23 Papers
32 Citations
Anthony De Luca is an academic researcher from Swiss Federal Laboratories for Materials Science and Technology. The author has contributed to research in topics: Alloy & Precipitation hardening. The author has an hindex of 8, co-authored 23 publications. Previous affiliations of Anthony De Luca include Northwestern University & Aix-Marseille University.
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Papers
Microstructure and mechanical properties of a precipitation-strengthened Al-Zr-Sc-Er-Si alloy with a very small Sc content
TL;DR: In this article, the precipitation hardening behavior of an Al-0.08Zr -0.10Si alloy was investigated utilizing microhardness, electrical conductivity, atom-probe tomography (APT), and compressive creep-measurements.
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Sustainability through alloy design: Challenges and opportunities
Jaclyn Leigh Cann,Anthony De Luca,David C. Dunand,David Dye,Daniel B. Miracle,Hyun Seok Oh,Elsa Olivetti,Tresa M. Pollock,Warren J. Poole,Rui Yang,Cemal Cem Tasan +10 more
TL;DR: In this paper, the authors discuss the most urgent sustainability challenges that can be addressed with alloy design, to help orchestrate the increasing interest in metallurgical research to focus on these most critical challenges.
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Mechanical properties and optimization of the aging of a dilute Al-Sc-Er-Zr-Si alloy with a high Zr/Sc ratio
TL;DR: In this paper, an Al-0.06Sc-based alloys with a small Sc concentration, compensated by a high Zr concentration, achieved a similar peak microhardness during isochronal aging (587-±20-MPa) as the corresponding Sc-richer and Zr-leaner alloys.
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Effects of Mo and Mn microadditions on strengthening and over-aging resistance of nanoprecipitation-strengthened Al-Zr-Sc-Er-Si alloys
TL;DR: In this paper, the authors combined microadditions of 0.09% Mo and 0.4% Mn to a dilute Al-0.10Zr 0.01Sc 0.007Er 0.10Si alloy lead to increases in strength upon peak-aging, and improved over-aging resistance at 400, 425 and 450°C for at least 6 months.
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