JPS62284941A - Injecting method for fuel injection type internal combustion engine - Google Patents

Injecting method for fuel injection type internal combustion engine

Info

Publication number
JPS62284941A
JPS62284941A JP12641286A JP12641286A JPS62284941A JP S62284941 A JPS62284941 A JP S62284941A JP 12641286 A JP12641286 A JP 12641286A JP 12641286 A JP12641286 A JP 12641286A JP S62284941 A JPS62284941 A JP S62284941A
Authority
JP
Japan
Prior art keywords
fuel injection
fuel
internal combustion
combustion engine
engine
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP12641286A
Other languages
Japanese (ja)
Other versions
JP2646529B2 (en
Inventor
Fujiyuki Suzuki
鈴木 富士往
Masahiro Hosoi
細井 政廣
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Suzuki Motor Corp
Original Assignee
Suzuki Motor Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Suzuki Motor Corp filed Critical Suzuki Motor Corp
Priority to JP61126412A priority Critical patent/JP2646529B2/en
Publication of JPS62284941A publication Critical patent/JPS62284941A/en
Application granted granted Critical
Publication of JP2646529B2 publication Critical patent/JP2646529B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Electrical Control Of Air Or Fuel Supplied To Internal-Combustion Engine (AREA)

Abstract

PURPOSE:To promote the atomization of fuel and improve the starting property particularly in the cold state of an engine by dividing a required fuel injection quantity in one injection period of a fuel injection type internal combustion engine into plural times and intermittently carrying out fuel injections. CONSTITUTION:During the operation of an internal combustion engine, a control circuit 10 receives the output signals of an air quantity sensor 14, a throttle valve opening sensor 18, a water temp. sensor 20, an O2 sensor 22, etc., and obtains a required fuel injection time corresponding to a required fuel injection quantity in one injection period of an engine 2 for each ignition timing in accordance with change in an engine operating condition, to control a fuel injection valve 8. In this case, when the engine 2 is judged under a starting operation by the control circuit 10, divided fuel injection time and fuel injection stopping time obtained by dividing a required fuel injection time in one injection period are alternately set and an injection signal is outputted. Thereby, fuel is prevented form flowing in a liquid state, promoting the atomization of the fuel.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 この発明は、燃料噴射式内燃機関の噴射方法に係り、特
に、燃料噴射式内燃機関の燃料の霧化を促進して空気と
の混合を良好にし特に始動性の向上を果たし得る燃料噴
射式内燃機関の噴射方法に関する。
[Detailed Description of the Invention] [Industrial Application Field] The present invention relates to an injection method for a fuel-injected internal combustion engine, and particularly to a method for promoting atomization of fuel in a fuel-injected internal combustion engine to facilitate mixing with air. The present invention relates to an injection method for a fuel-injected internal combustion engine that can improve starting performance, and in particular improve startability.

〔従来の技術〕[Conventional technology]

燃料噴射式内燃機関においては、機関負荷や機関回転数
、冷却水温度、吸入空気量等の変化に応じて機関の要求
する燃料噴射量を設定している。
In a fuel injection type internal combustion engine, the amount of fuel injection required by the engine is set according to changes in engine load, engine speed, cooling water temperature, intake air amount, etc.

例えば、内燃機関の冷機始動時には、特開昭55−15
3831号公報や特開昭58−214625号公報に開
示の如く、機関温度や冷却水温度にの変化に応じて機関
の要求する要求燃料噴射時間を長く設定し、燃料を増量
噴射している。
For example, when starting a cold internal combustion engine,
As disclosed in Japanese Patent Laid-open No. 3831 and Japanese Patent Application Laid-Open No. 58-214625, the required fuel injection time required by the engine is set longer in response to changes in engine temperature and cooling water temperature, and an increased amount of fuel is injected.

〔発明が解決しようとする問題点〕[Problem that the invention seeks to solve]

ところが、これらのものは、要求燃料噴射時間内に燃料
を連続して噴射するので、特に冷機始動時には燃料が液
状に流れることになる。このため、燃料が霧化しにくく
空気との混合を充分に果たし得す、始動性を悪化させる
不都合があった。
However, in these systems, fuel is continuously injected within the required fuel injection time, so the fuel flows in liquid form, especially during cold engine startup. For this reason, the fuel is difficult to atomize and is not sufficiently mixed with air, resulting in poor starting performance.

