Optimum material design for functionally gradient material plate

Author:

Obata Y.,Noda N.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering

Reference10 articles.

1. Hasselman, D. P. H.; Youngblood, G. E.: Enhanced thermal stress resistance of structural ceramics with thermal conductivity gradient. J. Am. Ceram. Soc. 61 (1978) 49–52

2. Koizumi, M.: The concept of FGM. In: Holt, J. B.; Koizumi, M.; Hirai, T.; Munir, Z. A. (eds.), Ceramic Transactions, Vol. 34, Functionally Gradient Materials, pp. 3–10. Westville: American Ceramic Society 1993

3. Ishikawa, T.: Thermal deformation and thermal stress of FGM plate under streadily gradient temperature field. In: Yamanouchi, M.; Koizumi, M.; Hirai, T.; Shiota, I. (eds.), Proc. of the First Int. Sym. on Functionally Gradient Materials, pp. 11–16, Tokyo: Functionally Gradient Materials Forum 1990

4. Noda, N.; Tsuji, T.: Steady thermal stresses in a plate of functionally gradient material. In: Yamanouchi, M.; Koizumi, M.; Hirai, T., Shiota, I. (eds.), Proc. of the First Int. Sym. on Functionally Gradient Materials, pp. 339–344. Tokyo: Functionally Gradient Material Forum 1990

5. Watanabe, R.; Kawasaki, A.; Murahashi, N.: Fabrication of a thermal-stress relief type of functionally gradient material in Molybdenum/Zirconia system. J. of the Assoc. of Mat. Eng. of Resources, 1 (1988) 36

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