Self-adaptive thread washing spinning wheel

By using a coaxial parallel wheel and winding shaft design in the line washing device, and utilizing sliders and elastic elements to achieve adaptive tension adjustment of the fishing line, the problem of complex operation of existing devices is solved, and a simple cleaning effect for fishing lines is achieved.

CN223667105UActive Publication Date: 2025-12-16朱之鸿
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Patent Information

Application Number
CN202520008510.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-12-16
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing line cleaning devices are complex in structure, inconvenient for users to operate, and difficult to effectively clean fishing lines without removing them.

Method used

It adopts two coaxial parallel wheels and a winding shaft. The winding shaft consists of crossbars distributed at equal angles. Sliders are provided at both ends of the crossbars. The elastic element realizes the adaptive tension adjustment of the fishing line. The sliders slide in the shaft hole and the slide groove to adjust the winding tightness of the fishing line.

Benefits of technology

It enables adaptive tension adjustment of the fishing line without removing it, simplifying the operation, ensuring that the fishing line maintains appropriate looseness during the cleaning process, and improving the cleaning effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

A self-adaptive thread washing spinning wheel comprises two wheel bodies which are coaxially arranged in parallel and a winding shaft connected between the two wheel bodies, the winding shaft comprises at least three transverse rods which are distributed around the axes of the wheel bodies at equal angular distances, the axial directions of the transverse rods are parallel to the axes of the wheel bodies, and sliding blocks which are symmetrically arranged are arranged at the two ends of at least one transverse rod; a sliding groove matched with the sliding block is formed in the side, back on to the winding shaft, of the wheel body, the sliding groove penetrates into the shaft hole in the radial direction of the wheel body, and a long hole penetrating through the wheel body is formed in the sliding groove. The two ends of the cross rod provided with the sliding blocks are inserted into the long holes of the wheel bodies located at the ends respectively, and the sliding blocks are in sliding fit in the sliding grooves in the radial direction of the wheel bodies; one end of the slide block back to the shaft hole is provided with an elastic member elastically abutted against one end of the slide groove towards the outer edge of the wheel body. The device is simple in structure and easy and convenient to operate, and tightness adjustment of the fishing line is achieved in a self-adaptive mode under the condition that extra operation is not needed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of fishing tackle, concretely is a self -adaptation's washes line spinning wheel. BACKGROUND

[0002] After sea fishing, the fishing line needs to be soaked and cleaned in fresh water to remove the salt on the fishing line, so as to avoid the corrosion and damage of salt to the fishing line.

[0003] In order to better implement the cleaning of the fishing line, the Chinese invention application with publication number CN113349175A discloses a washing line spinning wheel, the spinning wheel core can be elastically deformed along the axial direction, can make the originally closely wound fishing line on the spinning wheel become relaxed, so that the fishing line on the spinning wheel becomes loose and has a gap between each turn, so that the fishing line can be cleaned better everywhere without being taken off from the spinning wheel.

[0004] The applicant found in practice that the above-mentioned existing technology as a representative of the washing line device structure is too complex, and the user is still inconvenient to operate, which needs to be improved. UTILITY MODEL CONTENT

[0005] The utility model aims at satisfying the above-mentioned needs of prior art, and provides a self -adaptation's washes line spinning wheel, and the technical scheme is as follows.

[0006] The self -adaptation's washes line spinning wheel, including two wheel bodies that are coaxial and parallel, and the winding shaft connected between the two wheel bodies, the winding shaft includes at least three horizontal rods that are distributed at equal angular intervals around the axis of the wheel body, the axial direction of the horizontal rod is parallel to the axis of the wheel body, and the two ends of at least one horizontal rod are provided with symmetrically arranged sliding blocks;

[0007] The center of the wheel body is provided with an axle hole, and the side of the wheel body away from the winding shaft is provided with a sliding groove matched with the sliding block, the sliding groove penetrates into the axle hole along the radial direction of the wheel body, and a long hole penetrating through the wheel body is formed in the sliding groove, and the length direction of the long hole is consistent with the radial direction of the wheel body;

[0008] The two ends of the horizontal rod provided with the sliding block are respectively inserted into the long hole of the wheel body at the end, and the sliding block is slidably matched in the sliding groove along the radial direction of the wheel body;

[0009] The end of the sliding block away from the axle hole is provided with an elastic element elastically abutting against the end of the sliding groove facing the outer side of the wheel body; the sliding block slides towards the axle hole under the action of the elastic element, and when the horizontal rod connected with the sliding block expands outward to the end of the long hole facing the axle hole, the end of the sliding block facing the axle hole just enters the axle hole; the sliding block slides away from the axle hole against the elastic element, and when the horizontal rod connected with the sliding block expands outward to the end of the long hole away from the axle hole, the axial lines of all the horizontal rods are located on the same cylindrical surface.

[0010] In an improved technical scheme, the winding shaft has at least three horizontal rods without sliding blocks at both ends.

