David C. Dunand
Affiliations: | Materials Science and Engineering | Northwestern University, Evanston, IL |
Area:
Materials Science Engineering, Biomechanics BiophysicsGoogle:
"David Dunand"Cross-listing: Materials Tree
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Sign in to add collaboratorBoonrat Lohwongwatana | collaborator | Northwestern (Physics Tree) |
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Publications
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Coakley J, Lass EA, Ma D, et al. (2024) Rafting and Elastoplastic Deformation of Superalloys Studied by Neutron Diffraction. Scripta Materialia. 134 |
Zhang D, Hsu YC, Dunand DC. (2024) Ink-Extrusion 3D Printing and Silicide Coating of HfNbTaTiZr Refractory High-Entropy Alloy for Extreme Temperature Applications. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). e2309693 |
Rakhmonov JU, Weiss D, Dunand DC. (2022) Comparing evolution of precipitates and strength upon aging of cast and laser-remelted Al-8Ce-0.2Sc-0.1Zr (wt.%). Materials Science & Engineering. a, Structural Materials : Properties, Microstructure and Processing. 840 |
Rakhmonov JU, Bahl S, Shyam A, et al. (2022) Cavitation-resistant intergranular precipitates enhance creep performance of '-strengthened Al-Cu based alloys. Acta Materialia. 228 |
Farkoosh AR, Dunand DC, Seidman DN. (2022) Enhanced age-hardening response and creep resistance of an Al-0.5Mn-0.3Si (at.%) alloy by Sn inoculation. Acta Materialia. 240 |
Farkoosh AR, Dunand DC, Seidman DN. (2021) Solute-induced strengthening during creep of an aged-hardened Al-Mn-Zr alloy. Acta Materialia. 219 |
Wilke SK, Lundberg RA, Dunand DC. (2020) Hierarchical Structural Changes During Redox Cycling of Fe-Based Lamellar Foams Containing YSZ, CeO, or ZrO. Acs Applied Materials & Interfaces |
Wilke SK, Dunand DC. (2020) Finite Element Model for Coupled Diffusion and Elastoplastic Deformation during High-Temperature Oxidation of Fe to FeO Journal of the Electrochemical Society. 167: 080532 |
Wilke SK, Dunand DC. (2020) Fe-Ni Foams Self-Heal during Redox Cycling via Reversible Formation/Homogenization of a Ductile Ni Scaffold Journal of Materials Chemistry |
Park H, Li C, Jakus AE, et al. (2020) High-temperature mechanical properties of γ/γ′ Co–Ni–W–Al superalloy microlattices Scripta Materialia. 188: 146-150 |