Claims
- 1. In a fuel control system for supercharged, fuel injected internal combustion engines employing exhaust gas turbo-chargers, comprising: a turbo-charged intake manifold pressure actuated first movable partition means; a setting member; and means connecting the setting member to said first partition means, said setting member being actuated by the motion of said first movable partition means and said means connecting the setting member to said first partition means for displacing said setting member in the direction of an increasing fuel supply quantity during a period of increasing turbo-charged intake manifold pressure, the improvement comprising: a supplementary pneumatic control unit having delayed feedback characteristics and including a second movable partition means, air line means positioned between the intake manifold and one side of said first movable partition means and further line means connected to one side of said second movable partition means for supplying a pneumatic control medium thereto, means for connecting said second partition means to said setting member, and both the one side of the first and the one side of the second partition means are pressure actuated by the fuel intake manifold pressure, i.e., the pneumatic control medium pressure, in the same working direction when viewing the movement of the setting member, a delay member connected to said control unit through which said control medium is supplied to the other side of said second movable partition means, by means of said control unit the position of said setting member is made to be additionally changeable, said second movable partition means being acted on by a differential pressure of the pneumatic control medium delivered through said connecting line means to the one side of said second movable partition means and through said delay member to the other side of said second movable partition means, where said pressure is a measure of the engine acceleration, whereby during periods of increasing pressure of the control medium, said second partition means and said means for connecting said second partition means to said setting member supplementarily displaces said setting member beyond the position set by said first movable partition means and in the direction of an increasing fuel supply quantity, and counter pressure means comprising said delay member for producing, during constant speed operation, a reversal of the supplementary displacement of said setting member to a zero value by the effect of an increasing counter pressure exerted by the control medium.
- 2. A fuel control system as defined in claim 1, wherein the instantaneous difference between the turbo-charged intake manifold pressure which increases during engine acceleration and the counter pressure which increases at a lower rate due to said delay member, defines the magnitude of said differential pressure.
- 3. A fuel control system as defined in claim 2, wherein said second movable partition means includes a primary pressure surface and a counter pressure surface, wherein the supplementary displacement of said setting member is effected by said second movable position means, and wherein full manifold pressure acts on the primary pressure surface and as a result of said delay member a delayed increasing counter pressure derived from said manifold pressure acts on the counter pressure surface.
- 4. A fuel control system as defined in claim 3, further comprising a further return spring and a compensating spring, wherein the counter pressure side of said second movable partition means is loaded by said further return spring, and wherein its primary pressure side is loaded by said compensating spring, with the pre-tension of said compensating spring acting in opposition to the pre-tension of said return spring.
- 5. A fuel control system as defined in claim 3 wherein said means connected to said control unit and through which said control medium is communicated to said second movable partition means includes a supply channel leading to the chamber which is contiguous to said counter pressure side of said second movable partition means, and wherein said delay member is inserted in said supply channel, said delay member having a flow-throttle therein.
- 6. A fuel control system as defined in claim 1, wherein said first and second movable partition means are diaphragms, and wherein each of said connecting means includes a connecting rod and one arm of a two-armed lever, with the center of said lever being pivotably connected to said setting member, and with each said diaphragm being fastened to a respective one of the connecting rods.
- 7. A fuel control system as defined in claim 6, further comprising a housing for said first diaphragm, a support bushing threadedly engageable in said housing, and means mounted to said housing for adjusting the threaded engagement of said support bushing, wherein the pre-tension of said return spring loading said first diaphragm is changeable by means of said support bushing, and wherein said support bushing serves as a guide-sleeve for the connecting rod of said first diaphragm.
- 8. A fuel control system as defined in claim 6, wherein each of said diaphragms includes a primary pressure surface and a counter pressure surface, said diaphragms defining four separate chambers of which the two chambers which are contiguous to the primary pressure surfaces of said two diaphragms experience the full manifold air pressure, the chamber which is contiguous to the counter pressure surface of the first diaphragm experiences ambient air pressure, and the chamber contiguous to the counter pressure surface of the second diaphragm experiences the increasing counter pressure delayed by said delay member.
- 9. A fuel control system as defined in claim 1, further comprising a connecting rod, and wherein said movable partition means are formed to include two coaxial and sequentially disposed diaphragms, with said first diaphragm being fixedly connected with said setting member by said connecting means and with said second diaphragm acting on said setting member through the action of said connecting rod.
- 10. A fuel control system as defined in claim 9, wherein said return spring of said first diaphragm is mounted to serve also as the return spring of said second diaphragm.
- 11. A fuel control system as defined in claim 1, wherein said second movable partition means includes a primary pressure surface and a counter pressure surface, and wherein said pneumatic control medium is engine exhaust gas, with said primary pressure surface being acted on by the full exhaust gas pressure for effecting the supplementary position change of said setting member, and with said counter pressure surface being acted upon by a delayed increasing exhaust gas counter pressure which is delayed by said delay member.
