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可持续的多功能纳米涂层的设计:一种目标驱动的多尺度系统论方法(英文)
作者姓名:J. Xiao  Y.L. Huang
作者单位:Department of Chemical Engineering and Materials Science, Wayne State University, Detroit, MI 48202, USA
基金项目:Supported by NSF and the Institute of Manufacturing Research of Wayne State University
摘    要:Polymer nanocomposites have a great potential to be a dominant coating material in a wide range of applications in the automotive,aerospace,ship-making,construction,and pharmaceutical industries.However,how to realize design sustainability of this type of nanostructured materials and how to ensure the true optimality of the product quality and process performance in coating manufacturing remain as a mountaintop area.The major challenges arise from the intrinsic multiscale nature of the material-process-product system and the need to manipulate the high levels of complexity and uncertainty in design and manufacturing processes.In this work,the challenging objectives of sustainable design and manufacturing are simultaneously accomplished by resorting to multiscale systems theory and engineering sustainability principles.The principal idea is to achieve exceptional system performance through concurrent characterization and optimization of materials,product and associated manufacturing processes covering a wide range of length and time scales.Multiscale modeling and simulation techniques ranging from microscopic molecular modeling to classical continuum modeling are seamlessly coupled.The integration of different methods and theories at individual scales allows the quantitative prediction of macroscopic system performance from the fundamental molecular behavior.Furthermore,mathematically rigorous and methodologically viable approaches are pursued to achieve sustainability-goal-oriented design of material-process-product systems.The introduced methodology can greatly facilitate experimentalists in novel material invention and new knowledge discovery.At the same time,it can provide scientific guidance and reveal various new opportunities and effective strategies for achieving sustainable manufacturing.The methodological attractiveness will be fully demonstrated by a detailed case study on the design of thermoset nanocomposite coatings.

关 键 词:多尺度系统  最优设计  聚合物纳米复合材料  目标驱动  可持续发展目标  多功能  纳米复合涂料  多尺度建模
收稿时间:2010-7-5
修稿时间:2011-2-1  

Design of Sustainable Multifunctional Nanocoatings: A Goal-driven Multiscale Systems Approach
J. Xiao,Y.L. Huang.Design of Sustainable Multifunctional Nanocoatings: A Goal-driven Multiscale Systems Approach[J].Chinese Journal of Chemical Engineering,2011,19(4):666-673.
Authors:Jie Xiao  Yinlun Huang
Affiliation:Department of Chemical Engineering and Materials Science, Wayne State University, Detroit, MI 48202, USA
Abstract:Polymer nanocomposites have a great potential to be a dominant coating material in a wide range of applications in the automotive, aerospace, ship-making, construction, and pharmaceutical industries. However, how to realize design sustainability of this type of nanostructured materials and how to ensure the true optimality of the product quality and process performance in coating manufacturing remain as a mountaintop area. The major challenges arise from the intrinsic multiscale nature of the mate-rial-process-product system and the need to manipulate the high levels of complexity and uncertainty in design and manufacturing processes. In this work, the challenging objectives of sustainable design and manufacturing are simultaneously accomplished by re-sorting to multiscale systems theory and engineering sustainability principles. The principal idea is to achieve exceptional system performance through concurrent characterization and optimization of materials, product and associated manufacturing processes covering a wide range of length and time scales. Multiscale modeling and simulation techniques ranging from microscopic molecular modeling to classical continuum modeling are seamlessly coupled. The integration of different methods and theories at individual scales allows the quantitative prediction of macroscopic system performance from the fundamental molecular behavior. Furthermore, mathematically rigorous and methodologically viable approaches are pursued to achieve sustainability-goal-oriented design of mate-rial-process-product systems. The introduced methodology can greatly facilitate experimentalists in novel material invention and new knowledge discovery. At the same time, it can provide scientific guidance and reveal various new opportunities and effective strate-gies for achieving sustainable manufacturing. The methodological attractiveness will be fully demonstrated by a detailed case study on the design of thermoset nanocomposite coatings.
Keywords:sustainable design  multiscale modeling and simulation  polymer nanocomposites
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