By S. Velumani and René Asomoza
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Extra resources for Advances in Semiconducting Materials
Tikare. Crack healing behavior of hot-pressed silicon nitride due to oxidation. Scripta Metallurgica et Materialia, 26 (1992) pp. 1263–1268. C. Chu J. Korous, M. Nakatani, K. Ando. Crack healing behavior of silicon carbide ceramics. J. Am. Ceram. Soc. 83, (2000), 2788– 2792. . K. Houjou, K. Ando, S. P. Liu, S. Sato. Crack-healing and oxidation behavior of silicon nitride ceramics. 2329–2338.  K. Ando, K. Furusawa, K. Takahashi, S. Sato. Crack-healing ability of structural ceramics and a new methodology to guarantee the structural integrity using the ability and proof-test.
From the discussions presented above, it is clear that quaternary intermetallics formation in the Al-Fe-Mn-Si system, for the range of compositions studied in this work, is preceded by the formation of ternary intermetallic phases whose stoichiometry was earlier established. As the Fe and Mn concentrations in these intermetallics increase as a result of solute enrichment by diffusion, the quaternary stoichiometry is acquired, providing that quaternary intermetallics are thermodynamically stable phases.
Acknowledgements The authors wish to express their gratitude to the Nagaoka University of Technology, the 21st Century Centers of Excellence (COE) Program of the Ministry of Education, Culture, Sports, Science and Technology of Japan, Grant-In-Aid for Scientific Researches by Japan Society for the Promotion of Science and CONACyT-Mexico for partially supporting this work. References  W. Nakao, M. Ono, S. K. Lee, K. Takahashi, K. Ando. Critical crack-healing condition for SiC whisker reinforced alumina under stress.