作者
Tilmann Hickel, Blazej Grabowski, Fritz Körmann, Jörg Neugebauer
发表日期
2011/12/9
期刊
Journal of Physics: Condensed Matter
卷号
24
期号
5
页码范围
053202
出版商
IOP Publishing
简介
The performance of materials such as steels, their high strength and formability, is based on an impressive variety of competing mechanisms on the microscopic/atomic scale (eg dislocation gliding, solid solution hardening, mechanical twinning or structural phase transformations). Whereas many of the currently available concepts to describe these mechanisms are based on empirical and experimental data, it becomes more and more apparent that further improvement of materials needs to be based on a more fundamental level. Recent progress for methods based on density functional theory (DFT) now makes the exploration of chemical trends, the determination of parameters for phenomenological models and the identification of new routes for the optimization of steel properties feasible. A major challenge in applying these methods to a true materials design is, however, the inclusion of temperature-driven effects …
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