Dislocation Dynamics: Short-time Existence and Uniqueness of the Solution

被引:0
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作者
Olivier Alvarez
Philippe Hoch
Yann Le Bouar
Régis Monneau
机构
[1] Université de Rouen,Laboratoure LMRS
[2] Service DCSA/SSEL,CEA/DAM lle de France
[3] CNRS/ONERA,Laboratoire d'Etude des Microstructures, (LEM)
[4] Cermics ENPC,undefined
关键词
Viscosity Solution; Comparison Principle; Jacobi Equation; Dislocation Line; Dislocation Dynamics;
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摘要
We study a mathematical model describing dislocation dynamics in crystals. We consider a single dislocation line moving in its slip plane. The normal velocity is given by the Peach-Koehler force created by the dislocation line itself. The mathematical model is an eikonal equation with a velocity which is a non-local quantity depending on the whole shape of the dislocation line. We study the special case where the dislocation line is assumed to be a graph or a closed loop. In the framework of discontinuous viscosity solutions for Hamilton–Jacobi equations, we prove the existence and uniqueness of a solution for small time. We also give physical explanations and a formal derivation of the mathematical model. Finally, we present numerical results based on a level-sets formulation of the problem. These results illustrate in particular the fact that there is no general inclusion principle for this model.
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页码:449 / 504
页数:55
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