Fluid pressure regulator

4829964
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Inventors

Asayama, Yoshiaki

Application #

057079

Filed

Jun-3-1987

Published

May-16-1989

Current US Class

123/458
123/463

International Classes

F02M 039/00

Field of Search

123/458 123/463 123/456 123/459 123/462 123/457

Assignee

Mitsubishi Denki Kabushibi Kaisha (Tokyo, JP)

Examiners

Miller; Carl Stuart

Attorney, Agent or Firm

Sughrue, Mion, Zinn, Macpeak & Seas

US Patent References

4050431   Fuel injection syste...
4184465   Fuel injection devic...
4200073   Electronic throttle b...
4426978   Fuel supply control...
4481926   Fuel injection syste...

Referenced by:

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Citation

Cite This Patent

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Abstract
A fuel pressure regulating apparatus having a biasing structure including at least two and sometimes three biasing members, at least one of the biasing members being under control of an electromagnet in order to regulate the position of a valve member, which is associated with a diaphragm, with respect to a valve seat 16. The relative position may be regulated in accordance with a number of parameters, including engine temperature. The biasing members act in opposing directions in accordance with an engine operating parameter.
 
Claims
What is claimed is:

1. A fuel pressure regulator for an internal combustion engine, comprising a first diaphragm, a fuel pressure regulating chamber defined partially by said diaphragm, a valve seat provided in said fuel pressure regulating chamber, said valve seat having an overflow opening, a valve member fixedly mounted on said diaphragm and relatively movable with respect to said valve seat, a first resilient member for biasing said valve member to said valve seat to close said overflow opening thereof, a second resilient member adapted to provide an additional biasing force to said valve member to thereby increase fuel pressure in said fuel pressure regulating chamber when required, and a drive means responsive to an operation condition of said internal combustion engine to selectively bring said second resilient member into operation,, wherein, when the operation condition exceeds a predetermined condition, said drive means causes said second resilient member to exert said additional biasing force on said valve member to increase fuel pressure in said fuel pressure regulating chamber, wherein said valve seat is movable and said drive means comprises an electromagnet fixedly provided in said fuel pressure regulating chamber, a holding member attached to one end of said second resilient member and normally held by a stopper provided on one side of said first diaphragm opposite to said pressure regulating chamber to hold said second resilient member inoperative and a third resilient member provided on the side of said pressure regulating chamber for biasing said valve seat said valve member, said electromagnet being adapted to attract said valve set against resilient force of said third resilient member and to release said valve seat to allow the latter to push said valve member until the latter engages with said holding member to thereby cause said second resilient member to be operative.



Description
BACKGROUND OF THE INVENTION

The present invention relates to a fluid pressure regulator for use in, for example, an electronically controlled fuel injection system of an internal combustion engine of an automobile.

An example of a conventional fluid pressure regulation system is disclosed in, for example, Japanese Utility Model Application Laid-Open No. 65945/1984 and Japanese Pat. Application Laid-Open No. 132068/1985.

FIGS. 1 and 2 show the fluid pressure regulator of the latter, schematically. In FIG. 1 which shows a fuel injection system having the fluid pressure regulator and FIG. 2 which shows the fluid pressure regulator in cross section, fuel is routed from a fuel tank 1 through a pipe 2 to a fuel pump 3 in which it is pressurized. Then, it is supplied from the fuel pump 3 through a damper 4, a fuel filter 5 and a pipe 6 to a pressure regulator 7 in which a fuel pressure is regulated to a predetermined value. Fuel at the predetermined pressure is supplied through a pipe 6 to a fuel injector 9 of electromagnetic valve type. The fuel injector 9 shown in FIG. 1 responds to an instruction signal from a control unit 10a of a control mechanism 10 for opening the valve for a predetermined time to inject supplied fuel. The injected fuel is mixed with suction air flowing through an intake manifold 11 and then supplied to a combustion chamber 12a of an internal combustion engine 12 for combustion.
 
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