[1]
F. Thevenot: A Review on Boron Carbide, J. Eur. Ceram. Soc. Vol. 6 (1990) p.205.
Google Scholar
[2]
G. De With: J. Mater. Sci. Vol. 19 (1984), p.457.
Google Scholar
[3]
C.J. Beidler, W. E. Hauth III, A. Goel: J. Test. Eval. Vol. 20 (1992), p.67.
Google Scholar
[4]
W.R. Blumenthal, G.T. Gray III, T. N. Claytor: J. Mater. Sci. Vol. 29 (1994), p.4567.
Google Scholar
[5]
A.J. Pyzik, U.D. Deshmukh, K.J. Nilsen, D.J. Perettie, A. R. Prunier Jr.: PCT Int. Appl. WO 96 18, 748 (1996).
Google Scholar
[6]
G. Arslan: Ph. D. Thesis, Anadolu University, Eskisehir, Turkey (2001).
Google Scholar
[7]
N. Eustathopoulos, M.G. Nicholas, and B. Drevet (ed. ): Wettability at High Temperatures (Elsevier Science Ltd., UK 1999).
Google Scholar
[8]
H. Fujii, H. Nakae, and K. Okada: Acta metall. Mater. Vol 41 (1993), p.2963.
Google Scholar
[9]
A.J. Pyzik, and I.A. Aksay: Multipurpose boron carbide-aluminum composite and its manufacture via the control of the microstructure, U. S. Patent No: 4702770, (1987).
Google Scholar
[10]
J.C. Viala and J. Boix: J. Mat. Sci., Vol. 32 (1997) p.4559.
Google Scholar