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Bibhu P. Sahu
University of Michigan at Ann Arbor - Department of Materials Science and Engineering
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SCHOLARLY PAPERS
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Scholarly Papers (1)
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1.
Nanoscale Phase Transition in Impact Indented Mo/Cu Thin Films
https://doi.org/10.1016/j.scriptamat.2023.115846, The study reveals a size effect in deformation mechanisms via unique structural transitions in sputter deposited fcc/bcc nanolayers under high strain rate impact nanoindentation as layer thickness is reduced from around 100–200 nm to around 5 nm. The indented 5 nm Cu/5 nm Mo multilayer films chara
Number of pages: 6
Posted: 27 Feb 2024
Last Revised: 29 Mar 2024
Bibhu P. Sahu,
Christopher C. Walker
,
George M. Pharr
and
Amit Misra
University of Michigan at Ann Arbor - Department of Materials Science and Engineering, Texas A&M University - Department of Materials Science and Engineering, Texas A&M University - Department of Materials Science and Engineering and University of Michigan at Ann Arbor - Department of Materials Science and Engineering
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Abstract:
Cu/Mo multilayer films, High strain rate impact indentation, Microstructure, Layer thickness
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