Special Issue on Multiscale Modeling and Simulation of Physical Phenomena of Material Systems

James Chen, James D. Lee, Xianqiao Wang
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引用次数: 1

Abstract

Complex material systems, especially at small scales, require the marriage of advancements of theoretical studies, exploitations of computational methods, and nontraditional experimental validations to unveil their underpinning mechanisms. The advent of superior synthesis techniques coupled with ever-increasing computational powers has enabled concerted effort toward design and development of materials with impressive functional characteristics. This special issue centers on the recent research advances in computational modeling, theoretical analysis, and experimental characterization of material systems at the nano/micro scale. This special issue contains five technical papers in the studies of nanomaterials, microcracks, and biostructure imaging.
材料系统物理现象的多尺度建模与仿真特刊
复杂的材料系统,特别是在小尺度下,需要理论研究的进步、计算方法的开发和非传统实验验证的结合,以揭示其基础机制。先进的合成技术的出现,加上不断增长的计算能力,使人们能够齐心协力地设计和开发具有令人印象深刻的功能特性的材料。本期特刊集中介绍了纳米/微米尺度下材料系统的计算建模、理论分析和实验表征方面的最新研究进展。此特刊包含五篇纳米材料、微裂纹和生物结构成像研究的技术论文。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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