Generalized stacking fault energy surfaces and dislocation properties of aluminum
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چکیده
We have employed the semidiscrete variational generalized Peierls-Nabarro model to study the dislocation core properties of aluminum. The generalized stacking fault energy surfaces entering the model are calculated by using first-principles Density Functional Theory (DFT) with pseudopotentials and the embedded atom method (EAM). Various core properties, including the core width, splitting behavior, energetics and Peierls stress for different dislocations have been investigated. The correlation between the core energetics and dislocation character has been explored. Our results reveal a simple relationship between the Peierls stress and the ratio between the core width and atomic spacing. The dependence of the core properties on the two methods for calculating the total energy (DFT vs. EAM) has been examined. The EAM can give gross trends for various dislocation properties but fails to predict the
منابع مشابه
Generalized-stacking-fault energy surface and dislocation properties of aluminum
We have employed the semidiscrete variational generalized Peierls-Nabarro model to study the dislocation properties of aluminum. The generalized-stacking-fault ~GSF! energy surface entering the model is calculated by using first-principles density functional theory ~DFT! and the embedded-atom method ~EAM!. Various core properties, including the core width, dissociation behavior, energetics, and...
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تاریخ انتشار 1999