〔発明の目的〕[Purpose of the invention]

そこでこの発明の目的は、燃料噴射式内燃機関の燃料の
霧化を促進して空気との混合を良好にし特に始動性の向
上を果たし得る燃料噴射式内燃機関の噴射方法を実現す
ることにある。
SUMMARY OF THE INVENTION An object of the present invention is to provide an injection method for a fuel-injected internal combustion engine that promotes atomization of the fuel in the engine, improves its mixing with air, and improves starting performance in particular. .

〔問題点を解決するための手段〕[Means for solving problems]

この目的を達成するためにこの発明は、燃料噴射式内燃
機関の一の噴射期間内においての要求燃料噴射量を複数
回に分けて間欠的に燃料噴射することを特徴とする。
In order to achieve this object, the present invention is characterized in that the required fuel injection amount within one injection period of a fuel-injected internal combustion engine is divided into a plurality of times and fuel is injected intermittently.

〔作用〕[Effect]

この発明の構成によれば、燃料噴射式内燃機関の一の噴
射期間内においての要求燃料噴射量を複数回に分けて間
欠的に燃料噴射する。このように、一の噴射期間内にお
いての要求燃料噴射量を複数間に分けて間欠的に噴射す
るので、燃料が液状に流れることはなく、霧化を促進し
て空気との混合を良好にする。
According to the configuration of the present invention, the required fuel injection amount within one injection period of the fuel injection internal combustion engine is divided into a plurality of times and fuel is injected intermittently. In this way, the required fuel injection amount within one injection period is divided into multiple periods and injected intermittently, so the fuel does not flow in liquid form, promoting atomization and improving mixing with air. do.

〔実施例〕〔Example〕

次にこの発明の実施例を図に基づいて詳細に説明する。 Next, embodiments of the present invention will be described in detail based on the drawings.

第1〜4図は、この発明の実施例を示すものである。第
1図において、2は燃料噴射式の内燃機関、4は吸気通
路、6は排気通路、8は燃料噴射弁、10は制御回路で
ある。
1 to 4 show embodiments of this invention. In FIG. 1, 2 is a fuel injection type internal combustion engine, 4 is an intake passage, 6 is an exhaust passage, 8 is a fuel injection valve, and 10 is a control circuit.

前記吸気通路4に取付けた燃料噴射弁8は、制御回路l
Oにより動作制御される。制御回路10には、エアクリ
ーナ12下流の吸気通路4に設けた空気量センサ14と
、吸気絞り弁16の開度を検知する開度センサ18と、
内燃機関2の冷却水温度を検知する冷却水温度センサ2
0と、排気通路6に設けた02センサ22とを接続し、
また、噴射時期を設定する点火信号を入力する点火コイ
ル24を接続している。これら各種センサ14〜24か
ら入力する信号により、制御回路10は第2図(c)に
示す如く点火信号による噴射時期としての点火時期S毎
に機関運転状態の変化に応し内燃機関2の一の噴射期間
内においての要求燃料噴射量にあたる要求燃料噴射時間
Toの噴射信号を出力し、噴射弁8を動作制御して内燃
機関2に燃料を噴射する。
The fuel injection valve 8 attached to the intake passage 4 is connected to a control circuit l.
The operation is controlled by O. The control circuit 10 includes an air amount sensor 14 provided in the intake passage 4 downstream of the air cleaner 12, an opening sensor 18 that detects the opening of the intake throttle valve 16,
A coolant temperature sensor 2 that detects the coolant temperature of the internal combustion engine 2
0 and the 02 sensor 22 provided in the exhaust passage 6,
Further, an ignition coil 24 is connected to which an ignition signal for setting the injection timing is input. Based on the signals inputted from these various sensors 14 to 24, the control circuit 10 controls the operation of the internal combustion engine 2 at every ignition timing S as the injection timing based on the ignition signal, as shown in FIG. 2(c). An injection signal having a required fuel injection time To corresponding to the required fuel injection amount within the injection period is output, and the operation of the injection valve 8 is controlled to inject fuel into the internal combustion engine 2.

