CN213427888U - Water droplet wheel damping structure - Google Patents

Water droplet wheel damping structure Download PDF

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Publication number
CN213427888U
CN213427888U CN202022422581.1U CN202022422581U CN213427888U CN 213427888 U CN213427888 U CN 213427888U CN 202022422581 U CN202022422581 U CN 202022422581U CN 213427888 U CN213427888 U CN 213427888U
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China
Prior art keywords
damping
seat
wheel
magnetic steel
main shaft
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CN202022422581.1U
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Chinese (zh)
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严智超
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Ningbo Zechao Fishing Tackle Co ltd
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Ningbo Zechao Fishing Tackle Co ltd
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Abstract

The utility model relates to a fishing tackle field specifically is a water droplet wheel damping structure. The utility model provides a water droplet wheel damping structure, which comprises a housin, be equipped with main shaft and line wheel in the casing, the line wheel is connected with the main shaft, line wheel right side is equipped with the damping seat, damping seat and main shaft swing joint, be equipped with the slider between damping seat and the line wheel, slider and damping seat swing joint, damping seat right side is equipped with damping adjusting part, damping adjusting part is connected with the casing, damping adjusting part includes the magnetism steel seat, be equipped with the magnet steel on the magnetism steel seat, magnetism steel seat right side is equipped with the adjust knob who is connected with it, the distance between rotatory adjust knob can adjust magnetism steel seat and the damping seat and then adjust the damping size, line wheel rotates when throwing the line, gliding slider pushes the damping seat to the magnetism steel seat, damping seat cutting magnetic force induction line reaches the damping effect. The utility model discloses an useful part: the design of slider, line cup inner wall and damping seat can adapt to the throwing power use of equidimension not, prevents to throw the in-process and explodes the line.

