One-way clutch
11365771 ยท 2022-06-21
Assignee
Inventors
Cpc classification
F16D41/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D41/07
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D43/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2300/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D41/07
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D43/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An object of the present invention is to provide a one-way clutch capable of preventing wear on radially inner engagement surfaces and radially outer engagement surfaces of cams in periods of high-speed freewheeling. The one-way clutch includes an inner race (110) and an outer race (150), a plurality of cams (140) provided between the inner race (110) and the outer race (150), and side plates (120, 130) provided to at least one of the inner race (110) and outer race (150) and positioned on both sides in an axial direction of the cams (140). The plurality of cams (140) are each configured to receive a predetermined centrifugal force to turn in an engaging direction in which the cams engage the inner race (110) and outer race (150) when the inner race (110) and outer race (150) rotate together in the same direction.
Claims
1. A one-way clutch comprising: an inner race and an outer race rotatable relative to each other around an identical axis; and a plurality of cams provided in a circumferential direction between the inner race and the outer race, the plurality of cams each frictionally engaging the inner race and the outer race when the inner race is rotated in one direction or when the outer race is rotated in the other direction, and the plurality of cams each disengaging from the inner race and the outer race when the inner race is rotated in the other direction or when the outer race is rotated in one direction, wherein at least one of the inner race and the outer race includes side plates that rotate with the inner race or the outer race and positioned on both sides in an axial direction of the cams, the plurality of cams are each configured to receive a predetermined centrifugal force to turn in an engaging direction in which the cams engage the inner race and outer race when the inner race and outer race rotate together in a same direction, and the side plates are annular plates that cover at most a radially inner portion or a radially outer portion of end faces of each of the plurality of cams, spaces between the respective end faces of the plurality of cams and inner surfaces of the side plates being filled with lubricant, and the plurality of cams each being configured to turn to cause a radially inner engagement surface of each cam to separate from an outer circumferential engagement surface of the inner race by a force acting on both end faces of the plurality of cams by viscosity of the lubricant when either the inner race or the outer race having the side plates rotates in a direction in which the cams disengage.
2. The one-way clutch according to claim 1, wherein the inner race includes annular plate-like radially inner side plates that cover a radially inner portion of end faces of each of the plurality of cams, the plurality of cams being aligned in contact with each other so that closed space is formed by circumferential surfaces of adjacent cams, an outer circumferential surface of the inner race, and inner surfaces of the radially inner side plates, the inner race including an oil passage that continually supplies lubricant to the closed space when the clutch freewheels.
3. The one-way clutch according to claim 2, wherein the outer race includes annular plate-like radially outer side plates that cover a radially outer portion of end faces of each of the plurality of cams, the plurality of cams each being configured to turn to cause a radially inner engagement surface of each cam to separate from an outer circumferential engagement surface of the inner race by viscosity of the lubricant when either the inner race or the outer race rotates in a direction in which the cams disengage.
4. The one-way clutch according to claim 1, further comprising a retainer that retains each of the plurality of cams to the inner race or the outer race, the retainer being configured to retain each of the plurality of cams in a circumferentially equally spaced manner.
