IP Library › Granted Patent US 10,119,492
Granted Patent B2
US 10,119,492 · App. 15/558,474 · Granted Nov 6, 2018

Fuel injection control device for direct-injection engine

Inventors: Yuji Harada (Higashihiroshima, JP); Tatsuya Tanaka (Higashihiroshima, JP); Hiroyuki Yamashita (Hiroshima, JP)
Assignee: MAZDA MOTOR CORPORATION
F02D41/403F02D35/023F02D35/025F02D35/026F02D41/1454F02D41/1456F02D41/3047F02D41/402F02D2200/021F02D2200/0414Y02T10/44
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Quick Facts
Patent No.
US 10,119,492
App. No.
15/558,474
Granted
Nov 6, 2018
Kind
B2
Abstract

A fuel injection control unit (engine controller 100 ) performs a main injection ( 72 ) over a period ranging from a last stage of a compression stroke to an initial stage of an expansion stroke, and also performs a preceding injection ( 71 ), injecting a smaller amount of a fuel than the main injection, over a period ranging from an intake stroke to a first half of the compression stroke, and also determines whether or not the fuel injected by the preceding injection causes a partial oxidation reaction during a second half of the compression stroke, and on determining that the fuel causes the partial oxidation reaction, performs a middle-stage injection ( 73 ). The middle-stage injection is performed at such a timing that allows the fuel injected by the middle-stage injection to ignite spontaneously on or after the fuel injected by the main injection has spontaneously ignited and before the partial oxidation reaction occurs.

Claims (21)

1. A fuel injection control device for a direct-injection engine, the control device comprising:

an engine body including a combustion chamber defined by a cylinder head ceiling portion, a cylinder provided for a cylinder block, and a piston reciprocating inside the cylinder; and

a fuel injection control unit which includes a fuel injection valve, provided inside the combustion chamber to inject a liquid fuel, and which is configured to inject the fuel into the combustion chamber at a predetermined timing, wherein

the fuel injection control unit performs a main injection over a period ranging from a last stage of a compression stroke to an initial stage of an expansion stroke, and also performs a preceding injection, injecting a smaller amount of the fuel than the main injection, over a period ranging from an intake stroke to a first half of the compression stroke, and

the fuel injection control unit also determines whether or not the fuel injected by the preceding injection causes a partial oxidation reaction during a second half of the compression stroke, and on determining that the fuel causes the partial oxidation reaction, performs a middle-stage injection between the preceding injection and the main injection, and

the fuel injection control unit performs the middle-stage injection at such a timing that allows the fuel injected by the middle-stage injection to ignite spontaneously on or after the fuel injected by the main injection has spontaneously ignited and before the partial oxidation reaction occurs during the second half of the compression stroke.

2. The fuel injection control device for the direct-injection engine of claim 1 , wherein

the fuel injection control unit determines, based on a pressure in the cylinder, a temperature in the cylinder, and an oxygen concentration in the cylinder, whether or not the partial oxidation reaction is going to occur.

3. The fuel injection control device for the direct-injection engine of claim 1 , wherein

the middle-stage injection injects a smaller amount of the fuel than the main injection.

4. The fuel injection control device for the direct-injection engine of claim 1 , wherein

the main injection is multi-stage injections including a plurality of fuel injections,

an interval between an end of injection of the middle-stage injection and a start of injection of the main injection is longer than an interval between first and second injections of the main injection.

5. The fuel injection control device for the direct-injection engine of claim 2 , wherein

the middle-stage injection injects a smaller amount of the fuel than the main injection.

6. The fuel injection control device for the direct-injection engine of claim 2 , wherein

the main injection is multi-stage injections including a plurality of fuel injections,

an interval between an end of injection of the middle-stage injection and a start of injection of the main injection is longer than an interval between first and second injections of the main injection.

7. The fuel injection control device for the direct-injection engine of claim 3 , wherein

the main injection is multi-stage injections including a plurality of fuel injections,

an interval between an end of injection of the middle-stage injection and a start of injection of the main injection is longer than an interval between first and second injections of the main injection.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2017
From: HARADA, YUJI; TANAKA, TATSUYA; YAMASHITA, HIROYUKI
To: MAZDA MOTOR CORPORATION
Reel/Frame 043593/0712 →
Priority Claims (1)
JP 2015-059856 · Mar 23, 2015 · national
Continuity (1)
Related Publication 20180066600A1 · Mar 8, 2018