Grain boundary diffusion and segregation of Cr in Ni Σ11(1̄13)[110] bicrystals: Decoding the role of grain boundary defects

Sevlikar S.V.; Muralikrishna G.M.; Gaertner D.; Starikov S.; Brink T.; Scheiber D.; Smirnova D.; Irmer D.; Tas B.; Esin V.A.; Razumovskiy V.I.; Liebscher C.H.; Wilde G.; Divinski S.V.

Research article (journal) | Peer reviewed

Abstract

Grain boundary diffusion of Cr in a near Σ11(1̄13)[110] Ni bicrystal is measured over a temperature interval between 503 K and 1203 K using the radiotracer technique. The grain boundary diffusion coefficients, Dgb, and the triple products, P=s⋅δ⋅Dgb, are determined in the C- and B-type kinetics regimes, respectively, with s being the segregation factor and δ the grain boundary width. Opposite to expectations, two distinct contributions to short-circuit diffusion along the nominally single interface are distinguished and related to the existence of two macroscopic facets with distinct grain boundary inclinations and, as a result, distinct structures. The experimental results indicate that the segregation factor of Cr in Ni is about unity, which is fully supported by ab initio calculations. Using classical atomistic simulations, Ni grain boundary self-diffusion coefficients are calculated for the symmetric and asymmetric facets. The computational simulations reveal accelerated self-diffusion kinetics along the asymmetric facet, attributing this phenomenon to the presence of disconnection-like defects. This elucidates the experimentally observed diffusion dynamics of chromium atoms, thereby corroborating the heterogeneous mechanisms governing atomic migration across distinct facets.

Details about the publication

JournalActa Materialia
Volume278
Article number120229
StatusPublished
Release year2024
Language in which the publication is writtenEnglish
DOI10.1016/j.actamat.2024.120229
Link to the full texthttps://api.elsevier.com/content/abstract/scopus_id/85200127560
KeywordsAtomistic simulation; DFT calculations; Grain boundary diffusion; Nickel; Radiotracer diffusion; Segregation; Σ11[110] boundaries

Authors from the University of Münster

Divinskyi, Sergii
Professorship of Materials Physics (Prof. Wilde)
Gaertner, Daniel
IV-Versorgungseinheit 1 Fachbereiche Philologie, Geschichte/Philosophie und Sprachenzentrum
Garlapati, Mohan Muralikrishna
Professorship of Materials Physics (Prof. Wilde)
Sevlikar, Shraddha Vijay
Professorship of Materials Physics (Prof. Wilde)
Tas Kavakbasi, Bengü
Professorship of Materials Physics (Prof. Wilde)
Wilde, Gerhard
Professorship of Materials Physics (Prof. Wilde)