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首页> 外文期刊>Computational Materials Science >Multiscale thermoelastic analysis of random heterogeneous materials Part I: Microstructure characterization and homogenization of material properties
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Multiscale thermoelastic analysis of random heterogeneous materials Part I: Microstructure characterization and homogenization of material properties

机译:随机异质材料的多尺度热弹性分析第一部分:材料特性的微观结构表征和均质化

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摘要

This study is concerned with the modeling of heterogeneous materials with random microstructure and understanding their thermomechanical properties. Realistic random microstructures are generated for computational analyses using random morphology description functions (RMDFs). The simulated microstructures closely resemble actual micrographs of random heterogeneous materials. It is possible to simulate a wide range of random microstructures using this method, including: (a) particles of irregular shapes and sizes embedded in a matrix phase and (b) interpenetrating phase composite microstructures in which each material phase forms an interconnected network. In this first part of the work, the simulated RMDF microstructures are characterized using statistical techniques and their homogenized material properties computed using the asymptotic expansion homogenization (AEH) method. The material properties thus obtained are compared with analytical homogenization schemes and experimental data for several different material combinations and constituent volume fractions.
机译:这项研究涉及具有随机微观结构的异质材料的建模,并了解它们的热机械性能。使用随机形态描述函数(RMDF)生成了用于计算分析的实际随机微结构。模拟的微观结构非常类似于随机异质材料的实际显微照片。使用这种方法可以模拟各种各样的随机微结构,包括:(a)嵌入基质相中的不规则形状和大小的颗粒,以及(b)互穿相复合微结构,其中每个材料相形成一个互连的网络。在这项工作的第一部分中,使用统计技术对模拟的RMDF微结构进行表征,并使用渐进膨胀均质化(AEH)方法计算其均质材料性能。将由此获得的材料性能与分析均质方案和几种不同材料组合和组成体积分数的实验数据进行比较。

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