Figure 3 The fishing line wiring assembly 300 further includes a wiring slide 340 and a wiring scissors 350. The wiring slide 340 is slidably disposed on the fishing line wiring rack 310. The wiring scissors 350, the fishing line outlet tube 320, and the fishing line clamp 330 are all mounted on the wiring slide 340. The fishing line clamp 330 is located between the wiring scissors 350 and the fishing line outlet tube 320. The fishing line outlet tube 320 is used to fix the two ends of the fishing line on the fishing line fixing positions of the two fishhook placement platforms 210, respectively. The wiring scissors 350 is used to cut the excess line at the end of the fishing line. In this embodiment, the wiring scissors 350 and the fishing line outlet tube 320 are disposed opposite to each other, that is, the wiring scissors 350 and the fishing line outlet tube 320 are symmetrically disposed with the fishing line clamp 330 as the center line. The fishing line outlet tube 320 is wound from the fish hook assembly component 200 on the corresponding side. After completing the winding of the fish hook assembly component 200 on the other side, the wiring scissors 350 are located between the fishing line fixing position on the other side and the fishing line outlet tube 320, which is convenient for cutting the excess fishing line.

[0044] In one embodiment, see Figure 5The fishhook winding assembly device 10 also includes a rear cylinder assembly 400, and the number of the fishhook assembly assemblies 200 is at least two. At least two of the fishhook assembly assemblies 200 are symmetrically arranged, and the fishhook assembly assemblies 200 are used for placing the fishhook and tying the line. The fishing line wiring assembly 300 is used to arrange the fishing line on each of the fishhook assembly assemblies 200 so that the fishing line is tied to the fishhook. The rear cylinder assembly 400 includes a rear cylinder fixing bracket 410 and a rear cylinder power part 420. The rear cylinder fixing bracket 410 is arranged on the rear side of the fishhook assembly assemblies 200. The rear cylinder power part 420 is installed on the rear cylinder fixing bracket 410. The rear cylinder power part 420 is connected to the line tying operating part of the fishhook assembly 200. The driving shaft of the rear cylinder power part 420 and the horizontal connection line between at least two of the fishhook assembly assemblies 200 are arranged perpendicular to each other.

[0045] In this embodiment, the rear cylinder power component 420 is fixed on the rear cylinder fixing bracket 410, and the rear cylinder fixing bracket 410 is located on the rear side of the fishhook assembly component 200, so that the rear cylinder power component 420 is installed behind the fishhook assembly component 200, that is, the rear cylinder power component 420 is rear-placed, so that the rear cylinder power component 420 does not occupy the space on both sides of the fishhook assembly component 200, effectively reducing the site area occupied by it, and facilitating the miniaturization of the fishhook winding assembly device.

[0046] In one embodiment, see Figure 6 The rear cylinder power component 420 includes a first rear drive component 422, which includes a first rear drive force cylinder 4222 and a first rear drive force telescopic bar 4224. The first rear drive force cylinder 4222 is fixed on the rear cylinder fixing bracket 410, and the telescopic shaft of the first rear drive force cylinder 4222 is connected to the first rear drive force telescopic bar 4224. The first rear drive force telescopic bar 4224 is used to abut against the outer side of the fishhook placement platform of the fishhook assembly component 200. In this embodiment, the first rear drive component 422 serves as a fixed component of the fishhook placement platform, and the first rear drive force cylinder 4222 and the first rear drive force telescopic bar 4224 are both arranged on the rear cylinder fixing bracket 410 behind the fishhook assembly component 200. The first rear drive force cylinder 4222 provides power for the movement of the first rear drive force telescopic bar 4224, so that the first rear drive force telescopic bar 4224 can move on the horizontal line perpendicular to the two fishhook assembly components 200, thereby facilitating the pressure on the outer side of the fishhook placement platform of the fishhook assembly component 200 to improve the stability of the fishhook placement platform when tying the line.

[0047] Furthermore, the first rear-drive subassembly 422 further includes a rear-drive movable guide rail 4226, which is fixedly connected to the rear-cylinder fixing bracket 410, and the first rear-drive force telescopic bar 4224 is slidably disposed on the rear-drive movable guide rail 4226. In this embodiment, the rear-drive movable guide rail 4226 is also disposed on the rear-cylinder fixing bracket 410, and is located between the first rear-drive force cylinder 4222 and the fishhook placement platform. The rear-drive movable guide rail 4226 serves as a sliding guide rail for the first rear-drive force telescopic bar 4224. Specifically, the rear-drive movable guide rail 4226 is parallel to the telescopic axis of the first rear-drive force cylinder 4222, thereby facilitating the smooth guidance of the first rear-drive force telescopic bar 4224 toward the outside of the fishhook placement platform.

