首页> 外文期刊>International Journal of Fracture >Development of an image-based numerical model for predicting the microstructure-property relationship in alumina trihydrate (ATH) filled poly(methyl methacrylate) (PMMA)
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Development of an image-based numerical model for predicting the microstructure-property relationship in alumina trihydrate (ATH) filled poly(methyl methacrylate) (PMMA)

机译:基于图像的数值模型的研制预测氧化铝三水合物(ATH)填充聚(甲基丙烯酸甲酯)(PMMA)中的微观结构 - 性质关系

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Particulate composites are found in a wide range of applications. Their heterogeneous microstructure affects their bulk behavior and structural performance, however tools for predicting this important structure-property relationship are still lacking. In this study, a numerical method that can provide predictions of the mechanical response of a particulate polymeric matrix composite as a function of volume fraction and particle mean diameter is presented. The work is derived for an alumina trihydrate filled poly(methyl methacrylate) but the methodology is generic and can be used for any particulate composite. Representative Volume elements are determined through images obtained from scanning electron microscopy. The model takes into account the possibility of failure through interface debonding as well as cracks through the matrix. The model predictions for the modulus and fracture strength of the composites are validated through independent experiments on the composite. The numerical results are also used to qualitatively explain the trends measured regarding the fracture toughness of the composites. Compared to other literature on particulate composites, our study is the first to report accurate stress-strain distributions as well as fracture predictions whilst all the necessary model parameters defining the failure criteria are all derived through independent experiments. This paves the way for a relatively simple methodology for determining structure-property relationships in composites design, enabling smarter material utilization and optimal mechanical properties.
机译:在各种应用中发现颗粒状复合材料。它们的异质微观结构影响其散装行为和结构性能,但预测这种重要的结构性质关系的工具仍然缺乏。在该研究中,提出了一种可以提供作为体积分数和颗粒平均直径的颗粒聚合物基质复合物的机械响应的预测的数值方法。该作品衍生用于氧化铝三水合物填充聚(甲基丙烯酸甲酯),但方法是通用的,可用于任何颗粒复合材料。通过从扫描电子显微镜获得的图像确定代表性体积元素。该模型考虑了通过界面剥离和通过矩阵的裂缝失败的可能性。通过在复合材料上的独立实验验证复合材料的模量和裂缝强度的模型预测。数值结果也用于定性地解释关于复合材料的断裂韧性测量的趋势。与颗粒复合材料上的其他文献相比,我们的研究是第一个报告准确的应力 - 应变分布以及裂缝预测,而定义故障标准的所有必要的模型参数均通过独立实验来源。这为用于确定复合材料设计中的结构性质关系的相对简单的方法来铺平道路,从而实现更智能的材料利用和最佳机械性能。

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