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DE3016394A1 - Spark ignition IC engine - has centrifugally governed damper in inlet to maintain efficiency over range of speeds - Google Patents

Spark ignition IC engine - has centrifugally governed damper in inlet to maintain efficiency over range of speeds

Info

Publication number
DE3016394A1
DE3016394A1 DE19803016394 DE3016394A DE3016394A1 DE 3016394 A1 DE3016394 A1 DE 3016394A1 DE 19803016394 DE19803016394 DE 19803016394 DE 3016394 A DE3016394 A DE 3016394A DE 3016394 A1 DE3016394 A1 DE 3016394A1
Authority
DE
Germany
Prior art keywords
engine
regulating
speeds
regulator
profile
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.)
Ceased
Application number
DE19803016394
Other languages
German (de)
Inventor
Bohumil 6090 Rüsselsheim Vacek
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Individual
Original Assignee
Individual
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Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to DE19803016394 priority Critical patent/DE3016394A1/en
Publication of DE3016394A1 publication Critical patent/DE3016394A1/en
Ceased legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D9/00Controlling engines by throttling air or fuel-and-air induction conduits or exhaust conduits
    • F02D9/08Throttle valves specially adapted therefor; Arrangements of such valves in conduits
    • F02D9/12Throttle valves specially adapted therefor; Arrangements of such valves in conduits having slidably-mounted valve members; having valve members movable longitudinally of conduit
    • F02D9/14Throttle valves specially adapted therefor; Arrangements of such valves in conduits having slidably-mounted valve members; having valve members movable longitudinally of conduit the members being slidable transversely of conduit
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D9/00Controlling engines by throttling air or fuel-and-air induction conduits or exhaust conduits
    • F02D9/02Controlling engines by throttling air or fuel-and-air induction conduits or exhaust conduits concerning induction conduits
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D9/00Controlling engines by throttling air or fuel-and-air induction conduits or exhaust conduits
    • F02D9/02Controlling engines by throttling air or fuel-and-air induction conduits or exhaust conduits concerning induction conduits
    • F02D2009/0201Arrangements; Control features; Details thereof
    • F02D2009/0267Arrangements; Control features; Details thereof for simultaneous action of a governor and an accelerator lever on the throttle
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D9/00Controlling engines by throttling air or fuel-and-air induction conduits or exhaust conduits
    • F02D9/02Controlling engines by throttling air or fuel-and-air induction conduits or exhaust conduits concerning induction conduits
    • F02D2009/0201Arrangements; Control features; Details thereof
    • F02D2009/0272Two or more throttles disposed in series

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

The engine has cylinders arranged in line with a suction manifold supplied from a carburetter (4) with a throttle (3). A damper housing (2) with a sliding blade (1) is placed between the carburetter and the manifold. The operating rod (6) of the blade is connected to a centrifugal governor (5). The engine inlet is thus regulated according to speed and this maintains the volumetric efficiency and thus the compression ratio. The efficiency is thereby maintained over the entire range of engine speed and the engine can be designed with a higher compression ratio. A manual control (10) on the governor adjusts it for stopping and starting. Specification printed 25.3.82.

Description

Prinzip Schema des lineares Regulators.Principle scheme of the linear regulator.

1/Regulier Element (Schieber) kann auch andere Form haben: radial, usw.1 / The regulating element (slide) can also have other shapes: radial, etc.

1a/Regulieröffnung (In Labor genau profiliert, abgestimmt mit laufendem Motor unter Betriebsbedienungen.)1a / Regulating opening (precisely profiled in the laboratory, coordinated with the engine running under operating conditions.)

2/Regulierelementgehäuse (luftdicht)2 / regulating element housing (airtight)

3/Regulierklappe des Vergasers.3 / Carburetor regulating flap.

4/Difusor4 / diffuser

5/Drehzahlregulator (Komplet).5 / speed regulator (complete).

6/ Verbindungstange (Schieber 1 und Drehzahlregulator 5).6 / connecting rod (slide 1 and speed regulator 5).

6a/Einstellungschraubung (für feine Einstellung Verhältnis 1 und 5).6a / adjustment screw (for fine adjustment ratio 1 and 5).

6b/Handverschiebungelement (ermöglicht: Start, Leerlauf, Stop).6b / manual shift element (enables: start, idle, stop).