Description

Water droplet wheel damping structure
Technical Field
The utility model relates to a fishing tackle field specifically is a water droplet wheel damping structure.
Background
In the twinkling of an eye that just goes out of throwing, the bait is acted as go-between and is driven the line wheel and rotate, and the line wheel rotates will be more and more fast, to a locating position, and the bait does not have the power that stimulates the line wheel, but the line wheel is still pivoted fast, leads to the line on the line wheel to go out fast to produce the mixed and disorderly winding problem of the internal line of rocking wheel line wheel, we call the fried line.
Disclosure of Invention
In order to solve the technical problem that the existing water droplet wheel is easy to explode in the line throwing process, the utility model provides a water droplet wheel damping structure.
The technical scheme of the utility model as follows:
the utility model provides a water droplet wheel damping structure, which comprises a housin, be equipped with main shaft and line wheel in the casing, the line wheel is connected with the main shaft, line wheel right side is equipped with the damping seat, damping seat and main shaft swing joint, be equipped with the slider between damping seat and the line wheel, slider and damping seat swing joint, damping seat right side is equipped with damping adjusting part, damping adjusting part is connected with the casing, damping adjusting part includes the magnetism steel seat, be equipped with the magnet steel on the magnetism steel seat, magnetism steel seat right side is equipped with the adjust knob who is connected with it, the distance between rotatory adjust knob can adjust magnetism steel seat and the damping seat and then adjust the damping size, line wheel rotates when throwing the line, gliding slider pushes the damping seat to the magnetism steel seat, damping seat cutting magnetic force induction line reaches the damping effect.
The main shaft is provided with a limiting pin, the limiting pin is fixedly connected with the main shaft, the damping seat is movably connected with the main shaft through the limiting pin, the left part of the damping seat is provided with a limiting seat, and the limiting pin is located in the limiting seat.
The damping seat is connected with the main shaft through a clamp spring, the left end of the spring is connected with the right end of the damping seat, and the right end of the spring is connected with the limiting ring.
And a sliding block groove is formed between the damping seat and the wire wheel in a concave mode, and the sliding block is movably arranged in the sliding block groove.
The slider quantity is 2, and 2 sliders are symmetry setting from top to bottom.
The slider left end and right-hand member are straight flat, and the slider lateral wall is the inclined plane setting, and the corresponding position of line wheel inner wall is the inclined plane setting.
The side wall inclined plane of the sliding block and the inner wall inclined plane of the wire wheel are smooth in surface.
The end face before the magnetism steel seat is equipped with the magnet steel, and magnet steel quantity is 12, 12 magnet steel evenly distributed.
The front end face of the magnetic steel seat installation magnetic steel is obliquely arranged, and the outer wall of the right part of the damping seat is obliquely arranged.
The right side of the magnetic steel seat is provided with an adjusting column connected with the magnetic steel seat, and the adjusting column is connected with an adjusting knob on the right side of the adjusting column.
The technical scheme of the utility model has novel structure and ingenious design, the design of the slide block, the inner wall of the line cup and the damping seat can adapt to the throwing force with different sizes, and the damping can be automatically and steplessly adjusted according to the different throwing forces, thereby preventing the line from being broken in the line throwing process; the interaction part of the magnetic steel seat and the damping seat is designed into an inclined plane and an inclined plane to interact, so that the effect of the plane and the plane can be achieved except for the change of the distance between the magnetic steel seat and the damping seat, and the action area of the magnetic force line of the magnetic steel can be changed due to the change of the distance, so that the resistance effect on the rotation of the wire wheel can be more sensitively achieved.
Drawings
Fig. 1 is a schematic cross-sectional view of the present invention;
FIG. 2 is a schematic sectional view of a part of the structure of the present invention;
fig. 3 is a schematic sectional view of a part of the structure of the present invention.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings and examples, which are only used for explaining the present invention and do not limit the scope of the present invention.
Examples
The water wheel damping structure as shown in fig. 1-3 comprises a water wheel housing 1, a main shaft 2 and a wire wheel 3 are transversely arranged in the housing 1, the wire wheel 3 is fixedly connected with the main shaft 2, the wire wheel 3 is sleeved outside the main shaft 2, two ends of the main shaft 2 are movably connected with the housing 1, a damping seat 4 is arranged at the right side of the wire wheel 3, the damping seat 4 is movably connected with the main shaft 2, the damping seat 4 is sleeved outside the main shaft 2, the damping seat 4 rotates along with the main shaft 2 and can axially move on the main shaft 2, a limiting pin 9 is longitudinally arranged on the main shaft 2, the limiting pin 9 is fixedly connected with the main shaft 2, the damping seat 4 is movably connected with the main shaft 2 through the limiting pin 9, a limiting seat 10 is arranged at the left part of the damping seat 4, limiting positions are formed at the left end and the right end of the limiting seat 10, the limiting pin 9 is arranged between the limiting positions at two ends in the limiting seat 10, the damping seat 4, a spring 11 is arranged between the damping seat 4 and the main shaft 2, the spring 11 is sleeved outside the main shaft 2, the spring 