Gear mechanism for a fishing reel
10609914 · 2020-04-07
Assignee
Inventors
- Takuji Takamatsu (Osaka, JP)
- Tetsuo Inoue (Osaka, JP)
- Kei SAITO (Osaka, JP)
- Satoshi Ikebukuro (Osaka, JP)
Cpc classification
F16H55/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/17
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
A01K89/01
HUMAN NECESSITIES
F16H55/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/17
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A01K89/015
HUMAN NECESSITIES
Abstract
A gear mechanism for a fishing reel includes first and second gears. The first gear has first gear teeth including a first driving side face, and a first reverse side face opposite the first driving side face. The second gear has second gear teeth including a second driven side face that meshes with a respective first driving side faces, and a second reverse side face that faces a respective first reverse side face, and opposite the second driven side faces. At least one of each of the first reverse side faces and each of the second reverse side faces includes an interference prevention portion to prevent interference with the other of the opposing first reverse side faces and second reverse side faces.
Claims
1. A gear mechanism for a fishing reel, comprising: a first gear having a plurality of first gear teeth, each of the plurality of first gear teeth including a first driving side face configured to transmit power during rotation in a rotational direction for winding a fishing line, and a first reverse side face opposite the first driving side face; and a second gear having a plurality of second gear teeth, each of the plurality of second gear teeth including a second driven side face configured to mesh with the first driving side face and to which the power of the first gear is transmitted, and a second reverse side face that faces the first reverse side face, and being opposite the second driven side face, the first gear teeth being higher in strength than the second gear teeth, at least one of the first reverse side face and the second reverse side face comprises an interference prevention portion configured to prevent interference with the other of the opposing the first reverse side face and the second reverse side face, and the interference prevention portion is formed in at least one of a tooth bottom of the first reverse side face of the first gear and a tooth top of the second reverse side face of the second gear.
2. The gear mechanism for a fishing reel according to claim 1, wherein the interference prevention portion has a notched portion formed by cutting out at least one of the first reverse side face and the second reverse side face.
3. The gear mechanism for a fishing reel according to claim 1, wherein the first gear is a drive gear, and the second gear is a pinion gear configured to mesh with the drive gear.
4. A gear mechanism for a fishing reel, comprising: a first gear having a plurality of first gear teeth, each of the plurality of first gear teeth including a first driving side face configured to transmit power during rotation in a rotational direction for winding a fishing line, and a first reverse side face opposite the first driving side face; and a second gear having a plurality of second gear teeth, each of the plurality of second gear teeth including a second driven side face configured to mesh with the first driving side face and to which the power of the first gear is transmitted, and a second reverse side face that faces the first reverse side face, and being opposite the second driven side face, the first gear teeth are lower in strength than the second gear teeth, at least one of the first reverse side face and the second reverse side face comprises an interference prevention portion configured to prevent interference with the other of the opposing the first reverse side face and the second reverse side face, and the interference prevention portion is formed in at least one of a tooth tip of the first reverse side faces of the first gear and a tooth root of the second reverse side faces of the second gear.
5. The gear mechanism for a fishing reel according to claim 4, wherein the interference prevention portion has a notched portion formed by cutting out at least one of the first reverse side face and the second reverse side face.
6. The gear mechanism for a fishing reel according to claim 4, wherein the first gear is a drive gear, and the second gear is a pinion gear configured to mesh with the drive gear.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
DETAILED DESCRIPTION OF THE EMBODIMENTS
First Embodiment
(10)
(11) The reel body 1 comprises an internal space, and a rotor drive mechanism 5, an oscillating mechanism 6 for uniformly winding (reeling) a fishing line onto the spool 3, and the like are housed in the internal space. A handle 8 is mounted on the side of the reel body 1 so as to be rotatable with respect to the reel body 1.
(12) The spool shaft 2 is provided to the reel body 1, extending in the front-rear direction. The spool shaft 2 is supported on the reel body 1 so as to be movable in the front-rear direction.
(13) The spool 3 is a member on the outer perimeter of which a fishing line is wound. The spool 3 is fixed to the spool shaft 2 by a knob member 10 that screws onto the tip of the spool shaft 2. The spool 3 reciprocates relative to the reel body 1 in the front-rear direction together with the spool shaft 2, in accordance with the rotation of the handle 8.
