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Simplified Braiding through Integration Points Model for Triaxially Braided Composites
Authors:Jingyun Cheng  Wieslaw K Binienda
Affiliation:1Graduate Student, Dept. of Civil Engineering, The Univ. of Akron, Akron, OH 44325.
2Professor, Dept. of Civil Engineering, The Univ. of Akron, Akron OH 44325.
Abstract:A simplified methodology has been developed for modeling two-dimensional triaxially braided composite plates impacted by a soft projectile using an explicit nonlinear finite-element analysis code LS-DYNA. The fiber preform architecture is modeled using shell elements by incorporating the fiber preform architecture at the level of integration points. The soft projectile was modeled by an equation of state. An arbitrary Lagrangian–Eulerian formulation is used to resolve numerical problems caused by large deformation of the projectile. The computed results indicate that this numerical model is able to simulate a triaxially braided composite undergoing a ballistic impact effectively and accurately, including the deformation and failure with a reasonable level of computational efficiency.
Keywords:Polymers  Composite materials  Plates  Finite element method  Deformation  
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