Size Effect of Yielding of Particle-Reinforced Composites

Ruo Jing Zhang, Yan Liu
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Abstract

This paper illustrates how particle size affects the initial yield stress of particle-reinforced composites. A formulation in a closed form is presented to demonstrate the size effect of yielding of the composites. This paper also demonstrates that there is an upper bound and a lower bound for the size-dependent yield stress with the change of particle size. This means that decreasing particle size increases its yield stress up to an upper bound. Similarly, increasing particle size decrease its yield stress up to a lower bound. In this paper the asymptotic homogenization method is used in framework of the Cosserat elasticity. A virtual “unreinforced matrix” is introduced as a reference configuration. As a numerical example, the size effect of yielding of SiCp/Al is predicted.
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颗粒增强复合材料屈服的尺寸效应
本文阐述了颗粒尺寸如何影响颗粒增强复合材料的初始屈服应力。本文提出了一个封闭式公式,以证明复合材料屈服的尺寸效应。本文还证明,随着颗粒尺寸的变化,与尺寸相关的屈服应力存在上限和下限。这意味着,粒度减小会增加屈服应力,直至达到上限。同样,增大颗粒尺寸会减小其屈服应力,直至下限。本文在 Cosserat 弹性框架内使用了渐近均质化方法。引入了一个虚拟的 "未加固矩阵 "作为参考配置。以 SiCp/Al 为例,预测了其屈服的尺寸效应。
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