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Microscopic Interlaminar Stress Analysis of CFRP Cross-Ply Laminate using a Homogenization Theory

机译:CFRP交叉层层压板的微观层间应力分析使用均质理论

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Microscopic stress distributions at an interlaminar area in a CFRP cross-ply laminate are analyzed three-dimensionally using a homogenization theory in order to investigate microscopic interaction between 0°- and 90°-plies. It is first shown that a cross-ply laminate has a point-symmetric internal structure on the assumption that each ply in the laminate has a square array of long fibers. Next, the point-symmetry is utilized to reduce the domain of homogenization analysis by half. Moreover, the substructure method is combined with the homogenization theory for reducing consumption of computational resources. The present method is then employed for analyzing stress distributions at an interlaminar area in a carbon fiber/epoxy cross-ply laminate under in-plane off-axis tensile loading. It is thus shown that microscopic shear stress significantly occurs at the interface between 0°- and 90°-plies. It is also shown that the microscopic interaction between two plies is observed only in the vicinity of the interface.
机译:使用均质化理论三维地分析CFRP交叉层层压板中的间片区域的微观应力分布,以研究0°至90°之间的微观相互作用。首先表明,横帘层压层具有点对称的内部结构,假设层压材料中的每个层具有长纤维的方形阵列。接下来,利用点对称性将均质化分析域减少一半。此外,子结构方法与用于减少计算资源消耗的均质化理论。然后采用本方法用于在面内脱轴拉伸载荷下分析碳纤维/环氧树脂交叉层层压板中的碳纤维/环氧树脂交叉层层压板的应力分布。因此表明,微观剪切应力显着发生在0°至90°之间的界面处。还表明,仅在界面附近观察到两层之间的微观相互作用。

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