Fatigue crack growth rate of Ti-6Al-4V prealloyed powder compacts
Tài liệu tham khảo
F. H. Froes, D. Eylon, G. E. Eichelman, and H. M. Burte:J. of Metals, 1980, vol. 32, no. 2, pp. 47–54.
D. Eylon, M. Field, F. H. Froes, and G. E. Eichelman:SAMPE Quarterly, 1981, vol. 12, no. 3, pp. 19–25.
C. A. Kelto, B. A. Kosmal, D. Eylon, and F. H. Froes:J. of Metals, 1980, vol. 32, no. 8, pp. 17–25.
Titanium Powder Metallurgy, F. H. Froes and John E. Smugeresky,eds., TMS-AIME, Warrendale, PA, 1980, pp. 1–314.
F. H. Froes, D. Eylon, G. Wirth, K-J. Grundhoff, and W. Smarsly: Metals Powder Report, MPR Publication Services, Shrewsbury, England, January 1983, pp. 36–41.
P. R. Smith, D. Eylon, S. W. Schwenker, and F. H. Froes:Advanced Processing Methods for Titanium, D. F. Hasson and C. H. Hamilton,eds., TMS-AIME, Warrendale, PA, 1982, pp. 61–77.
G.V. Scarich, G.R. Chanani, V.C. Petersen, and D.M. Weaver:Reference 4, pp. 103–14.
E647-81, “Standard Test Method for Constant-Load-Amplitude Fatigue Crack Growth Rates above 10-8 m/cycle”, American Society for Testing and Materials, 1981, pp. 765–76.
R. R. Boyer and R. Bajoraitis: Air Force Materials Laboratory Report, 1978, AFML-TR-78-131.
J. C. Chesnutt, A. W. Thompson, and J. C. Williams: Air Force Materials Laboratory Report, 1978, AFML-TR-78-68.
M. Creager and A.W. Sommer: Air Force Materials Laboratory Report, 1977, AFML-TR-77-193.
R. E. Peebles and C. A. Kelto: Reference 4, pp. 47–58.
G. R. Yoder, L. A. Cooley, and T. W. Crooker:Journal of Engineering Materials Technology, 1979, vol. 101, pp. 86–90.
E. J. Dulis, V.K. Chandhok, F.H. Froes, and L. P. Clark:Proceedings of the 10th National SAMPE Technical Conference, Kiamesha Lake, NY, published by SAMPE, Azusa, CA, 1978, vol. 10, pp. 316–29.
I. Weiss, F. H. Froes, and D. Eylon: unpublished research, 1982.
G. Welsch, I. Weiss, F. H. Froes, and D. Eylon: unpublished research,1982.
