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Passenger Car Meeting & Exposition | 1978

IMPROVED FUEL ECONOMY VIA ENGINE OILS

Walter E. Waddey; Harold Shaub; Joseph Michael Pecoraro; Robert A. Carley

A program was implemented to develop a passenger car engine oil that improves fuel economy. The selected approach was to incorporate fuel economy performance in a premium SAE (Society of Automotive Engineers) 10W-40 oil, retaining excellent deposit and wear control as well as compatibility with emission (oxidation) catalysts. The technical basis for fuel-efficient engine oils was established, with attention paid to oil-related frictional losses in automotive engines. Friction-reducing additive technology effects were defined, general routes to lower friction engine oils were explored, engine fuel economy dynamometer tests were conducted, and fuel economy benefits of friction-reducing engine oils were determined. The fuel-efficient SAE 10W-40 passenger car engine oil was formulated with petroleum base stocks and known additives, many of which are conventionally used. The new oil retained overall performance capabilities of the premium reference oil. In a controlled fuel economy fleet test, 18 out of 19 cars showed a fuel economy improvement with the fuel-efficient oil. The average benefit was 4.6%, compared with a baseline reference oil and several other typical 10W-40 multigrade oils. In Environmental Protection Agency road simulator (dynamometer) tests, the SAE 10W-40 oil gave 5.5% better fuel economy than the reference oil. The fuel-efficient oil was formulated on the basis of friction-related technology developed over a period of several years, and it is expected that this technology may lead to oils with even higher fuel economy improvements. A fuel economy field test statistical summary is appended.


Archive | 1978

Synthetic lubricant composition

Harold Shaub; Stephen J Metro


Archive | 1984

Lubricant composition with improved friction reducing properties containing a mixture of dithiocarbamates

Harold Shaub; Barbara J. Schaeffer


Archive | 1991

Synergistic blend of amine/amide and ester/alcohol friction modifying agents for improved fuel economy of an internal combustion engine

Yasuhiko Yoneto; Ricardo Alfredo Bloch; Jack Ryer; Harold Erich Bachman; Harold Shaub


Archive | 1984

Method for improving the fuel economy of an internal combustion engine using fuel having hydroxyl-containing ester additive

Harold Shaub; Walter E. Waddey


Archive | 1988

Removal of carcinogenic hydrocarbons from used lubricating oil using activated carbon

Darrell William Brownawell; Donald James Norris; Harold Shaub


Archive | 1996

Lubricating compositions with improved antioxidancy comprising added copper, a molybdenum containing compound, aromatic amine and ZDDP

Andrew J. D. Ritchie; Harold Shaub; Ian Field


Archive | 1990

Filter for removing hydroperoxides from lubricating oils

Harold Shaub; Darrell William Brownawell; Arthur James Dibenedetto


Archive | 1986

Method for improving the fuel economy of an internal combustion engine

Harold Shaub; Walter E. Waddey


Archive | 1990

Method of removing hydroperoxides from lubricating oils

Harold Shaub; Darrell William Brownawell; Arthur James Dibenedetto

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