随机增强介质力学特性的统计方法

IF 4.03
Mikhail Tashkinov
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引用次数: 7

摘要

具有异质微观结构的先进材料由于其独特的性能和创造最适合每种特定应用的材料的能力,引起了研究人员和工程师的广泛兴趣。其中一项具有挑战性的任务是开发此类材料的力学行为模型,因为所获得的数值结果的精度高度依赖于对其非均质微观结构特征的考虑程度。在大多数情况下,复合材料结构的数值模拟是基于多尺度方法,需要特殊的技术来建立不同尺度参数之间的联系。这项工作提供了一个回顾的统计和概率论的工具,用于力学表征异质介质与随机位置的加强。这些统计描述符涉及到评估微观结构成分之间的相关性,并且是机械理论的一部分,需要对微观结构形态的信息进行形式化。特别地,本文讨论了统计工具在几何描述和介质重建中的应用,以及它们在均匀化方法和局部随机应力应变场分析中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Statistical methods for mechanical characterization of randomly reinforced media

Statistical methods for mechanical characterization of randomly reinforced media

Advanced materials with heterogeneous microstructure attract extensive interest of researchers and engineers due to combination of unique properties and ability to create materials that are most suitable for each specific application. One of the challenging tasks is development of models of mechanical behavior for such materials since precision of the obtained numerical results highly depends on level of consideration of features of their heterogeneous microstructure. In most cases, numerical modeling of composite structures is based on multiscale approaches that require special techniques for establishing connection between parameters at different scales. This work offers a review of instruments of the statistics and the probability theory that are used for mechanical characterization of heterogeneous media with random positions of reinforcements. Such statistical descriptors are involved in assessment of correlations between the microstructural components and are parts of mechanical theories which require formalization of the information about microstructural morphology. Particularly, the paper addresses application of the instruments of statistics for geometry description and media reconstruction as well as their utilization in homogenization methods and local stochastic stress and strain field analysis.

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