Zr diffusion in BCC refractory high entropy alloys: A case of ‘non-sluggish’ diffusion behavior

Zhang, Jingfeng; Gadelmeier, Christian; Sen, Sandipan; Wang, Rui; Zhang, Xi; Zhong, Yu; Glatzel, Uwe; Grabowski, Blazej; Wilde, Gerhard; Divinski, Sergiy V.

Research article (journal) | Peer reviewed

Abstract

Single phase (BCC solid solution) HfTiZrNbTa and HfTiZrNbV refractory high entropy alloys are synthesized and characterized. For the first time for BCC refractory high entropy alloys, tracer diffusion is measured using the short-living radioactive isotope 89Zr in the temperature range of 1123 to 1423 K. A ‘non-sluggish’ diffusion behavior is clearly observed, highlighted by an enhancement of the measured diffusion rates with respect to the geometric mean of the diffusivities in the corresponding pure elements. The factors influencing self-diffusion in BCC multi-principal element alloys are discussed, including the chemical complexity, atomic size mismatch and the phonon broadening.

Details about the publication

JournalActa Materialia
Volume233
StatusPublished
Release year2022
Language in which the publication is writtenEnglish
DOI10.1016/j.actamat.2022.117970
Link to the full texthttps://api.elsevier.com/content/abstract/scopus_id/85129945935
KeywordsBCC crystalline lattice; HfNbTiVZr; Refractory high-entropy alloy; Diffusion; HfNbTaTiZr

Authors from the University of Münster

Divinskyi, Sergii
Professorship of Materials Physics (Prof. Wilde)
Sen, Sandipan
Professorship of Materials Physics (Prof. Wilde)
Wilde, Gerhard
Professorship of Materials Physics (Prof. Wilde)
Zhang, Jingfeng
Professorship of Materials Physics (Prof. Wilde)