Effervescent injector for diesel engines

5884611
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Inventors

Tarr, Yul J.
Tikk, Laszlo D.
Eckerle, Wayne A.
Peters, Lester L.

Application #

949755

Filed

Oct-14-1997

Published

Mar-23-1999

Current US Class

123/531
239/408
239/533.2

International Classes

F02M 023/00

Field of Search

123/26 123/531 239/533.2 239/533.3 239/408

Assignee

Cummins Engine Company, Inc. (Columbus, IN)

Examiners

Kwon; John T.

Attorney, Agent or Firm

Sixbey, Friedman, Leedom & Ferguson, Safran; David S.

US Patent References

4167921   Fuel injection devic...
4284043   Method for operatin...
4381077   Diesel fuel injection...
4546739   Fuel injection valve...
4796577   Injection system wit...
4823756   Nozzle system for e...
4836453   Fuel injector with c...
4856713   Dual-fuel injector
4892065   Method concerning...
4979479   Fuel injector and...
5088467   Electromagnetic inj...
5129381   Fuel injection syste...
5172865   Fuel supply device...
5199398   Fuel injection valve...
5220900   Air assist atomizer f...
5241938   Injector with assist...
5711281   Fuel injector with a...
 

Referenced by:

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Cite This Patent

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Abstract
An effervescent fuel injector, particularly one suitable for diesel and direct injection engine applications, which is capable of injecting, particularly intermittently, an atomized fuel spray with droplets of a size in the range of 5-6 micron SMD without requiring high pressures is achieved in a preferred embodiment effervescent fuel injector of the valve covered orifice (VCO) type having primary and secondary nozzle valves which remain closed when the control valve is not actuated, but which open one or two sets of nozzle orifices depending on fuel volume requirements. A three-way, on-off control valve is used to trigger commencement of the supply of gas via a control valve simultaneously with opening of at least some of the nozzle orifices. Gas and fuel are mixed in a mixing chamber located upstream of the nozzle valves in a manner creating a gas-fuel aeration, and as the aeration is sprayed from the nozzle orifices, the gas expands rapidly breaking the fuel into fine droplets.
 
Claims
We claim:

1. An effervescent fuel injector assembly comprising an injector body having an injection nozzle with at least one injection orifice therein, a mixing chamber formed in the injector body upstream of said at least one injection orifice, a fuel supply line for supplying liquid fuel to said mixing chamber, a gas control valve mounted in the injector body for opening and closing communication between said mixing chamber and a gas supply line, orifice means for introducing gas under pressure into fuel in the mixing chamber in a manner producing a gas-fuel aeration in said mixing chamber, a fuel control valve disposed in said injector body for opening and closing communication between said mixing chamber and said at least one nozzle orifice, and control means for opening said gas control valve simultaneously with at least partial opening of said fuel control valve.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The present invention relates to fuel injectors for diesel engines. In particular, the invention relates to such a fuel injector in which a high pressure gas is mixed with the fuel to obtain improved atomization of the fuel being injected into the engine.

2. Description of Related Art

U.S. Pat. No. 4,167,921 to Steinwart discloses a fuel injector having an air chamber surrounding a fuel injection head, where "air assist" type atomization of the fuel is performed using air that is introduced into the air chamber from the atmosphere or the air induction duct, and from which the atomized fuel is injected through an outlet opening of the air chamber. The injector head is adjustable in relation to the outlet opening in accordance with the load setting of the engine. The cross-section of the outlet opening is variable between that needed for idle running and that needed for full load. However, because the outlet opening of the air chamber is always open and Steinwart introduces air into the air chamber at low pressure downstream of the injection nozzle, precise control of the fuel air cannot be obtained and the system cannot be applied to diesel and other direct injection engine applications.
 
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