Document M2aY5B1GO8Xmrr0GJd92me3M
157
ENGINE NOISE SYMPOSIUM Consists of 11 papers presented in 1958 on engine combustion chamber noises, especially rumble in high compression ratio engines.
4.50 Mem. 7.00 List
SP 193
ENGINEERING KNOW-HOW IN ENGINE DESIGN - Complete set of
the series as shown below. 25.00 Mem. 45.00 List
*SP 335 ENGINEERING KNOW-HOW IN ENGINE DESIGN - Part 16 - In cludes papers on computer time sharing and engine design, air pollution from automotive exhaust,
automobiles and air pollution, instrumentation, and fuel injection for high speed diesel engines.
3.50 Mem. 7.00 List
SP 292
ENGINEERING KNOW-HOW IN ENGINE DESIGN - Part 15 - Com puter aided Engine Design (670523) by. Gary L. Borman, Univ. of Wisconsin, Heat Rejection and Cooling Requirements of Inter nal Combustion Engines (670524) by Robert Cramer, Jr., Murphy Diesel Co., Engine Cooling Radia tors (670525) by James D. Morse, Modine Manufacturing Co., Small Internal Combustion Engine Design Cooling and Associated Parameters, Heat Rejection Methods (670526) by R. E. Perlewitz, Lon Mooney, and William Kalweit, Tecumseh Products Co., and Solid State Ignition (670527) by Arthur G. Hufton, Motorola, Inc.
3.50 Mem. 7.00 List
SP 283
ENGINEERING KNOW-HOW IN ENGINE DESIGN - Part 14 Covers fundamentals of valve de sign and material selection, crank shaft design, turbochargers, piston design, and how to design bushings and thrust bearings for engine applications.
3.50 Mem. 7.00 List
SP 271
ENGINEERING KNOW-HOW IN ENGINE DESIGN - Part 13 Covers surface ignition and rumble, piston ring shape, gas engine valve and seat wear, basic concepts involved in using digital computers for solving engineering problems, and a specific example of how a computer is used to solve a heat conduction problem. (1965)
3.50 Mem. 7.00 List
SP 256
ENGINEERING KNOW-HOW IN ENGINE DESIGN - Part 12 Covers performance of a digital engine, engine wear, crankshaft testing in the laboratory, and the development of lubricating oils for small 2-cycle engines.
3.00 Mem. 4.50 List
SP 243
ENGINEERING KNOW-HOW IN EN GINE DESIGN - Part II - (1963) Covered are pumpless injection sys tems; hybrid engines; design, de velopment, and application of the 17.6 engine; power producing characteristics of diesel engines.
3.50 Mem. 7.00 List
SP 237
ENGINEERING KNOW-HOW IN EN GINE DESIGN - Part 10 - (1962) Covered are lube oil refining, speci fications and tests; piezoelectric ignition system; deterioration of en gine oils; and contemporary ignition systems.
3.50 Mem. 7.00 List
SP 192
ENGINEERING KNOW-HOW IN ENGINE DESIGN - Part 9 - (1961) Discussed are small engine hydraulic governor design and application, a guide to disc clutch design and ap plication, hydrostatic transmissions for vehicle propulsion, performance and structure of mechanical transmis sions, and the selection of conver ters. 3.50 Mem. 7.00 List
SP 178
ENGINEERING KNOW-HOW IN ENGINE DESIGN - Part 8 - (1960) Discussed in this part are evaluating valve train dynamics, dynamometers for engine testing, radio-isotopes, instrumentation for engine testing, and field testing diesel engines.
3.50 Mem. 7.00 List
SP 143
ENGINEERING KNOW-HOW IN ENGINE DESIGN - Part 4 - (1956) Discussed are gear design and manu facture, supercharging, development of small engines, automotive gasoline injection, and diesel fuel injection
3.50 Mem. 7.00 List
SP 137
ENGINEERING KNOW-HOW IN ENGINE DESIGN - Part 3 (1955) - Information on materials in engine design, reciprocating en gine dynamics, applying gasoline and diesel fuels, light two-cycle engines, the outboard motor, and design features of an opposes piston diesel.
3.50 Mem. 7.00 List
FUELS AND LUBRICANTS
SP 340
FUEL-ENGINE RESEARCH IN
UNIVERSITIES--HORNING ME MORIAL LECTURE BY PRO FESSORS P. S. MYERS AND 0. A. UYEHARA, UNIV. OF WISCONSIN - Reasons for con ducting research in a university are presented and discussed. It is
concluded that fuel-engine studies are compatible with these reasons, and, therefore, are well suited for university research. Past studies In this field are summarized, and unanswered questions and future topics suitable for university in vestigation are suggested. Included in the topics discussed are: Instru mentation, thermodynamic descrip tion of working fluids, fuel atom ization and vaporization, combus tion and instantaneous heat trans fer, and mass flow rates. The steps that need to be taken to insure con
tinuing university interest in fuelengine studies are presented.
1.00 Mem. 2.00 List
SP 285
LP-GAS FOR ENGINES - Many facets of LP-gas are covered in this collection of papers. Discussed are effects of LPG on engine performance, use of LPG as a motor fuel, the effects of altitude, humidity and temperature, as well as carburetion and other factors affecting propane fueled engines.
5.25 Mem. 7.00 List
SP 263
ENERGY OEPOT CONCEPT Nuclear powered energy depot concept is discussed in terms of
reducing the Military supply burden. Fuel production and utilization is covered along with ammonia as an engine fuel.
2.25 Mem. 3.00 List
SP 254
ALCOHOLS AND HYDROCARBONS AS MOTOR FUELS - Four papers providing information on comparative performance of alcohol and hydro carbon fuels, ethyl alcohol and gasoline as a motor fuel, and exhaust hydrocarbon and nitrogen oxide concentrations from ethyl alcohol-gasoline fuel.
3.00 Mem. 4.00 List
MATERIALS
SP 291 PLASTICS AND PLASTICS PROCESSING FOR THE AUTO MOTIVE ENGINEER - Provides information on plastic fundamentals, processing and its relation to per formance, blow molding, machinery and equipment injection molding, tools for plastic processing and their relation to product design, and current and future applications of plastics in the automotive industry. 4.50 Mem. 6.00 List
SP 268
EVALUATING THE SURFACE TEXTURE OF COLD ROLL SHEET STEEL FOR AUTOMOTIVE PANELS - Development of a pro cedure and equipment for determin ing surface texture peak count, operation of measuring instrumenta
tion, evaluation of measuring methods, and correlation of instru mentation with painted appearance are among the topics covered.
3.00 Mem. 4.00 List
SP 181
MECHANICAL PRESTRESSING Summary of reports presented at a 1960 meeting of SAE ISTC Divi sion 20 on Mechanical Prestressing of Metals. Discussed are: Simplified theory for dynamic failure in solid materials; optimum method, intensity, and coverage of mechanical prestres sing, selection of optimum conditions of mechanical prestressing; choosing optimum method, intensity, and cov erage of shot peening; evaluations of fine particle abrasive blasting and other methods of surface movement; and shock forming.
1.00 Mem. 2.00 List
New
21 VPD-81-0001660