Measuring and testing – Engine detonation – Combustion signal compared to reference signal varied by a...
Patent
1980-06-16
1983-01-04
Gill, James J.
Measuring and testing
Engine detonation
Combustion signal compared to reference signal varied by a...
318592, G01N 3322
Patent
active
043667015
ABSTRACT:
Automatic octane measurements are made very rapidly with standard test engine using an all-electronic control that automatically lowers the fuel-air ratio to bring the knock intensity below standard, then automatically adjusts the compression to bring the knock intensity to standard, then intermittently increases the fuel-air ratio, after the first or second intermittent increase permits automatic compensatory compression changes only in the decreasing direction to compensate for departures from standard knock intensity and conducts these compensatory compression changes at a rate too slow for adequate compensation if the fuel-air ratio increase causes a substantial increase in knock intensity, and then indicating the compression ratio reading after the knock intensity remains standard during two to four successive fuel-air ratio increases. Maximum knock fuel-air ratio is indicated by subsequently automatically lowering the fuel-air ratio an amount corresponding to the fuel-air ratio increases during which knock intensity remained at standard. Finally for some purposes the test engine can be permitted to stabilize at the maximum knock fuel-air ratio. Electronic memory can be used to translate compression ratio to octane number, and barometric correction can be made electronically.
REFERENCES:
patent: 3490719 (1970-01-01), Cantor et al.
patent: 3614888 (1971-10-01), Jones et al.
patent: 3690851 (1972-09-01), Jones et al.
patent: 4153020 (1979-05-01), King et al.
Ethyl Corporation
Gill James J.
Johnson Donald L.
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