[1]
M. Sternitzke: J. Eur. Cer. Soc., 17 (1997) p.1061.
Google Scholar
[2]
R. D. Shull: Nano Structured Materials 2 (1993) p.213.
Google Scholar
[3]
R. S. Averbek, H. J. Holfer, and R. Tao: Materials Science and Engineering A66 (1993) p.169.
Google Scholar
[4]
S. Komarneni: J. Mater. Chem., 2.
Google Scholar
[5]
C. Suryanarayana: International Materials Reviews, 40 (1995) p.41.
Google Scholar
[6]
H. Gleiter: Z. Metallkd., 86 (1995) p.78.
Google Scholar
[7]
K. Niihara: J. Ceram. Soc. Jap., The Centennial Memorial Issue., 99.
Google Scholar
[8]
L. Gao, H. Z. Wang, J. S. Hong, H. Miyamoto, K. Miyamoto, Y. Nishikawa and S. D. D. L. Torre: J. Eur. Cer. Soc., 19(1999) p.609.
Google Scholar
[9]
D. S. Perara, M. Tokita and S. Moricca: J. Eur. Cer Soc., 18(1998) p.404.
Google Scholar
[10]
Lian Gao, Xihai Jin, Hirokazu Kawaoka, Tohru Sekino and Koichi Niihara: Materials Science and Engineering., A334 (2002) p.262.
Google Scholar
[11]
Mamoru Omori: Materials Science and Engineering., A287 (2000) p.183.
Google Scholar
[12]
G. R. Anstis, P. Chantikul, B. R. Lawn and D. B. Marshall: J. Am. Cer. Soc., 64, (1981) p.533. 1150 1200 1250 1300 1350 18 20 22 24 SPS temperature, o C Vickers Hardness (Hv10, GPa) Hardness 2 4 6 8 Indentation toughness, MPa m 1/2 Toughness.
DOI: 10.1111/j.1151-2916.1981.tb10320.x
Google Scholar