[1]
W. F. Powers, Advanced Materials & Processes, May 2001, p.38.
Google Scholar
[2]
D. Sanders, Materials Science Forum, vols. 357-359, 2001, p.17.
Google Scholar
[3]
R.H. Wagoner, Proc. 5th Int. Conf. on Numerical Sim. of 3D Sheet Forming, 2002, Jeju Island, Korea.
Google Scholar
[4]
C. H. Hamilton, A. K. Ghosh and J. A. Wert, Met. Form, vol. 8, 1985, p.172.
Google Scholar
[5]
P.A. Friedman and A.M. Sherman, in Automotive Alloys II, S. Das, ed., Proc. TMS Conf., 1998, p.147.
Google Scholar
[6]
A. J. Barnes, Materials Science Forum, vols. 357-359, 2001, p.3.
Google Scholar
[7]
M. S. Rashid et. al, United States Patent No. 6, 253, 588 B1, (2001).
Google Scholar
[8]
R. L. Hecht, A. M. Sherman and S. A. Arnold, Internal Ford Technical Report, (1994).
Google Scholar
[9]
H. Iwasaki, et al, in Superplasticity in Advanced Materials, S. Hori, M. Tokizane and N. Furushiro eds., The Japan Society for Research in Superplasticity, 1991, p.447.
Google Scholar
[10]
B. J. Dunwoody, R. J. Stracey and A. J. Barnes, in Superplasticity in Metals, Ceramics and Intermetallics, Mat. Res. Soc. Proc. Symp., M. J. Mayo, et al. eds., vol. 196, 1990, p.161.
Google Scholar
[11]
R. L. Hecht and K. Kannan, in Superplasticity and Superplastic Forming, Proc. TMS Conf., A. K. Ghosh and T. R. Bieler eds., 1995, p.259.
Google Scholar
[12]
R. Verma, P. A. Friedman, A. K. Ghosh, S. Kim and C. Kim, Met. Trans., vol. 27A, 1996, p.1889.
Google Scholar
[13]
P. A. Friedman and W. Copple, in Hot Deformation of Aluminum Alloys , Proc. TMS Conf., Z. Jin et al. eds., (2003).
Google Scholar
[14]
E. M. Taleff, D. R. Lesuer and J. Wadsworth, Met. Trans., vol. 27A, 1996, p.343.
Google Scholar
[15]
T. Shirakawa and T. Toge, Patent Abstracts of Japan, Publication No. 07-001050, (1995).
Google Scholar
[16]
R. M. Kleber and G. Kruger, United States Patent Application No. 6, 085, 571, (2000).
Google Scholar
[17]
S. Kimura, et al., Patent Abstracts of Japan, Publication No. 07-299518, (1995).
Google Scholar
[18]
K. Kumashiro, et al., Patent Abstracts of Japan, Publication No. 2001-129618, (2001).
Google Scholar
[19]
Y. Onishi, Material Science Forum, vols. 304-306, 1999, p.819.
Google Scholar
[20]
R. Kleber, United States Patent No. 6, 305, 202, (2001).
Google Scholar
[21]
D. Laycock and A. Barnes, United States Patent No. 4, 045, 986, (1977).
Google Scholar
[22]
J. Buchanan, United States Patent No. 4, 409, 809, (1983).
Google Scholar
[23]
F. McQuilkin, United States Patent No. 4, 956, 008, (1990).
Google Scholar
[24]
C. Hamilton and P. Puhaczewski, United States Patent No. 4, 502, 309.
Google Scholar
[25]
E. Spuhler and J. Story, United States Patent No. 4, 741, 197, (1988).
Google Scholar
[26]
R. M. Kleber, et al., United States Patent Application No. 2002/0152783 A1, (2002).
Google Scholar
[27]
Y. Yokoyama, et al., Patent Abstracts of Japan, Publication No. 2001-129617, (2001).
Google Scholar