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A general micromechanical framework of effective moduli for the design of nonspherical nano- and micro-particle reinforced composites with interface properties

机译:有效模量的通用微机械框架,用于设计具有界面性质的非球形纳米和微粒增强复合材料

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The morphological and physical properties of interfaces can significantly affect the overall mechanical properties of nano- and micro-particle reinforced composites. In this work, we devise a general micromechanical framework to predict the effective elastic moduli of particle-reinforced composites containing ellipsoidal nano or micro-particles with varying interface properties (e.g., both hard and soft). Specifically, the interface is treated as an interphase perfectly bonding the particle and matrix with a finite thickness and volume fraction. The morphological characteristics of the interface (e.g., volume fraction) are quantified using a statistical geometry approach and subsequently incorporated into the Mori-Tanaka average scheme with Eshelby's equivalent inclusion theory to derive the general micromechanical framework for the three-phase composites with non spherical inclusions. We show that our new framework leads to predictions of the elastic moduli of a wide spectrtun of nano- and micro-particle reinforced composites with both soft and hard interfaces to a reasonable accuracy by comparing with available experimental data and predictions from other theoretical frameworks. The general framework provides a robust and convenient predictive toolkit for composite design and evaluation.
机译:界面的形态和物理性能会显着影响纳米和微粒增强复合材料的整体机械性能。在这项工作中,我们设计了一个通用的微机械框架来预测包含界面性质不同(例如硬和软)的椭圆形纳米或微粒的颗粒增强复合材料的有效弹性模量。具体而言,界面被视为中间相,完美地结合了具有有限厚度和体积分数的粒子和基质。使用统计几何方法量化界面的形态特征(例如,体积分数),然后通过埃舍尔比的等效夹杂理论将其结合到Mori-Tanaka平均方案中,以得出非球形夹杂物的三相复合材料的一般微机械框架。 。通过与现有的实验数据和其他理论框架的预测相比较,我们证明了我们的新框架可以预测具有软界面和硬界面的纳米和微粒增强复合材料的广谱弹性模量,并具有合理的精度。通用框架为组合设计和评估提供了强大而便捷的预测工具包。

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