[0048] In one embodiment, see Figure 6 The rear cylinder power component 420 includes a second rear drive component 424, and the second rear drive component 424 includes a second rear drive force cylinder 4242 and a second rear drive force telescopic bar 4244. The second rear drive force cylinder 4242 is fixed on the rear cylinder fixing bracket 410, and the telescopic shaft of the second rear drive force cylinder 4242 is connected to the second rear drive force telescopic bar 4244. The second rear drive force telescopic bar 4244 is used to abut against the inner side of the fishhook placement platform of the fishhook assembly component 200. In this embodiment, the second rear drive component 424 serves as a fixing component of the fishhook placement platform, and the second rear drive force cylinder 4242 and the second rear drive force telescopic bar 4244 are both arranged on the rear cylinder fixing bracket 410 behind the fishhook assembly component 200. The second rear drive force cylinder 4242 provides power for the movement of the second rear drive force telescopic bar 4244, so that the second rear drive force telescopic bar 4244 can move on the horizontal line perpendicular to the two fishhook assembly components 200, thereby facilitating the pressing of the inner side of the fishhook placement platform of the fishhook assembly component 200, that is, pressing the side between the two fishhook placement platforms. By synchronously pressing with the first rear drive force telescopic bar 4224, the fishhook placement platform can be stably clamped, so as to further improve the stability of the fishhook placement platform when tying the line.

[0049] Furthermore, the second rear-drive subassembly 424 further includes a rear-drive lifting motor 4246 and a rear-drive pressing lifting bar 4248. The rear-drive lifting motor 4246 is connected to the second rear-drive force telescopic bar 4244. The lifting shaft of the rear-drive lifting motor 4246 is connected to the rear-drive pressing lifting bar 4248, so that the rear-drive pressing lifting bar 4248 is elevated and pressed against the inner side of the hook placement platform of the fishhook assembly 200. In this embodiment, the rear-drive lifting motor 4246 is disposed on the second rear-drive force telescopic bar 4244 and moves under the drive of the second rear-drive force telescopic bar 4244. The rear-drive lifting motor 4246 has a lifting function, and the rear-drive pressure lifting bar 4248 is lifted and lowered under the lifting action of the rear-drive lifting motor 4246, so that the rear-drive pressure lifting bar 4248 can be adjusted in height in the longitudinal direction, which makes it easier for the rear-drive pressure lifting bar 4248 to adjust the position of the inner side of the fishhook placement platform, thereby further improving the stability of the fishhook placement platform when tying the line.

[0050] In one embodiment, see Figure 6 The rear cylinder power component 420 includes a third rear drive component 426, and the third rear drive component 426 includes a third rear drive force cylinder 4262 and a third rear drive force telescopic strip 4264. The third rear drive force cylinder 4262 is fixed on the rear cylinder fixing bracket 410, and the telescopic shaft of the third rear drive force cylinder 4262 is connected to the third rear drive force telescopic strip 4264. The third rear drive force telescopic strip 4264 is used to connect with the fishing line unloading cutter of the fishhook assembly component 200. In this embodiment, the third rear drive component 426 serves as a fixed component of the fishhook placement platform, and the third rear drive force cylinder 4262 and the third rear drive force telescopic bar 4264 are both arranged on the rear cylinder fixing bracket 410 behind the fishhook assembly component 200. The third rear drive force cylinder 4262 provides power for the movement of the third rear drive force telescopic bar 4264, so that the third rear drive force telescopic bar 4264 can move on the horizontal line perpendicular to the two fishhook assembly components 200, thereby facilitating the cutting of excess fishing line on the fishhook assembly component 200 and realizing quick cutting of the fishing line after it is tied.

[0051] In one embodiment, see Figure 6The rear cylinder power component 420 includes a fourth rear drive component 428, and the fourth rear drive component 428 includes a fourth rear driving force cylinder 4282 and a fourth rear driving force telescopic strip 4284. The fourth rear driving force cylinder 4282 is fixed on the rear cylinder fixing bracket 410, and the telescopic shaft of the fourth rear driving force cylinder 4282 is connected to the fourth rear driving force telescopic strip 4284. The fourth rear driving force telescopic strip 4284 is used to connect with the fishing line fixing buckle of the fishhook assembly component 200. In this embodiment, the fourth rear drive component 428 serves as a fixed component of the fishhook placement platform, and the fourth rear drive force cylinder 4282 and the fourth rear drive force telescopic bar 4284 are both arranged on the rear cylinder fixing bracket 410 behind the fishhook assembly component 200. The fourth rear drive force cylinder 4282 provides power for the movement of the fourth rear drive force telescopic bar 4284, so that the fourth rear drive force telescopic bar 4284 can move on the horizontal line perpendicular to the two fishhook assembly components 200, thereby facilitating the end fixation of the fishing line on the fishhook assembly component 200 and realizing rapid fixation of the fishing line before tying it.