7/Fliehkraftregulator (könnte durch: hydraulische, pneumpatische, magnetische, elektronische Drehzahlregulator ersetzt werden)7 / centrifugal regulator (could be replaced by: hydraulic, pneumatic, magnetic, electronic speed regulator)

8/Barometrische Dose (Kompensiert atmosferische Druckschwankungen, Hoch, Tief und Höhe. Bei einfacheren Regulatoren muss nicht eingebaut werden).8 / Barometric box (Compensates for atmospheric pressure fluctuations, high, low and high. With simpler regulators, there is no need to install).

9/Zündungschaltkontakt (schaltet Zündung "Aus" nach volle Verbrennungsmischungspere).9 / Ignition switch contact (switches ignition "off" after full combustion mix pere).

10/Handzug: Start, Leerlauf, Stop.10 / manual pull: start, idle, stop.

10a/Lage:"Stop"10a / Position: "Stop"

10b/Lage:"Start"10b / Location: "Start"

11/Regulatorantrieb11 / regulator drive

Motorengine

SaugleitungSuction line

Anleitung:Instructions:

Zur Herstellung der Regulieröffnung 1a.To produce the regulating opening 1a.

Motor mit Regulator betriebsbereit.Motor with regulator ready for operation.

Hohe Temperaturen halten.Hold high temperatures.

Leerlaufdrehzahlen mit 6a Einstellungschraub auf a 800 einstellen.Set the idle speed with the 6a adjustment screw to a 800.

Vergaserregulierklappe 3 voll öffnen.Fully open the carburetor regulating flap 3.

Motordrehzahlen mit elektrischer Bremsvorrichtung halten und einstellen.Maintain and adjust engine speeds with electric braking device.

Langsam ganzen Drehzahlbereich durchfahren.Slowly drive through the entire speed range.

Punkt nach Punkt 1a(Regulieröffnung) verbreiten bis beim Durchfahren ganzer Drehzahlbereich Motor leicht klopft. Möglich gleich in verschiedenen Drehzahlen.Spread point according to point 1a (regulating opening) until the engine knocks slightly when driving through the entire speed range. Possible at different speeds.

Damit ist für den Motortyp Profil des 1a Regulieröffnung festgestellt. Leerlaufdrehzahlen von 800 auf 600 U/Min. mit 6a umstellen.This establishes the regulation opening for the motor type profile of 1a. Idle speeds from 800 to 600 rpm. switch with 6a.

Wiederholt der ganze Drehzahlbereich durchfahren bis Maximum und zurück und Motor darf keine Klopfanzeichen haben.Repeatedly drive through the entire speed range to the maximum and back and the engine must not have any knocking signs.

Damit ist Motor eingestellt und zum Betrieb bereit.The engine is now set and ready for operation.

Barometrische Dose:Barometric can:

Ihre Größe und Einfluss, muss theoretisch ausgerechnet werden und in der Praxis ausprobiert.Their size and influence must be calculated theoretically and tried out in practice.

Allgemeine Begründung der neuen KonstruktionGeneral justification of the new construction

OTTOmotor mit linear regulierter Zylinderfüllung.OTTO engine with linearly regulated cylinder charge.

Bisherige OTTOmotoren arbeiten unzureichend wirtschaftlich, besonders in höheren Drehzahlbereichen. Mit steigenden Drehzahlen verkürzt sich die Ventilenöffnungszeit, volle Auffüllung von Zylindern ist nicht möglich und sinkt bis auf 40%. Damit sinkt auch der maximale Kompressionsdruck, milere Arbeitdruck auf den Kolben und damit Wirtschaftlichkeit und Wirkungsgrad. Dargestellt in Beilage 2 Diagram 1 /Gegenwärtige OTTOmotoren/.Previous OTTO engines are not working economically enough, especially in higher speed ranges. With increasing speeds, the valve opening time is shortened, full filling of cylinders is not possible and sinks to 40%. This also reduces the maximum compression pressure, lower working pressure on the piston and thus economy and efficiency. Shown in Appendix 2, Diagram 1 / Current OTTO Engines /.

