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Mechanical properties of hybrid composites using finite element method based micromechanics

机译:基于有限元方法的混杂复合材料力学性能

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A micromechanical analysis of the representative volume element of a unidirectional hybrid composite is performed using finite element method. The fibers are assumed to be circular and packed in a hexagonal array. The effects of volume fractions of the two different fibers used and also their relative locations within the unit cell are studied. Analytical results are obtained for all the elastic constants. Modified Halpin-Tsai equations are proposed for predicting the transverse and shear moduli of hybrid composites. Variability in mechanical properties due to different locations of the two fibers for the same volume fractions was studied. It is found that the variability in elastic constants and longitudinal strength properties was negligible. However, there was significant variability in the transverse strength properties. The results for hybrid composites are compared with single fiber composites.
机译:使用有限元方法对单向混合复合材料的代表性体积元素进行了微机械分析。假定纤维是圆形的并且堆积成六边形阵列。研究了所使用的两种不同纤维的体积分数及其在单胞内的相对位置的影响。获得所有弹性常数的分析结果。提出了改进的Halpin-Tsai方程来预测混合复合材料的横向模量和剪切模量。研究了由于两种纤维在相同体积分数下位置不同而引起的机械性能差异。发现弹性常数和纵向强度性能的变化可以忽略不计。但是,横向强度特性存在很大的差异。将混合复合材料的结果与单纤维复合材料进行了比较。

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