(14) The rotor 4 is a member for winding the fishing line onto the spool 3. The rotor 4 rotates about the center axis of the spool 3 in accordance with the rotation of the handle 8.
(15) The rotor drive mechanism 5 is a mechanism for transmitting the rotation of the handle 8 to the rotor 4, and the rotor 4 is rotated in conjunction with the rotation of the handle 8. The rotor drive mechanism 5 comprises a drive shaft 11 and a gear mechanism 12.
(16) As shown in
(17) As shown in
(18) The drive gear 15 is a face gear in the present embodiment, and is formed by, for example, forging an aluminum alloy. Furthermore, the drive gear 15 is integrally formed with the drive shaft 11. The drive gear 15 and the drive shaft 11 may be formed as separate bodies.
(19) As shown in
(20) As shown in
(21) The first driving side face 15b meshes with the pinion gear 20 when the drive gear 15 is rotated in the rotational direction A for winding the fishing line; the power is thereby transmitted to the pinion gear 20, and the pinion gear 20 is rotated.
(22) The first reverse side face 15c is a tooth surface positioned on the opposite side to the first driving side face 15b. When the drive gear 15 is rotated in the reverse direction for casting the fishing line, the first reverse side face 15c meshes with the pinion gear 20, and the power is transmitted to the pinion gear 20.
(23) The pinion gear 20 is disposed such that the center axis thereof crosses the drive shaft 11, around the axis of the spool shaft 2. The pinion gear 20 is rotatably supported on the reel body 1 by axle bearings 21a, 21b, which are mounted on the reel body 1 (refer to
(24) As shown schematically in
(25) The second reverse side face 20c is a tooth surface positioned on the opposite side of the second driven side face 20b. The second reverse side face 20c faces the first reverse side face 15c, when the second driven side face 20b meshes with the first driving side face 15b.
(26) A male threaded portion 20d is formed on the outer peripheral surface of the front end of the pinion gear 20 (refer to
(27) Here, the problem of the present invention will be described with reference to
(28) When the second gear teeth 20a are bent and deformed toward the rotational direction A side, depending on the shape of the first gear teeth 15a and the second gear teeth 20a, the second reverse side face 20c of the second gear teeth 20a contact the first reverse side face 15c of the first gear teeth 15a. When the first reverse side face 15c and the second reverse side face 20c contact, the meshing state between the drive gear 15 and the pinion gear 20 deteriorates, and the rotation performance and the rotation feeling is reduced. Furthermore, the gear teeth are worn, and the strength of the gear teeth is also reduced.
(29) Therefore, as shown in
(30) The interference prevention portion 23 has a notched portion 23a formed by cutting out at least a portion of at least one of the first reverse side face 15c and the second reverse side face 20c. In the present embodiment, a notched portion 23a is formed in each of the plurality of first gear teeth 15a and in each of the plurality of second gear teeth 20a. The notched portion 23a is formed by cutting out the hatched portion shown in
(31) By providing the interference prevention portion 23, it is possible to prevent mutual interference caused by the contact between the first reverse side face 15c of the first gear teeth 15a and the second reverse side face 20c of the second gear teeth 20a, even when the second gear teeth 20a of the pinion gear 20 is bent. Accordingly, since deterioration in the meshing state between the drive gear 15 and the pinion gear 20 can be suppressed, it is possible to suppress deterioration in the rotation performance and the rotation feeling. In addition, since it is possible to suppress wear of the gear teeth caused by the contact between the first reverse side face 15c of the first gear teeth 15a and the second reverse side face 20c of the second gear teeth 20a, it is also possible to suppress a reduction in the strength of the gear teeth.
Second Embodiment
(32)
(33) The reel body 101 comprises a frame 107, and a first side cover 113 and a second side cover 114 mounted so as to cover both sides of the frame 107. The frame 107 comprises a first side plate 112a, a second side plate 112b that is formed at a predetermined interval from the first side plate 112a, and a plurality of connecting portions, which are not shown, that connect the first side plate 112a and the second side plate 112b.
