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The Haasen model of dislocation generation has been improved by projection of the mechanical stresses on the glide planes.
To explain this acceleration, a model of dislocation diffusion is proposed.
A simple model of dislocation includes interactions with solute atoms, through local segregation energy and long range elastic fields.
We present a physics-based constitutive model of dislocation glide in metals that explicitly accounts for the redistribution of dislocations due to their motion.
Microstructure of α-Al2O3 containing Al-based composites were studied in terms of ab initio quasi-composite model of dislocation cell structure and ellipsoidal log-normal distribution of crystallite size.
In order to determine which region is the major source of the dislocations which will be present in an LEC grown InP single crystal, a model of dislocation generation in InP has been designed and numerically solved in the actual growth parameters and geometry.
Similar(54)
The proposed 3-dimensional Phase Field model of dislocations does not impose a priori constraints on possible dislocation structures or their evolution paths.
In phase field model of dislocations, the short-range, non-linear core core interactions are characterized through the crystalline energy and the gradient energy.
Dislocation dynamics near a free surface and in heteroepitaxial thin films are simulated using an extended version of the nanoscale Phase Field Microelasticity model of dislocations [Acta Mater. 49 (2001 1847]].
The phase field model of dislocations has been used to study the propagation of dislocation ribbons with an overall Burgers vector of a〈1 1 2〉 through a simulated Ni-base superalloy.
These dislocations dissociate in a manner that is consistent with predictions made using the phase-field model of dislocations and also suggests the importance of the reordering process during their movement.
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