Solute diffusion calculation in Fe-Si and Fe-Cr-Si multicomponent alloys

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Miryashkin, Timofei, Novoselov, Ivan, Yanilkin, Alexey
Natura: Preprint
Pubblicazione: 2024
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866929575074725888
author Miryashkin, Timofei
Novoselov, Ivan
Yanilkin, Alexey
author_facet Miryashkin, Timofei
Novoselov, Ivan
Yanilkin, Alexey
contents Diffusion plays a key role in microstructure evolution at multicomponent alloys: diffusion controls the kinetics of phase transformations and alloy homogenization. This study aims at developing computationally efficient approaches to estimate the solute diffusion coefficients in two-component systems. We consider silicon as the solute example because it is highly used in industrial steels. We demonstrate that the silicon jump frequency may be calculated with the bond potential instead of the more computationally expensive machine learning potential in Fe-Si and Fe-Cr-Si alloys. We show that the silicon jump frequency can be estimated from thermodynamic simulations for the bond potential without kinetic simulations. The silicon correlation factor slightly depends on silicon concentration and can be approximately estimated by the analytical nine-frequency model.
format Preprint
id arxiv_https___arxiv_org_abs_2411_02053
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Solute diffusion calculation in Fe-Si and Fe-Cr-Si multicomponent alloys
Miryashkin, Timofei
Novoselov, Ivan
Yanilkin, Alexey
Materials Science
Computational Physics
Diffusion plays a key role in microstructure evolution at multicomponent alloys: diffusion controls the kinetics of phase transformations and alloy homogenization. This study aims at developing computationally efficient approaches to estimate the solute diffusion coefficients in two-component systems. We consider silicon as the solute example because it is highly used in industrial steels. We demonstrate that the silicon jump frequency may be calculated with the bond potential instead of the more computationally expensive machine learning potential in Fe-Si and Fe-Cr-Si alloys. We show that the silicon jump frequency can be estimated from thermodynamic simulations for the bond potential without kinetic simulations. The silicon correlation factor slightly depends on silicon concentration and can be approximately estimated by the analytical nine-frequency model.
title Solute diffusion calculation in Fe-Si and Fe-Cr-Si multicomponent alloys
topic Materials Science
Computational Physics
url https://arxiv.org/abs/2411.02053