Fuel injection valve

6382534
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Inventors

Keim, Norbert

Application #

776325

Filed

Feb-2-2001

Published

May-7-2002

Current US Class

239/585.1
239/585.4
239/585.5
251/129.21

International Classes

B05B 001/30; F02M 051/00

Field of Search

239/584 239/585.1 239/585.4 239/585.5 251/129.16 251/129.21

Assignee

Robert Bosch GmbH (Stuttgart, DE)

Examiners

Ganey; Steven J.

Attorney, Agent or Firm

Kenyon & Kenyon

US Patent References

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6220528   Fuel injector includ...

Referenced by:

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Citation

Cite This Patent

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Abstract
A fuel injection valve, in particular for fuel injection systems of internal combustion engines, includes a magnet coil, an armature acted upon in a closing direction by a return spring, and a valve needle, in nonpositive engagement with the armature, for actuation of a valve closure element that, together with a valve seating surface, forms a sealing fit. At least one fuel conduit through which fuel flows is provided in the armature and/or in the valve needle. An impact element is mounted on the valve needle in the spray-discharge direction of the fuel conduit.
 
Claims
What is claimed is:

1. A fuel injection valve comprising:

a magnet coil;

a return spring;

an armature acted upon in a closing direction by the return spring;

a valve closure element;

a valve needle, in nonpositive engagement with the armature, for actuation of the valve closure element, at least one fuel conduit through which fuel flows being situated in at least one of the armature and the valve needle;

a valve seating surface, the valve closure element and the valve seating surface together forming a sealing fit; and

an impact element mounted on the valve needle downstream from the fuel conduit, the fuel flowing through the fuel conduit striking the impact element.



Description
BACKGROUND INFORMATION

German Patent No. DE 196 26 576 describes an electromagnetically actuable fuel injection valve in which an armature coacts with an electrically excitable magnet coil for electromagnetic actuation, and the linear stroke of the armature is transferred via a valve needle to a valve closure element. The valve closure element coacts with a valve seating surface to form a sealing fit. Several fuel conduits are provided in the armature. Return of the armature is accomplished with a return spring.

The fuel injection valve described in German Patent No. DE 196 26 576 is disadvantageous especially with regard to relatively long closing times. Delays in the closing of the fuel injection valve are brought about by the adhesion forces acting between armature and internal pole, and because the magnetic field does not decay instantaneously when the excitation current is switched off. This results in metering times and metered volumes for the fuel that are worth improving. The generation of large closing forces by way of a high return spring force has the disadvantage of a high power requirement for excitation of the magnet coil. The output stage of an electrical control device must then be of correspondingly complex design.
 
  A fuel injector, in particular a high-pressure injector for directly injecting fuel into a combustion chamber of a mixture-compression, spark-ignition...  Step portions in a core and a valve holder are provided, and an L-shaped sleeve is fitted in these step portions. This construction axially shortens the...