5. A one-way clutch comprising: an inner race and an outer race rotatable relative to each other around an identical axis; and a plurality of cams provided in a circumferential direction between the inner race and the outer race, the plurality of cams each frictionally engaging the inner race and the outer race when the inner race is rotated in one direction or when the outer race is rotated in the other direction, and the plurality of cams each disengaging from the inner race and the outer race when the inner race is rotated in the other direction or when the outer race is rotated in one direction, wherein at least one of the inner race and the outer race includes side plates that rotate with the inner race or the outer race and positioned on both sides in an axial direction of the cams, the plurality of cams are each configured to receive a predetermined centrifugal force to turn in an engaging direction in which the cams engage the inner race and outer race when the inner race and outer race rotate together in a same direction, the inner race includes annular plate-like radially inner side plates that cover a radially inner portion of end faces of each of the plurality of cams, the plurality of cams being aligned in contact with each other so that closed space is formed by circumferential surfaces of adjacent cams, an outer circumferential surface of the inner race, and inner surfaces of the radially inner side plates, the inner race including an oil passage that continually supplies lubricant to the closed space when the clutch freewheels, and the outer race includes annular plate-like radially outer side plates that cover a radially outer portion of end faces of each of the plurality of cams, the plurality of cams each being configured to turn to cause a radially inner engagement surface of each cam to separate from an outer circumferential engagement surface of the inner race by viscosity of the lubricant when either the inner race or the outer race rotates in a direction in which the cams disengage.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
(12) One embodiment of the present invention will be described with reference to
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(14) This one-way clutch 100 includes an inner race 110 and an outer race 150 that are rotatable relative to each other around the same axis X, and a plurality of cams 140 provided between the inner race 110 and the outer race 150.
(15) Each of the cams 140 has a radially inner engagement surface 141 and a radially outer engagement surface 146, and both end faces of each cam are flat surfaces.
(16) The radially inner engagement surface 141 of the cam 140 is configured to frictionally engage an outer circumferential engagement surface 112 of the inner race 110 when the inner race 110 is rotated in one direction or when the outer race 150 is rotated in the other direction, and to disengage from the outer circumferential engagement surface 112 of the inner race 110 when the inner race 110 is rotated in the other direction or when the outer race 150 is rotated in one direction.
(17) The radially outer engagement surface 146 of the cam 140 is configured to frictionally engage an inner circumferential engagement surface 152 of the outer race 150 when the inner race 110 is rotated in one direction or when the outer race 150 is rotated in the other direction, and to disengage from the inner circumferential engagement surface 152 of the outer race 150 when the inner race 110 is rotated in the other direction or when the outer race 150 is rotated in one direction.
(18) The shape of the cam 140 may be changed as required.
(19) All the cams 140 are positioned, as illustrated in
(20) For example, let us assume that the inner race 110 is rotating in one direction (clockwise, white arrows in
(21) The cams 140 should preferably be disposed along the circumferential direction with little looseness.
(22) In this example, as illustrated in
(23) In the one-way clutch 100 of this embodiment, the inner race 110 includes radially inner side plates 120 that rotate with the inner race 110 and positioned on both sides in the axial direction of the cams 140, and the outer race 150 includes radially outer side plates 130 that rotate with the outer race 150 and positioned on both sides in the axial direction of the cams 140. It suffices if at least one of the inner race 110 and the outer race 150 has the side plates.
(24) The radially inner side plates 120 are annular plates that cover a radially inner portion on respective end faces of the plurality of cams 140, and are fixedly fitted to cylindrical shaft parts 115 protruding axially outward from respective inner peripheral edges on both end faces of the inner race 110 to rotate integrally with the inner race 110.
(25) The radially outer side plates 130 are annular plates that cover a radially outer portion on respective end faces of the plurality of cams 140, and are fixedly fitted with inner circumferential surfaces of circumferential wall portions 156 protruding axially outward and extending along the respective outer peripheral edges on both end faces of the outer race 150 to rotate integrally with the outer race 150.
(26) The outer circumferential surface of the radially inner side plate 120 and the inner circumferential surface of the radially outer side plate 130 is spaced apart so that the end faces of the cams 140 are partly exposed.
(27) The radially inner side plates 120 and radially outer side plates 130 may be retained with retention rings (not shown) so that they are fixed to and rotate integrally with the inner race 110 and outer race 150. Alternatively, the radially inner side plates 120 and radially outer side plates 130 may be fixedly fastened to the inner race 110 and outer race 150 with bolts or the like.
(28) In a preferable configuration of the one-way clutch 100 of this embodiment, the space between the end faces of the cams 140 and the inner surfaces of the radially inner side plates 120, and the space between the end faces of the cams 140 and the inner surfaces of the radially outer side plates 130 may be filled with a lubricant (not shown).