このような燃料噴射式内燃機関2の始動時には、要求燃
料噴射時間を長く設定して燃料を増量噴射しているが、
従来は、第2図(c)に示す如(要求燃料噴射時間To
内に燃料を連続して噴射するので、特に冷機始動時には
燃料が液状に流れることになる。このため、燃料が霧化
しにくく空気との混合を充分に果たし得ず、始動性を悪
化させる不都合があった。
At the time of starting such a fuel injection type internal combustion engine 2, the required fuel injection time is set long to inject an increased amount of fuel.
Conventionally, the required fuel injection time To
Since fuel is continuously injected into the engine, the fuel flows in liquid form, especially when starting a cold engine. For this reason, the fuel is difficult to atomize and cannot be sufficiently mixed with air, resulting in a disadvantage that starting performance is deteriorated.

そこで、この発明では、機関始動時を本灸知する信号と
してスタータスイッチ26を制御回路10に接続し、ス
タータスイッチ信号を入力する。この機関始動時を検知
する信号としては、この他に機関回転数センサ(図示せ
ず)から機関回転数信号を入力することもでき、また、
前記スタータスイッチ信号と機関回転数信号とを組合せ
て入力し、機関始動時を検知することもできる。
Therefore, in the present invention, the starter switch 26 is connected to the control circuit 10, and the starter switch signal is input as a signal for determining when the engine is started. In addition to this, an engine speed signal from an engine speed sensor (not shown) can be input as the signal for detecting when the engine starts.
It is also possible to detect when the engine is started by inputting a combination of the starter switch signal and the engine rotational speed signal.

内燃機関2の始動時にスタータスイッチ26からスター
タスインチ信号が人力すると、制御回路10は、第2図
(a)の如く点火時期Sの間隔内である一の噴射期間T
s内において、第2図(b)・第3図の如く要求燃料噴
射時間TOを分割した分割燃料噴射時間T1を燃料噴射
休止時間T2と交互に設定して噴射信号を出力し、噴射
弁8を動作制御して燃料を噴射する。
When the starter switch 26 manually inputs the starter inch signal at the time of starting the internal combustion engine 2, the control circuit 10 controls one injection period T within the ignition timing interval S as shown in FIG. 2(a).
s, the divided fuel injection time T1 obtained by dividing the required fuel injection time TO as shown in FIG. 2(b) and FIG. control the operation and inject fuel.

ここで、前記内燃機関2が4サイクル内燃機関であり、
機関回転数をN、気筒数をn、要求燃料噴射時間をTo
とすると、前記一の噴射期間Tsれる。
Here, the internal combustion engine 2 is a 4-stroke internal combustion engine,
The engine speed is N, the number of cylinders is n, and the required fuel injection time is To.
Then, the above-mentioned one injection period Ts is given.

前記要求燃料噴射時間Toを分割した分割燃料噴射時間
T1を 足する燃料噴射休止時間T2と交互に設定し燃料噴射す
る。
Fuel is injected while alternating with a fuel injection pause time T2, which is obtained by adding a divided fuel injection time T1 obtained by dividing the required fuel injection time To.

なお、機関回転数Nが上昇すると相対的に一の噴射期間
Tsが短くなるので、要求燃料噴射時間Toを分割した
分割燃料噴射時間71は第4図に示す如く機関回転数N
に逆比例して短くなる。
Note that as the engine speed N increases, one injection period Ts becomes relatively short, so the divided fuel injection time 71 obtained by dividing the required fuel injection time To is determined by the engine speed N as shown in FIG.
becomes shorter in inverse proportion to

ての要求燃料噴射時間Toを分割した分割燃料噴射時間
T1を燃料噴射休止時間T2と交互に繰返して燃料を噴
射することにより、内燃機関2の一量を複数回に分けて
間欠的に噴射することになる。
By injecting fuel by repeating the divided fuel injection time T1 obtained by dividing the required fuel injection time To by alternating with the fuel injection stop time T2, one amount of the internal combustion engine 2 is divided into multiple times and intermittently injected. It turns out.

このため、内燃機関に燃料が液状に流れることを防止し
、霧化を促進して空気との混合を良好にすることができ
、内燃機関2の特に冷気時の始動性を向上することがで
きる。
Therefore, it is possible to prevent the fuel from flowing into the internal combustion engine in liquid form, promote atomization, and improve mixing with air, thereby improving the startability of the internal combustion engine 2, especially in cold air. .

