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非均质材料力学研究进展: 热点、焦点和生长点 ————- ICHMM2008的观察和启迪
引用本文:范镜泓,陈海波.非均质材料力学研究进展: 热点、焦点和生长点 ————- ICHMM2008的观察和启迪[J].力学进展,2011,41(5):615-636.
作者姓名:范镜泓  陈海波
作者单位:1.重庆大学
基金项目:国家自然科学基金项目(10975130)资助~~
摘    要:本文结合第二届国际非均质材料力学会议 (ICHMM2008,黄山)专题讨论会和部分特邀报告的情况, 以及2011年5月22$\sim$26日在上海崇明岛举行的ICHMM2011国际会议的内容, 对该领域的研究进展及其热点、焦点和生长点进行了综合性的评述. 重点讨论了多物理场与多尺度模拟、材料结构与力学行为从原子到连续介质的分析、随机微结构演化与退化、真实材料微结构的模拟、生物材料力学与仿生设计、在位实验和模型验证、功能梯度材料结构力学、微纳米功能器件开发等前沿性课题. 其中特别用较多的篇幅讨论了多物理场与多尺度模拟的背景、目标、必要性、现有方法的优缺点、障碍、应用例子与其他前沿研究领域的联系及其发展态势, 并阐述其研究焦点与值得注意的进展. 

关 键 词:在位实验
收稿时间:2010-09-28
修稿时间:2011-07-12

ADVANCES IN HETEROGENEOUS MATERIAL MECHANICS: CUTTING-EDGE AND GROWING POINTS ------ OBSERVATION AND INSPIRATION FROM ICHMM2008
FAN Jinghong ,CHEN Haibo , Kazuo Inamori School of Engineering,Alfred University,Alfred,New York,USA Research Center of Materials Mechanics,ChongQing University,Chongqing,China.ADVANCES IN HETEROGENEOUS MATERIAL MECHANICS: CUTTING-EDGE AND GROWING POINTS ------ OBSERVATION AND INSPIRATION FROM ICHMM2008[J].Advances in Mechanics,2011,41(5):615-636.
Authors:FAN Jinghong    CHEN Haibo  Kazuo Inamori School of Engineering  Alfred University  Alfred  New York    USA Research Center of Materials Mechanics  ChongQing University  Chongqing    China
Affiliation:FAN Jinghong 1,2,CHEN Haibo 3,1 Kazuo Inamori School of Engineering,Alfred University,Alfred,New York,14802,USA 2 Research Center of Materials Mechanics,ChongQing University,Chongqing,400044,China 3 Department of Modern Mechanics,University of Science and Technology of China,CAS Key Laboratory of Mechanical behavior and Design of Materials,Hefei,Anhui,230026,China
Abstract:This paper is a systematic review of the cutting-edge and growing points of the heterogeneous material mechanics. It includes not only the contents of presentations and discussions of the six special workshops held in the ICHMM-2008, but also includes the focuses of recent researches and their new achievements. Specifically, this paper discusses advances in the following aspects:Multiple physics and multiscale modeling, atomistic to continuum analyses of material structure and behavior, stochastic microstru...
Keywords:multiphysics  multiscale modeling  microstructure of material  bio-material  bio-inspired material design  in situ experiment  
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