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JPS5968551A - Fuel supply device of engine - Google Patents

Fuel supply device of engine

Info

Publication number
JPS5968551A
JPS5968551A JP17872982A JP17872982A JPS5968551A JP S5968551 A JPS5968551 A JP S5968551A JP 17872982 A JP17872982 A JP 17872982A JP 17872982 A JP17872982 A JP 17872982A JP S5968551 A JPS5968551 A JP S5968551A
Authority
JP
Japan
Prior art keywords
gasoline
fuel
reservoir chamber
engine
discharge pipe
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.)
Pending
Application number
JP17872982A
Other languages
Japanese (ja)
Inventor
Hiroshi Yamamoto
山本 比呂志
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.)
Nikki Co Ltd
Original Assignee
Nippon Carburetor Co Ltd
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 Nippon Carburetor Co Ltd filed Critical Nippon Carburetor Co Ltd
Priority to JP17872982A priority Critical patent/JPS5968551A/en
Publication of JPS5968551A publication Critical patent/JPS5968551A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02MSUPPLYING COMBUSTION ENGINES IN GENERAL WITH COMBUSTIBLE MIXTURES OR CONSTITUENTS THEREOF
    • F02M5/00Float-controlled apparatus for maintaining a constant fuel level
    • F02M5/08Float-controlled apparatus for maintaining a constant fuel level having means for venting float chambers

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Output Control And Ontrol Of Special Type Engine (AREA)

Abstract

PURPOSE:To discharge evaporated gasoline to a suction system of an engine so that air-fuel mixture does not become superrich, by separating the vaporized gasoline generated within a fuel duct from gasoline. CONSTITUTION:A reserving chamber 6 is provided at the highest part of a fuel oil duct 5. A fuel oil level is lowered by evaporated gasoline by entering into the reserving chamber 6 when percolation is generated within the fuel oil duct 5 and when an opening of a throttle valve is more than a fixed level when the evaporated gasoline is collected until a fuel oil level detector 11 exposes above the fuel oil level an opening and closing valve 9 is opened and closed as an electric current of an electric power source 14 is applied to a solenoid 10 and the vaporized gasoline in the reserving chamber 6 is discharged to a suction system 2 through discharge piping 7.

Description

【発明の詳細な説明】 本発明は、吸気路へ燃料を供給する制御部と燃料ポンプ
とを接続した給油路に気泡が発生したときこの気泡を制
御部を経ないでエンジンの吸気系に放出さゼる機構を具
えた燃料供給装置に関するものである。
DETAILED DESCRIPTION OF THE INVENTION The present invention provides a method for discharging air bubbles into the engine intake system without passing through the control unit when air bubbles are generated in the fuel supply path that connects the control unit that supplies fuel to the intake path and the fuel pump. This invention relates to a fuel supply device equipped with a folding mechanism.

例えば吸気路へ供給する燃料を浮子式の制御部で制御す
る気化器を具えた自動車エンジンの燃料供給装置におい
て、燃料ポンプから浮子室に至る給油路内の燃料が過熱
して蒸気を発生したとべ、蒸気ガソリンからなる気泡が
浮子弁を押し開いて液体ガソリンと共に浮子室へ入りオ
ーバフローさせるに至る。
For example, in a fuel supply system for an automobile engine equipped with a carburetor in which the fuel supplied to the intake passage is controlled by a float-type control unit, the fuel in the oil supply passage from the fuel pump to the float chamber may overheat and generate steam. , bubbles of vaporized gasoline push open the float valve and enter the float chamber with the liquid gasoline, causing an overflow.

このようなパーコレーションの対策として燃料系をなる
べく排気熱、エンジン熱の影響を受けないように設計配
置するほかに、浮子室の蒸気ガソリンを気化器の外部捷
たは内部に放出させる通気方式を採用するなどの手段が
採られているが、外部通気方式は大気汚染の原因となり
、内部通気方式はエンジンに供給される混合気を過濃に
するという問題がある。
As a countermeasure against such percolation, in addition to designing and arranging the fuel system so that it is not affected by exhaust heat and engine heat as much as possible, we also adopted a ventilation system that releases the vaporized gasoline in the float chamber to the outside or inside of the carburetor. However, the external ventilation method causes air pollution, and the internal ventilation method has the problem of making the air-fuel mixture supplied to the engine too rich.

本発明は給油路に発生した蒸気ガソリンを分離して混合
気過濃とならないようにエンジンの吸気系に放出させろ
ことにより前述のような問題を伴わない燃料供給装置を
提供することを目的として発明されたものである。
The present invention was made with the object of providing a fuel supply system that does not cause the above-mentioned problems by separating vaporized gasoline generated in the fuel supply path and releasing it into the intake system of an engine to prevent the mixture from becoming too rich. It is what was done.