[0052] In one embodiment, see Figure 6 The rear cylinder power component 420 includes a fifth rear drive component 421, and the fifth rear drive component 421 includes a fifth rear drive force cylinder 4212 and a fifth rear drive force telescopic bar 4214. The fifth rear drive force cylinder 4212 is fixed on the rear cylinder fixing bracket 410, and the telescopic shaft of the fifth rear drive force cylinder 4212 is connected to the fifth rear drive force telescopic bar 4214. The fifth rear drive force telescopic bar 4214 is used to connect with the hook on the fishing line of the fishhook assembly component 200. In this embodiment, the fifth rear drive component 421 serves as a fixed component of the fishhook placement platform, and the fifth rear drive force cylinder 4212 and the fifth rear drive force telescopic bar 4214 are both arranged on the rear cylinder fixing bracket 410 behind the fishhook assembly component 200. The fifth rear drive force cylinder 4212 provides power for the movement of the fifth rear drive force telescopic bar 4214, so that the fifth rear drive force telescopic bar 4214 can move on the horizontal line perpendicular to the two fishhook assembly components 200, thereby facilitating the wiring of the hook handle position of the fishhook on the fishhook assembly component 200 and realizing precise wiring of the fishing line.

[0053] Furthermore, the fifth rear drive subassembly 421 further includes an external lug 4216, which is detachably connected to the fifth rear drive force retractable bar 4214 and is used to mount a fishing line hook. In this embodiment, the external lug 4216 is mounted on the fifth rear drive force retractable bar 4214, and the fishing line hook is disposed on the external lug 4216. The fishing line hook can be replaced by replacing the external lug 4216.

[0054] In one embodiment, the present disclosure further provides a fishhook winding machine, comprising the fishhook winding assembly device described in any of the above embodiments. In this embodiment, the fishhook winding assembly device includes an assembly platform, a fishhook assembly component and a fishing line wiring component; the fishhook assembly component includes a fishhook placement platform and a hook handle winding piece, the fishhook placement platform is rotatably connected to the hook handle winding piece, the fishhook placement platform is used to vertically place the fishhook so that the hook handle of the fishhook protrudes; the hook handle winding piece is arranged on the assembly platform, the hook handle winding piece rotates around relative to the fishhook placement platform, and the hook handle winding piece is used to wind the fishing line around the hook handle of the fishhook; the fishing line wiring component includes a fishing line wiring rack, a fishing line outlet tube and a fishing line clamp, the fishing line wiring rack is arranged on the assembly platform, the fishing line outlet tube and the fishing line clamp are both movably arranged on the fishing line wiring rack, the fishing line outlet tube is used to arrange the fishing line on the hook handle winding piece, and the fishing line clamp is used to clamp the end of the fishing line to transfer the end of the fishing line to the fishing line fixing position of the fishhook placement platform. The fishhook is placed on the fishhook placing table, and the hook handle of the fishhook corresponds to the hook handle winding piece. After one end of the fishing line is fixed to the fishing line fixing position of the fishhook placing table, the fishing line outlet pipe winds the fishing line body around the hook handle winding piece. As the hook handle winding piece surrounds the fishhook placing table, the fishing line on the hook handle winding piece is wound around the hook handle of the fishhook, so that the fishing line is tied in the form of multiple turns, realizing automatic binding of the fishhook and effectively improving production efficiency.

[0055] The above-described embodiments merely represent several implementation methods of the present disclosure. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person of ordinary skill in the art could make various modifications and improvements without departing from the spirit of the present disclosure, all of which fall within the scope of protection of the present disclosure. Therefore, the scope of protection of the present patent shall be determined by the appended claims.

