Multi-position camshaft phaser with two one-way clutches

US9771837B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9771837-B2
Application numberUS-201514941726-A
CountryUS
Kind codeB2
Filing dateNov 16, 2015
Priority dateNov 16, 2015
Publication dateSep 26, 2017
Grant dateSep 26, 2017

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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 camshaft phaser, including: an input component arranged to receive torque from an engine; an advance hub; an advance wedge plate radially disposed between the input component and the advance hub; and an actuation assembly including an advance pin arranged to be disposed in an advance channel for a camshaft and an actuator pin. For an advance mode: the actuator pin is arranged to radially displace the advance pin into non-rotatable connection with the advance hub; the advance hub is arranged to rotate, with respect to the input component, in a first circumferential direction; and the advance wedge plate is arranged to block rotation of the advance hub, with respect to the input component, in a second circumferential direction, opposite the first circumferential direction.

First claim

Opening claim text (preview).

What is claimed is: 1. A camshaft phaser, comprising: an input component arranged to receive torque from an engine; an advance hub; an advance wedge plate radially disposed between the input component and the advance hub; and, an actuation assembly including: an advance pin arranged to be disposed in an advance channel for a camshaft; and, an actuator pin, wherein: for an advance mode: the actuator pin is arranged to radially displace the advance pin into non-rotatable connection with the advance hub; the advance hub is arranged to rotate, with respect to the input component, in a first circumferential direction; and, the advance wedge plate is arranged to block rotation of the advance hub, with respect to the input component, in a second circumferential direction, opposite the first circumferential direction. 2. The camshaft phaser of claim 1 , wherein: the advance hub includes a first plurality of ramps extending radially outward along the first circumferential direction; p 1 the advance wedge plate includes a second plurality of ramps extending radially inward along the second circumferential direction and engaged with the first plurality of ramps; and. for rotation of the advance hub, with respect to the input component, in the second circumferential direction, the first and second pluralities of ramps are arranged to circumfcrcntially displace with respect to each other to displace the advance wedge plate radially outward to non- rotalably connect the input component, the advance wedge plate, and the advance hub. 3. THe camshaft phaser of claim 1 , further comprising: a retard hub; and a retard wedge plate radially disposed between the input component and the retard hub, wherein: the actuation assembly includes a retard pin arranged to be disposed in a retard channel for the camshaft; and, for a retard mode: the actuator pin is arrange dto radially displace the retard pin into non-rotatable connection with the retard hub; the retard hub is arranged to rotate, with respect to the input component, in the second circumferential direction; and, the retard wedge plate is arranged to block rotation of the retard hub, with respect to the input component, in the first circumferential direction. 4. The camshaft assembly of claim 3 , wherein: the retard hub includes a first plurality of ramps extending radially outward a long the second circumferential direction; the retard wedge plate includes a secondary plurality of ramps extending radially inward along the first circumferential direction and engaged with the first plurality of ramps; and for tation of the camshaft, with respect to the input components, in the first circumferential direciton, the first and second pluralities of ramps are arranged to circumferentially displace with respect to each other to displace the retard wedge plate radially outward to non-rotatably connect the input component, the retard wedge plate, and the advance hub. 5. The camshaft assembly of claim 3 , wherein: for the advance mode, the retard hub is rotatable with respect to the reatd pin or the input component; and, for the retard mode, the advance hub is rotatable with respect to the advance pin or the input component. 6. The camshaft assembly of claim 3 , wherein: the actuator pin includes: first and second portions having first and second outer radii, respectively; and, a third portion having a third outer radius greater than the first and second radii, respectively; for the advance mode, the actuator pin is displaceable so that the third and second portions directly engage the advance and retard pins, respectively; and, for the retard mode, the actuator pin is displaceable so that the first and third portions directly engage the advance and retard pins, respectively. 