OTRC Principal Investigator Publication Listing

Principal Investigator:

Richard Schapery

Journal Articles, Reports and Conference Papers

Bocchieri, R.T. and Schapery, R.A., “Nonlinear Viscoelastic Behavior of Rubber-Toughened Carbon and Glass/Epoxy Composites with Emphasis on Experimental Mathods,”ASTM STP, 1357, 2000 (in press).

Bocchieri, R.T. and Schapery, R.A., “Nonlinear Viscoelastic Constitutive Equations for Carbon/Epoxy Composites and their Correlation through Micromechanics,” Proc. 2nd Int. Conf. on Composite Materials for Offshore Operations, Houston, pp. 513-536, American Bureau of Shipping, 1999.

Schapery, R.A., “Nonlinear Viscoelastic and Viscoplastic  Constitutive Equations with Growing Damage”, International Journal of Fracture, 97, 33-66, 1999.

Schapery, R.A., and Park, S.W., “Methods of Interconversion Between Linear Viscoelastic Material Functions, Part I, Numerical Methods”, 1653-1675. “Part II, Analytical Method”, 1677-1699. International Journal Solids & Structures, 36, 1999.

Park, S.W. and Schapery, R.A., “Methods of Interconversion Between Linear Viscoelastic Material Functions. Part I - Numerical Method,” International Journal of Solids and Structures, 1998, pp. 1653-1675.

Park, S.W. and Schapery, R.A., “Methods of Interconversion Between Linear Viscoelastic Material Functions. Part II - Approximate Analytical Method,” International Journal of Solids and Structures, 1998, pp. 1677-1699.

Schapery, R.A., “Nonlinear Viscoelastic and Viscoplastic Constitutive Equations with Growing Damage,” International Journal of Fracture, accepted, 1998.

Schapery, R.A., “Constitutive Equations for Special Linear Viscoelastic Composites with Growing Damage,” University of Texas Report No. SSM-96-4, Proceedings of the Ninth International Conference on Fracture, Sydney, Australia, 3019-27, 1997.

Schapery, R.A., “Nonlinear Viscoelastic Constitutive Equations for Polymers and Polymeric Composites with Distributed Damage,” Proceedings of the Symposium on Inelasticity and Damage in Solids Subject to Microstructural Change, St. Johns, Newfoundland, 1997, pp. 143-153.

Schapery, R.A., “Nonlinear Viscoelastic and Viscoplastic Constitutive Equations Based on Thermodynamics,” Journal, Mechanics of Time Dependent Materials, 1, 209-240, 1997.

Davidson, B.D., Hu, H. and Schapery, R.A., “An Analytical Crack Tip Element for Layered Elastic Structures,” Journal of Applied Mechanics, 62, pp. 294-305, 1995.

Schapery, R.A. and Sicking, D.L., “On Nonlinear Constitutive Equations for Elastic and Viscoelastic Composites with Growing Damage,”  Proceedings of the 7th International Conference on Mechanical Behavior of Materials, pp. 45-76, 1995.

Schapery, R.A., “Characterization of Nonlinear, Time-dependent Polymers and Polymeric Composites for Durability Analysis, Proceedings of the International Conference on Progress in Durability Analysis of Composite Systems, Brussels, July, 1995, pp. 21-38.

Schapery, R.A. “Nonlinear Viscoelastic Constitutive Equations for Composites Based on Work Potentials. Twelfth U.S. National Congress of Applied Mechanics, 1994, pp. S269-275.

Theses and Dissertations

Bocchieri, R.T.,“A Baseline Nonlinear Material Characterization for Predicting the Long-term Durability of Composite Structures,The University of Texas at Austin, 1996. M.S. Thesis, NSF (OTRC) Rpt. CDR-8721512.

 

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