Interphase boundary layer-dominated strain mechanisms in Cu+ implanted Zr-Nb nanoscale multilayers

N Daghbouj, M Callisti, HS Sen, M Karlik, J Čech… - Acta Materialia, 2021 - Elsevier
Abstract Sputter-deposited Zr/Nb nanoscale metallic multilayers with a periodicity of 27 (thin)
and 96 nm (thick) were subjected to Cu+ implantation with low and high fluences and then …

Interphase boundary layer-dominated strain mechanisms in Cu+ implanted Zr-Nb nanoscale multilayers

N Daghbouj, M Callisti, HS Sen, M Karlik, J Čech… - Acta …, 2021 - eprints.soton.ac.uk
Sputter-deposited Zr/Nb nanoscale metallic multilayers with a periodicity of 27 (thin) and 96
nm (thick) were subjected to Cu+ implantation with low and high fluences and then studied …

Interphase boundary layer-dominated strain mechanisms in Cu+ implanted Zr-Nb nanoscale multilayers

N Daghbouj, M Callisti, HS Sen, M Karlik… - Acta …, 2021 - ui.adsabs.harvard.edu
Abstract Sputter-deposited Zr/Nb nanoscale metallic multilayers with a periodicity of 27 (thin)
and 96 nm (thick) were subjected to Cu+ implantation with low and high fluences and then …

Interphase Boundary Layer-Dominated Strain Mechanisms in Cu + Implanted Zr-Nb Nanoscale Multilayers

N Daghbouj, M Callisti, HS Sen, M Karlik… - Available at SSRN … - papers.ssrn.com
Abstract Sputter-deposited Zr/Nb nanoscale metallic multilayers with a periodicity of 27 (thin)
and 96 nm (thick) were subjected to Cu+ implantation with low and high fluences and then …

Interphase boundary layer-dominated strain mechanisms in Cu+ implanted Zr-Nb nanoscale multilayers

N Daghbouj, M Callisti, HS Sen, M Karlik, J Čech - Acta Materialia, 2021 - inis.iaea.org
[en] Sputter-deposited Zr/Nb nanoscale metallic multilayers with a periodicity of 27 (thin) and
96 nm (thick) were subjected to Cu+ implantation with low and high fluences and then …