7. The camshaft assembly of claim 6 , wherein for a drive mode: the actuator pin is displaceable so that the third portion directly engages the advance and retard pins; the advance and retard pins are non-rotatably connected to the advance and retard hubs, respectively, and, the advance and retard hubs each transmit torque from the input component. 8. The camshaft assembly of claim 7 , wherein: the input component is arranged to rotate in the first circumferential direction; the camshaft is arranged to rotate with respect to the input component in the first and second circumferential directions during first and second alternating time periods; and, for the drive mode: during the first time period, the retard hub is arranged to transmit torque from the input component to the camshaft; and, during the second time period, the advance hub is arranged to transmit torque from the input component to the camshaft. 9. The camshaft assembly of claim 3 , wherein the camshaft phaser includes: a first resilient element arranged to, for the retard mode, displace the advance pin radially inward of the advance hub; and, a second resilient element arranged to, for the advance mode, displace the retard pin radially inward of the retard hub. 10. A camshaft assembly, comprising: a camshaft including an advance channel and a retard channel; and, a camshaft phaser including: an advance hub; a retard hub; and, an actuation assembly including: an advance pin disposed in the advance channel; a retard pin disposed in the retard channel; and, an actuator pin, wherein: for an advance mode: the actuator pin is arranged to radially displace the advance pin into non-rotatable connection with the advance hub; the camshaft is arranged to rotate, with respect to the input component, in a first circumferential direction; and, the advance hub is arranged to block rotation of the camshaft, with respect to the input component, in a second circumferential direction, opposite the first circumferential direction; and, for a retard mode: the actuator pin is arranged to radially displace the retard pin into non-rotatable connection with the retard hub; the camshaft is arranged to rotate, with respect to the input component, in the second circumferential direction; and, the retard hub is arranged to block rotation of the camshaft, with respect to the input component in the first circumferential direction. 11. The camshaft assembly of claim 10 , wherein: the camshaft phaser includes an advance wedge plate radially disposed between the input component and the advance hub; the advance hub includes a first plurality of ramps extending radially outward along the first circumferential direction; the advance wedge plate includes a second plurality of ramps extending radially inward along the second circumferential direction and engaged with the first plurality of ramps; and, for rotation of the camshaft, with respect to the input component, in the second circumferential direction, the first and second pluralities of ramps are arranged to circumferentially displace with respect to each other to displace the advance wedge plate radially outward to non-rotatably connect the input component, the advance wedge plate, and the advance hub. 12. The camshaft assembly of claim 10 , wherein: the camshaft phaser includes a retard wedge plate radially disposed between the input component and the retard hub; the retard hub includes a first plurality of ramps extending radially outward along the second circumferential direction; the retard wedge plate includes a second plurality of ramps extending radially inward in the first circumferential direction and engaged with the first plurality of ramps; and, for rotation of the camshaft, with respect to the input component, in the first circumferential direction, the first and second pluralit

Assignees

Inventors

Classifications

  • Composite camshafts, e.g. with cams or cam sleeve being able to move relative to the inner camshaft or a cam adjusting rod · CPC title

  • F01L1/352Primary

    using bevel or epicyclic gear · CPC title

  • characterised by the provision of means for changing the timing of the valves without changing the duration of opening {and without affecting the magnitude of the valve lift} · CPC title

  • by torque-responsive means · CPC title

  • Clutches with wedging balls or rollers or with other wedgeable separate clutching members (freewheels, freewheel clutches F16D41/00) · CPC title

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What does patent US9771837B2 cover?
A camshaft phaser, including: an input component arranged to receive torque from an engine; an advance hub; an advance wedge plate radially disposed between the input component and the advance hub; and an actuation assembly including an advance pin arranged to be disposed in an advance channel for a camshaft and an actuator pin. For an advance mode: the actuator pin is arranged to radially disp…
Who is the assignee on this patent?
Schaeffler Technologies Ag
What technology area does this patent fall under?
Primary CPC classification F01L1/352. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Sep 26 2017 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).