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Effects of interphase material properties in unidirectional fibre reinforced composites

机译:单向纤维增强复合材料中相间材料性能的影响

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摘要

A three-dimensional (3D) micromechanical study has been performed in order to investigate local damage in unidirectional (UD) composite materials with epoxy resin under transverse tensile loading. In particular the effect of different mechanical properties of a 3D interphase within the hexagonal array RVE have been considered and effects of thermal residual stress arising during the curing process have been accounted for in this study. To examine the effect of interphase properties and residual stress on failure, a study based on the temperature-dependent properties of matrix and interphase and a stiffness degradation technique has been used for damage analysis of the unit cell subjected to mechanical loading. Results indicate a strong dependence of damage onset and its evolution from the different interphase properties within the RVE (representative volume element). Moreover, predicted mechanical properties, damage initiation and evolution are also clearly influenced by the presence of residual stress. Numerical results and experimental data (in the literature) have also shown an interesting agreement.
机译:为了研究在横向拉伸载荷下环氧树脂对单向(UD)复合材料的局部损伤,进行了三维(3D)微机械研究。尤其是,已考虑了六边形阵列RVE中3D间相的不同机械性能的影响,并且已考虑了固化过程中产生的热残余应力的影响。为了检查相间特性和残余应力对破坏的影响,基于基体和相间随温度变化的特性以及刚度降级技术的研究已用于对承受机械载荷的晶胞进行损伤分析。结果表明,损伤起因及其从RVE(代表体积元素)内不同的相间特性演变的强烈依赖性。此外,残余应力的存在也明显影响了预测的机械性能,损伤的产生和发展。数值结果和实验数据(文献中)也显示出有趣的一致性。

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