〔発明の効果〕〔Effect of the invention〕

このようにこの発明によれば、燃料噴射式内燃機関の一
の噴射期間内においての要求燃料噴射量を複数回に分け
て間欠的に燃料噴射することにより、一の噴射期間内に
おいての要求燃料噴射量を分割して燃料噴射するので、
燃料が液状に流れることはなく、霧化を促進して空気と
の混合を良好にし、内燃機関の特に冷気時の始動性を向
上することができる。
As described above, according to the present invention, the required fuel injection amount within one injection period of a fuel-injected internal combustion engine is divided into multiple times and intermittently injected, thereby reducing the required fuel injection amount within one injection period. Since fuel is injected by dividing the injection amount,
The fuel does not flow in liquid form, promotes atomization, improves mixing with air, and improves starting performance of the internal combustion engine, especially in cold air.

【図面の簡単な説明】[Brief explanation of the drawing]

第1〜4図はこの発明の実施例を示し、第1図はこの発
明を適用した燃料噴射式内燃機関の概略断面図、第2図
はタイミングチャート、第3図は第2図(b)の部分拡
大図、第4図は分割燃料噴射時間と機関回転数との関係
を示す図である。 図において、2は燃料噴射式の内燃機関、4は吸気通路
、6は排気通路、8は燃料噴射弁、10は制御回路、1
4は空気量センサ14.16は吸気絞り弁、20は冷却
水温度センサ20.26はスタータスイッチ26である
Figures 1 to 4 show embodiments of the present invention, Figure 1 is a schematic sectional view of a fuel injection internal combustion engine to which the invention is applied, Figure 2 is a timing chart, and Figure 3 is Figure 2(b). FIG. 4 is a partially enlarged view showing the relationship between the divided fuel injection time and the engine speed. In the figure, 2 is a fuel injection type internal combustion engine, 4 is an intake passage, 6 is an exhaust passage, 8 is a fuel injection valve, 10 is a control circuit, 1
4 is an air amount sensor 14, 16 is an intake throttle valve, 20 is a cooling water temperature sensor 20, and 26 is a starter switch 26.

Claims (1)

【特許請求の範囲】 1、燃料噴射式内燃機関の一の噴射期間内においての要
求燃料噴射量を複数回に分けて間欠的に燃料噴射するこ
とを特徴とする燃料噴射式内燃機関の噴射方法。 2、前記燃料噴射式内燃機関が4サイクル内燃機関であ
り、機関回転数をN、気筒数をn、要求燃料噴射時間を
T_0とし、 一の噴射期間120/(N・n)内においての前記要求
燃料噴射時間T_0を分割した分割燃料噴射時間T_1
を (T_1+T_2)T_0/T_1≦120/(N・n
)の関係を満足する燃料噴射休止時間T_2と交互に設
定し燃料噴射することを特徴とする特許請求の範囲第1
項に記載の燃料噴射式内燃機関の噴射方法。
[Scope of Claims] 1. An injection method for a fuel injection internal combustion engine, characterized in that the required fuel injection amount within one injection period of the fuel injection internal combustion engine is divided into a plurality of times and fuel is injected intermittently. . 2. The fuel injection internal combustion engine is a 4-cycle internal combustion engine, the engine speed is N, the number of cylinders is n, the required fuel injection time is T_0, and the above within one injection period 120/(N・n). Divided fuel injection time T_1 obtained by dividing the required fuel injection time T_0
(T_1+T_2)T_0/T_1≦120/(N・n
), the fuel injection is performed alternately with the fuel injection stop time T_2 that satisfies the relationship:
The injection method for the fuel-injected internal combustion engine described in .
JP61126412A 1986-05-31 1986-05-31 Fuel injection type internal combustion engine injection method Expired - Fee Related JP2646529B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP61126412A JP2646529B2 (en) 1986-05-31 1986-05-31 Fuel injection type internal combustion engine injection method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP61126412A JP2646529B2 (en) 1986-05-31 1986-05-31 Fuel injection type internal combustion engine injection method

Publications (2)

Publication Number Publication Date
JPS62284941A true JPS62284941A (en) 1987-12-10
JP2646529B2 JP2646529B2 (en) 1997-08-27

Family

ID=14934519

Family Applications (1)

