首页|Parameterization on formation free energy of dislocation loops up to 1100 K in bcc iron

Parameterization on formation free energy of dislocation loops up to 1100 K in bcc iron

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This work provides a simple analytical formula with a set of best-fit coefficients for evaluating formation free energies of prismatic dislocation loops as a function of temperature in body-centered-cubic iron. The parameterization is made based on the anisotropic elastic self-energies and corresponding non-linear core-energies of edge dislocations. The variation of these two energy terms with temperature is estimated by including temperature-dependent elastic stiffness tensors in the anisotropic elasticity calculation, and based on the stability of C15 clusters and dislocation loops, respectively. The new analytical formula explicitly contains temperature and is valid for temperatures up to 1100 K.(c) 2021 Karlsruhe Institute of Technology. Published by Elsevier B.V. All rights reserved.

IronDislocation loopsFormation free energyAnisotropic elasticityAnalytical formulaTEMPERATURE-DEPENDENCEINTERSTITIAL DEFECTSELASTIC-CONSTANTSALPHA-FEDYNAMICSCRYSTALLINETRANSITIONDIFFUSIONCLUSTERS

Gao, Jie、Gaganidze, Ermile、Aktaa, Jarir

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Karlsruhe Inst Technol KIT

2022

Journal of Nuclear Materials

Journal of Nuclear Materials

EISCI
ISSN:0022-3115
年,卷(期):2022.559
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