Cam shaft phase setter comprising a control valve for hydraulically adjusting the phase position of a cam shaft

US9970333B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9970333-B2
Application numberUS-201514702953-A
CountryUS
Kind codeB2
Filing dateMay 4, 2015
Priority dateMar 9, 2010
Publication dateMay 15, 2018
Grant dateMay 15, 2018

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A cam shaft phase setter for adjusting the rotational angular position of a cam shaft relative to a crankshaft of an internal combustion engine by means of a hydraulic fluid, the cam shaft phase setter including a stator which can be rotary-driven by the crankshaft; a pressure chamber for the fluid; a rotor which is connected, rotationally fixed, to the cam shaft and coupled to the stator such that torque is transmitted and which can be adjusted in its rotational angle relative to the stator by introducing the fluid into the pressure chamber; a control valve including a valve housing and a valve piston; the valve housing including a housing inlet, an operating port to the pressure chamber and a reservoir port to a reservoir for the fluid and being connected, rotationally fixed, to the cam shaft or being formed by the cam shaft; the valve piston being axially adjustable back and forth in the valve housing between a first position and a second position and including a piston feed which is connected to the housing inlet and is connected to the operating port in the first position of the valve piston and separated from the operating port in the second position of the valve piston; an actuating unit, coupled to the valve piston, for axially adjusting the valve piston; and a feedback through which fluid which flows through the valve housing can be fed back into an engine housing of the internal combustion engine which rotatably mounts the cam shaft; wherein the cam shaft phase setter is configured such that the fluid flowing through the control valve flows back into the engine housing through one or more components of the phase setter which rotate with the cam shaft.

First claim

Opening claim text (preview).

