Fuel injection valve

6840459
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Inventors

Ruehle, Wolfgang
Stier, Hubert
Boee, Matthias
Hohl, Guenther
Keim, Norbert

Application #

069257

Filed

Jul-8-2002

Published

Jan-11-2005

Current US Class

239/102.1
239/102.2
239/533.13
239/533.3
239/585.1
239/585.5
239/88

International Classes

B05B 001/08; B05B 003/04; B05B 001/30; 585.2; 585.3; 585.4; 585.5

Field of Search

239/102.1 239/102.2 239/88 239/89 239/90 239/91 239/92 239/533.2 239/533.3 239/533.7 239/533.8 239/533.9 239/533.13 239/585.1 251/129.15 251/129.21

Assignee

Robert Bosch GmbH (Stuttgart, DE)

Examiners

Hwu; Davis

Attorney, Agent or Firm

Kenyon & Kenyon

US Patent References

4813601   Piezoelectric contro...
4858439   Device for varying...
6062533   Apparatus and met...
6085990   Piezoelectric inject...

Referenced by:

View Backward References

Citation

Cite This Patent

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Abstract
A fuel injector, in particular a fuel injector for fuel injection systems of internal combustion engines, has a piezoelectric or magnetostrictive actuator, a valve closing element that can be actuated by the actuator and that works together with a valve seat face to form a seal seat, and a temperature compensation device. The temperature compensation device has a housing that is elastically deformable along a direction of actuation of the actuator, and has at least one throttle that connects an interior space of the housing with a fuel inlet of the fuel injector. The cross-section of this throttle is dimensioned such that an entry and exit of fuel into the housing of the temperature compensation device is enabled when there is a temperature-caused change in length of components of the fuel injector.
 
Claims
What is claimed is:

1. A fuel injector, comprising:

an actuator, the actuator being one of a piezoelectric actuator or a magnetostrictive actuator;

a valve closing element, the actuator configured to actuate the valve closing element, the valve closing element acting together with a valve seat face to form a seal seat; and

a temperature compensation device including a housing that is elastically deformable along a direction of actuation of the actuator, the temperature compensation device further including at least one throttle that connects an interior space of the housing with a fuel inlet of the fuel injector, a cross-section of the throttle being dimensioned so that entry and exit of fuel into the housing is enabled when there is a temperature-caused change in length of components of the fuel injector.



Description
FIELD OF THE INVENTION

The present invention relates to a fuel injector.

BACKGROUND INFORMATION

German Patent No. 195 00 706 describes a fuel injector. A stroke translator or path transformer is provided that converts a relatively small regulating distance of the actuator, for example a piezoactuator, into a larger stroke of the valve needle. Here, the extension of the actuator is introduced into an amplification (boost) chamber via a working piston of the stroke translator, and is transmitted via a lifting piston to the valve needle, which executes a stroke that is enlarged in relation to the piston surface that limits the amplification chamber at the face. In order to compensate temperature influences, wear, and manufacturing tolerances on the regulation path of the actuator, the amplification chamber has a defined leakage that is realized by an annular gap between the piston and a wall of the valve housing, and that has a resistance to flow that is high enough that the movements of the actuator are transmitted in essentially undampened fashion to the valve needle. The fuel itself diesel fuel in the case of German Patent No. 195 00 706--is used as the hydraulic medium for the stroke translation.
 
  A fuel injector for fuel-injection systems of internal combustion engines includes an actuator, a valve needle, which is able to be activated by the actuator...  A fuel injector (1) for fuel injector systems of internal combustion engines has a valve-closure member (4) which is mechanically linked to a valve needle...