Application Number Title Priority Date Filing Date
JP61126412A Expired - Fee Related JP2646529B2 (en) 1986-05-31 1986-05-31 Fuel injection type internal combustion engine injection method

Country Status (1)

Country Link
JP (1) JP2646529B2 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01167437A (en) * 1987-12-21 1989-07-03 Daihatsu Motor Co Ltd Fuel control on engine start
JPH01273839A (en) * 1988-04-26 1989-11-01 Daihatsu Motor Co Ltd Fuel control for electronic control type engine

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5857033A (en) * 1981-09-29 1983-04-05 Japan Electronic Control Syst Co Ltd Fuel injection method of electronically controlled fuel injection device
JPS59180044A (en) * 1983-03-25 1984-10-12 ロ−ベルト・ボツシユ・ゲゼルシヤフト・ミツト・ベシユレンクテル・ハフツング Method and device for setting injection timing of internal combustion engine
JPS6022047A (en) * 1983-07-19 1985-02-04 Nippon Carbureter Co Ltd Fuel supply correcting method for electronically controlled fuel injection apparatus
JPS60170369A (en) * 1984-02-14 1985-09-03 Canon Inc Optical reading device
JPS6232242A (en) * 1985-08-01 1987-02-12 Nissan Motor Co Ltd Electronic control fuel injection device

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5857033A (en) * 1981-09-29 1983-04-05 Japan Electronic Control Syst Co Ltd Fuel injection method of electronically controlled fuel injection device
JPS59180044A (en) * 1983-03-25 1984-10-12 ロ−ベルト・ボツシユ・ゲゼルシヤフト・ミツト・ベシユレンクテル・ハフツング Method and device for setting injection timing of internal combustion engine
JPS6022047A (en) * 1983-07-19 1985-02-04 Nippon Carbureter Co Ltd Fuel supply correcting method for electronically controlled fuel injection apparatus
JPS60170369A (en) * 1984-02-14 1985-09-03 Canon Inc Optical reading device
JPS6232242A (en) * 1985-08-01 1987-02-12 Nissan Motor Co Ltd Electronic control fuel injection device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01167437A (en) * 1987-12-21 1989-07-03 Daihatsu Motor Co Ltd Fuel control on engine start
JPH01273839A (en) * 1988-04-26 1989-11-01 Daihatsu Motor Co Ltd Fuel control for electronic control type engine

Also Published As

Publication number Publication date
JP2646529B2 (en) 1997-08-27

Similar Documents

Publication Publication Date Title
US3827237A (en) Method and apparatus for removal of noxious components from the exhaust of internal combustion engines
US5278762A (en) Engine control apparatus using exhaust gas temperature to control fuel mixture and spark timing
US4383515A (en) Electronic fuel injection control system for an internal combustion engine
US7047727B2 (en) Rapid catalyst warm-up control device for internal combustion engine
US4202295A (en) Fuel supply control system for internal combustion engines
JPH0416622B2 (en)
US4648370A (en) Method and apparatus for controlling air-fuel ratio in internal combustion engine
JPS62284941A (en) Injecting method for fuel injection type internal combustion engine
US5590633A (en) Fuel injection control system for engine
JPH0610439B2 (en) Electronically controlled fuel injection device
US4506646A (en) Electronic controlled fuel injection system and injection timing control method therefor
EP0816656B1 (en) An air/fuel ratio detection device and an air/fuel ratio control device
JP3641831B2 (en) Engine fuel injector
JP3561142B2 (en) Control device for internal combustion engine
JPS63186936A (en) Electronically controlled fuel injection device for internal combustion engine
JPS5939951A (en) Idling speed controller of internal-combustion engine
JPH0633814A (en) Fuel control device internal combustion engine
JP3630694B2 (en) Engine transmission cooperative control method and apparatus
JPS6388240A (en) Start injection device for internal combustion engine
JPS6166840A (en) Electronic control fuel injection device for internal-combustion engine
JPH02536B2 (en)
JPS62126242A (en) Electronically controlled fuel injection device for internal combustion engine
JPS6047461B2 (en) Fuel injection amount control device for internal combustion engine
JPH09242583A (en) Injection quantity controller at time of starting for internal combustion engine
GB2286016A (en) IC engine control system

Legal Events

Date Code Title Description
LAPS Cancellation because of no payment of annual fees