Zur Verbesserung haben Konstrukteure angewendet Superkraftstoff mit Tetraethylblei Zusatz. (gefährliche Umweltbelastung).To improve it, designers have used premium fuel with the addition of tetraethyl lead. (dangerous environmental pollution).

Weiter haben benutzt Kompressoren zum Zylinder in höheren Drehzahlbereichen unter höherem Druck (bis 2,8 Bar) auffüllen.Compressors have also been used to fill cylinders in higher speed ranges under higher pressure (up to 2.8 bar).

Kompressor OTTOmotoren sind unwirtschaftlich wegen seinem hohem Auspuffdruck, wo geht Energie verloren. Teilweise haben diese Energie versucht auszunutzen durch Abgasturbinen aber auch so sind Kompressormotoren unwirtschaftlich geblieben.Compressor OTTO engines are uneconomical because of their high exhaust pressure, where energy is lost. In some cases, this energy has tried to be exploited by exhaust gas turbines, but even so, compressor motors have remained uneconomical.

Hoher Treibstoffverbrauch bei höheren Geschwindigkeiten, wird oft durch höheren aerodynamische Luftwiderstand der Autokarosserie begründet, aber auch das ist mehr Ausrede.High fuel consumption at higher speeds is often justified by the higher aerodynamic drag of the car body, but that too is more of an excuse.

Der Hauptgrund für steigenden Treibstoffverbrauch bei höheren Geschwindigkeiten ist hauptsächlich verantwortlich der sinkende wirkliche Kompressionsdruck-Wirkungsgrad und damit auch Wirtschaftlichkeit.The main reason for increasing fuel consumption at higher speeds is mainly responsible for the decreasing actual compression pressure efficiency and thus also economy.

Patentlösung:Patent solution:

Hochkomprimierte OTTOmotoren mit linearregulierter Zylinderfüllung.Highly compressed OTTO engines with linearly regulated cylinder charge.

Beim welchen wird alles was über ideale Zylinderauffüllung ist wegreguliert nach Diagram A bis C mit Linearregulator.With which everything that is about ideal cylinder filling is regulated away according to Diagram A to C with a linear regulator.

Sein in Versuchlabor profilierte Regulierschieber 1 mit Öffnung 1a in Verbindung mit Drehzahlregulator ermöglicht lineare Auffüllung nach Diagramm A, B, C.Its regulating slide 1 profiled in the test laboratory with opening 1a in connection with the speed regulator enables linear filling according to diagrams A, B, C.

Abschalten durch Verbrennungsmischungsperre und folgende Zündungausschalten.Switch off by means of a combustion mixture lock and then switch off the ignition.

Treibstoff: Normalbenzin, andere Treibstoffe oder ihre Mischungen.Fuel: regular gasoline, other fuels or their mixtures.

Ausführungen: A 1 - 0,8 Bar Verdichtung a 1 : 12Versions: A 1 - 0.8 bar compression a 1: 12

B 0,8 - 0,6 Bar Verdichtung a 1 : 16B 0.8 - 0.6 bar compression a 1: 16

C 0,6 - 0,4 Bar --"-- a 1 : 20C 0.6-0.4 bar - "- a 1:20

Nach zugelegten Diagrammen.According to added diagrams.

Vorteile: Höhere Wirtschaftlichkeit und Wirkungsgrad.Advantages: Greater economy and efficiency.

Niedrigeren Treibstoffverbrauch um 20 - 30%Lower fuel consumption by 20-30%

Treibstoff Normalbenzin.Regular fuel.

Höhere KW Leistung um a 20% und höherer Drehmoment.Higher KW power by a 20% and higher torque.

Niedrigere Umweltbelastung.Lower environmental impact.

Niedrigerer Druck in Auspuff und damit leiser.Lower pressure in the exhaust and therefore quieter.

Nachteile: Reduzierte Zugkraft in Niedrigdrehzahlbereich nach Ausführung: A, B, C.Disadvantages: Reduced pulling force in the low speed range according to design: A, B, C.

Zusätzliche Herstellungskosten a 500 DM.Additional production costs of 500 DM.

FunktionsbeschreibungFunction description

des linearen Regulators für OTTOmotoren mit linear regulierter Zylinderfüllung.of the linear regulator for OTTO engines with linearly regulated cylinder charge.