[0011] Further, the crossbar with the sliding blocks at both ends is equal in number to the crossbar without the sliding blocks at both ends and is staggered.

[0012] In a preferred technical solution, the elastic member is a cylindrical spring, and the end of the sliding block away from the shaft hole has a pin column for the cylindrical spring to be sleeved.

[0013] In a preferred technical solution, a positioning screw hole is arranged between the long hole and the end of the sliding slot facing the shaft hole, and a positioning screw threadedly matched with the positioning screw hole is arranged on the sliding block; when the end of the shaft hole of the sliding block is located at the edge of the shaft hole, the positioning screw can be screwed into the positioning screw hole.

[0014] In a preferred technical solution, the end of the sliding block facing the shaft hole is provided as a wedge surface.

[0015] Compared with the prior art, the utility model has the following beneficial effects:

[0016] With a main shaft adapted to the shaft hole being inserted into the shaft hole of the wheel body, the crossbar with the sliding blocks at both ends can be expanded along the radial direction of the wheel body, and at this time, the fishing line is wound on the spool with normal tightness; once the main shaft is pulled out of the shaft hole, the sliding blocks will move towards the shaft hole under the action of the elastic member, so that the crossbar with the sliding blocks at both ends is retracted along the radial direction of the wheel body, and the fishing line originally wound on the spool with normal tightness becomes loose, and the fishing lines of each turn become loose and have gaps; obviously, the utility model has the advantages of simple structure and easy operation, and the tightness of the fishing line is self-adaptively adjusted without additional operation.

[0017] In the following, the utility model is further described in combination with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a structural schematic diagram of the utility model.

[0019] Figure 2 is a structural schematic diagram of the wheel body in the utility model.

[0020] Figure 3 is an assembly structural schematic diagram of the crossbar with the sliding blocks in the utility model.

[0021] Figure 4 is a working principle schematic diagram of the utility model Figure 1 .

[0022] Figure 5 is a working principle schematic diagram of the utility model Figure 2 .

[0023] Figure 6 is a structural schematic diagram of the first embodiment of the utility model.

[0024] Figure 7 is a structural schematic view of embodiment two of the utility model.

[0025] Figure 8 is a structural schematic view of embodiment three of the utility model. DETAILED DESCRIPTION

[0026] Please refer to Figures 1 to 3 The utility model discloses a self -adaptation's line washing flywheel, including coaxial parallel two wheel bodies 1 and the winding shaft 2 connected between two wheel bodies 1, and the winding shaft 2 includes at least three horizontal rods 21 around the equiangular distance distribution of the axis of wheel body 1, and the axial direction of horizontal rod 21 is parallel to the axis of wheel body 1, wherein the both ends of at least one horizontal rod 21 have symmetrically arranged sliding block 22;

[0027] The center of wheel body 1 is provided with shaft hole 11, and the side of wheel body 1 away from winding shaft 2 is provided with sliding slot 12 matched with sliding block 22, sliding slot 12 leads into shaft hole 11 along the radial direction of wheel body 1, and long hole 13 is formed in sliding slot 12 and penetrates wheel body 1, and the length direction of long hole 13 is consistent with the radial direction of wheel body 1;

[0028] The both ends of horizontal rod 21 provided with sliding block 22 are inserted into long hole 13 of wheel body 1 at the end respectively, and sliding block 22 is slidably matched in sliding slot 12 along the radial direction of wheel body 1;

[0029] The end of sliding block 22 away from shaft hole 11 is provided with elastic element 23 elastically abutting with the end of sliding slot 12 towards the outer side of wheel body 1, sliding block 22 slides towards shaft hole 11 under the action of elastic element 23, and when horizontal rod 21 connected with sliding block 22 expands outward to the end of long hole 13 towards shaft hole 11, the end of sliding block 22 towards shaft hole 11 just enters into shaft hole 11, sliding block 22 slides away from shaft hole 11 against the elastic element 23, and when horizontal rod 21 connected with sliding block 22 expands outward to the end of long hole 13 away from shaft hole 11, the axis of all horizontal rods 21 is located on the same cylindrical surface.

[0030] As shown in Figure 4 With the main shaft 9 adapted to shaft hole 11 being penetrated in the shaft hole 11 of wheel body 1, for example, the utility model is installed in the common line frame / take-up frame in prior art, so that horizontal rod 21 provided with sliding block 22 at both ends expands outward along the radial direction of wheel body 1, and at this time, the fishing line is wound on winding shaft 2 with normal tightness.

[0031] As shown in Figure 5As shown, once the main shaft 9 is pulled out of the shaft hole 11, the slider 22 will move towards the shaft hole 11 under the action of the elastic element 23, causing the crossbar 21 with sliders 22 at both ends to shrink radially inward along the wheel body 1, causing the fishing line that was originally wound on the winding shaft 2 with normal tension to become loose, and the fishing line between each turn of fishing line to become loose and have gaps. At this time, the fishing line can be fully soaked and cleaned.

