The Rate (Time)-Dependent Mechanical Behavior of the PMR-15 Thermoset Polymer at 316°C: Experiments and Modeling

Author:

Ruggles-Wrenn M. B.1,Ozmen O.1

Affiliation:

1. Department of Aeronautics and Astronautics, Air Force Institute of Technology, Wright-Patterson Air Force Base, OH 45433-7765

Abstract

The inelastic deformation behavior of PMR-15 neat resin, a high-temperature thermoset polymer, was investigated at 316°C. The experimental program was designed to explore the influence of strain rate on tensile loading, unloading, and strain recovery behaviors. In addition, the effect of the prior strain rate on the relaxation response of the material, as well as on the creep behavior following strain-controlled loading were examined. Positive, nonlinear strain rate sensitivity is observed in monotonic loading. The material exhibits nonlinear, “curved” stress-strain behavior during unloading at all strain rates. The recovery of strain at zero stress is strongly influenced by the prior strain rate. The prior strain rate also has a profound effect on relaxation behavior. Likewise, creep response is significantly influenced by the prior strain rate. The experimental data are modeled with the viscoplasticity theory based on overstress (VBO). The comparison with experimental data demonstrates that the VBO successfully predicts the inelastic deformation behavior of the PMR-15 polymer under various test histories at 316°C.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference41 articles.

1. NASA/Glenn Research Center, 2005, “DMBZ Polyimides Provide an Alternative to PMR-15 for High-Temperature Applications.”

2. Nonlinear Viscoelastic Constitutive Model for Thermoset Polymers;Ellyin;ASME J. Eng. Mater. Technol.

3. Nonlinear Viscoelastic Solids;Schapery;Int. J. Solids Struct.

4. Free Volume Theory and Nonlinear Thermoviscoelasticity;Losi;Polym. Eng. Sci.

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