Disconnect clutch with dual one-way clutches and solenoid actuator for a wedge one-way clutch

US9933023B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9933023-B2
Application numberUS-201514681740-A
CountryUS
Kind codeB2
Filing dateApr 8, 2015
Priority dateMay 6, 2014
Publication dateApr 3, 2018
Grant dateApr 3, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A disconnect clutch for a torque transfer device for a vehicle, including: an axis of rotation; an input shaft arranged to receive torque from a torque generating or transmitting device for the vehicle; an output shaft arranged to transmit the torque; a forward clutch having a first torque-carrying capacity; a reverse clutch having a second torque-carrying capacity less than the first torque-carrying capacity; and an actuator system. For a forward connect mode in which the input shaft is rotating in a first rotational direction, the actuator system is arranged to close the forward clutch to non-rotatably connect the input and output shafts. For a reverse connect mode in which the input shaft is rotating in a second rotational direction opposite the first rotational direction, the actuator system is arranged to close the reverse clutch to close the reverse clutch to non-rotatably connect the input and output shafts.

First claim

Opening claim text (preview).

The invention claimed is: 1. A disconnect clutch for a torque transfer device for a vehicle, comprising: an axis of rotation; an input shaft arranged to receive torque from a torque generating or transmitting device for the vehicle; an output shaft arranged to transmit the torque; a forward clutch having a first torque-carrying capacity; a reverse clutch having a second torque-carrying capacity less than the first torque-carrying capacity; and, an actuator system, wherein: for a forward connect mode in which the input shaft is rotating in a first rotational direction, the actuator system is arranged to close the forward clutch to non-rotatably connect the input and output shafts; and, for a reverse connect mode in which the input shaft is rotating in a second rotational direction opposite the first rotational direction, the actuator system is arranged to close the reverse clutch to non-rotatably connect the input and output shafts. 2. The disconnect clutch of claim 1 , wherein: the output shaft includes first and second output surfaces; the actuator system includes first and second actuators and at least one spring; the forward clutch includes: a first inner race non-rotatably connected to the input shaft; and, a first wedge plate engaged with the first inner race and including: a first wedge surface at a first acute angle with respect to a radial direction orthogonal to the axis of rotation; and, a first width in a first axial direction parallel to the axis of rotation; the reverse clutch includes: a second inner race non-rotatably connected to the input shaft; and, a second wedge clutch plate engaged with the second inner race and including: a second wedge surface at a second acute angle with respect to the radial direction; and, a second width, in the first axial direction, less than the first width; respective portions of the first and second output surfaces and of the first and second wedge surfaces are aligned such that a line parallel to the axis of rotation passes through the first and second output surfaces and the first and second wedge surfaces; for the forward connect mode: the first actuator and the at least one spring are arranged to cooperate to displace the first wedge plate to contact the first output surface with the first wedge surface; and, the first wedge plate is arranged to rotate with respect to the first inner race to displace the first wedge plate radially outward to non-rotatably connect the first inner race and the output shaft; and, for the reverse connect mode: the second actuator and the at least one spring are arranged to cooperate to displace the second wedge plate to contact the second output surface with the second wedge surface; and, the second wedge plate is arranged to rotate with respect to the second inner race to displace the second wedge plate radially outward to non-rotatably connect the second inner race and the output shaft. 3. The disconnect clutch of claim 2 , wherein the first width is at least twice the second width. 4. The disconnect clutch of claim 2 , wherein: the at least one spring urges the first and second wedge plates in a second axial direction opposite the first axial direction, and in the first axial direction, respectively; to initiate the forward mode, the first actuator is arranged to displace the first wedge plate in the first axial direction; and, to initiate the reverse mode, the second actuator is arranged to displace the second wedge plate in the second axial direction. 5. The disconnect clutch of claim 4 , wherein the at least one spring includes: a first spring connected to the output shaft and the first wedge plate and urging the first wedge plate in the second axial direction; and, a second spring connected to the output shaft and the second wedge plate and urging the second wedge plate in the first axial direction. 