TAILIEUCHUNG - High Cycle Fatigue: A Mechanics of Materials Perspective part 5

High Cycle Fatigue: A Mechanics of Materials Perspective part 5. The nomenclature used in this book may differ somewhat from what is considered standard or common usage. In such instances, this has been noted in a footnote. Additionally, units of measurement are not standard in many cases. While technical publications typically adhere to SI units these days, much of the work published by the engine manufacturers in the United States is presented using English units (pounds, inches, for example), because these are the units used as standard practice in that industry. The graphs and calculations came in those units and no attempt was made to convert. | 26 Introduction and Background scenario to explain the events that occurred however unlikely it might seem. Incidents such as these bring to mind the words of the famous detective Sherlock Holmes who said when you have eliminated the impossible whatever remains however improbable must be the truth 13 . Hopefully the information contained within this book will add to the understanding of many of the aspects of high cycle fatigue material behavior. REFERENCES 1. Wöhler A. Über die FestigkeitsVersuche mit Eisen und Stahl On Strength Tests of Iron and Steel . Zeitschrift für Bauwesen 20 1870 pp. 73-106. 2. Schütz W. A History of Fatigue Engng Fract. Mech. 54 1996 pp. 263-300. 3. Crouch . Air Force Turbine Engine Reliability presented at the NAS Committee of National Statistics Sponsored Reliability Workshop Washington DC 9-10 June 2000. 4. Engine Structural Integrity Program ENSIP MIL-HDBK-1783B USAF 15 February 2002. 5. Engine Structural Integrity Program ENSIP MIL-STD-1783 USAF 30 November 1984. 6. John R. Nicholas T. Lackey . and Porter . Mixed Mode Crack Growth in a Single Crystal Ni-Base Superalloy Fatigue 96 Vol. I G. Lütjering and H. Nowack eds Elsevier Science Ltd Oxford 1996 pp. 399-404. 7. Grandt . Jr. Fundamentals of Structural Integrity John Wiley Sons Inc. Hoboken NJ 2004. 8. Greenfield P. and Suhr . The Factors Affecting the High Cycle Fatigue Strength of Low Pressure Turbine and Generator Rotors GEC Review 3 No. 3 1987 pp. 171-179. 9. Hawkyard M. Powell . Husey I. and Grabowski L. Fatigue Crack Growth under Conjoint Action of Major and Minor Stress Fatigue Fract. Eng. Mater. Struct. 19 1996 pp. 217-227. 10. Barenblatt . On a Model of Small Fatigue Cracks Eng. Fract. Mech. 28 1987 pp. 623-626. 11. Miller . The Short Crack Problem Fatigue Engng Mater. Struct. 5 1982 pp. 223-232. 12. Lankford J. The Influence of Microstructure on the Growth of Small Fatigue Cracks Fatigue Engng Mater. Struct. 8 1985 pp. 161-175. 13. Sir Arthur Conan

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