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Finite element study on elastic transition in platelet reinforced composites

机译:血小板增强复合材料中弹性过渡的有限元研究

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摘要

In this study, An FEM model was developed based on the Galerkin method for analyzing elastic stress field in a platelet reinforced composite subjected to axial load. The end of platelets were bonded to the matrix and the unit cell method was utilized to model the composite. Special boundary conditions were applied to the unit cell model. The FEM model developed according the Galerkin method for composite unit cell and then MATLAB software was used for the calculation of displacements, forces, strains and stresses on nodes. The obtained numerical results were then validated using analytical 3D and shear-lag models and ANSYS results. Then, composite elastic modulus was obtained and the effects of platelet volume fraction and aspect ratio on composite elastic modulus, platelet and matrix axial stress and interface shear stress were investigated.
机译:在本研究中,基于Galerkin方法开发了一个有限元模型,用于分析对轴向载荷的血小板增强复合材料中的弹性应力场进行分析。 血小板结束与基质结合,并且使用单元电池方法来模拟复合材料。 将特殊边界条件应用于单位细胞模型。 根据复合单元电池的Galerkin方法开发的FEM模型,然后使用MATLAB软件用于计算节点上的位移,力,菌株和应力。 然后使用分析3D和剪切滞后模型和ANSYS结果验证获得的数值结果。 然后,研究了复合弹性模量,研究了血小板体积分数和纵横比对复合弹性模量,血小板和基质轴向应力和界面剪切应力的影响。

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