1/Start(anlassen)1 / start (cranking)

Vergaserregulierklappe 3 in Position "Leerlauf" oder mehr geöffnet. Schieber 1 mit Hilfe Handzug 10 in Position "Start" 10b.Carburetor regulating flap 3 open in position "idle" or more. Slide 1 with the aid of the hand pull 10 in the "Start" position 10b.

Mit Zündschlüssel Zündung einschalten und anlassen wie jeden herkömmliche OTTOmotor, dabei kann auch mit Akzelerationpumpe des Vergasers nachgeholfen werden.Switch on the ignition with the ignition key and start it like any conventional OTTO engine; the carburetor acceleration pump can also help.

2/Leerlauf2 / idle

Nach dem Anlassen, kann Leerlauf mit Handzug 10 in Position 10b beliebig eingestellt werden nach Motortemperatur. Auch mit kaltem Motor, kann sofort gefahren werden.After starting the engine, idling can be set as required with the hand pull 10 in position 10b, depending on the engine temperature. Even with a cold engine, you can drive immediately.

3/Betrieb3 / operation

Nach Erreichen richtiger Motortemperatur Handzug 10 in Ausgangsposition verstellen. Mit Motor kann wie mit herkömmlicher Ausführung gefahren werden, dabei die Vergaserregulierklappe 3 reguliert geforderte Leistung und Schieber 1 mit seiner profilierten Öffnung 1a kontrolliert das auch bei voll geöffneter Klappe 3 und gegenwärtigen Drehzahlen der Kompressionsdruck die Selbstzündungswerte (Detonation, Klopfen) nicht erreicht.After reaching the correct engine temperature, move the pull 10 to the starting position. The engine can be driven in the same way as with a conventional design, with the carburetor regulating flap 3 regulating the required power and slide 1 with its profiled opening 1a controls that the compression pressure does not reach the auto-ignition values (detonation, knocking) even with fully open flap 3 and current speeds.

Regulierter OTTOmotor werde in Niedrigdrehzahlbereich verminderte Zugkraft haben und in höheren Drehzahlen wieder höhere Leistung als herkömmliche Motoren haben. Dabei werde der linearregulierte Motor um 20 bis 30% sparsamer in Verbrauch. Linearregulierte Motoren werden keinen Superkraftstoff brauchen und damit werden umweltfreundlicher.Regulated OTTO engine will have reduced tractive power in the low speed range and again have higher power than conventional engines at higher speeds. The linearly regulated motor will be 20 to 30% more economical in consumption. Linear regulated engines will not need super fuel and will be more environmentally friendly.

4/Stop(abschalten)4 / Stop (switch off)

Motor dreht Leerlaufdrehzahlen, Vergaserklappe 3 in Leerlaufstellung, Regulierschieber in Leerlaufposition.Engine turns idle speed, carburetor flap 3 in idle position, control slide in idle position.

Mit Handzug 10 in Stellung 10a verschieben wir Schieber 1 in Position "Stop" und sperren damit völlig Verbrennungsmischungzufuhr. Gleichzeitig schaltet Kontakt 9 Zündanlage aus. Motor bleibe stehen.With manual pull 10 in position 10a, we move slide 1 to the "Stop" position and thus completely block the supply of combustion mixture. At the same time, contact 9 switches off the ignition system. The engine stops.

Claims (1)

