A Treatment of Internally Constrained Materials

Author:

Casey J.1

Affiliation:

1. Department of Mechanical Engineering, University of California at Berkeley, Berkeley, CA 94720-1740

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference18 articles.

1. Adkins, J. E., 1961, “Large Elastic Deformations,” Progress in Solid Mechanics, Vol. II, I. N. Sneddon and R. Hill, eds, North-Holland, Amsterdam, pp. 1–60.

2. Antman S. S. , and MarlowR. S., 1991, “Material Constraints, La-grange Multipliers, and Compatibility. Applications to Rod and Shell Theories,” Archive for Rational Mechanics and Analysis, Vol. 116, pp. 257–299.

3. Beatty M. F. , 1987, “Topics in Finite Elasticity: Hyperelasticity of Rubber, Elastomers, and Biological Tissues—With Examples,” ASME Applied Mechanics Reviews, Vol. 40, pp. 1699–1734.

4. Beatty M. F. , and HayesM. A., 1992, “Deformations of an Elastic, Internally Constrained Material. Part I: Homogeneous Deformations,” Journal of Elasticity, Vol. 29, pp. 1–84.

5. Carlson, D. E., and Tortorelli, D. A., 1994, “On Hyperelasticity with Internal Constraints,” Recent Advances in Engineering Science: Proceedings of the 31st Annual Technical Meeting of the Society of Engineering Science, Oct. 10–12, Texas A&M University, D. H. Allen and D. C. Lagoudas, eds.; abstract is missing; completed paper to appear in Journal of Elasticity.

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