[1]
A. L. Geiger and J. A. Walker, J. Met., Vol. 43, No. 8 (1991), p.8.
Google Scholar
[2]
I. A. Ibrahim, F. A. Mohamed and E. J. Lavernia, J. Mat. Sci., Vol. 26 (1991), p.1137.
Google Scholar
[3]
D. J. Lloyd, Int. Mater. Rev., Vol. 39, No. 1 (1994), p.1.
Google Scholar
[4]
M. Noguchi, K. Takahashi, Key. Eng. Mater. Part1 (1997), p.153.
Google Scholar
[5]
Rohatgi Pk, J. Met., Vol. 43, No. 4 (1991), p.10.
Google Scholar
[6]
Chadwich GA, Met. Mater. 2 (1990), p.73.
Google Scholar
[7]
D. Raybould, J. Mater. Sci., 16 (1981), p.589.
Google Scholar
[8]
K. Hokamoto, S. Tanaka, M. Fujita, S. Itoh, M. A. Meyers, H. C. Chen., Physica B 239 (1997), p.1.
Google Scholar
[9]
G. M. Bond, O. T. Inal, Composite Engineering, 5(1) (1995), p.9.
Google Scholar
[10]
K. Siva Kumar, P. S. Raj, T. B. Bhat, K. Hokamoto, Journal of Material Processing Technolgy 115 (2001), p.396.
Google Scholar
[11]
K. Hokamoto, J. S. Lee, M. Fujita, S. Itoh and K. Raghukandan, J. Mater. Sci. Vol. 37 (2002), p.4073.
Google Scholar
[12]
K. Hokamoto, K. Raghukandan, J. S. Lee, M. Fujita and R. Tomoshinge, Mater. Sci. Froum Vol. 437-438 (2003), p.169.
Google Scholar
[13]
S. Itoh, S. Kubta, A. Kira, S. Nagano and M. Fujita: J. Japan Explosives Soc. Vol. 55 (1994), p.71.
Google Scholar
[14]
R. Prummer, Fundamental Issues and Application of Shock Wave and High-Strain-Rate Phenomena, (2001), p.235.
Google Scholar
[15]
K. Sivakumar, K. Hokamoto, J. Mater. Sci. Vol. 35 (2000), p.5823.
Google Scholar
[16]
M. Gupta, Aluminum Transactions, Vol. 1, No 1 (1999), p.33.
Google Scholar
[17]
D. L. McDanels, Metall. Trans. A, Vol. 16 (1985), p.1105.
Google Scholar
[18]
J. W. Luster, M. Thumann and R. Baumann, Mater. Sci. and Tech., Vol. 9 (1993), p.862.
Google Scholar