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High Thermal Conductivity Silicon Nitride Ceramic

Published online by Cambridge University Press:  31 January 2011

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Since the confirmation that nonmetallic single crystals with a diamond-like structure, such as SiC, BP, and AlN, have high intrinsic thermal conductivities of over 300 W m−1 K−1,1,2 a great deal of effort has been focused on the development of nonoxide polycrystalline ceramics with high thermal conductivity.

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Research Article
Copyright
Copyright © Materials Research Society 2001

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References

1Slack, G.A.J. Phys. Chem. Solids 34 (1973) p.321.CrossRefGoogle Scholar
2Slack, G.A.Tanzilli, R.A.Pohl, R.O. and Vandersande, J.W., J. Phys. Chem. Solids 48 (1987) p.641.CrossRefGoogle Scholar
3Tani, E.Umebayashi, S.Kishi, K.Kobayashi, K. and Nishijima, M.Am. Ceram. Soc. Bull. 65 (1986) p.1311.Google Scholar
4Li, C.W. and Yamanis, J., Ceram. Eng. Sci. Proc. 10 (1989) p.632.CrossRefGoogle Scholar
5Becher, P.F.J.Am. Ceram. Soc. 74 (1991) p.255.CrossRefGoogle Scholar
6Hirao, K.Watari, K.Brito, M.E.Toriyama, M. and Kanzaki, S.J. Am. Ceram. Soc. 79 (1996) p.2485.CrossRefGoogle Scholar
7Hirosaki, N.Okamoto, Y.Ando, M.Munakata, F., and Akimune, Y.J. Am. Ceram. Soc. 79 (1996) p.2878.CrossRefGoogle Scholar
8Watari, K.Hirao, K.Toriyama, M. and Ishizaki, K., J.Am. Ceram. Soc. 82 (1999) p.777.CrossRefGoogle Scholar
9Hirosaki, N.Okamoto, Y.Munakata, F. and Akimune, Y.J.Eur. Ceram. Soc. 19 (1999) p.2183.CrossRefGoogle Scholar
10Haggerty, J.S. and Lightfoot, A.Ceram. Eng. Sci. Proc. 16 (1995) p.475.CrossRefGoogle Scholar
11Prochazka, S. and Charles, R.J.Am. Ceram. Soc. Bull. 52 (1973) p.885.Google Scholar
12Takeda, Y.Usami, K.Nakamura, K.Ogihara, S.Maeda, K.Miyoshi, T.Shinozaki, S. and Ura, M.Advances in Ceramics, Vol.7, edited by Yan, M.F. and Heuer, A.H. (American Ceramic Society, Columbus, OH, 1984) p.253.Google Scholar
13Padture, N.P.J. Am. Ceram. Soc. 77 (1994) p.519.CrossRefGoogle Scholar
14Lange, F.F.J. Am. Ceram. Soc. 62 (1979) p.428.CrossRefGoogle Scholar
15Hwang, C.M.Tien, T.Y. and Chen, I.-W. in Proc. Sintering '87, edited by Somiya, S.Shimada, M.Yoshimura, M. and Watanabe, R. (Elsevier Applied Science Publishers, Essex, 1988) p.1034.Google Scholar
16Virkar, A.V.Jackson, T.B. and Cutler, R.A.J.Am. Ceram. Soc. 72 (1989) p.2031.CrossRefGoogle Scholar
17Lee, R.R.J.Am. Ceram. Soc. 74 (1991) p.2242.CrossRefGoogle Scholar
18Jackson, T.B.Virl, A.V.More, K.L.Dinwiddie, R.B. Jr, and Cutler, R.A.J. Am. Ceram. Soc. 80 (1997) p.1421.CrossRefGoogle Scholar
19Watari, K.Hwang, H.J.Toriyama, M. and Kanzaki, S., J.Mater. Res. 14 (1999) p.1409.CrossRefGoogle Scholar
20Watari, K.Seki, Y. and Ishizaki, K.J. Ceram. Soc. Jpn. 97 (1989) p.56.CrossRefGoogle Scholar
21Kitayama, M.Hirao, K.Tsuge, A.Toriyama, M. and Kanzaki, S.J.Am. Ceram. Soc. 82 (1999) p.3263.CrossRefGoogle Scholar
22Kitayama, M.Hirao, K.Tsuge, A.Watari, K.Toriyama, M. and Kanzaki, S.J.Am. Ceram. Soc. 83 (2000) p.1985.CrossRefGoogle Scholar
23Kitayama, M.Hirao, K.Watari, K.Toriyama, M. and Kanzaki, S.J.Am. Ceram. Soc. 84 (2001) p.353.CrossRefGoogle Scholar
24Hayashi, H.Kitayama, M.Hirao, K.Yamauchi, Y. and Kanzaki, S. submitted to J. Am. Ceram. Soc.Google Scholar
25Kingery, W.D.J. Am. Ceram. Soc. 42 (1959) p.617.CrossRefGoogle Scholar
26Buhr, H. and Müller, G., J.Eur. Ceram. Soc. 12 (1993) p.271.CrossRefGoogle Scholar
27Kim, W.-J.Kim, D.K. and Kim, C.H.J. Am. Ceram. Soc. 79 (1996) p.1066.CrossRefGoogle Scholar
28Kleebe, H.-J.Cinibulk, M.K.Cannon, R.M. and Rühle, M., J.Am. Ceram. Soc. 76 (1993) p.1969.CrossRefGoogle Scholar
29Wiener, O.Phys. Z. 5 (1904) p.332.Google Scholar
30Kitayama, M.Hirao, K.Watari, K.Toriyama, M. and Kanzaki, S.J.Am. Ceram. Soc. 82 (1999) p.3105.CrossRefGoogle Scholar
31Li, B.Pottier, L.Roger, J.P.Fournier, D.Watari, K. and Hirao, K.J. Eur. Ceram. Soc. 19 (1999) p.1631.CrossRefGoogle Scholar
32Hirao, K.Ohashi, M.Brito, M.E. and Kanzaki, S.J.Am. Ceram. Soc. 78 (1995) p.1687.CrossRefGoogle Scholar
33Watari, K.Hirao, K.Brito, M.E.Toriyama, M. and Kanzaki, S.J. Mater. Res. 14 (1999) p. 1538.CrossRefGoogle Scholar
34Hirosaki, N.Ando, M.Okamoto, Y.Munakata, F.Akimune, Y.Hirao, K.Watari, K.Brito, M.E.Toriyama, M. and Kanzaki, S.J.Ceram. Soc. Jpn. 104 (1996) p.1171.CrossRefGoogle Scholar
35Teshima, H.Hirao, K.Toriyama, M. and Kanzaki, S., J.Ceram. Soc. Jpn. 107 (1999) p.1216.CrossRefGoogle Scholar
36Petzow, G. and Hoffmann, M.J.Mater. Sci. Forum 113–115 (1993) p.91.CrossRefGoogle Scholar
37Dressler, W.Kleebe, H.-J.Hoffmann, M.J.Rühle, M., and Petzow, G.J. Eur. Ceram. Soc. 16 (1996) p.3.CrossRefGoogle Scholar
38Emoto, H. and Mitomo, M.J. Eur. Ceram. Soc. 17 (1997) p.797.CrossRefGoogle Scholar
39Buhr, H.Müller, G., Wiggers, H.Aldinger, F.Foley, P. and Roosen, A.J. Am. Ceram. Soc. 74 (1991) p.718.CrossRefGoogle Scholar