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作 者:Qiang Du
机构地区:[1]SINTEF Industry,Oslo,Norway
出 处:《Materials Genome Engineering Advances》2024年第2期20-24,共5页材料基因工程前沿(英文)
基 金:funded by the SFI PhysMet“Center for sustainable and competitive metallurgical and manufacturing industry”with support from the Research Council of Norway and the industrial partners under the grant number of 309584/F40.
摘 要:Understanding microstructural evolution occupies a central position in the discipline of materials science and engineering.As stated by Carter et al.,microstructural evolution involves complex,coupled,and often nonlinear processes even the description of the dynamics for isolated microstructural evolution processes can be quite complicated.It would be desirable to enrich the microstructural evolution theory by introducing a powerful mathematical tool,which could enable describing and predicting the rich intertwining phenomena such as diffusive or displacive phase transformation,grain growth,generation,or annihilation of defects(vacancy,dislocations,etc.)in a straightforward manner.There have been continuing efforts along this front,and I will restrict myself to the issues in the development and application of the thermodynamic variational principle.Although being reviewed by various authors recently,we hope to redraw attentions to some valuable papers and provide our understanding and viewpoints.It is our opinion that the most appealing feature about the principle is the nature that it could give approximate solutions with tunable accuracy.The other feature is its role as a basic principle in deriving the new models.It is hoped that this paper could promote the development and application of the variational principle even further in materials science.
关 键 词:microstructure modeling phase transformation thermodynamic variational principle
分 类 号:TB3[一般工业技术—材料科学与工程] TP3[自动化与计算机技术—计算机科学与技术]
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