(1) Hill, R., The Mathematical Theory of Plasticity, Oxford, (1950).
(2) Hoffman, O., The Brittle Strength of Orthotropic Materials, JCM, Vol. 1, (1967), 200-206.
(3) Wu, E. M., Phenomenological Anisotropic Failure Criterion, Mehco of Comp. Materials, Vol. 2, (1974).
(4) Wu, E. M., and J. K. Scheublein,J.Laminate Strength-A direct characterization procedure, Composite Materials: Testing and Design (3rd Conf.), ASTM STP 546, (1974), 188-206.
(5) Zhou Cheng-ti and R. M. Jones, Effective Application and Optimization of the Cubic Polynomial Failure Criterion Tech. Paper of ESM, VPI & SU, USA, (1982).
(6) Jones, R. M., Mechanics of Composite Materials, McGraw-Hill, (1975).
(7) Tennyson, R. C., D. MacDonald and A. P. Nanyara, Evaluation of the Tensor Polynomial Failure Criterion for Composite Materials, JCM, Vol. 12, 63, Jan. (1978).
(8) Tennyson, R. C., A. P. Nanyaro and G. E. Wharram, Application of the Cubic Polynomial Strength Criterion to the Failure Analysis of Composite Materials,JCM, Vol. 14, Supplement, (1980).
(9) Tsai, S. W. and E. M. Wu, A General Theory of Strength for Anisotropic Materials, JCM, vol. 5, 58, (1971).
(10) Azzi, V. D. and S. W. Tsai, Anisotropic Strength of Composites, Experimental Mechanics. Vol. 5, (1965), 283-288. |