5.4. Fatigue Properties

5.4.1 Fatigue Strength at Room Temperature

References

Mechanical Properties (Section 5)

(1) Lismer. R.E. The Properties of Some Metals and Alloys at Low Temperatures. J. Inst. Metals, Vol. 89 (1960-61), pp. 145-161.

(2) Broniewski, W. and Wesolowski. K. L influence de la temperature sur les proprietes mecaniques des laitons. Part 2. Rev. Met., Vol. 30 (1933), pp. 453-457.

(3) Kupfer-Zink-Legierungen. Deutsches Kupfer-lnstitut, (1966).

(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 Burghoff, H.L. Elevated-Temperature Properties of Coppers and Copper-Base Alloys. American Society for Testing and Materials. Philadelphia, Pa. (1956) (ASTM Spec. Tech. Pub. No. 181).

(6) Clark, C.L. and White, A.E. Properties of Non-Ferrous Alloys at Elevated Temperatures. Trans. ASME, Vol. 43 (1931), pp. 183 191.

(7) Weaver, V.P. and Imperati, J. Copper and Copper Alloys for Pressure Vessels. Welding Research Council, New York. Bulletin No. 73, (1961), Nov.

(8) Wilkins, R.A., and Bunn, E.S. Copper and Copper-Base Alloys. McGraw-Hill Book Company, New York (1943).

(9) Kommers, J.B. The Static and Fatigue Properties of Brass. Proc. ASTM, Vol. 31 (1931), Part 2, pp. 243-258.

(10) McAdam, D.J., Jr. Endurance Properties of Alloys of Nickel and of Copper. Part I. Trans. ASST, Vol. 7 (1925), pp. 54-81.