Power Transmission Device
US-2020200226-A1 · Jun 25, 2020 · US
US11118635B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11118635-B2 |
| Application number | US-202016804032-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 28, 2020 |
| Priority date | Sep 1, 2017 |
| Publication date | Sep 14, 2021 |
| Grant date | Sep 14, 2021 |
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Official abstract text for this publication.
A power transmission device has a back torque transmission cam that brings driving clutch plates 6 and driven clutch plates 7 into press contact with each other. A second clutch member 4 b is moved when a rotational force is input to a first clutch member 4 a via the output shaft 3 . The pressure member 5 is located at a non-actuation position. A torque transmission portion transmits a rotational force transmitted to the second clutch member 4 b to the first clutch member 4 a not via the back torque transmission cam.
Opening claim text (preview).
What is claimed is: 1. A power transmission device comprising: a clutch housing rotatable with an input member, the input member rotatable by a drive force of an engine of a vehicle, a plurality of driving clutch plates attached to the clutch housing; a clutch member coupled to an output member that can rotate a wheel of the vehicle, a plurality of driven clutch plates alternating with the driving clutch plates of the clutch housing, the driven clutch plates attached to the clutch member; a pressure member movable between an actuation position and a non-actuation position, in the actuation position the drive force of the engine can be transmitted to the wheel with the driving clutch plates and the driven clutch plates brought into press contact with each other, in the non-actuation position, transmission of the drive force of the engine to the wheel can be blocked by releasing a press-contact force between the driving clutch plates and the driven clutch plates; a weight member disposed in a groove portion in the clutch housing, the groove portion extends in a radial direction, the weight member is movable by a centrifugal force, due to rotation of the clutch housing, from a radially inner position to a radially outer position of the groove portion; and an interlocking member moves the pressure member from the non-actuation position to the actuation position as the weight member is moved from the radially inner position to the radially outer position, the clutch member includes a first clutch member coupled to the output member, a second clutch member attached to the driven clutch plates, and a back torque transmission cam bringing the driving clutch plates and the driven clutch plates into press contact with each other by moving the second clutch member when the pressure member is located at the non-actuation position and a rotational force is input to the first clutch member via the output member, and a torque transmission portion formed on each of the first clutch member and the second clutch member to transmit a rotational force transmitted to the second clutch member to the first clutch member not via the back torque transmission cam. 2. The power transmission device according to claim 1 , further comprising a movement amount restriction portion formed on each of the first clutch member and the second clutch member to restrict an amount of movement of the second clutch member due to the back torque transmission cam. 3. The power transmission device according to claim 2 , wherein a projection is formed on one of the first clutch member and the second clutch member, the torque transmission portion is formed from one side surface of the projection, a first abutment surface abuts against the one side surface and receive a rotational force, the movement amount restriction portion is formed from an other side surface of the projection and a second abutment surface abuts against the other side surface and restricts an amount of movement. 4. The power transmission device according to claim 1 , further comprising a press-contact assist cam including a gradient surface, formed on the first clutch member, and a gradient surface, formed on the pressure member, facing each other, the press-contact assist cam increasing the press-contact force between the driving clutch plates and the driven clutch plates when a rotational force input to the input member can be transmitted to the output member. 5. The power transmission device according to claim 1 , further comprising a back torque limiter cam including a gradient surface, formed on the first clutch member, and a gradient surface, formed on the pressure member, facing each other, the back torque limiter cam releasing the press-contact force between the driving clutch plates and the driven clutch plates when the clutch member and the pressure member are rotated relative to each other with rotation of the output member exceeding a rotational speed of the input member, and the back torque transmission cam configured to be actuated before actuation of the back torque limiter cam.
Clutches with multiple lamellae {; Clutches in which three or more axially moveable members are fixed alternately to the shafts to be coupled and are pressed from one side towards an axially-located member (F16D13/385 takes precedence)} · CPC title
Serially-arranged clutches interconnecting two shafts only when all the clutches are engaged (F16D13/08, F16D13/12 take precedence) · CPC title
Concentric actuation rods, e.g. actuation rods extending concentrically through a shaft · CPC title
with multiple lamellae · CPC title
the centrifugal masses acting on, or forming a part of, an actuating mechanism by which the pressure ring can also be actuated independently of the masses · CPC title
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