Rachel L. Schoeppner
Washington State University
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Publication
Featured researches published by Rachel L. Schoeppner.
Materials research letters | 2015
Rachel L. Schoeppner; Jeffrey M. Wheeler; Johannes Zechner; Johann Michler; Hussein M. Zbib; David F. Bahr
Strain-hardening in tri-component nano-scale metallic multilayers was investigated using nanoindentation and micro-pillar compression. Cu/Ni/Nb films were made in tri-layer structures as well as bi-layers consisting of an alloy of Cu–Ni/Nb. Strain-hardening increases as the layer thickness decreases, with 5 nm layers exhibiting higher strengths and hardening coefficients than 30 nm layers. The experimental evidence is described in light of the confined layer slip model, and supports the hypothesis that coherent interfaces with a modulus mismatch in the tri-layer system are responsible for additional deformation mechanisms that can lead to hardening in excess of that found in bi-layer systems.
Scripta Materialia | 2015
Barbara Putz; Rachel L. Schoeppner; Oleksandr Glushko; David F. Bahr; Megan J. Cordill
Thin Solid Films | 2014
Rachel L. Schoeppner; N. Abdolrahim; I. Salehinia; Hussein M. Zbib; David F. Bahr
Acta Materialia | 2015
Rachel L. Schoeppner; Ronald S. Goeke; N. R. Moody; David F. Bahr
Journal of Materials Research | 2017
Ioannis N. Mastorakos; Rachel L. Schoeppner; Brian Kowalczyk; D. F. Bahr
Archive | 2015
Aidan Arthur Taylor; Rachel L. Schoeppner; Megan J. Cordill; Johann Michler; Hussein M. Zbib; David F. Bahr
Archive | 2014
Rachel L. Schoeppner; Huiqing Jin; Ronald S. Goeke; Somuri V. Prasad; David F. Bahr; N. R. Moody
Archive | 2013
Rachel L. Schoeppner; Huiqing Jin; Somuri V. Prasad; Ronald S. Goeke; David F. Bahr; N. R. Moody
Archive | 2012
J. L. Skinner; Thomas Zifer; Greg O'Bryan; Andrew Vance; N. R. Moody; Rachel L. Schoeppner; Angie Qui; Dougles D. Stauffer; Ryan Major; William W. Gerberich; David F. Bahr
Archive | 2012
Huiqing Jin; Somuri V. Prasad; Ronald S. Goeke; N. R. Moody; Rachel L. Schoeppner; David F. Bahr
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Swiss Federal Laboratories for Materials Science and Technology
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