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Predicting thermal shape memory of crosslinked polymer networks from linear viscoelasticity
Authors:Julie Diani  Pierre Gilormini  Carole Frédy  Ingrid Rousseau
Institution:1. PIMM, CNRS, Arts et Métiers ParisTech, 151 bd de l’Hôpital, 75013 Paris, France;2. General Motors Company, Research & Development Center, 30500 Mound Rd., Warren, MI 48090-9055, USA
Abstract:The viscoelastic behavior of an amorphous shape memory polymer network and its dependence on time and temperature were measured by dynamic mechanical analysis. The resulting thermo-mechanical behavior was modeled and implemented in a commercial finite element code. The ability of the resulting thermomechanical model to simulate and, eventually, predict the shape storage and shape recovery of the material was evaluated against experimental shape memory thermomechanical torsion data in a large deformation regimen. The simulations showed excellent agreement with experimental shape memory thermomechanical cycle data. This demonstrates the dependence of the shape recovery on time and temperature. The results suggest that accurate predictions of the shape recovery of any amorphous polymer networks under any thermomechanical conditions combination solely depends on considering the material viscoelasticity and its time–temperature dependence.
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