そして、この目的を達成するため本発明に係る燃料供給
装置は、吸気路へ供給する燃料の制御部と燃料ポンプと
を接続した給油路に設けられた溜め室と、この溜め室に
設置された油面検出器と、エンジンの吸気系と前記溜め
室とを接続した放出配管と、この放出配管に設けられ前
記油面検出器が溜め室に一定以上の蒸気ガソリンが溜っ
たことを検出したとき開くように(6)く開閉弁とを具
えたことを特徴とし、更に前記構成に加えて吸気路の絞
り弁の開度検出器を具え溜め室に一定以上の蒸気ガソリ
ンが溜り且つ絞り弁開度が一定以上のとき開閉弁を開く
ように構成したことを特徴としている。
In order to achieve this object, the fuel supply device according to the present invention includes a reservoir chamber provided in a fuel supply passage connecting a fuel pump and a control unit for supplying fuel to an intake passage, and a fuel supply device installed in this reservoir chamber. an oil level detector, a discharge pipe connecting the intake system of the engine and the reservoir chamber, and when the oil level detector installed in the discharge pipe detects that a certain amount of vaporized gasoline has accumulated in the reservoir chamber; The invention is characterized by comprising an opening/closing valve (6) so as to be opened, and in addition to the above-mentioned structure, it is further provided with an opening degree detector of the throttle valve in the intake passage, so that when a certain amount of steam gasoline accumulates in the reservoir chamber and the throttle valve opens. It is characterized by a structure in which the on-off valve is opened when the temperature is above a certain level.

以下本発明の具体例を図面に基いて説明すると、第1図
および第2図において1はエアクリーナ、2はエアクリ
ーナ1から図示しないエンジンに至る吸気系、3は燃料
タンク。
Hereinafter, specific examples of the present invention will be explained based on the drawings. In FIGS. 1 and 2, 1 is an air cleaner, 2 is an intake system from the air cleaner 1 to an engine (not shown), and 3 is a fuel tank.

4は燃料ポンプ、5は給油路、6は給油路5の最高所に
設けた溜め室、7は溜め室6の上部と吸気系2とを接続
した放出配管、8は放出配管7に設けた絞り、9は放出
配管7の開閉弁、10は開閉弁駆動用のソレノイド、1
1は電極式液面計からなる油面検出器、12は絞り弁1
3の開度検出器であって、電源14.エンジン運転時に
閉じるスイッチ15.開度検出器12゜油面検出器11
.ソレノイド】Oが電気回路】6に直列に設けられてい
る、 第1図は絞り弁13を有する吸気路】7へ供給する燃料
を浮子式の制御部】8で制御する気化器 器材を具えた燃料供給装置に本発明を実椎した一例を示
し、放出配管7は吸気糸2の一部を形成するエアクリー
ナlの内部に開口し。
4 is a fuel pump, 5 is an oil supply path, 6 is a reservoir chamber provided at the highest point of the oil supply path 5, 7 is a discharge pipe connecting the upper part of the reservoir chamber 6 and the intake system 2, and 8 is provided in the discharge pipe 7. 9 is an on-off valve for the discharge pipe 7; 10 is a solenoid for driving the on-off valve; 1
1 is an oil level detector consisting of an electrode type liquid level gauge, 12 is a throttle valve 1
3, the power supply 14. Switch that closes when the engine is running 15. Opening degree detector 12° Oil level detector 11
.. The solenoid [O] is provided in series with the electric circuit [6], and the fuel supply to the intake passage [7] shown in Fig. 1 has a throttle valve 13 is controlled by the float-type control unit [8]. An example in which the present invention is applied to a fuel supply device is shown, in which a discharge pipe 7 opens into the interior of an air cleaner 1 forming a part of an intake line 2.

給油路5は浮子室19に接続されている。The oil supply path 5 is connected to a float chamber 19.

燃料ポンプ4によって供給されろガソリンは溜め室6を
経て浮子室19に入るもので、溜め室6は浮子室19に
近い個所に設置され通常はカッリンがほぼ充満している
。給油路5にバーコレーンヨンが発生したとき、蒸気ガ
ソリンは溜め室6に入って油面を下降させ、−定収上即
ち油面検出器11が油面上方に露出するまでガソリン蒸
気が溜ったとき、絞6弁】3の開度が一定以上であると
ソレノイドIOに電源14の電流が供給されて開閉弁9
を開弁させ。
Gasoline supplied by the fuel pump 4 enters the float chamber 19 through the reservoir chamber 6, and the reservoir chamber 6 is installed near the float chamber 19 and is normally almost full of gasoline. When a bar collide occurs in the fuel supply path 5, steam gasoline enters the reservoir chamber 6 and lowers the oil level, and when the gasoline vapor accumulates at a constant level, that is, until the oil level detector 11 is exposed above the oil level. , throttle valve 6] When the opening degree of valve 3 is above a certain level, current from power source 14 is supplied to solenoid IO, and valve 9 opens and closes.
Let the valve open.

