Journal of Alloys and Compounds2022,Vol.90111.DOI:10.1016/j.jallcom.2022.163616

Oxide-stabilized microstructure of severe plastically deformed CuCo alloys

Stuckler M. Zalesak J. Wurster S. Weissitsch L. Gammer C. Pippan R. Bachmaier A. Muller T. Meier M. Felfer P.
Journal of Alloys and Compounds2022,Vol.90111.DOI:10.1016/j.jallcom.2022.163616

Oxide-stabilized microstructure of severe plastically deformed CuCo alloys

Stuckler M. 1Zalesak J. 1Wurster S. 1Weissitsch L. 1Gammer C. 1Pippan R. 1Bachmaier A. 1Muller T. 2Meier M. 3Felfer P.3
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作者信息

  • 1. Erich Schmid Institute of Materials Science Austrian Academy of Sciences
  • 2. Deutsches Elektronen Synchrotron
  • 3. Department of Materials Science Institute for General Materials Properties Friedrich-Alexander University Erlangen-Nürnberg
  • 折叠

Abstract

Nanocrystalline materials are well known for their beneficial mechanical and physical properties. However, it is of utmost importance to stabilize the microstructure at elevated temperatures to broaden the window of application e.g. by pinning grain boundaries through impurities or oxides. CuCo alloys, severe plastically deformed using high-pressure torsion, were used to investigate the evolution of oxides upon annealing. These investigations were performed using electron microscopy, synchrotron high-energy X-ray scattering and atom probe tomography. Monitoring the evolution of oxides by in-situ small angle scattering investigations indicates the growth of primary oxides as well as the formation of another species of oxide at elevated temperatures. Slightly different coarsening can be observed in heat-treated samples, which can be traced back to the influence of different oxide amounts. The initially supersaturated CuCo matrix changes by the decomposition process as well as Co- and Cu-based oxides formation and growth. It has been found that the major number of oxides which are present after annealing, can already be found in the starting materials.

Key words

Atom probe tomography/High-pressure torsion/Nanocrystalline material/Severe plastic deformation/Small-angle X-ray scattering/Supersaturation

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出版年

2022
Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
被引量4
参考文献量40
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