By ASM (American Society for Metals)
Supplying a operating wisdom of fatigue and fracture homes in genuine engineering perform, this guide is mainly important in comparing try out facts and figuring out the main variables that have an effect on effects. it's going to additionally provide you with a greater figuring out of fracture mechanics to assist you in lifestyles overview and lifestyles extension of elements. Sections comprise: Fatigue Mechanisms, Crack development, trying out, Engineering facets of Fatigue existence, Fracture Mechanics of Engineering fabrics, Fatigue and Fracture keep watch over, Castings, Weldments, Wrought Steels, Aluminum Alloys, Titanium Alloys and Superalloys. Appendices comprise complete assurance of fatigue energy parameters and stress-intensity components.
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Additional resources for ASM Handbook, Volume 19: Fatigue and Fracture
References cited in this section 5. B. H. Sjodahl, Analysis and Representation of Fatigue Data, ASM International, 1991 13. A. J. L. Handrock, Fundamentals of Metal Fatigue Analysis, Prentice-Hall, 1990 25. S. Manson, Fatigue: A Complex Subject--Some Simple Approximations, Experimental Mechanics, July 1965 26. S. Manson, Thermal Stress and Low-Cycle Fatigue, McGraw-Hill, 1966 27. A. J. L. Handrock, Fundamentals of Metal Fatigue Analysis, Prentice-Hall, 1990 28. , 1988 29. B. H. Sjodahl, Analysis and Representation of Fatigue Data, ASM International, 1991 30.
A partial list might be: • • • • • • • • • • • What were the coupon size and geometry? Was there a stress concentration? What was the temperature? Was an environment other than lab air employed? What was the specimen orientation in the original material? Does the line represent minimum, mean, or median response? How many samples were tested? What was the scatter? If the plot is based on constant-amplitude data, what were the frequency and waveform? Was testing performed using variable-amplitude loading?
The three following sections provide examples of property determinations from each of the three major groups (S-N, -N, and da/dN). Each example demonstrates the general and/or specific aspects of the information within the context of the design philosophy it supports. Where examples of data are offered, the reader should regard the information as indicative only of the specific material/process/product combination involved. Reference cited in this section 8. W. Hoeppner, Estimation of Component Life by Application of Fatigue Crack Growth Threshold Knowledge, Fatigue, Creep, and Pressure Vessels for Elevated Temperature Service, MPC-17, ASME, 1981, p 1-84 Infinite-Life Criterion (S-N Curves) Safe-life design based on the infinite-life criterion reflects the classic approach to fatigue.
ASM Handbook, Volume 19: Fatigue and Fracture by ASM (American Society for Metals)