Extracting dislocations and non-dislocation crystal defects from atomistic simulation data

Извлечение дислокаций и недислокационных кристаллических дефектов из данных атомистического моделирования
Alexander Stukowski, Karsten Albe
2010-09-30

Burgers vectorsatomistic simulation datadislocation extraction algorithm (DXA)dislocation networkstriangulated crystal defect surfaces
We describe a novel method for extracting dislocation lines from atomistic simulation data in a fully automated way. The dislocation extraction algorithm (DXA) generates a geometric description of dislocation lines contained in an arbitrary crystalline model structure. Burgers vectors are determined reliably, and the extracted dislocation network fulfills the Burgers vector conservation rule at each node. All remaining crystal defects (grain boundaries, surfaces, etc), which cannot be represented by one-dimensional dislocation lines, are output as triangulated surfaces. This geometric representation is ideal for visualization of complex defect structures, even if they are not related to dislocation activity. In contrast to the recently proposed on-the-fly dislocation detection algorithm (ODDA) Stukowski ( 2010 Modelling Simul. Mater. Sci. Eng. 18 015012 ) the new method is extremely robust. While the ODDA was designed for a computationally efficient on-the-fly analysis, the DXA method enables a detailed analysis of dislocation lines even in highly distorted crystal regions, as they occur, for instance, close to grain boundaries or in dense dislocation networks.
1
Compared with the on-the-fly dislocation detection algorithm (ODDA), DXA is more robust for analyzing highly distorted regions and dense dislocation networks, though less focused on computational efficiency.
2
Crystal defects not representable as dislocation lines, including grain boundaries and surfaces, are extracted as triangulated surfaces.
3
DXA reliably determines Burgers vectors and produces dislocation networks that satisfy Burgers vector conservation at every node.
4
The dislocation extraction algorithm (DXA) automatically generates geometric descriptions of dislocation lines from arbitrary atomistic crystal structures.
5
The resulting geometric representation supports visualization of complex defect structures, including defects unrelated to dislocation activity.

dislocation lines and non-dislocation crystal defects in atomistic simulation data

automated extraction and geometric characterization of dislocation networks and remaining crystal defects, including reliable Burgers vectors and defect-surface representations, in highly distorted crystal regions

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2010-09-30
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Alexander Stukowski
Karsten Albe
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