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Elastic-viscoplastic behavior of plain-woven GFRP laminates: Homogenization using a reduced domain of analysis

机译:普通编织GFRP层压板的弹粘塑性行为:使用减少的分析域进行均质化

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摘要

In this study, a method for reducing the domain of analysis is developed for the homogenization analysis of plain-woven laminates. To this end, it is first shown that the internal structures of plain-woven laminates satisfy point-symmetry on the assumption that the laminates have the in-phase or out-of-phase laminate configuration of plain fabrics. The point-symmetry is then utilized for the boundary condition of unit cell problems, reducing the domain of analysis to 1/4 and 1/8 for the in-phase and out-of-phase laminate configurations, respectively. Using the present method, the in-plane elastic-viscoplastic deformation of plain-woven GFRP laminates is analyzed based on the homogenization theory of nonlinear time-dependent composites. Moreover, the in-plane uniaxial tensile tests of a plain-woven GFRP laminate at a constant strain rate are performed at a room temperature. It is thus shown that the present analysis successfully predicts the in-plane elastic-viscoplastic behavior of plain-woven GFRP laminates. It is also shown that the laminate configurations of plain fabrics exert an influence on the viscoplastic behavior of laminates, not their elastic behavior.
机译:在这项研究中,为平纹织物层压板的均质化分析开发了一种减少分析范围的方法。为此,首先表明平纹织物层压材料的内部结构满足点对称性,前提是该层压材料具有平纹织物的同相或异相层压材料构造。然后将点对称性用于晶胞问题的边界条件,将同相和异相层压板配置的分析范围分别减小到1/4和1/8。使用本方法,基于非线性时变复合材料的均质化理论分析了平纹玻璃纤维复合材料层压板的面内粘塑性变形。此外,在室温下以恒定的应变速率对平面编织的GFRP层压板进行面内单轴拉伸试验。因此表明,本分析成功地预测了平纹GFRP层压板的面内弹性-粘塑性行为。还显示出,平纹织物的层压体构造对层压体的粘塑性行为而不是其弹性行为产生影响。

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