溜め室6の蒸気ガソリンを放出配管7を経て吸気系2に
放出するのである。油面が油面検出器】1の上方まで上
昇すると開閉弁9が閉弁して蒸気ガソリンの放出は終る
The vaporized gasoline in the reservoir chamber 6 is discharged into the intake system 2 via the discharge pipe 7. When the oil level rises to above the oil level detector 1, the on-off valve 9 closes and the release of steam gasoline ends.

第2図は吸気路20の絞り升13の上流側へ供給する燃
料を電磁式の制御部21で制御する燃料噴射装置22を
具えた燃料供給装置に本発明を実姉した一例を示し、放
出配管7は吸気系2の一部を形成する吸入管23に開口
し、給油路5は噴射弁24に接続されている。
FIG. 2 shows an example in which the present invention is applied to a fuel supply device equipped with a fuel injection device 22 that controls fuel supplied to the upstream side of the throttle box 13 of the intake passage 20 by an electromagnetic control section 21, and a discharge pipe. 7 opens into an intake pipe 23 forming a part of the intake system 2, and the oil supply path 5 is connected to an injection valve 24.

燃料ポンプ4によって供給されろガソリンは溜め室6を
経て噴射弁24に入りノズル25から噴射されるもので
、溜め室6は燃料ポンプ4の圧力脈動を吸収する機能を
有している。
Gasoline supplied by the fuel pump 4 passes through a reservoir chamber 6, enters an injection valve 24, and is injected from a nozzle 25. The reservoir chamber 6 has a function of absorbing pressure pulsations of the fuel pump 4.

バー :I L/ −ジョンが発生して溜め室6に入っ
た蒸気ガソリンは前記実殉例と同じ要佃で吸気系2に放
出される。
The vaporized gasoline that is generated and enters the reservoir chamber 6 is discharged into the intake system 2 at the same point as in the actual case.

尚、開度検出器12を用いないときはエンジン運転状態
に関係なく蒸気ガソリンが放出されるので1図示実施例
のように放出配管7に絞り8を設けるか或いは放出配管
7そのものを小径にする。開閉弁9の開度を小さくして
絞り効果をもたせるなどによって少量ずつ放出させ混合
気過濃を招かないように考慮する。
Note that when the opening detector 12 is not used, steam gasoline is released regardless of the engine operating state, so either a throttle 8 is provided in the discharge pipe 7 as in the illustrated embodiment, or the diameter of the discharge pipe 7 itself is made small. . Consideration is given to releasing the mixture little by little by reducing the opening degree of the on-off valve 9 to create a throttling effect, so as not to cause the mixture to become over-rich.

開度検出器12を用いたと六は高負荷時に蒸気ガソリン
を放出するように設定するか、または前記のように少量
ずつ放出させる手段を採って同しく混合気過濃によるエ
ンジン出力の低下を招かな、いようにするのが好捷しい
。また、油面検出器】1は浮子式スイッチ、半導体セン
サなどで構成してもよ℃・ことは言うまでもない。
The valve opening detector 12 can be set to release steam gasoline at high loads, or can be set to release steam gasoline little by little as described above, which may also cause a drop in engine output due to an overrich mixture. I guess it's better to keep it that way. It goes without saying that the oil level detector 1 may be constructed of a float type switch, a semiconductor sensor, etc.

以上のように本発明によると、吸気路へ供給する燃料の
制御部と燃料ポンプとを接続する給油路にパーコレーシ
ョンが発生したとき。
As described above, according to the present invention, when percolation occurs in the fuel supply passage that connects the fuel pump and the control unit for fuel supplied to the intake passage.

蒸気ガソリンを溜め室に溜めてこれが一定量以上になっ
たとき吸気系に放出するようにしたので、制御部に液体
ガソリンを必要以上に送入しオーバフローさせる。吸気
路への燃料供給が途切れるという不都合がなくなるばが
つか、放出量を制限し或いは絞り斤開度が一定以上のと
き放出するように構成することによって6も@気過織を
招くことなく蒸気ガソリンをエンジンで消費させること
ができるものである。
Since vapor gasoline is stored in a storage chamber and released into the intake system when it exceeds a certain amount, liquid gasoline is fed into the control section more than necessary and overflows. It would be possible to eliminate the inconvenience of the fuel supply to the intake passage being interrupted, or by restricting the amount of fuel released or configuring the fuel to be released when the throttle opening is above a certain level, it would be possible to eliminate the problem of fuel supply to the intake passage. This allows the engine to consume gasoline.

