Electronic Effects On Grain Boundary Structure In Bcc Metals


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Electronic Effects on Grain Boundary Structure in BCC Metals


Electronic Effects on Grain Boundary Structure in BCC Metals

Author:

language: en

Publisher:

Release Date: 1999


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The dominant factor in determining the atomic structure of grain boundaries is the crystal structure of the material, e.g. FCC vs. BCC. However, for a given crystal structure, the structure of grain boundaries can be influenced by electronic effects, i.e. by the element comprising the crystal. Understanding and modeling the influence of electronic structure on defect structures is a key ingredient for successful atomistic simulations of materials with more complicated crystal structures than FCC. We have found that grain boundary structure is a critical test for interatomic potentials. To that end, we have fabricated the identical [Sigma]5 (3l0)/[001] symmetric tilt grain boundary in three different BCC metals (Nb, MO, and Ta) by diffusion bonding precisely oriented single crystals. The structure of these boundaries have been determined by high resolution transmission electron microscopy. The boundaries have been found to have different atomic structures. The structures of these boundaries have been modeled with atomistic simulations using interatomic potentials incorporating angularly dependent interactions, such as those developed within Model Generalized Pseudopotential Theory. The differing structures of these boundaries can be understood in terms of the strength of the angular dependence of the interatomic interaction. We report here the results for Ta.

ERDA Energy Research Abstracts


ERDA Energy Research Abstracts

Author:

language: en

Publisher:

Release Date: 1983


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Materials Sciences Programs


Materials Sciences Programs

Author: United States. Department of Energy. Division of Materials Sciences

language: en

Publisher:

Release Date: 1991


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