- 12. In a fuel control system for supercharged, fuel injected internal combustion engines employing exhaust gas turbo-chargers, comprising: a pressure actuated first movable partition means; at least one return spring opposing the motion of said first partition means; a setting member; and means connecting the setting member to said first partition means, said setting member being actuated by the motion of said partition means whereby the operating region of a fuel quantity adjustment member of the injection system of the engine is changeable in the direction of increasing supply quantity during a period of increasing intake manifold pressure, the improvement comprising: a supplementary pneumatic control unit having delayed feedback characteristics and including a second movable partition means, means connected to one side of said first movable partition means and said second movable partition means for supplying a pressurized medium thereto, means for connecting said second partition means to said setting member, a delay member connected to said control unit through which a pressurized medium is supplied to the other side of said second movable partition means, and a connecting rod, by means of said control unit the position of said setting member is made to be additionally changeable, said second movable partition means being acted on by a differential pressure of a pneumatic control medium delivered through said connecting means to the one side of said second movable partition means and through said delay member the other side of said second movable partition means, wherein the pneumatic control medium is engine intake manifold air whose pressure is a measure of the engine acceleration, wherein the instantaneous difference between the intake manifold pressure which increases during engine acceleration and the counter pressure which increases at a lower rate due to said delay member defines the magnitude of said differential pressure, wherein said movable partition means are formed to include two coaxial sequentially disposed and oppositely acting diaphragms of different diameter, said diaphragms being connected together by said connecting rod which in turn is connected to said setting member by said connecting means, wherein the space surrounding said connecting rod and lying between said two diaphragms is exposed to ambient air pressure, and wherein the larger of said two diaphragms is exposed to the full manifold pressure whereas the smaller of said two diaphragms is exposed to the delayed increasing manifold counter pressure so that during constant engine rpm only the differential area of said two diaphragms is effective, whereby during periods of increasing pressure of the control medium, said setting member tends to be supplementarily displaced beyond the position set by said first movable partition means and in the direction of an increasing fuel supply quantity, and whereby during constant speed operation the supplementary displacement is reversible to a zero value by the effect of an increasing counter pressure exerted by the control medium, said counter pressure being increased in a delayed manner by said delay member.
- 13. In a fuel control system for supercharged, fuel injected internal combustion engines employing exhaust gas turbo-chargers, comprising: a pressure actuated first movable partition means; at least one return spring opposing the motion of said first partition means, a setting member; and means connecting the setting member to said first partition means, said setting member being actuated by the motion of said partition means whereby the operating region of a fuel quantity adjustment member of the injection system of the engine is changeable in the direction of increasing supply quantity during a period of increasing intake manifold pressure, the improvement comprising: a supplementary pneumatic control unit having delayed feedback characteristics and including a second movable partition means, means connected to one side of said first movable partition means and said second movable partition means for supplying a pressurized medium thereto, means for connecting said second partition means to said setting member, a delay member connected to said control unit through which a pressurized medium is supplied to the other side of said second movable partition means, and a connecting rod, by means of said control unit the position of said setting member is made to be additionally changeable, said second movable partition means being acted on by a differential pressure of a pneumatic control medium delivered through said connecting means to the one side of said second movable partition means and through said delay member the other side of said second movable partition means, wherein the pneumatic control medium is engine intake manifold air whose pressure is a measure of the engine acceleration, wherein the instantaneous difference between the intake manifold pressure which increases during engine acceleration and the counter pressure which increases at a lower rate due to said delay member defines the magnitude of said differential pressure, wherein said second movable partition means includes a primary pressure surface and a counter pressure surface, wherein the supplementary displacement of said setting member is effected by said second movable partition means, wherein full manifold pressure acts on the primary pressure surface and as a result of said delay member a delayed increasing counter pressure derived from said manifold pressure acts on the counter pressure surface, wherein said second movable partition means is formed to include two coaxial, sequentially disposed diaphragms of equal diameter, said diaphragms being connected together by said connecting rod which in turn is pivotably connected to said setting member by said connecting means, and wherein the primary pressure side of one of said two diaphragms is exposed to the full manifold air pressure and the corresponding primary pressure side of the second of said two diaphragms serves as the counter pressure side of said second movable partition means and is exposed to the delayed increasing manifold air counter pressure, whereby during periods of increasing pressure of the control medium, said setting member tends to be supplementarily displaced beyond the position set by said first movable partition means and in the direction of an increasing fuel supply quantity, and whereby during constant speed operation the supplementary displacement is reversible to a zero value by the effect of an increasing counter pressure exerted by the control medium, said counter pressure being increased in a delayed manner by said delay member.