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

第1図、第2図は本発明の異なる具体例を示す縦断面略
図である。 2・・・・・・吸気系、4・・・・・・燃料ポンプ、5
・旧・・給油路、6・・・・・・溜め室、7・・・・・
・放出配管、8・・・・・・絞り、9・・・・・開閉弁
、l]・・・・・・油面検出器。 12・・・・・開度検出器、13・旧・・絞り升、 1
8.21・・・・・制御部。 代理人 野 沢 睦 秋、(
FIGS. 1 and 2 are schematic longitudinal cross-sectional views showing different embodiments of the present invention. 2...Intake system, 4...Fuel pump, 5
・Old...Refueling route, 6...Storage room, 7...
・Discharge piping, 8... Throttle, 9... Open/close valve, l]... Oil level detector. 12...Opening degree detector, 13.Old...Aperture square, 1
8.21...Control unit. Agent Mutsumi Nozawa (

Claims (3)

【特許請求の範囲】[Claims] (1)吸気路へ供給する燃料の制御部と燃料ポンプとを
接続する給油路に設けられた溜め室と、この溜め室に設
置された油面検出器と。 エンジンの吸気系と前記溜め室とを接続した放出配管と
、この放出配管に設けられ前記油面検出器が溜め呈に一
定以上の蒸気ガソリンが溜ったことを検出したとき開く
ように動く開閉弁とを具えたことを特徴とするエンジン
の燃料供給装置。
(1) A reservoir chamber provided in an oil supply passage connecting a fuel pump and a control unit for fuel supplied to the intake passage, and an oil level detector installed in this reservoir chamber. A discharge pipe connecting the intake system of the engine and the reservoir chamber, and an on-off valve provided in the discharge pipe that opens when the oil level detector detects that a certain amount of steam gasoline has accumulated in the reservoir. An engine fuel supply device characterized by comprising:
(2)吸気路へ供給する燃料の制御部と燃料ポンプとを
接続する給油路に設けられた溜め室と、この溜め室に設
置された油面検出器と。 吸気路に設けられている絞り弁の開度検出器と、前記溜
め室に設置された曲面検出器と、エンジンの吸気系と前
記溜め室とを接続した放出配管と、この放出配管に設け
られ前記油面検出器が溜め室に一定以上のガソリンが溜
ったことを検出し且つ前記開度検出器が絞り升の開度が
一定以上であることを検出したとき開くように働く開閉
弁とを具えたことを特徴とするエンジンの燃料供給装置
(2) A reservoir chamber provided in an oil supply path that connects a control unit for fuel supplied to the intake path and the fuel pump, and an oil level detector installed in this reservoir chamber. A throttle valve opening detector provided in the intake passage, a curved surface detector installed in the reservoir chamber, a discharge pipe connecting the engine intake system and the reservoir chamber, and a discharge pipe provided in the discharge pipe. an on-off valve that operates to open when the oil level detector detects that a certain level or more of gasoline has accumulated in the reservoir chamber and the opening degree detector detects that the opening degree of the throttle cell is above a certain level; A fuel supply device for an engine, characterized by comprising:
(3)放出配管に絞りが設けられている特許請求の範囲
(])または(2)に記載したエンジンの燃料供給装置
(3) The fuel supply device for an engine according to claim (]) or (2), wherein the discharge pipe is provided with a restriction.
JP17872982A 1982-10-12 1982-10-12 Fuel supply device of engine Pending JPS5968551A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP17872982A JPS5968551A (en) 1982-10-12 1982-10-12 Fuel supply device of engine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP17872982A JPS5968551A (en) 1982-10-12 1982-10-12 Fuel supply device of engine

Publications (1)

Publication Number Publication Date
JPS5968551A true JPS5968551A (en) 1984-04-18

Family

ID=16053550

Family Applications (1)

Application Number Title Priority Date Filing Date
JP17872982A Pending JPS5968551A (en) 1982-10-12 1982-10-12 Fuel supply device of engine

Country Status (1)

Country Link
JP (1) JPS5968551A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100968128B1 (en) * 2000-10-30 2010-07-06 유로-셀티크 소시에떼 아노뉨 Controlled release hydrocodone formulations

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100968128B1 (en) * 2000-10-30 2010-07-06 유로-셀티크 소시에떼 아노뉨 Controlled release hydrocodone formulations

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