Claims

1. A fishhook winding assembly device, characterized in that: include: Assembly table, A fishhook assembly assembly, comprising a fishhook placement platform and a hook shank winding member, wherein the fishhook placement platform is rotatably connected to the hook shank winding member, the fishhook placement platform being used to place the fishhook so that the hook shank of the fishhook protrudes; the hook shank winding member being disposed on the assembly platform, the hook shank winding member being rotatable relative to the fishhook placement platform, and the hook shank winding member being used to wind the fishing line around the hook shank; A fishing line wiring assembly, the fishing line wiring assembly includes a fishing line wiring rack, a fishing line outlet tube and a fishing line clamp, the fishing line wiring rack is arranged on the assembly table, the fishing line outlet tube and the fishing line clamp are both movably arranged on the fishing line wiring rack, the fishing line outlet tube is used to arrange the fishing line on the hook handle winding piece, and the fishing line clamp is used to clamp the end of the fishing line to transfer the end of the fishing line to the fishing line fixing position of the hook placement table.

2. The fishhook winding assembly device according to claim 1, characterized in that: The fishhook placement platform includes a placement base and a fishhook clamp. The placement base is rotatably connected to the hook handle winding piece. The fishhook clamp is installed on the placement base and is used to fix and clamp the fishhook.

3. The fishhook winding assembly device according to claim 2, characterized in that: The fishhook placement platform is provided with a clamping claw accommodating groove, and the fishhook clamping claw is installed in the clamping claw accommodating groove.

4. The fishhook winding assembly device according to claim 1, characterized in that: The hook handle winding member includes a fishing line fixing buckle, a fishing line pull hook, a fishing line temporary storage rack and a plurality of fishing line temporary storage telescopic columns. The fishing line temporary storage rack is rotatably connected to the fish hook placement platform, and a plurality of the fishing line temporary storage telescopic columns are arranged on the fishing line buffer rack; the fishing line fixing buckle is movably arranged on the fish hook placement platform, the fishing line fixing buckle is movably connected to the fish hook placement platform, and the fishing line fixing buckle is used to fix the end of the fishing line on the fish hook placement platform; the fishing line pull hook is located on the side of the fish hook placement platform away from the assembly platform, and the fishing line pull hook and the plurality of the fishing line temporary storage telescopic columns are used to wind part of the fishing line.

5. The fishhook winding assembly device according to claim 4, characterized in that: The distance between the fishing line fixing buckle and the fish hook placement platform is smaller than the distance between the upper hook of the fishing line and the fish hook placement platform, and at least one of the fishing line temporary storage telescopic columns is flush with the end of the hook handle.

6. The fishhook winding assembly device according to claim 4, characterized in that: The fishhook assembly component also includes a line-releasing slider, a line-releasing guide column and a line-releasing spring. The line-releasing guide column is arranged on the fishing line temporary storage rack. The line-releasing slider and the line-releasing spring are both slidably mounted on the line-releasing guide column. The line-releasing spring is respectively connected to the line-releasing slider and the fishing line temporary storage rack. At least one fishing line temporary storage telescopic column is provided on the line-releasing slider.

7. The fishhook winding assembly device according to claim 4, characterized in that: The hook handle winding member also includes a winding motor and a winding swivel. The rotating shaft of the winding motor is connected to the winding swivel. The winding swivel is sleeved outside the fish hook placement platform. The fishing line temporary storage rack is connected to the winding swivel so that the fishing line temporary storage rack can rotate around the fish hook placement platform.

8. The fishhook winding assembly device according to claim 7, characterized in that: The hook handle winding member also includes a winding connecting shaft, a winding fixing disk, a winding lifting disk and at least two winding lifting rods, the winding connecting shaft is rotatably connected to the fish hook placement platform and the winding fixing disk respectively, the winding connecting shaft is also fixedly connected to the fishing line temporary storage rack, the winding fixing disk is located on a side of the fish hook placement platform close to the winding swivel, the winding lifting disk is located between the winding fixing disk and the winding swivel, the winding lifting disk is rotatably connected to the winding fixing disk, and the winding lifting disk is fixedly connected to the winding swivel; the winding fixing disk is provided with at least two lifting through holes, each of the winding lifting rods passes through one of the lifting through holes and is clamped with the fish hook placement platform, the outer wall of the winding lifting disk is provided with a lifting groove, and part of each of the winding lifting rods is slidably arranged in the lifting groove, and the fishing line temporary storage rack corresponds to the descending area of ​​the lifting groove.

9. The fishhook winding assembly device according to claim 8, characterized in that: The lifting groove includes a high-order groove, a low-order groove and two downward grooves. The downward grooves are connected to the high-order groove and the low-order groove respectively. The distance between the high-order groove and the winding swivel is greater than the distance between the low-order groove and the winding swivel. The low-order groove is arranged opposite to the fishing line temporary storage rack.

10. A fishhook winding machine, characterized in that: The invention comprises a fishhook winding assembly device according to any one of claims 1 to 9.