- 14. In a fuel control system for supercharged, fuel injected internal combustion engines employing exhaust gas turbo-chargers, comprising: a pressure actuated first movable partition means; at least one return spring opposing the motion of said first partition means; a setting member; and means connecting the setting member to said first partition means; said setting member being actuated by the motion of said partition means whereby the operating region of a fuel quantity adjustment member of the injection system of the engine is changeable in the direction of increasing supply quantity during a period of increasing intake manifold pressure, the improvement comprising: a supplementary pneumatic control unit having delayed feedback characteristics and including a second movable partition means, means connected to one side of said first movable partition means and said second movable partition means for supplying a pressurized medium thereto, means for connecting said second partition means to said setting member, a delay member connectedd to said control unit through which a pressurized medium is supplied to the other side of said second movable partition means, and a check-valve mounted parallel to said flow-throttle, by means of said control unit the position of said setting member is made to be additionally changeable, said second movable partition means being acted on by a differential pressure of a pneumatic control medium delivered through said connecting means to the one side of said second movable partition means and through said delay member the other side of said second movable partition means, wherein the pneumatic control medium is engine intake manifold air whose pressure is a measure of the engine acdeleration, wherein the instantaneous difference between the intake manifold pressure which increases during engine acceleration and the counter pressure which increases at a lower rate due to said delay member defines the magnitude of said differential pressure, wherein said second movable partition means includes a primary pressure surface and a counter pressure surface, wherein the supplementary displacement of said setting member is effected by said second movable partition means, wherein full manifold pressure acts on the primary pressure surface and as a result of said delay member a delayed increasing counter pressure derived from said manifold pressure acts on the counter pressure surface, wherein said means connected to said control unit and through which said control medium is communicated to said second movable partition means includes a supply channel leading to the chamber which is contiguous to said counter pressure side of said second movable partition means, wherein said delay member is inserted in said supply channel, said delay member having a flow-throttle therein, and wherein said check-valve serves to insure an unthrottled return flow of said control medium from the chamber contiguous to said counter pressure side of said second movable partition means, whereby during periods of increasing pressure of the control medium, said setting member tends to be supplementarily displaced beyond the position set by said first movable partition means and in the direction of an increasing fuel supply quantity, and whereby during constant speed operation the supplementary displacement is reversible to a zero value by the effect of an increasing counter pressure exerted by the control medium, said counter pressure being increased in a delayed manner by said delay member.
- 15. In a fuel control system for supercharged, fuel injected internal combustion engines employing exhaust gas turbo-chargers, comprising: a pressure actuated first movable partition means; at least one return spring opposing the motion of said first partition means; a setting member; and means connecting the setting member to said first partition means, said setting member being actuated by the motion of said partition means whereby the operating region of a fuel quantity adjustment member of the injection system of the engine is changeable in the direction of increasing supply quantity during a period of increasing intake manifold pressure, the improvement comprising: a supplementary pneumatic control unit having delayed feedback characteristics and including a second movable partition means, means connected to one side of said first movable partition means and said second movable partition means for supplying a pressurized medium thereto, means for connecting said second partition means to said setting member, a delay member connected to said control unit through which a pressurized medium is supplied to the other side of said second movable partition means and a connecting rod, by means of said control unit the position of said setting member is made to be additionally changeable, said second movable partition means being acted on by a differential pressure of a pneumatic control medium delivered through said connecting means to the one side of said second movable partition means and through said delay member the other side of said second movable partition means, where said pressure is a measure of the engine acceleration, wherein said movable partition means are formed to include two coaxial and sequentially disposed diaphragms, with said first diaphragm being fixedly connected with said setting member by said connecting means and with said second diaphragm acting on said setting member through the action of said connecting rod, wherein each said diaphragm includes a primary pressure surface and a counter pressure surface, and wherein said second diaphragm is larger than said first diaphragm, with both said diaphragms defining together three separate chambers of which the chamber contiguous to the primary pressure surface of said second diaphragm experiences the full manifold air pressure, the middle chamber which is contiguous simultaneously to the counter pressure surface of said second diaphragm and the primary pressure surface of said first diaphragm experiences the delayed increasing manifold counter pressure, and the chamber which is contiguous to the counter pressure surface of said first diaphragm experiences ambient air pressure, whereby during periods of increasing pressure of the control medium, said setting member tends to be supplementarily displaced beyond the position set by said first movable partition means and in the direction of an increasing fuel supply quantity, and whereby during constant speed operation the supplementary displacement is reversible to a zero value by the effect of an increasing counter pressure exerted by the control medium, said counter pressure being increased in a delayed manner by said delay member.
- 16. A fuel control system as defined in claim 15, wherein said return-spring of said first diaphragm is mounted to serve also as the return spring of said second diaphragm.
Priority Claims (1)
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2240947 |
Aug 1972 |
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Parent Case Info
This is a continuation of application Ser. No. 398,935 filed Aug. 16, 1973, and now abandoned.
US Referenced Citations (16)
Foreign Referenced Citations (1)
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Date |
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1,158,318 |
Nov 1963 |
DT |
Continuations (1)
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388935 |
Aug 1973 |
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