6. The disconnect clutch of claim 4 , wherein the at least one spring includes a single spring with first and second axial ends connected to the first wedge plate and the second wedge plate, respectively. 7. The disconnect clutch of claim 2 , wherein: the at least one spring urges the first and second wedge plates in the first axial direction and in a second axial direction opposite the first axial direction, respectively; and, for the forward connection mode: the first actuator is arranged to be deactivated to enable the at least one spring to displace the first wedge plate in the first direction to bring the first clutch surface and the first wedge plate surface into contact to non-rotatably connect the first inner race and the output shaft; and, the second actuator is arranged to be active to displace the second wedge plate in the first axial direction to prevent contact of the second clutch surface with the second wedge plate surface. 8. The disconnect clutch of claim 7 , wherein the at least one spring includes: a first spring connected to the output shaft and the first wedge plate and urging the first wedge plate in the first axial direction; and, a second spring connected to the output shaft and the second wedge plate and urging the second wedge plate in the second axial direction. 9. The disconnect clutch of claim 2 , wherein: the at least one spring urges the first and second wedge plates in the first axial direction and in a second axial direction opposite the first axial direction, respectively; and, for the reverse connection mode: the second actuator is arranged to be deactivated to enable the at least one spring to displace the second wedge plate in the second direction to bring the second clutch surface and the second wedge plate surface into contact to non-rotatably connect the second inner race and the output shaft; and, the first actuator is arranged to be active to displace the first wedge plate in the second axial direction to prevent contact of the first clutch surface with the first wedge plate surface. 10. The disconnect clutch of claim 9 , wherein the at least one spring includes: a first spring connected to the output shaft and the first wedge plate and urging the first wedge plate in the first axial direction; and, a second spring connected to the output shaft and the second wedge plate and urging the second wedge plate in the second axial direction. 11. The disconnect clutch of claim 1 , wherein: the forward clutch is a first one-way clutch including: a first outer ring non-rotatably connected to the output shaft; a first inner ring non-rotatably connected to the input shaft; and, a first rolling element assembly radially disposed between first outer ring and the first inner ring; the reverse clutch is a second one-way clutch including: a second outer ring non-rotatably connected to the output shaft; a second inner ring non-rotatably connected to the input shaft; and, a second rolling element assembly radially disposed between second outer ring and the second inner ring; and, the actuator system is arranged to: rotationally lock the second rolling assembly for the forward connect mode; and, rotationally lock the first rolling assembly for the reverse connect mode. 12. The disconnect clutch of claim 11 , wherein: the first rolling assembly includes a first cage and a first plurality of engagement elements: at least partially contained within the first cage; and, selected from the group consisting of sprags, rollers, and balls; the second rolling assembly includes a second cage and a second plurality of engagement elements: at least partially contained within the second cage; and, selected from the group consisting of sprags, rollers, or balls; and, th

Assignees

Inventors

Classifications

  • of which at least one is a freewheel (F16D47/02, F16D47/06 take precedence; freewheels combined with a clutch to lock the driving and driven members of the freewheel F16D41/04, F16D41/26) · CPC title

  • the intermediate coupling members wedging by movement other than pivoting or rolling · CPC title

  • F16D41/063Primary

    the intermediate members wedging by moving along the inner and the outer surface without pivoting or rolling, e.g. sliding wedges (F16D41/061 takes precedence) · CPC title

  • with intermediate wedging coupling members between an inner and an outer surface (F16D41/02, F16D41/24 take precedence) · CPC title

  • combined with a clutch for locking the driving and driven members (F16D41/02, F16D41/24 take precedence) · CPC title

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What does patent US9933023B2 cover?
A disconnect clutch for a torque transfer device for a vehicle, including: an axis of rotation; an input shaft arranged to receive torque from a torque generating or transmitting device for the vehicle; an output shaft arranged to transmit the torque; a forward clutch having a first torque-carrying capacity; a reverse clutch having a second torque-carrying capacity less than the first torque-ca…
Who is the assignee on this patent?
Schaeffler Technologies Ag
What technology area does this patent fall under?
Primary CPC classification F16D41/063. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Apr 03 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).