IP Library Granted Patent US 9,739,182
Granted Patent B2
US 9,739,182 · App. 14/833,065 · Granted Aug 22, 2017

Hydraulic valve and cam phaser

Inventor: Dietmar Schulze (Muenzenberg, DE)
Assignee: Hilite Germany GmbH
F01L1/3442F16K31/122F01L2001/34426
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Quick Facts
Patent No.
US 9,739,182
App. No.
14/833,065
Granted
Aug 22, 2017
Kind
B2
Abstract

A hydraulic valve for a cam phaser including a pressure balanced hollow piston that is arranged axially movable, wherein the hollow piston at its end oriented towards the pressure medium connection includes a first piston section with a first small outer diameter, and adjacent to the first piston section a second piston section with a second large outer diameter, and a third piston section with a third medium outer diameter, wherein the hollow piston includes a respective pressure surface for pressure compensation at the first piston section and at the third piston section which are respectively loadable with an axial force that is oriented away from the pressure medium connection when the hollow piston is loaded with pressure, wherein a resultant force of the axial forces impacts the hollow piston, and another pressure surface is provided at the second piston section of the hollow piston.

Claims (47)

1. A hydraulic valve for a cam phaser, the hydraulic valve comprising:

a valve housing which includes a bore hole with shoulders with a first operating medium connection and a second operating medium connection configured as respective transversal bore holes originating from the bore hole with shoulders;

a pressure balanced hollow piston that is arranged within the bore hole with shoulders and axially moveable between a first end position and a second end position;

a piston inlet for axially introducing a pressure medium into a cavity of the hollow piston wherein the piston inlet is connectable with a pressure medium connection, wherein the pressure medium connection is formed by a housing inlet of the valve housing;

a piston outlet leading out of the cavity of the hollow piston and connecting the pressure medium connection with the first operating connection or the second operating connection;

a first tank connection for connecting the first operating connection with a pressure medium reservoir and a second tank connection for connecting the second operating connection with the pressure medium reservoir;

a plunger for axially adjusting the hollow piston through an actuator,

wherein the hollow piston at its end oriented towards the pressure medium connection includes a first piston section with a first small outer diameter, and

adjacent to the first piston section a second piston section with a second large outer diameter, and

a third piston section with a third medium outer diameter,

wherein the first piston section, the second piston section and the third piston

section are respectively moveable in a housing section of the valve housing with a sealing tolerance,

wherein the hollow piston includes a first pressure surface at the first piston section and a third pressure surface at the third piston section for pressure balancing the hollow piston wherein the first pressure surface is loadable with a first axial force and the third pressure surface is loadable with a third axial force, wherein the first axial force and the third axial force is oriented away from the pressure medium connection when the hollow piston is loaded with pressure,

wherein a resultant force of the first axial force and the third axial force impacts the hollow piston,

wherein a second pressure surface is provided at the second piston section of the hollow piston,

wherein the second pressure surface is an only pressure surface of the hollow piston which is loadable with a second axial force that is oriented towards the pressure medium connection,

wherein the resultant force and the second axial force impacting the hollow piston from both axial directions are essentially equal in size so that the force at the first piston section is essentially balanced by the second axial force and the third axial force that are provided between the first operating connection and the second operating connection.

2. The hydraulic valve according to claim 1 , wherein the first housing section is formed by a bushing that is arranged in the bore hole with shoulders of the valve housing.

3. The hydraulic valve according to claim 2 ,

wherein a transversal bore hole originating from the bore hole with shoulders is arranged in axial direction after the pressure medium connection as the first tank connection followed by the first operating connection and the second operating connection,

wherein the second tank connection is arranged in the axial direction after the second operating connection,

wherein the second tank connection is formed by an axial housing outlet, and

wherein a first annular cavity for connecting the first operating connection with the first tank connection is provided between the bushing and a shoulder formed between the first piston section and the second piston section.

4. The hydraulic valve according to claim 3 , wherein a reset spring for the hollow piston is arranged in the first annular cavity between the shoulder and the bushing.

5. The hydraulic valve according to claim 4 , wherein a spring preload force of the reset spring is adjustable through the bushing.

6. The hydraulic valve according to claim 3 ,

wherein a second annular cavity is provided between the second piston section and the third piston section, and

wherein the second annular cavity is configured for connecting the first operating connection or the second operating connection with the pressure medium connection through the piston outlet as a function of a position of the hollow piston.

7. The hydraulic valve according to claim 6 ,

wherein a third annular cavity is provided between the third piston section and the housing outlet, and

wherein the third annular cavity is configured as a connection of the second operating connection with the second tank connection.

8. The hydraulic valve according to claim 7 , wherein the third annular cavity is formed by a shoulder of the third piston section.

9. The hydraulic valve according to claim 2 ,

wherein the first pressure surface at the first piston section is formed by a projected circular surface and the second pressure surface and the third pressure surface are formed by annular surfaces oriented towards each other and arranged at the second piston section and at the third piston section

wherein the second tank connection is formed by an axial housing outlet, and

wherein a first annular cavity for connecting the first operating connection with the first tank connection is provided between the bushing and a shoulder formed between the first piston section and the second piston section.

10. The hydraulic valve according to claim 1 , wherein the third housing section is formed by a bushing arranged in the bore hole with shoulders of the valve housing.

11. The hydraulic valve according to claim 1 ,

wherein a transversal bore hole originating from the bore hole with shoulders is arranged in axial direction after the pressure medium connection as the first tank connection followed by the first operating connection and the second operating connection,

wherein the second tank connection is arranged in the axial direction after the second operating connection,

wherein the second tank connection is formed by an axial housing outlet.

12. The hydraulic valve according to claim 1 , wherein the first pressure surface at the first piston section is formed by a projected circular surface and the second pressure surface and the third pressure surface are formed by annular surfaces oriented towards each other and arranged at the second piston section and at the third piston section.

13. The hydraulic valve according to claim 1 , wherein the housing inlet is arranged axially within the valve housing.

14. The hydraulic valve according to claim 1 , wherein the housing inlet is radially arranged within the valve housing.

15. The hydraulic valve according to claim 1 , wherein a check valve is arranged in the housing inlet.

16. The hydraulic valve according to claim 1 , wherein a plunger is provided that is coupled with the hollow piston.

17. A cam phaser including a stator and a rotor that is rotatable relative to the stator between a first end position and a second end position for adjusting a cam shaft of an internal combustion engine, wherein the cam phaser includes a hydraulic valve according to claim 1 for controlling a rotation of the rotor relative to the stator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2015
From: SCHULZE, DIETMAR
To: HILITE GERMANY GMBH
Reel/Frame 036786/0966 →
Priority Claims (1)
DE 10 2014 115 903 · Oct 31, 2014 · national
Continuity (1)
Related Publication 20160230611A1 · Aug 11, 2016