11 is positioned at the right side of the damping seat 4, the right part of the main shaft 2 is provided with a limit ring 12, the limit ring 12 is connected with the main shaft 2 through a clamp spring 13, a clamp spring groove is formed on the upper portion of the main shaft 2 in a sunken way, the clamp spring 13 is clamped in the clamp spring groove for fixing, a spring fixing groove is formed at the right end of the damping seat 4 in a protruding way, the left end of the spring 11 is clamped in the spring fixing groove at the right end of the damping seat 4, the right end of the spring 11 is connected with the limit ring 12, the spring 11 applies leftward restoring force to the damping seat 4, the damping seat 4 is restored to the initial position when the damping seat 4 is not stressed, a sliding block 5 is arranged between the damping seat 4 and the wire wheel 3, the sliding block 5 is movably connected with the, the number of the sliding blocks 5 is 2, the 2 sliding blocks 5 are symmetrically arranged up and down, of course, the number of the sliding blocks 5 is not completely limited, as long as the sliding blocks 5 are uniformly distributed, other numbers of the sliding blocks 5 can also achieve the setting effect, so the scheme of the 2 sliding blocks 5 of the embodiment can not limit the protection range of the utility model, the left end and the right end of the sliding block 5 are smooth and straight surfaces, the side wall of the sliding block 5 is arranged in an inclined plane, the corresponding position of the inner wall of the wire wheel 3 is arranged in an inclined plane, the inclination of the two inclined planes is consistent, the inclined planes of the side wall of the sliding block 5 and the inclined plane of the inner wall of the wire wheel 3 are smooth, the friction force between the inclined planes is small, no retardation is generated in the sliding process, the left end surface of the damping seat 4 is smooth and straight surface, the right end surface of the sliding block 5 is contacted, the damping adjusting component is connected with the shell 1, the damping adjusting component comprises a magnetic steel seat 6, the front end face of the magnetic steel seat 6 is sunken to form a magnetic steel mounting position, magnetic steel 7 is arranged in the magnetic steel mounting position, the number of the magnetic steel 7 is 12, 12 magnetic steels 7 are uniformly distributed on the front end face of the magnetic steel seat 6, certainly, the number of the magnetic steel 7 is not completely limited, other numbers of the magnetic steels 7 can also achieve the setting effect as long as the magnetic steels are uniformly distributed, so the scheme of the 12 magnetic steels 7 in the embodiment can not limit the protection range of the utility model, the right side of the magnetic steel seat 6 is provided with an adjusting column connected with the magnetic steel seat, the adjusting column is connected with an adjusting knob 8 on the right side of the adjusting column, the existing damping adjusting component can be designed, the existing damping adjusting component can complete the function of adjusting the position of the magnetic steel seat 6, the front end face of the magnetic steel seat 6 provided with the magnetic steel, the gradient of two slope terminal surfaces is unanimous, be different from traditional plane and plane interact, the utility model relates to an inclined plane and inclined plane interact, control about magnet steel seat 6 and damping seat 4, except that change between them can reach the effect of plane and plane effect, this kind of mode can also let magnet steel 7 magnetic line of force effect area change because of receiving the change of interval size to can more sensitive play the resistance effect to the rotation of wheel 3, 6 left end middle parts of magnet steel seat are sunken to be formed and are used for the holding position of holding damping seat 4, 4 right-hand members of damping seat get into the holding position of 6 left ends of magnet steel seat when damping seat 4 is close to magnet steel seat 6.
When the device is used, the adjusting knob 8 is firstly rotated to drive and adjust the distance between the magnetic steel seat 6 and the damping seat 4 so as to adjust the initial damping size, then the line throwing can be carried out, when the line throwing is carried out forcefully, the line wheel 3 is rapidly rotated under the pulling force, the slide block 5 is moved outwards under the action of the centrifugal force, because the slide block 5 is matched with the inner wall of the line wheel 3 in an inclined manner, the slide block 5 is pushed rightwards, so that the slide block 5 drives the damping seat 4 to move rightwards, when the aluminum damping seat 4 is close to the magnetic steel seat 6, the magnetic line of force generated by the uniformly distributed magnetic steel 7 on the magnetic steel seat 6 plays a resistance role on the rotating damping seat 4, the line wheel 3 rotates faster in the line throwing process, the damping seat 4 is closer to the magnetic steel seat 6, the resistance is larger, the rotating speed of the line wheel 3 is rapidly reduced, the line explosion prevention function is played, and simultaneously, different rightwards moving distances can be brought to the damping seat 4, the throwing force is larger, the rightwards moving distance of the damping seat 4 is larger, the received resistance is larger, the throwing force is smaller, the rightwards moving distance of the damping seat 4 is smaller, the received resistance is smaller, the damping seat 4 resets leftwards under the restoring force of the spring 11 after the throwing is finished, and the resistance received by the reel 3 also returns to the initial state.
It should be understood that the above-mentioned embodiments are only preferred embodiments of the present invention, and not intended to limit the technical solutions of the present invention, and those skilled in the art can add, subtract, replace, change or modify the above-mentioned embodiments without departing from the spirit and principle of the present invention, and all such additions, substitutions, changes or modifications should fall within the scope of the appended claims.