[0032] like Figure 3 As shown, in a preferred embodiment, the elastic element 23 is a cylindrical spring, and the end of the slider 22 away from the shaft hole 11 has a pin 24 for the cylindrical spring to be sleeved.

[0033] Figure 3 As shown, in another preferred embodiment, a positioning screw hole 14 is provided between the elongated hole 13 and the end of the sliding groove 12 facing the shaft hole 11, and a threaded positioning screw 25 is provided on the slider 22; when one end of the slider 22 is located at the edge of the shaft hole 11, the positioning screw 25 can be screwed into the positioning screw hole 14 to lock the crossbar 21 on which the slider 22 is located. The advantage of this arrangement is that, in cases where the fishing line does not need to be cleaned or has been cleaned and dried, it can always be ensured that the fishing line is wound on the winding spool 2 with normal tension.

[0034] like Figure 3 As shown, in another preferred embodiment, the end of the slider 22 facing the shaft hole 11 is provided as a wedge surface 26. The wedge surface 26 pushes the slider 22 when the main shaft 9 is inserted, making the operation easier. Therefore, both sides of the end of the slider 22 facing the shaft hole 11 can be provided as wedge surfaces so that the main shaft 9 can be inserted into the two wheels 1 more smoothly.

[0035] Based on the above embodiments, the present invention can have multiple implementations for the configuration of the crossbar 21.

[0036] Example 1

[0037] like Figure 6 As shown, in Embodiment 1, both ends of the crossbar 21 of the winding shaft 2 have symmetrically arranged sliders 22.

[0038]

Example 2

[0039] like Figure 7 As shown, in Embodiment 2, the winding shaft 2 has at least three crossbars 21 without sliders 22 at both ends, and at least one crossbar 21 with sliders 22 at both ends. The two ends of the crossbar 21' without sliders 22 are directly fixed to the wheel body 1.

[0040]

Example 3

[0041] like Figure 8As shown, on the basis of the embodiment two, the cross bars 21 with the sliding blocks 22 at both ends in the bobbin 2 are the same in number as the cross bars 21' without the sliding blocks 22 at both ends and are staggered.

[0042] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An adaptive thread-washing spinning wheel, comprising two wheel bodies coaxially juxtaposed, and a bobbin connected between the two wheel bodies, characterized in that: the bobbin comprises at least three crossbars equiangularly distributed around the axis of the wheel bodies, the axis of the crossbars being parallel to the axis of the wheel bodies, wherein both ends of at least one crossbar are provided with symmetrically arranged sliding blocks; an axial hole is formed at the center of the wheel bodies, and a sliding groove matched with the sliding blocks is formed on the side of the wheel bodies facing away from the bobbin, the sliding groove leads into the axial hole along the radial direction of the wheel bodies, and a long hole is formed in the sliding groove and penetrates through the wheel bodies, the length direction of the long hole being consistent with the radial direction of the wheel bodies; the two ends of the crossbar provided with the sliding blocks are respectively inserted into the long hole of the wheel body at the end, and the sliding blocks are slidably matched in the sliding groove along the radial direction of the wheel bodies; an elastic member is arranged at the end of the sliding block facing away from the axial hole and elastically abuts against the end of the sliding groove facing outward along the wheel bodies; the sliding block slides toward the axial hole under the action of the elastic member, and when the crossbar connected with the sliding block is expanded to the end of the long hole facing the axial hole, the end of the sliding block facing the axial hole just enters the axial hole; the sliding block slides away from the axial hole against the elastic member, and when the crossbar connected with the sliding block is expanded to the end of the long hole away from the axial hole, the axes of all the crossbars are located on the same cylindrical surface.

2. The self-adapting cleaning spindel according to claim 1, characterized in that: the bobbin comprises at least three crossbars without sliding blocks at both ends.

3. The self-adapting cleaning spool as claimed in claim 2, wherein: the number of crossbars with sliding blocks at both ends in the bobbin is the same as that of crossbars without sliding blocks at both ends and the crossbars are staggered.

4. The self-adapting cleaning spool as claimed in claim 1 or 2 or 3, wherein: the elastic member is a cylindrical spring, and the end of the sliding block away from the axial hole is provided with a pin column for sleeving the cylindrical spring.

5. The self-adapting cleaning spool as claimed in claim 1 or 2 or 3, wherein: a positioning screw hole is arranged between the end of the long hole facing the axial hole and the end of the sliding groove facing the axial hole, and a positioning screw threadedly matched with the sliding block is arranged on the end of the sliding block; when the end of the sliding block is located at the edge of the axial hole, the positioning screw can be screwed into the positioning screw hole.

6. The self-adapting cleaning spool as claimed in claim 1 or 2 or 3, wherein: the end of the sliding block facing the axial hole is provided with a wedge surface.

Citation Information

Patent Citations

  • Line cleaning spinning reel

    CN113349175A