Stress intensification in a viscoelastic plate on a Winkler foundation and under a large thermal gradient

Author:

Elattary M. A.,Cozzarelli F. A.,Shaw R. P.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Computational Mechanics

Reference8 articles.

1. Szilard, R.: Theory and analysis of plates, classical and numerical methods. Englewood Cliffs, N.J.: Prentice-Hall Inc. 1974.

2. Shaw, R. P., Cozzarelli, F. A.: Linear viscoelastic nonisothermal lithospheric response to surface loading. Ninth U.S. National Congress of Applied Mechanics, Ithaca, N.Y., p. 138 (abstract), June 1982.

3. Schapery R. A.: Approximate method of transform inversion to viscoelastic stress analysis. Proc. Fourth U.S. National Congress of Applied Mechanics pp. 1075?1085, 1962.

4. Patel, S. A., Cozzarelli, F. A., Venkatraman, B.: Creep of compressible circular plates. Int. Jour. Mech. Sci.5, 77?85 (1963).

5. Cozzarelli, F. A.: Creep of circular plates with temperature gradients. Int. Jour. Mech. Sci.8, 321?331 (1966).

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1. Analytical solution for a viscoelastic plate on a Pasternak foundation;Road Materials and Pavement Design;2018-10-12

2. Application of eigenfunction expansion to elastic circular plates;Journal of Physics D: Applied Physics;1989-02-14

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