1. Bussa, S. and Tucker, L., “The SAE Cumulative Fatigue Damage Test Program,” Paper 750038 presented at SAE Automotive Engrg. Cong., Detroit, MI (Feb. 1975).
2. Rashe, D. and Morrow, J., “Mechanics of Materials in Low Cycle Fatigue Testing,” Manual on Low Cycle Fatigue Testing, ASTM STP 465 (1969).
3. Tucker, L., Landgraft, R. and Brose, W., “Proposed Technical Report on Fatigue Properties for the SAE Handbook,” Paper 740279 presented at SAE Automotive Engrg. Cong., Detroit, MI (Feb. 1974). See also, Graham, J., Ed., FAtigue Design Handbook, Chap. 3, 17–58, SAE, New York (1968).
4. Barron, G., “A Finite Element and Cumulative Damage Analysis of a Keyhole Test Specimen,” Paper 750041 presented at SAE Automotive Engrg. Cong., Detroit, MI (Feb. 1975).
5. Wetzel, R., “A Method of Fatigue Damage Analysis,”PhD Thesis, Dept. of Civil Engrg., Univ. of Waterloo, Ontario, Canada (1971).See also, Brose, W. R., “Fatigue Life Predictions for a Notched Plate with Analysis of Mean Stress and Overstrain Effects,” MS Thesis, Dept. of Theoretical and Applied Mech., Univ. of Illinois, Urbana (1975).