Integrated Micromechanical-Structural Models for Long-term Behavior of FRP Composite Structures
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abstract
The nonlinear and long-term behavior of laminated composite materials and structures were analyzed using an integrated micromechanical-structure models. A simplified unit-cell with four fiber and matrix subcells, based on the method of cell (MOC) was used. A constraint of effective plane-stress was added to the nonlinear three-dimensional micromodel in the case of shell finite elements models. The results of micromechancial show the long-term creep response of laminated composites.