Valve timing control apparatus and variable valve actuating apparatus for internal combustion engine
US-2015377091-A1 · Dec 31, 2015 · US
US9593603B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9593603-B2 |
| Application number | US-201514619752-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 11, 2015 |
| Priority date | Feb 11, 2015 |
| Publication date | Mar 14, 2017 |
| Grant date | Mar 14, 2017 |
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A camshaft phase adjuster assembly is provided that includes at least one helical groove for adjusting a phase position between a camshaft and a drive sprocket. The camshaft phase adjuster assembly includes a camshaft including at least one helical groove extending between a bore and a radially outer surface of a sprocket support portion, and the helical groove includes circumferentially offset first and second ends. A drive sprocket includes at least one axially extending drive sprocket groove on a radially inner surface of the drive sprocket arranged facing the at least one helical groove. An actuator selectively moves an actuator pin axially such that a radially extending rotation pin slides within the helical groove and the drive sprocket groove from a first phase position to a second phase position.
Opening claim text (preview).
What is claimed is: 1. A camshaft phase adjuster assembly comprising: a camshaft including a sprocket support portion, a bore extending axially in the sprocket support portion, and at least one helical groove extending between the bore and a radially outer surface of the sprocket support portion, the at least one helical groove includes circumferentially offset first and second ends; a drive sprocket including an opening that is supported on the sprocket support portion of the camshaft and at least one axially extending drive sprocket groove on a radially inner surface of the drive sprocket arranged facing the at least one helical groove; an actuator pin including a first end and a second end, the first end is arranged within the bore of the camshaft and includes at least one radially extending rotation pin, the radially extending rotation pin is engaged with the at least one helical groove and the at least one drive sprocket groove; and an actuator connected to the second end of the actuator pin that selectively moves the actuator pin axially within the bore of the camshaft such that the at least one radially extending rotation pin slides within the at least one helical groove and the at least one drive sprocket groove from (1) a first position in which the camshaft and the drive sprocket are located relative to each other in a first phase position, to (2) a second position in which the camshaft and the drive sprocket are rotated relative to each other to a second phase position. 2. The camshaft phase adjuster assembly of claim 1 , wherein the at least one helical groove includes two helical grooves, the at least one drive sprocket groove includes two drive sprocket grooves, and the at least one radially extending rotation pin include two rotation pins. 3. The camshaft phase adjuster assembly of claim 2 , wherein the two radially extending rotation pins are arranged 180° circumferentially apart from each other, and the two drive sprocket grooves are arranged 180° circumferentially apart from each other. 4. The camshaft phase adjuster assembly of claim 1 , wherein the camshaft includes a body portion defining a cam, and the sprocket support portion has a smaller outer diameter than the body portion. 5. The camshaft phase adjuster assembly of claim 1 , further comprising a spring arranged directly between the first end of the actuation pin and the camshaft that biases the actuation pin to the first position. 6. The camshaft phase adjuster assembly of claim 1 , wherein the first phase position corresponds to a retarded phase position. 7. The camshaft phase adjuster assembly of claim 1 , wherein the second phase position corresponds to an advanced phase position. 8. The camshaft phase adjuster assembly of claim 1 , wherein a circumferential offset between the first and second ends of the at least one helical groove is 30°. 9. The camshaft phase adjuster assembly of claim 1 , wherein the actuator is an electrical, mechanical, hydraulic, or centrifugal actuator. 10. The camshaft phase adjuster assembly of claim 1 , wherein the actuator includes a solenoid with a solenoid pin that engages the actuator pin, and the solenoid is a two-position, a three-position, or a continuously variable solenoid. 11. The camshaft phase adjuster assembly of claim 1 , further comprising a first radial rolling bearing supported between the radially inner surface of the drive sprocket and the sprocket support portion of the camshaft at a first axial end of the drive sprocket, and a second radial rolling bearing supported between the radially inner surface of the drive sprocket and the sprocket support portion of the camshaft at a second axial end of the drive sprocket. 12. The camshaft phase adjuster assembly of claim 1 , further comprising a first axial rolling bearing supported between a first axial end face of the drive sprocket and an axial end face of a shoulder defined by a body portion of the camshaft adjacent to the sprocket support portion, and a second axial rolling bearing supported between a second axial end face of the drive sprocket and a retention flange, wherein the retention flange is fixed to the camshaft. 13. The camshaft phase adjuster assembly of claim 12 , wherein the retention flange is an axial face of a securing nut or a washer held by the securing nut. 14. The camshaft phase adjuster assembly of claim 1 , wherein the actuator moves the actuation pin to an intermediate position in which the camshaft and the drive sprocket are rotated relative to each other to a third phase position. 15. The camshaft phase adjuster assembly of claim 14 , wherein the intermediate position corresponds to a neutral phase position. 16. A camshaft phase adjuster assembly comprising: a camshaft including a sprocket support portion and at least one first phase adjustment element on a radially outer surface of the sprocket support portion; a drive sprocket including an opening that is supported on the sprocket support portion of the camshaft and at least one second phase adjustment element on a radially inner surface of the drive sprocket arranged facing the at least one first phase adjustment element; an actuator pin including a first end and a second end, the first end is engaged with the camshaft; and an actuator connected to the second end of the actuator pin that selectively moves the actuator pin such that the at least one first and second phase adjustment elements move relative to one another from (1) a first position in which the camshaft and the drive sprocket are located relative to each other in a first phase position, to (2) a second position in which the camshaft and the drive sprocket are rotated relative to each other to a second phase position.
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