Fatigue User’s Guide > References > Further Reading
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX''">XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX''">   
Further Reading
1. “Wohler’s Experiments on the ‘Fatigue of Metals,” Engineering Editorial, March 24th, 1871, p199 et seq.
2. Bannantine, Julie A., Comer, Jess J., and Handrock, James L., “Fundamentals of Metal Fatigue Analysis,” Prentice Hall, ISBN 0-13-340191-X, 1990.
3. Fuchs, H.O., and Stephens, R.I., “Metal Fatigue in Engineering,” John Wiley & Sons, ISBN 0-471-052647, 1980.
4. Collins, J. A., “Failure of Materials in Mechanical Design — Analysis, Prediction, Prevention,” John Wiley & Sons, ISBN 0-471-05024-5, 1981.
5. “Fatigue Under Complex Loading — Analysis and Experiments,” Society of Automotive Engineering, SAE AE-6, 1974.
6. Hertzberg, R. W., and Manson, J. A., “Fatigue of Engineering Plastics,” Academic Press, ISBN 0-12-343550-1, 1980.
7. “Multi-axial Fatigue — Analysis and Experiments,” Society of Automotive Engineering, SAE AE-14, ISBN 0-89883-780-4, 1989.
8. Pickard, A. C., “The Application of 3-Dimensional Finite Element Methods to Fracture Mechanics and Fatigue Life Prediction,” EMAS, ISBN 0-947817-22-0, 1986.