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首页> 外文期刊>Journal of Composite Materials >Influence of void microstructure on the effective elastic properties of discontinuous fiber-reinforced composites
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Influence of void microstructure on the effective elastic properties of discontinuous fiber-reinforced composites

机译:空隙微观结构对不连续纤维增强复合材料有效弹性的影响

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摘要

This study investigates the influence of void microstructure on the effective elastic properties of high fiber volume fraction discontinuous fiber-reinforced composites with randomly oriented fibers. A void microstructure is characterized by using parameters such as the number of voids, void volume fraction, void Aspect Ratio and void size distribution. In order to overcome the difficulties associated with the creation of high fiber volume fraction representative volume element models containing voids, a novel automation program called ArtiComp is developed. This program is used to generate representative volume element models of discontinuous fiber-reinforced composites containing randomly oriented straight fibers, curved fibers and spheroidal voids. The effective properties of discontinuous fiber-reinforced composites are computed using a finite element-based micromechanics approach. For comparison, the Mori-Tanaka method is used to compute the effective properties of unidirectional discontinuous fiber-reinforced composites and then orientation averaging is performed on these properties to obtain the effective properties of discontinuous fiber-reinforced composites with randomly oriented fibers. The comparison shows that the finite element predicted properties are stiffer than the analytically predicted properties. The results indicate that the finite element predicted properties are dependent on the number of voids used to represent the void volume. It is seen that the effective properties significantly decrease when void volume fraction is increased. The void Aspect Ratio and void size distribution are found to have a negligible influence on the effective properties. Finally, it is observed that straight fiber composites with voids perform better than the corresponding curved fiber composites with voids.
机译:这项研究调查了空隙微观结构对具有随机取向纤维的高纤维体积分数不连续纤维增强复合材料有效弹性性能的影响。空隙微结构的特征在于使用诸如空隙数,空隙体积分数,空隙纵横比和空隙尺寸分布之类的参数。为了克服与创建包含空隙的高纤维体积分数代表体积元素模型相关的困难,开发了一种称为ArtiComp的新型自动化程序。该程序用于生成不连续的纤维增强复合材料的代表性体积元模型,该复合材料包含随机定向的直纤维,弯曲纤维和球状空隙。使用基于有限元的微力学方法计算不连续纤维增强复合材料的有效性能。为了进行比较,使用Mori-Tanaka方法计算单向不连续纤维增强复合材料的有效性能,然后对这些性能进行平均,以获得具有随机取向纤维的不连续纤维增强复合材料的有效性能。比较表明,有限元预测属性比解析预测属性要硬。结果表明,有限元预测的属性取决于用来表示空隙体积的空隙的数量。可以看出,当空隙体积分数增加时,有效性能显着下降。发现空隙纵横比和空隙尺寸分布对有效性能的影响可以忽略不计。最后,观察到具有空隙的直纤维复合材料的性能优于相应的具有空隙的弯曲纤维复合材料。

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