5.4.1 Fatigue Strength at Room Temperature

Mechanical Properties (Section 5)
(1) Reed, R.P. and Mikesell, R.P. Low-Temperature Mechanical Properties of Copper and Selected Copper Alloys. US Dept. Commerce, Nat. Bureau of Standards Monograph 101 (1967).
(2) Price, W.B. Properties of Copper and Some of its Important Industrial Alloys at Elevated Temperatures. ASTM-ASME Symposium on Eflect of T. on the Properties of Metals, (1931), pp. 340-367.
(3) Burghoff, H.L. and Blank, A.l. Fatigue Properties of Some Coppers and Copper Alloys in Strip Form. Proc ASTM, Vol. 48 (1948), pp. 709-736
(4) Metals Handbook. Vol. 1, 8th ed. American Society for Metals, Cleveland, Ohio, (1961), p. 1018.
(5) Phillips, W.L. Eflect of Prestress Level on Fatigue Life of Alpha-Brass. Trans. ASM, Vol. 581(1965), pp. 223-225.
(6) Kommers, J.B. The Static and Fatigue Properties of Brass. Proc. ASTM, Vol. 31 (1931), Pt. 2, pp. 243-258.
(7) McAdam, D.J., Jr. Effect of Cold Working on Endurance and Other Properties of Metals, Part I. Trans. ASST, Vol. 8 (1925), pp. 782-822.
(8) Wilkins, R.A. and Bunn, E.S. Copper and Copper-Base Alloys. McGraw-Hill Book Company, New York, (1943).
(9) Burghoff, H.L. and Blank, A.l. Fatigue Tests on Some Copper Alloys in Wire Form. Proc. ASTM, Vol. 43 (1943), pp. 774-764.