Claims
- 1. An injection valve comprising:
a fuel line which is guided to a control chamber via a inlet throttle, an outlet throttle which connects a return line to the control chamber, a control valve which is connected in the return line upstream of a return flow, a bypass throttle which connects the fuel line to the return line, a nozzle needle which is arranged movably in a nozzle chamber, wherein the nozzle chamber being connected to the fuel line, the nozzle needle being connected to a control piston, the control piston bounding the control chamber, part of the return line is designed as a valve chamber, and the bypass throttle opens into the valve chamber.
- 2. The injection valve as claimed in claim 1, wherein the control piston is connected to the nozzle needle via a rod, and in that the rod is guided through a chamber.
- 3. The injection valve as claimed in claim 2, wherein the chamber is connected to the fuel line.
- 4. The injection valve as claimed in claim 1, wherein the cross section of the control piston is equal to the cross section of the guided region of the nozzle needle.
- 5. The injection valve as claimed in claim 1, wherein a closing member which is prestressed against a sealing seat by a spring is arranged in the valve chamber.
- 6. The injection valve as claimed in claim 2, wherein grooves are provided which connect the nozzle chamber to the chamber.
- 7. The injection valve as claimed in claim 2, wherein a spring which pre-stresses the nozzle needle in the direction of a sealing seat is arranged in the chamber.
- 8. The injection valve as claimed in claim 1, wherein the control valve is comprises a piezo electric actuator.
- 9. Method of operating an injection valve comprising the, steps of:
storing fuel at high pressure in a fuel line; supplying the high pressured fuel to a valve chamber, to a control chamber for controlling a nozzle needle; controlling the pressure in the control chamber through a servo valve and an outlet throttle coupling the valve chamber and the control chamber.
- 10. Method according to claim 9, wherein the step of controlling the pressure is further performed through a bypass-throttle coupling the valve chamber and the fuel line.
- 11. Method according to claim 9, wherein the control chamber comprises a control piston which is connected to the nozzle needle via a rod, and the rod is guided through a chamber, wherein the pressure between the valve chamber and the control chamber controls the movement of the control piston.
- 12. Method according to claim 9, wherein the cross section of the control piston is equal to the cross section of the guided region of the nozzle needle.
- 13. Method according to claim 9, further comprising the step of pre-stressing a closing member against a sealing seat by a spring within the valve chamber.
- 14. Method according to claim 9, wherein the nozzle needle is arranged within a nozzle chamber which is coupled with the fuel line.
- 15. Method according to claim, 12, whereby using a spring to control the movement of the control piston.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10015268.6 |
Mar 2000 |
DE |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of copending International Application No. PCT/WO01/73287 filed Oct. 4, 2001, which designates the United States.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/DE01/00893 |
Mar 2001 |
US |
Child |
10259148 |
Sep 2002 |
US |