(29) When the inner race 110 rotates in the other direction (counterclockwise), for example, the radially inner side plates 120 secured to the inner race 110 rotate in the same direction as the inner race 110 as illustrated in
(30) Although not to be described with reference to a drawing, the clutch may be configured such that when the outer race is rotated in the other direction (counterclockwise), the respective radially inner engagement surfaces of the plurality of cams are separated from the outer circumferential engagement surface of the inner race to achieve a state in which the cams do not touch the outer circumferential engagement surface of the inner race.
(31) Preferably, the one-way clutch of the present invention includes a structure to allow for supply of the lubricant.
(32) In this one-way clutch, as illustrated in
(33) The oil passages 213 are radially extending through holes formed at positions corresponding to the closed spaces at respective points between the cams in the side face of the inner race 210.
(34) In the one-way clutch of this embodiment, when the inner race 210 is rotated in the other direction (counterclockwise), for example, the cams 140 turn in the direction in which they disengage from the outer circumferential engagement surface 212 of the inner race 210 and the inner circumferential engagement surface 152 of the outer race 150, as illustrated in
(35) In an optional configuration of the one-way clutch of this embodiment, the spaces between the inner surfaces of the radially inner side plates and the cam end faces may be filled with lubricant. With such a configuration, the state in which the radially inner engagement surfaces of the cams are not in contact with the outer circumferential engagement surface of the inner race can be reliably achieved by the viscous action of the lubricant filling the spaces between the inner surfaces of the radially inner side plates and the end faces of the cams, in addition to the action of the pressure applied by the continuous supply of the lubricant into the closed spaces during the freewheeling of the one-way clutch.
(36) An optional configuration of the one-way clutch of the present invention may include a retainer that retains each of the plurality of cams to either the inner race or the outer race.
(37) The retainer is configured to retain each of the plurality of cams at equal distance in the circumferential direction. One configuration example of the retainer is illustrated in
(38) This retainer 170 includes a cylindrical base part 171 that fits with the inner circumferential surface of the outer race, and a plurality of axially outwardly protruding lug-like spacer parts 172 circumferentially equally spaced on one end face of the base part 171. This retainer 170 restricts the circumferential position of the cams, as illustrated in
(39) The retainer can have an annular plate-like base part, with a plurality of axially outwardly protruding lug-like spacer parts circumferentially equally spaced along the outer peripheral edge on one end face of the base part. With such a retainer, the annular plate-like base part can serve as an outer plate.
(40) While one embodiment of the present invention has been described in detail, the present invention is not limited to the above-described embodiment and may be carried out with various design changes without departing from the scope of the present invention set forth in the claims.
(41) For example, the radially inner side plates and radially outer side plates do not necessarily have to be provided separately for the inner race and outer race, and may be integrally formed with the inner race and outer race, or formed as part of the inner race and outer race.
(42) The one-way clutch of the present invention may be of the type supplied with lubricant, and may also be of the type having sealing members to provide a seal between the outer race and the inner race and filled with grease.
(43) As described above, the present invention can provide a one-way clutch that is simple and easy to manufacture, made smaller in the axial direction, lightweight and unbreakable, and capable of preventing wear in periods of high-speed freewheeling.
REFERENCE SIGNS LIST
(44) 100 One-way clutch 110, 210 Inner race 112, 212 Outer circumferential engagement surface 213 Oil passage 115 Shaft part 120, 220 Radially inner side plate 130 Radially outer side plate 140, 140b, 140c Cam 140a First cam 141 Radially inner engagement surface 146 Radially outer engagement surface 150 Outer race 152 Inner circumferential engagement surface 156 Circumferential wall portion 160 Lubricant 170 Retainer 171 Base part 172 Spacer part C Point of tangency between cam and outer race H Normal line at point of tangency G Center of gravity of cam