Claims
- 1. A fuel injection nozzle comprising a nozzle body (12) having one first and one second group of injection ports (14, 16), one first nozzle needle (18) and one second nozzle needle (20), and one separate pressure chamber (24, 34) for each nozzle needle, whereby the nozzle needles are adjustable independently of one another between a closed position, in which the injection ports associated with the corresponding nozzle needle are closed, and an injection position, in which the corresponding injection ports are opened,said two nozzle needles (18, 20) adjoining one another, the first nozzle needle having a stop chamber (27) and the second nozzle needle (20) being positioned within the stop chamber (27) of the first nozzle needle (18).
- 2. The injection nozzle of claim 1, wherein said injection ports (14, 16) are each disposed along a circle; that the first nozzle needle (18) is hollow; and that the second nozzle needle (20) extends through the first nozzle needle (18).
- 3. The injection nozzle of claim 2, wherein fuel for the injection ports associated with the second nozzle needle (20) is delivered through a free space between the first and second nozzle needles (18, 20).
- 4. The injection nozzle of claim 3, further comprising a stop chamber (27, 37) for at least one of the nozzle needles, each said stop chamber (27, 37) being provided with a hydraulic connection (30, 40).
- 5. The injection nozzle of claim 4, wherein a compression spring (28, 38) is disposed in each said stop chamber.
- 6. The injection nozzle of claim 2, further comprising a stop chamber (27, 37) for at least one of the nozzle needles, each said stop chamber (27, 37) being provided with a hydraulic connection (30, 40).
- 7. The injection nozzle of claim 6, wherein a compression spring (28, 38) is disposed in each said stop chamber.
- 8. A fuel injection nozzle comprising a nozzle body (12) having one first and one second group of injection ports (14, 16), one first and one second nozzle needle (18, 20), and one separate pressure chamber (24, 34) for each nozzle needle, whereby the nozzle needles (18, 20) are adjustable independently of one another between a closed position, in which the injection ports associated with the corresponding nozzle needle are closed, and an injection position, in which the corresponding injection ports are opened, said two nozzle needles (18, 20) adjoining one another,wherein fuel for the injection ports associated with the second nozzle needle (20) is delivered through a bore in the interior of the second nozzle needle (20).
- 9. The injection nozzle of claim 8, further comprising a stop chamber (27, 37) for at least one of the nozzle needles, each said stop chamber (27, 37) being provided with a hydraulic connection (30, 40).
- 10. The injection nozzle of claim 9, wherein a compression spring (28, 38) is disposed in each said stop chamber.
- 11. A fuel injection nozzle comprising a nozzle body (12) having one first and one second group of injection ports (14, 16), one first and one second nozzle needle (18, 20), and one separate pressure chamber (24, 34) for each nozzle needle, whereby the nozzle needles (18, 20) are adjustable independently of one another between a closed position, in which the injection ports associated with the corresponding nozzle needle are closed, and an injection position, in which the corresponding injection ports are opened, said two nozzle needles (18, 20) adjoining one another,further comprising a stop chamber (27, 37) for each of the nozzle needles, each said stop chamber (27, 37) being provided with a hydraulic connection (30, 40).
- 12. The injection nozzle of claim 11, wherein a compression spring (28, 38) is disposed in each said stop chamber.
- 13. The injection nozzle of claim 11, further comprising a compression spring (28, 38) disposed in each said step chamber (27, 37), and a valve associated with the hydraulic connection (30, 40) of each stop chamber (27, 37).
- 14. A fuel injection nozzle comprising a nozzle body (12) having one first and one second group of injection ports (14, 16), one first and one second nozzle needle (18, 20), and one separate pressure chamber (24, 34) for each nozzle needle, whereby the nozzle needles (18, 20) are adjustable independently of one another between a closed position, in which the injection ports associated with the corresponding nozzle needle are closed, and an injection position, in which the corresponding injection ports are opened,further comprising a stop chamber (27) for at least the first nozzle needle (18), each of the pressure chambers (24, 34) and the stop chamber (27) being in axial alignment.
Priority Claims (1)
Number |
Date |
Country |
Kind |
100 10 863 |
Mar 2000 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a 35 USC 371 application of PCT/DE 01/00727 filed on Feb. 24, 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/DE01/00727 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO01/66932 |
9/13/2001 |
WO |
A |
US Referenced Citations (8)
Foreign Referenced Citations (2)
Number |
Date |
Country |
4115477 |
Nov 1991 |
DE |
4210563 |
Oct 1992 |
DE |