材料力学与Hussein Zbib:对他的记忆的致敬

IF 1.5 4区 材料科学 Q3 ENGINEERING, MECHANICAL
E. Aifantis
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引用次数: 0

摘要

材料力学和工程科学的一些新趋势可以追溯到密歇根理工大学的Hussein Zbib博士工作。特别是,剪切带和塑性不稳定性的主题找到了一个新的基础和方向,促使杰出的研究人员——科尔曼、巴特拉、弗莱克和哈钦森、埃斯特林和库宾、穆尔豪斯和瓦杜拉基斯、富田和德博尔斯特、扎伊尔和哈纳(更不用说他在研究生时接触过的一些人),Polizzotto,以及最近K.Aifantis/J。Willis和M.Gurtin/L。Anand——将注意力转向梯度塑性,并在这一领域做出自己的巨大贡献。本文首先简要介绍了我很高兴与他分享的关于梯度力学理论及其对应变局部化和尺寸效应问题的影响的初步尝试。然后,它继续简要阐述了他的“科学家族”与他并行或稍后讨论的话题。最后,它以我在他在密歇根理工大学(MTU)博士后期间和他在华盛顿州立大学(WSU)担任教员和主席期间与他讨论的想法的草图结束,不幸的是,他没有时间详细阐述这些想法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Material Mechanics & Hussein Zbib: A Tribute to His Memory
A number of new trends in material mechanics and engineering science can be traced back to the PhD work of Hussein Zbib at Michigan Technological University. In particular, the topics of shear bands and plastic instabilities found a new basis and direction, prompting distinguished researchers – of the caliber of Coleman, Batra, Fleck and Hutchinson, Estrin and Kubin, Muhlhaus and Vardoulakis, Tomita and de Borst, Zaiser and Hahner (to mention a few that he interacted with as a graduate student), as well as of Belytschko, Steinmann, Voyiadjis, Polizzotto, and more recently of K. Aifantis/J. Willis and M. Gurtin/L. Anand – to turn their attention to gradient plasticity and make their own monumental contributions in this field. This article first provides a brief account of the initial attempts, I had the joy to share with him, on gradient mechanics theory and its implications to the problems of strain localization and size effects. It then continues with a brief exposition of topics that his “scientific family” has taken up in parallel with him or later on. Finally, it concludes with a sketch of ideas I discussed with him during his post-doctoral period at Michigan Tech (MTU) and his tenure period as a faculty member and Chairman at Washington State (WSU) which, unfortunately, he did not have the time to elaborate upon.
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来源期刊
CiteScore
3.00
自引率
0.00%
发文量
30
审稿时长
4.5 months
期刊介绍: Multiscale characterization, modeling, and experiments; High-temperature creep, fatigue, and fracture; Elastic-plastic behavior; Environmental effects on material response, constitutive relations, materials processing, and microstructure mechanical property relationships
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