Claims (10)

1. A drip wheel damping structure, includes casing (1), its characterized in that: the damping device is characterized in that a main shaft (2) and a wire wheel (3) are arranged in a shell (1), the wire wheel (3) is connected with the main shaft (2), a damping seat (4) is arranged on the right side of the wire wheel (3), the damping seat (4) is movably connected with the main shaft (2), a sliding block (5) is arranged between the damping seat (4) and the wire wheel (3), the sliding block (5) is movably connected with the damping seat (4), a damping adjusting component is arranged on the right side of the damping seat (4), the damping adjusting component is connected with the shell (1) and comprises a magnetic steel seat (6), magnetic steel (7) is arranged on the magnetic steel seat (6), an adjusting knob (8) connected with the magnetic steel seat is arranged on the right side of the magnetic steel seat (6), the distance between the magnetic steel seat (6) and the damping seat (4) can be adjusted by rotating the adjusting knob (8) so as to adjust the damping size, the wire wheel (3) rotates when a wire is thrown, the, the damping seat (4) cuts the magnetic induction line to achieve the damping effect.
2. The drip wheel damping structure of claim 1, wherein: be equipped with spacer pin (9) on main shaft (2), spacer pin (9) and main shaft (2) fixed connection, damping seat (4) are through spacer pin (9) and main shaft (2) swing joint, and damping seat (4) left part is equipped with spacing seat (10), and spacer pin (9) are located spacing seat (10).
3. The drip wheel damping structure of claim 1, wherein: be equipped with spring (11) between damping seat (4) and main shaft (2), spring (11) cover is established outside main shaft (2), and spring (11) are located damping seat (4) right side, and main shaft (2) right part is equipped with spacing ring (12), and spacing ring (12) are connected with main shaft (2) through jump ring (13), and spring (11) left end is connected with damping seat (4) right-hand member, and spring (11) right-hand member is connected with spacing ring (12).
4. The drip wheel damping structure of claim 1, wherein: a sliding block groove (14) is formed between the damping seat (4) and the wire wheel (3) in a concave mode, and the sliding block (5) is movably arranged in the sliding block groove (14).
5. The drip wheel damping structure according to claim 1 or 4, wherein: the number of the sliding blocks (5) is 2, and the 2 sliding blocks (5) are arranged in an up-down symmetrical mode.
6. The drip wheel damping structure of claim 4, wherein: the slider (5) left end and right-hand member are straight flat, and slider (5) lateral wall is the inclined plane setting, and line wheel (3) inner wall corresponds the position and is the inclined plane setting.
7. The drip wheel damping structure of claim 6, wherein: the side wall inclined plane of the sliding block (5) and the inner wall inclined plane surface of the wire wheel (3) are smooth.
8. The drip wheel damping structure of claim 1, wherein: the magnetic steel seat is characterized in that magnetic steel (7) is arranged on the front end face of the magnetic steel seat (6), the number of the magnetic steel (7) is 12, and the 12 magnetic steel (7) are uniformly distributed.
9. The drip wheel damping structure of claim 1, wherein: the front end face of the magnetic steel seat (6) provided with the magnetic steel (7) is obliquely arranged, and the outer wall of the right part of the damping seat (4) is obliquely arranged.
10. The drip wheel damping structure of claim 1, wherein: the right side of the magnetic steel seat (6) is provided with an adjusting column connected with the magnetic steel seat, and the adjusting column is connected with an adjusting knob (8) on the right side of the adjusting column.
CN202022422581.1U 2020-10-27 2020-10-27 Water droplet wheel damping structure Active CN213427888U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022422581.1U CN213427888U (en) 2020-10-27 2020-10-27 Water droplet wheel damping structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022422581.1U CN213427888U (en) 2020-10-27 2020-10-27 Water droplet wheel damping structure

Publications (1)

Publication Number Publication Date
CN213427888U true CN213427888U (en) 2021-06-15

Family

ID=76296072

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022422581.1U Active CN213427888U (en) 2020-10-27 2020-10-27 Water droplet wheel damping structure

Country Status (1)

Country Link
CN (1) CN213427888U (en)

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