Claims
- 1. A control valve configuration for use in a fuel injector for an internal combustion engine, the control valve configuration comprising:
a housing having a valve chamber formed therein, a valve inlet formed therein for a fluid which is under pressure, and a valve outlet formed therein for hydraulically controlling an injection process at a nozzle of the fuel injector, said valve chamber having a first section, a second section, and a return opening, said housing further having a chamber wall defining a rear of said valve chamber and a seat defining a first part of a seat valve disposed in said first section; an actuating device disposed in said housing; and a valve body disposed in said valve chamber, said valve body can be displaced axially by said actuating device and, depending on a position of said valve body, said valve body produces or blocks a fluidic connection between said valve inlet and said valve outlet, said valve body having a first valve section forming a second part of said seat valve disposed between said valve inlet and said valve outlet in said first section of said valve chamber, said seat valve being closed in a rest position of said valve body and being opened in a working position of said valve body, said valve body having a second valve section rigidly connected to said first valve section, said second section of said valve chamber and said second valve section forming a slide valve which, in the rest position of said valve body produces a fluidic connection between said valve outlet and said return opening and blocks a fluidic connection between said seat valve and said valve outlet, said slide valve closes said return opening and then starts to produce a fluidic connection between said seat valve and said valve outlet only after said valve body leaves the rest position, said first section of said valve chamber passing via said seat of said seat valve in a direction of flow into said second section of said valve chamber.
- 2. The control valve configuration according to claim 1, wherein:
said first valve section is a control piston sliding in a tight-fitting manner in said first section of said valve chamber, said control piston having a front side facing said seat of said seat valve, said front side having an annular active surface which is exposed to a valve inlet pressure, said control piston further having a rear active surface; said first valve section has a feed restrictor formed therein; said chamber wall of said housing having a return connection formed therein and a discharge restrictor formed therein and fluidically connected to said return connection; and said valve chamber defining a control space being a space behind said rear active surface of said control piston, said control space connected to said valve inlet through said feed restrictor and to said return connection through said discharge restrictor which is to be opened by said actuating device, flow resistances of said feed restrictor and said discharge restrictor and a proportion in size between said annular active surface and said rear active surface being dimensioned in such a manner that said valve body moves into the working position when said discharge restrictor is opened and moves into the rest position when said discharge restrictor is closed.
- 3. The control valve configuration according to claim 2, wherein said control piston is configured such that when said control piston reaches the working position, said control piston presses in a sealing manner onto an access between said control space and said discharge restrictor.
- 4. The control valve configuration according to claim 2, wherein said first section of said valve chamber which contains said control piston has a diameter larger than a diameter of said second section of said valve chamber which forms said slide valve, said seat of said seat valve is formed by a conically shaped housing edge of said housing which is situated at a transition region between said first and second sections of said valve chamber, said front side of said control piston having an annular surface with a central zone which rests in a sealing manner on said seat when said valve body is in the rest position.
- 5. The control valve configuration according to claim 4, wherein said annular surface on said front side of said control piston is a tapering transition area on said valve body connecting said first valve section to said second valve section, said first valve section having a diameter greater than a diameter of said second valve section, said housing having an annular groove with a constricted continuation formed therein, said conically shaped housing edge forming said seat of said seat valve is an edge of said housing disposed between said annular groove and said constricted continuation in said valve chamber, said valve inlet leading into said annular groove and said annular groove having a diameter larger than said diameter of said first section of said valve chamber, and said constricted continuation of said annular groove forming a control edge for said slide valve at a transition region to said second section of said valve chamber.
- 6. The control valve configuration according to claim 5, wherein said second valve section has a further annular groove formed therein, said further annular groove having an axial dimension dimensioned in such a manner that it spans a distance between said return opening and said valve outlet in the rest position of said valve body and, after said valve body leaves the rest position, said further annular groove leaves said return opening and at a same time spans a distance between said valve outlet and said constricted continuation of said annular groove.
- 7. The control valve configuration according to claim 6, wherein said return opening has a control edge being concurrent with an outer edge of said second section of said valve chamber.
- 8. The control valve configuration according claim 2, wherein said control piston has a flow duct formed therein connecting said feed restrictor to said control space, said feed restrictor connecting said valve inlet to said flow duct.
- 9. The control valve configuration according to claim 8, wherein said discharger restrictor is a flow duct having an entry opening situated on a front of said chamber wall.
- 10. The control valve configuration according to claim 9, wherein said control piston has a stop element disposed on said rear active surface, said stop element, when said control piston reaches the working position, is placed in a sealing manner onto said entry opening of said discharge restrictor.
- 11. The control valve configuration according to claim 1,
wherein said first valve section is a control piston having a rear face with a bore formed therein, said control piston having an end wall defining an end of said bore; wherein said chamber wall of said housing having a return connection formed therein and a discharge restrictor with an entry opening formed therein and fluidically connected to said return connection; including a further piston sliding in a tight-fitting manner in said bore of said control piston, said further piston supported on said chamber wall, said further piston having a flow duct formed therein leading through said further piston to said entry opening of said discharge restrictor; and said bore defining a control space formed between said end wall of said control piston and said further piston.
- 12. The control valve configuration according to claim 11, wherein said housing has a pressure-equalizing duct formed therein, said pressure-equalizing duct leading from a space formed between said rear face of said control piston and said chamber wall to ambient pressure.
- 13. The control valve configuration according to claim 11, wherein said further piston has a front end reaching into said bore and strikes against a back of said bore, sealing off said flow duct leading to said discharge restrictor, when said control piston is in the working position.
- 14. The control valve configuration according to claim 2, wherein said actuating device is an electromechanical actuator.
- 15. The control valve configuration according to claim 2, including a ball valve disposed adjacent said discharge restrictor and said actuating device acts on said ball valve for blocking said discharge restrictor.
- 16. The control valve configuration according to claim 1, wherein said valve outlet is to be connected to a primary side of a pressure intensifier in order to control a nozzle needle of the fuel injector.
- 17. The control valve configuration according to claim 2, wherein said actuating device is a piezo actuator.
Priority Claims (1)
Number |
Date |
Country |
Kind |
199 37 713.8 |
Aug 1999 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of copending International Application PCT/DE00/02642, filed Aug. 8, 2000, which designated the United States.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/DE00/02642 |
Aug 2000 |
US |
Child |
10073553 |
Feb 2002 |
US |