Effect of Stress on Spinodal Decomposition in Binary Alloys: Atomistic Modeling and Atom Probe Tomography - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Metallurgical and Materials Transactions A Année : 2022

Effect of Stress on Spinodal Decomposition in Binary Alloys: Atomistic Modeling and Atom Probe Tomography

Résumé

Abstract Self-organizing nanostructure evolution through spinodal decomposition is a critical phenomenon determining the properties of many materials. Here, we study the influence of stress on the morphology of the nanostructure in binary alloys using atomistic modeling and atom probe tomography. The atomistic modeling is based on the quasi-particle approach, and it is compared to quantitative three-dimensional (3-D) atom mapping results. It is found that the magnitude of the stress and the crystallographic direction of the applied stress directly affect the development of spinodal decomposition and the nanostructure morphology. The modulated nanostructure of the binary bcc alloy system is quantified by a characteristic wavelength, $$ \lambda $$ λ . From modeling the tensile stress effect on the A-35 at. pct B system, we find that $$ \lambda _{001}< \, \lambda _{111}< \, \lambda _{101}< \, \lambda _{112}$$ λ 001 < λ 111 < λ 101 < λ 112 and the same trend are observed in the experimental measurements on an Fe-35 at. pct Cr alloy. Furthermore, the effect of applied compressive and shear stress states differs from the effect of the applied tensile stress regarding morphological anisotropy.
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147 A. DAHLSTROM, F. DANOIX, P. HEDSTROM, J. ODQVIST, H. ZAPOLSKY EFFECT OF STRESS ON SPINODAL DECOMPOSITION IN BINARY ... Metallurgical and Materials Transactions A 53-1 (2021) pages 39-49.pdf (6.63 Mo) Télécharger le fichier
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hal-03855629 , version 1 (21-11-2022)

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Alexander Dahlström, Frederic Danoix, Peter Hedström, Joakim Odqvist, Héléna Zapolsky. Effect of Stress on Spinodal Decomposition in Binary Alloys: Atomistic Modeling and Atom Probe Tomography. Metallurgical and Materials Transactions A, 2022, 53 (1), pp.39-49. ⟨10.1007/s11661-021-06467-3⟩. ⟨hal-03855629⟩
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