Unifying Creep and Fatigue Modeling of Composites: A Time-Homogenized Micromechanical Framework with Viscoplasticity and Cohesive Damage
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Publisher
Elsevier BV
Reference52 articles.
1. From S-N to the Paris law with a new mixed-mode cohesive fatigue model for delamination in composites;C G D�vila;Theor Appl Fract Mech,2020
2. Competition between plasticity-controlled and crack-growth controlled failure in static and cyclic fatigue of thermoplastic polymer systems;Mjw Kanters;Polym Test,2016
3. Predicting long-term crack growth dominated static fatigue based on short-term cyclic testing;Mjw Kanters;Int J Fatigue,2018
4. Influence of geometrical parameters on the elastic response of unidirectional composite materials;A R Melro;Compos Struct,2012
5. Micromechanical validation of a mesomodel for plasticity in composites;F P Van Der Meer;Eur J Mech A Solids,2016
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