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A finite element-based micromechanical modeling for fibrous materials is introduced for investigation of thermoelastic behavior of continuous fiber composites with fiber waviness. A periodic unit cell based on hexagonal fiber packing is assumed as a representative volume element. The orthotropic stiffness and thermal expansion parameters of the wavy fiber material are predicted by volume averaging...
Numerical solutions obtained by the meshless local Petrov-Galerkin (MLPG) method are presented for 2D functionally graded solids, which is subjected to either mechanical or thermal loads. The MLPG method is a truly meshless approach, as it does not need any background mesh for integration in the weak form. In this MLPG analysis, the penalty method is used to efficiently enforce the essential boundary...
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