Mechanical lash control for a switchable roller finger follower
US-2016102584-A1 · Apr 14, 2016 · US
US10119606B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10119606-B2 |
| Application number | US-201715446664-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 1, 2017 |
| Priority date | Mar 1, 2017 |
| Publication date | Nov 6, 2018 |
| Grant date | Nov 6, 2018 |
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A clip for a switchable roller finger follower that includes a retainer for a hydraulic lash adjuster, and an anti-rotation feature that prevents rotation of a coupling pin is provided. The clip includes a first leg arranged adjacent to a dome-shaped recess on a bottom surface of an outer lever of the switchable roller finger follower that includes a retainer for the hydraulic lash adjuster, and a second leg of the clip includes an anti-rotation bar that extends laterally across a part of the coupling pin and prevents rotation of the coupling pin. A switchable finger follower with the clip is also provided.
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What is claimed is: 1. A switchable roller finger follower comprising: an inner lever having a first end and a second end; an outer lever with two outer arms that extend along longitudinal sides of the inner lever and a dome-shaped recess on a bottom surface of the outer lever arranged towards the second end of the inner lever, the inner lever mounted for pivoting movement on the outer lever at the first end of the inner lever by a pivot axle; a coupling device located on one of the inner lever or the outer lever on an end opposite from the pivot axle that includes a coupling pin having a coupling flat, the coupling pin is arranged to move in a longitudinal direction between a locking position, in which the inner lever and the outer lever are connected together for movement at least in an activation direction of a valve, and an unlocked position, in which the inner lever is pivotable relative to the outer lever; a coupling projection with a coupling surface located on the other of the inner lever or the outer lever from the coupling device, the coupling flat of the coupling pin engages with the coupling surface in the locking position; and a clip including a first leg arranged adjacent to the dome-shaped recess on the bottom surface of the outer lever that includes a retainer for a hydraulic lash adjuster, and a second leg including an anti-rotation bar that extends laterally across a part of the coupling pin and prevents rotation of the coupling pin. 2. The switchable roller finger follower of claim 1 , wherein the part of the coupling pin that contacts the anti-rotation bar is the coupling flat. 3. The switchable roller finger follower of claim 1 , wherein the part of the coupling pin that contacts the anti-rotation bar is a secondary flat located on an opposite side of the coupling pin from the coupling flat. 4. The switchable roller finger follower of claim 3 , wherein the secondary flat of the coupling pin and the anti-rotation bar overlap each other in both the locked position and the unlocked position. 5. The switchable roller finger follower of claim 1 , wherein the coupling device is located on the outer lever, and the coupling projection is formed on the inner lever. 6. The switchable roller finger follower of claim 1 , wherein the anti-rotation bar is formed at a terminal portion of the second leg. 7. The switchable roller finger follower of claim 6 , wherein the anti-rotation bar is formed as a bent flange at the terminal portion of the second leg. 8. The switchable roller finger follower of claim 1 , wherein the retainer includes a semi-circular edge having a complementary profile adapted to engage under a head of the hydraulic lash adjuster. 9. The switchable roller finger follower of claim 1 , further comprising a lost motion spring connected between the inner lever and the outer lever. 10. The switchable roller finger follower of claim 1 , wherein the part of the coupling pin and the anti-rotation bar overlap each other in both the locked position and the unlocked position. 11. The switchable roller finger follower of claim 1 , wherein the anti-rotation bar and the part of the coupling pin have non-round complementary profiles. 12. The switchable roller finger follower of claim 1 , wherein the clip is formed from spring steel. 13. The switchable roller finger follower of claim 1 , wherein the clip includes a flat surface that is parallel to the part of the coupling pin. 14. A method for retaining a hydraulic lash adjuster and preventing rotation of a coupling pin in a switchable roller finger follower, the method comprising: providing a switchable roller finger follower including an inner lever having a first end and a second end, and an outer lever with two outer arms that extend along longitudinal sides of the inner lever and a dome-shaped recess on a bottom surface of the outer lever arranged towards the second end of the inner lever, the inner lever mounted for pivoting movement on the outer lever at the first end of the inner lever by a pivot axle; arranging a coupling device on one of the inner lever or the outer lever on an end opposite from the pivot axle, the coupling device includes a coupling pin having a coupling flat, the coupling pin is arranged to move in a longitudinal direction between a locking position, in which the inner lever and the outer lever are connected together for movement at least in an activation direction of a valve, and an unlocked position, in which the inner lever is pivotable relative to the outer lever; providing a coupling projection with a coupling surface on the other of the inner lever or the outer lever from the coupling device, the coupling flat of the coupling pin engages with the coupling surface in the locking position; and arranging a clip on the switchable roller finger follower, the clip including a first leg arranged adjacent to the dome-shaped recess on the bottom surface of the outer lever that includes a retainer for a hydraulic lash adjuster, and a second leg of the clip including an anti-rotation bar that extends laterally across a part of the coupling pin and prevents rotation of the coupling pin.
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