(34) The spool 103 is rotatably disposed between the first side plate 112a and the second side plate 112b. The spool 103 is fixed to a spool shaft 102 that extends through the center of the spool 103, and is integrally rotated with the spool shaft 102. The spool shaft 102 is rotatably supported on the reel body 101 via axle bearings, which are not shown, disposed in the reel body 101.
(35) The handle 108 is rotatably mounted on the first side cover 113 side of the reel body 101. The spool 103 is rotated via the rotation transmission mechanism 110 by rotating the handle 108.
(36) The rotation transmission mechanism 110 is disposed inside the first side cover 113. The rotation transmission mechanism 110 comprises a drive shaft 111 and a gear mechanism 112. The drive shaft 111 is non-rotatably connected to the handle 108.
(37) The gear mechanism 112 comprises a drive gear 115 and a pinion gear 120 that meshes with the drive gear 115. The drive gear 115 is mounted on the drive shaft 111, and is rotated in accordance with the rotation of the drive shaft 111.
(38) The drive gear 115 is a cylindrical gear, and comprises a plurality of first gear teeth 115a formed at a predetermined pitch on the outer perimeter surface thereof. The plurality of first gear teeth 115a are formed of helical teeth having a predetermined helix angle.
(39) As schematically shown exploded in
(40) The pinion gear 120 is disposed in the reel body 101 parallel to the drive shaft 111. The pinion gear 120 comprises a plurality of second gear teeth 120a that mesh with the plurality of first gear teeth 115a. The plurality of second gear teeth 120a are formed of helical teeth having the same predetermined helical angle as the plurality of first gear teeth 115a.
(41) Each of the plurality of second gear teeth 120a comprises a second driven side face 120b and a second reverse side face 120c, in the same manner as the first embodiment. The second driven side face 120b meshes with the first driving side face 115b of the first gear teeth 115a, when the drive gear 115 is rotated in the rotational direction A for winding the fishing line.
(42) The second reverse side face 120c is a tooth surface positioned on the opposite side of the second driven side face 120b, and faces the first reverse side face 115c, when the second driven side face 120b meshes with the first driving side face 115b.
(43) In the second embodiment as well, the strength of the plurality of first gear teeth 115a is higher than the strength of the plurality of second gear teeth 120a. The gear mechanism 112 includes an interference prevention portion 123 having a notched portion 123a, in the same manner as the first embodiment. Since the configuration of the interference prevention portion 123 is the same as in the first embodiment, the description thereof is omitted. By providing the interference prevention portion 123, the same effect as the first embodiment can be obtained.
Other Embodiments
(44) One embodiment of the present invention was described above, but the present invention is not limited to the above-described embodiment, and various modifications can be made without departing from the scope of the invention. Especially, the various embodiments and modified examples described in the present Specification can be freely combined according to necessity.
(45) In the first embodiment, an interference prevention portion 23 is disposed on each of the plurality of first gear teeth 15a and on each of the plurality of second gear teeth 20a; however, an interference prevention portion 23 may be disposed only one of the first reverse side face 15c and second reverse side face 20c. In this embodiment, as schematically shown exploded in
(46) In the first embodiment, an example was described in which the strength of the drive gear 15 is set higher than the strength of the pinion gear 20; however, the strength of the pinion gear 20 may be higher than the drive gear 15. In this embodiment as well, it is possible to prevent interference between the first reverse side face 15c and the second reverse side face 20c by the interference prevention portion 23 disposed on at least one of the first reverse side face 15c and the second reverse side face 20c, even when the first gear teeth 15a is bent and deformed inward toward the opposite side of the rotational direction A side (direction in which the first reverse side face 15c approaches the second reverse side face 20c), when the first driving side faces 15b of the first gear teeth 15a mesh with the second driven side faces 20b of the plurality of second gear teeth 20a. At this time, as schematically shown exploded in
(47) In the embodiments described above, a spinning reel 100 and a dual-bearing reel 200 were shown as examples of a fishing reel; however, the present invention may be applied to other fishing reels.
(48) In the embodiments described above, drive gears 15, 115 and pinion gears 20, 120 were shown as examples of a first gear and a second gear; however, the present invention may be applied to other gears that are used in a fishing reel.
(49) In the second embodiment, a cylindrical gear having helical teeth was used as an example to describe the present invention; however, the present invention is not limited thereto, and the cylindrical gear may have double-helical teeth or straight teeth.