Reduction of thermal stresses by composition optimization of two-dimensional functionally graded materials

Author:

Nemat-Alla Mahmoud

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Computational Mechanics

Reference50 articles.

1. Noda, N., Tsuji, T.: Steady thermal stresses in a plate of functionally gradient material. In: FGM Forum Proc. 1st Int. Sym. on Functionally Gradient Materials, Sendai, Japan, pp. 339–344 (1991)

2. Arai, Y., Kobayashi, K., Tamura, M.: Elastic–plastic thermal stresses analysis for optimum design of FGM. In: FGM Forum Proc. Fourth National Sym. on Functionally Gradient Materials (FGM’91), Kawasaki, Japan, pp. 19–30 (1991)

3. Tang, X.F., Zhang, L.M., Zhang, Q.J., Yuan, R.Z. et al.: Design and structural control of PSZ-MO functionally gradient materials with thermal Relaxation. In: Holt, I.B. (ed.) Ceramic Transactions: Functionally Gradient Materials, 34, pp. 45–463. American Ceramic Society, Westerville (1993)

4. Noda N.: Thermal stresses intensity factor for functionally gradient plate with an edge crack. J. Thermal Stresses 20, 373–387 (1997)

5. Noda N., Nakai S., Tsuji T.: Thermal stresses in functionally graded material of particle-reinforce composite. JSME A 41(2), 178–184 (1998)

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