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A micromechanical study and uncertainty quantification for effective properties of unidirectional fibre reinforced composites

机译:单向纤维增强复合材料有效性能的微力学研究和不确定性量化

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A micromechanical framework is proposed to investigate the effective mechanical properties of elastic two-phase composites with randomly dispersed inhomogeneities in the form of continuous fibres. In this study, an algorithm is developed to generate the microstructure of unidirectional fibre reinforced composite through a three dimensional AVE approach. Using this approach, both regular and random fibre distributions with both un-distorted and distorted cross sections are considered and then analysed using mathematical theory of homogenization to estimate the homogenized or effective material properties. Here, RVEs are modeled with random fibre distribution maintaining a fibre volume fraction of 0.6 but increasing the number of fibres gradually and also randomly varying their positions. Finally, the effect of the variation of local volume fraction is studied through master AVE using the moving window technique. The variation in the predicted elastic properties for the given volume fraction for the above-mentioned scenarios is compared with the experimental values. The study shows that results from RVE with more number of random fibres arrangement with geometric cross sectional variations approach the experimental values. However, there is a significant percentage difference in transverse shear moduli, G(23) and nu(23), of about 22% and 35%, respectively with respect to the experimental results for the scenarios with random fibre distribution. Further, about 16% difference in axial modulus E-1 is seen when the effects of local volume fractions are studied.
机译:提出了一个微力学框架来研究具有随机分散的不均匀性的连续纤维形式的弹性两相复合材料的有效力学性能。在这项研究中,开发了一种算法,通过三维AVE方法生成单向纤维增强复合材料的微观结构。使用这种方法,可以同时考虑具有未变形和变形横截面的规则和随机纤维分布,然后使用均质化的数学理论进行分析,以评估均质化或有效的材料性能。在这里,RVE是用随机纤维分布建模的,其纤维体积分数保持为0.6,但纤维数量逐渐增加,并且位置随机变化。最后,使用移动窗口技术通过主AVE研究了局部体积分数变化的影响。将上述情况下给定体积分数的预测弹性特性的变化与实验值进行比较。研究表明,RVE的结果是具有更多随机纤维排列且几何横截面变化的RVE接近实验值。但是,相对于具有随机纤维分布情况的实验结果,横向剪切模量G(23)和nu(23)的百分比差异显着,分别为22%和35%。此外,当研究局部体积分数的影响时,可以看到轴向模量E-1大约有16%的差异。

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