5.4.1 Fatigue Strength at Room Temperature

Mechanical Properties (Section 5)
(1) Reed, R.P. and Mikesell, R.P. Low-Temperature (295 to 4 K) Mechanical Properties of Selected Copper Alloys. J. Materials, Vol. 2 (1967), No. 2, pp. 370-392.
(2) Roberson, J.A. and Grosakreutz, J.C. Fatigue of Copper-Zinc Alloys at 100 °K. Acta Metall., Vol. 11 (1963) July, pp. 795-798.
(3) Metals Handbook. Vol. 1, 8th ed. American Soclety for Metals, Cleveland, Ohlo (1961), p. 1016.
(4) Ashbolt, D. and Bowers, J.E. The Properties of Copper and Copper Alloys at Elevated Temperatures. BNFMRA Research Report A1550 (1965), July.
(5) Upthegrove, C. and Buroghoff, H.L. Elevated-Temperature Properties of Coppers and Copper-Base Alloys. American Society for Testing and Materials, Philadelphia, Pa. (1956), pp. 131-133. (ASTM Spec. Tech. Pub. No. 181).
(6) Crowe, C.H. Properties of Some Copper Alloys at Elevated Temperatures. ASTM Bull. No. 250 (1950), Dec., pp. 30-31.
(7) Clark, C.L. and White, A.E. Properties of Non-Ferrous Alloys at Elevated Temperatures. Trans. ASME, Vol. 43 (1931), pp. 183-191.
(8) Pels, A.R. Elevated-Temperature Properties of Copper-Base Alloys. Wire and Wire Products, Vol. 37 (1962), No. 10, pp. 1398-1399,1402-1404,1502-1503.
(9) Weaver, V.P. and Imperati, J. Copper and Copper Alloys for Pressure Vessels. Welding Research Council, New York, Bulletin No. 73 (1951), Nov.
(10) 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.
(11) Bulow, C.L. Which Alloy and Which Temper for Current-Carrying Springs. Prod. Engng., Vol. 34 (1953), pp. 60 67.
(12) Anderson, A.R. and Smith, C.S. Fatigue Tests on Some Copper Alloys. Proc. ASTM, Vol. 41 (1941), pp. 849-858.
(13) Wilkins, R.A., and Bunn, E.S. Copper and Copper-Base Alloys. McGraw-Hill Book Company, New York (1943).