The invention claimed is: 1. A cam shaft phase setter for adjusting the rotational angular position of a cam shaft relative to a crankshaft of an internal combustion engine by means of a hydraulic fluid, said cam shaft phase setter comprising: (a) a stator which can be rotary-driven by the crankshaft; (b) a pressure chamber for the fluid; (c) a rotor which is connected, rotationally fixed, to the cam shaft and coupled to the stator such that torque is transmitted and which can be adjusted in its rotational angle relative to the stator by introducing the fluid into the pressure chamber; (d) a control valve comprising a valve housing and a valve piston; (e) the valve housing comprising a housing inlet, an operating port to the pressure chamber and a reservoir port to a reservoir for the fluid and being connected, rotationally fixed, to the cam shaft or being formed by the cam shaft; (f) the valve piston being axially adjustable back and forth in the valve housing between a first position and a second position and comprising a piston feed which is connected to the housing inlet and is connected to the operating port in the first position of the valve piston and separated from the operating port in the second position of the valve piston; (g) an actuating unit, coupled to the valve piston, for axially adjusting the valve piston; (h) and a feedback through which fluid which flows through the valve housing can be fed back into an engine housing of the internal combustion engine which rotatably mounts the cam shaft; (i) wherein the cam shaft phase setter is configured such that the fluid flowing through the control valve flows back into the engine housing through one or more components of the cam shaft phase setter which rotate with the cam shaft, and (j) wherein the feedback extends outside of the valve housing axially through the rotor of the cam phase setter. 2. The cam shaft setter according to claim 1 , wherein the feedback comprises a plurality of passages which are arranged in a distribution around the rotational axis of the rotor. 3. The cam shaft setter according to claim 1 , wherein a continuative feedback, which is connected to the feedback of the rotor, extends in the stator. 4. The cam shaft setter according to claim 1 , wherein a continuative feedback, which is connected to the feedback of the rotor, is formed by one or more bores in the stator or by one or more groove-shaped or fully circumferential inner widenings or is delimited jointly by the stator radially on the outside and by the cam shaft radially on the inside. 5. The cam shaft phase setter according to claim 1 , wherein the feedback extends from the reservoir port to the engine housing through the cam shaft phase setter only. 6. The cam shaft phase setter according to claim 1 , wherein the valve housing is or can be screwed to the cam shaft, and a screw head of the valve housing closes off the feedback for the fluid. 7. The cam shaft phase setter according to claim 1 , wherein the actuating unit comprises an electromagnetic coil and an anchor which can be axially moved relative to the coil, the coil being connected, rotationally fixed, to the engine housing of the internal combustion engine, and wherein the valve piston can be rotated relative to the anchor. 8. The cam shaft phase setter according to claim 7 , comprising a coupling member which extends axially between the valve piston and the anchor in order to transmit an axial actuating force of the actuating unit onto the valve piston. 9. The cam shaft phase setter according to claim 1 , wherein a spring unit acts on the valve piston in the direction of the first position, and the actuating unit acts on the valve piston in the direction of the second position. 10. The cam shaft phase setter according to claim 1 , wherein an additional pressure chamber for the fluid is provided; one of the pressure chambers acts in the direction of the cam shaft leading, and the other acts in the direction of the cam shaft trailing; the valve housing comprises an additional operating port, axially spaced from the operating port, in order to guide the fluid to the additional pressure chamber; and the piston feed is connected to the additional operating port in the second position of the valve piston and separated from the additional operating port in the first position of the valve piston. 11. The cam shaft phase setter according to claim 1 , wherein the valve housing comprises an additional operating port and an additional reservoir port; the valve piston outlet is connected to the additional operating port in the second position of the valve piston and separated from the additional operating port in the first position of the valve piston; and the valve piston connects the additional operating port to the additional reservoir port in the first position of the valve piston. 12. The cam shaft phase setter according to claim 1 , wherein the housing inlet leads axially into the valve housing on an axially facing side of the valve housing. 13. The cam shaft phase setter according to claim 1 , wherein the valve piston comprises an axial hollow space and a piston inlet for introducing the fluid into the hollow space. 14. The cam shaft phase setter according to claim 13 , wherein the piston inlet leads axially into the hollow space on an axially facing side of the valve piston. 15. The cam shaft phase setter according to claim 1 , wherein the valve housing is inserted into an accommodating space of the cam shaft and is screwed to the cam shaft or axially secured by means of a securing device. 16. The cam shaft phase setter according to claim 1 , wherein a closure disc which is fixedly joined to the valve housing forms an axially facing closure wall of the valve housing. 17. A cam shaft phase setter for adjusting the rotational angular position of a cam shaft relative to a crankshaft of an internal combustion engine by means of a hydraulic fluid, said cam shaft phase setter comprising: (a) a stator which can be rotary-driven by the crankshaft; (b) a pressure chamber for the fluid; (c) a rotor which is connected, rotationally fixed, to the cam shaft and coupled to the stator such that torque is transmitted and which can be adjusted in its rotational angle relative to the stator by introducing the fluid into the pressure chamber; (d) a control valve comprising a valve housing and a valve piston; (e) the valve housing comprising a housing inlet, an operating port to the pressure chamber and a reservoir port to a reservoir for the fluid and being connected, rotationally fixed, to the cam shaft or being formed by the cam shaft; (f) the valve piston being axially adjustable back and forth in the valve housing between a first position and a second position and comprising a piston feed which is connected to the housing inlet and is connected to the operating port in the first position of the valve piston and separated from the operating port in the second position of the valve piston; (g) an actuating unit, coupled to the valve piston, for axially adjusting the valve piston; (h) and a feedback through which fluid which flows through the valve housing can be fed back into an engine housing of the internal combustion engine which rotatably mounts the cam shaft; (i) wherein the feedback extends from the reservoir port to the engine housing through the cam shaft phase setter only, and (j) wherein the feedback extends outside of the valve housing axially through the rotor of the cam shaft phase setter. 18. The cam shaft setter according to claim 17 , wherein the

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What does patent US9970333B2 cover?
A cam shaft phase setter for adjusting the rotational angular position of a cam shaft relative to a crankshaft of an internal combustion engine by means of a hydraulic fluid, the cam shaft phase setter including a stator which can be rotary-driven by the crankshaft; a pressure chamber for the fluid; a rotor which is connected, rotationally fixed, to the cam shaft and coupled to the stator such …
Who is the assignee on this patent?
Shw Automotive Gmbh, Schwabische Huttenwerke Automotive Gmbh
What technology area does this patent fall under?
Primary CPC classification F01L1/3442. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue May 15 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).