Engine access panels for off-highway vehicle
US-2024351650-A1 · Oct 24, 2024 · US
US2016280064A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016280064-A1 |
| Application number | US-201615075911-A |
| Country | US |
| Kind code | A1 |
| Filing date | Mar 21, 2016 |
| Priority date | Mar 24, 2015 |
| Publication date | Sep 29, 2016 |
| Grant date | — |
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Official abstract text for this publication.
Provided is a control device for a four-wheel drive which can maintain driving stability while restraining noise and vibration. A control device includes: a second control device that, when at least one of front wheel has slipped, engages a dog clutch after rotating a propeller shaft by a rotational force transmitted via first and second friction clutches; and a third control device that, if a predetermined condition is satisfied when the front wheels are not slipping, engages the dog clutch after rotating the propeller shaft by the rotational force transmitted via the first and second friction clutches. The time required to synchronize the dog clutch by the third control device is longer than that required to synchronize the dog clutch by the second control device.
Opening claim text (preview).
What is claimed is: 1 . A control device that is mounted on a four-wheel drive vehicle, in which the four-wheel drive vehicle in configured to be switched between a two-wheel drive mode and a four-wheel drive mode and includes: a pair of right and left main drive wheels to which a driving force of a driving source is transmitted in the two-wheel drive mode and the four-wheel drive mode, a pair of right and left auxiliary drive wheels to which the driving force of the driving source is transmitted in the four-wheel drive mode, a drive shaft that transmits the driving force to the auxiliary drive wheels, a first clutch configured to cut off transmission of the driving force from the driving source to the drive shaft, a second clutch configured to cut off transmission of the driving force from the drive shaft to the auxiliary drive wheels, and an actuator that actuates the first and second clutches, the control device controls the actuator, and one of the first and second clutches is a dog clutch that transmits a rotational force when a projection engages with a recess, and the other clutch is a friction clutch that transmits the rotational force when friction members are caused to frictionally contact each other by a pressing force received from the actuator, the control device comprising: a first control device that, when the four-wheel drive vehicle is in the two-wheel drive mode in which the driving force is transmitted only to the pair of right and left main drive wheels, cuts off transmission of the rotational force via the dog clutch and the friction clutch to stop rotation of the drive shaft; a second control device that, when at least one of the pair of right and left main drive wheels slips in the two-wheel drive mode, causes the projection and the recess of the dog clutch to engage with each other after rotating the drive shaft by the rotational force transmitted via the friction clutch to synchronize the dog clutch; and a third control device that, if a predetermined condition is satisfied when the pair of right and left main drive wheels are not slipping in the two-wheel drive mode, causes the projection and the recess of the dog clutch to engage with each other after rotating the drive shaft by the rotational force transmitted via the friction clutch to synchronize the dog clutch, wherein time required to synchronize the dog clutch by the third control device is set to be longer than that required to synchronize the dog clutch by the second control device. 2 . The control device according to claim 1 , wherein the predetermined condition is that a driver has performed an operation to switch the four-wheel drive vehicle from the two-wheel drive mode to the four-wheel drive mode. 3 . The control device according to claim 1 , wherein the predetermined condition is that it has been determined that at least one of the pair of right and left main drive wheels is likely to slip. 4 . The control device according to claim 1 , wherein time required to eliminate a clearance between the friction members by the pressing force of the actuator when controlled by the third control device is set to be longer than that required to eliminate the clearance between the friction members by the pressing force of the actuator when controlled by the second control device. 5 . The control device according to claim 2 , wherein time required to eliminate a clearance between the friction members by the pressing force of the actuator when controlled by the third control device is set to be longer than that required to eliminate the clearance between the friction members by the pressing force of the actuator when controlled by the second control device. 6 . The control device according to claim 3 , wherein time required to eliminate a clearance between the friction members by the pressing force of the actuator when controlled by the third control device is set to be longer than that required to eliminate the clearance between the friction members by the pressing force of the actuator when controlled by the second control device. 7 . The control device according to claim 4 , wherein the actuator has an electric motor and a conversion mechanism that converts torque of the electric motor to the pressing force that causes the friction members to frictionally contact each other, and a rotational speed and/or rotational torque of the electric motor at the time of eliminating the clearance between the friction members when controlled by the third control device is set to be lower than that of the electric motor at the time of eliminating the clearance between the friction members when controlled by the second control device. 8 . The control device according to claim 1 , wherein the rotational force that is transmitted via the friction clutch when controlled by the third control device is set to be smaller than the rotational force that is transmitted via the friction clutch when controlled by the second control device. 9 . The control device according to claim 2 , wherein the rotational force that is transmitted via the friction clutch when controlled by the third control device is set to be smaller than the rotational force that is transmitted via the friction clutch when controlled by the second control device. 10 . The control device according to claim 3 , wherein the rotational force that is transmitted via the friction clutch when controlled by the third control device is set to be smaller than the rotational force that is transmitted via the friction clutch when controlled by the second control device. 11 . The control device according to claim 4 , wherein the rotational force that is transmitted via the friction clutch when controlled by the third control device is set to be smaller than the rotational force that is transmitted via the friction clutch when controlled by the second control device. 12 . The control device according to claim 7 , wherein the rotational force that is transmitted via the friction clutch when controlled by the third control device is set to be smaller than the rotational force that is transmitted via the friction clutch when controlled by the second control device. 13 . A four-wheel drive vehicle comprising the control device of claim 1 .
for driving both front and rear wheels, e.g. four wheel drive vehicles · CPC title
Electrically-actuated clutches (arrangements for synchronisation F16D23/02; clutches actuated directly by means of an electromagnet F16D27/00; automatic clutches F16D43/00 - F16D45/00; external control F16D48/00) · CPC title
Systems comprising a plurality of actuated clutches (for synchronisation F16D23/04) · CPC title
the line of action of the fluid-actuated members co-inciding with the axis of rotation · CPC title
Clutch systems with a plurality of fluid-actuated clutches (arrangements or mounting of clutches in vehicles B60K17/00) · CPC title
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