Selective oxidation-induced strengthening of Zr/Nb nanoscale multilayers
M. A. Moncl\'us, M. Callisti, T. Polcar, L. W. Yang, J. LLorca, J., M. Molina-Aldaregu\'ia

TL;DR
This study demonstrates that controlled oxidation of Zr/Nb nanoscale multilayers enhances their strength and stability by forming oxide/metal nanocomposites, with microstructural evolution monitored through experiments and modeling.
Contribution
It introduces a novel oxidation-based method to strengthen nanoscale multilayers, highlighting the sequential oxidation process and stress management for improved durability.
Findings
Elastic modulus increased by 20-35% after annealing.
Hardness increased by approximately 42% after 15 hours.
Sequential oxidation enabled structural integrity without spallation.
Abstract
The paper presents a new approach, based on controlled oxidation of nanoscale metallic multilayers, to produce strong and hard oxide/metal nanocomposite coatings with high strength and good thermal stability. The approach is demonstrated by performing long term annealing on sputtered Zr/Nb nanoscale metallic multilayers and investigating the evolution of their microstructure and mechanical properties by combining analytical transmission electron microscopy, nano-mechanical tests and finite element models. As-deposited multilayers were annealed at 350 C in air for times ranging between 1 - 336 hours. The elastic modulus increased by approx. 20% and the hardness by approx. 42% after 15 hours of annealing. Longer annealing times did not lead to changes in hardness, although the elastic modulus increased up to 35% after 336 hrs. The hcp Zr layers were rapidly transformed into monoclinic…
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