1/Als Komplet:1 / As a set: Überkomprimierte OTTOmotor (1:12,1:16,1:20) mit Vergaser oder Einspritzung beim welchem sind Verbrennungszylindern linear(prozentuel gleichmäßig) in Teil oder im ganzen Drehzahlbereich mit Verbrennunggemisch gefüllt, mit Hilfe des Linearregulator, welche durch seinem Profilieten Regulierelement 1 und 1a in Verbindung mit Drehzahlreg. 5 (verschiedene Typen: Watt/Fliehkraftregul./hydraulische, pneumatische, magnetische, elektronische Drehzahlregul.) in Saugleitung eingebaut ist, und reguliert nach Diagran A,B,C in Bereichen unter 1 Bar so dass im ganzen Motordrehzahlbereich kommt nicht zum Klopfen (Selbstzündung, Detonation)Overcompressed OTTO engine (1: 12,1: 16,1: 20) with carburettor or injection in which combustion cylinders are linearly (evenly percentage) filled with combustion mixture in part or in the whole speed range, with the help of the linear regulator, which by its profile rivets regulating element 1 and 1a in connection with speed control. 5 (different types: watt / centrifugal control / hydraulic, pneumatic, magnetic, electronic speed control) is built into the suction line, and regulates according to Diagran A, B, C in ranges below 1 bar so that there is no knocking in the entire engine speed range (self-ignition , Detonation) Motor anlassen "Start", Leerlauf Einstellung und Abschalten "Stop" ist durch den Handzug 10 ermöglicht.Starting the engine “start”, setting idle and switching off “stop” is made possible by the hand pull 10. Barometrische (Vacuum)Dose ermöglicht Ausgleich Atmosferischen Druckschwankungen.Barometric (vacuum) jar enables compensation of atmospheric pressure fluctuations. Linearregulator muß nicht so eingebaut werden, wie ist das im Prinzip schema abgebildet, er kann auch vor oder in die Einspritzmeßreguliereinrichtung eingebaut werden, oder Regulierklappe des Vergasers ersetzen.The linear regulator does not have to be installed as it is shown in principle, it can also be installed in front of or in the injection measuring regulator, or replace the regulating flap of the carburetor. 2/Detail:2 / detail: Linearregulator, Regulierelement 1 mit Regulierprofil 1a in lineare Form wie in Prinzipschema abgebildet, oder in radiale Form als Regulierscheibe, in welche ist Regulierprofil 1a eingearbeitet, oder in andere Form, welche erfüllt angedeutete Regulierfunktion.Linear regulator, regulating element 1 with regulating profile 1a in linear form as shown in the schematic diagram, or in radial form as regulating disc, in which regulating profile 1a is incorporated, or in another form which fulfills the indicated regulating function.
DE19803016394 1980-04-29 1980-04-29 Spark ignition IC engine - has centrifugally governed damper in inlet to maintain efficiency over range of speeds Ceased DE3016394A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DE19803016394 DE3016394A1 (en) 1980-04-29 1980-04-29 Spark ignition IC engine - has centrifugally governed damper in inlet to maintain efficiency over range of speeds

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Application Number Priority Date Filing Date Title
DE19803016394 DE3016394A1 (en) 1980-04-29 1980-04-29 Spark ignition IC engine - has centrifugally governed damper in inlet to maintain efficiency over range of speeds

Publications (1)

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DE3016394A1 true DE3016394A1 (en) 1981-12-03

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2527354A (en) * 1947-03-26 1950-10-24 Milwaukee Lock & Mfg Co Engine speed governor
US2763252A (en) * 1954-12-31 1956-09-18 Gen Motors Corp Engine
US2781751A (en) * 1954-12-27 1957-02-19 Pierce Governor Company Inc Governor compensator
GB924447A (en) * 1961-10-17 1963-04-24 Robert Arthur Greene A carburetor for a internal combustion engine
DE1601373A1 (en) * 1967-01-30 1970-12-17 Indra Dipl Ing Fritz Device on internal combustion engines to reduce harmful emissions
DE2551912A1 (en) * 1975-11-19 1977-06-02 Vdo Schindling High octane fuel engine detonation prevention system - has depression dependent throttle linkage to limit combustion chamber charge
GB1570008A (en) * 1976-04-23 1980-06-25 Sibe Carburettors comprising a start device

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2527354A (en) * 1947-03-26 1950-10-24 Milwaukee Lock & Mfg Co Engine speed governor
US2781751A (en) * 1954-12-27 1957-02-19 Pierce Governor Company Inc Governor compensator
US2763252A (en) * 1954-12-31 1956-09-18 Gen Motors Corp Engine
GB924447A (en) * 1961-10-17 1963-04-24 Robert Arthur Greene A carburetor for a internal combustion engine
DE1601373A1 (en) * 1967-01-30 1970-12-17 Indra Dipl Ing Fritz Device on internal combustion engines to reduce harmful emissions
DE2551912A1 (en) * 1975-11-19 1977-06-02 Vdo Schindling High octane fuel engine detonation prevention system - has depression dependent throttle linkage to limit combustion chamber charge
GB1570008A (en) * 1976-04-23 1980-06-25 Sibe Carburettors comprising a start device

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