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Research Articles

Effect of light (X = Mg, Si) and heavy (X = Zn) metals on the microstructural evolution and densification of AlCuFeMnTi-X high-entropy alloy processed by advanced powder metallurgy

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Pages 228-234 | Received 02 Dec 2020, Accepted 23 Mar 2021, Published online: 05 Apr 2021

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Hansung Lee, Minsu Kim, Ashutosh Sharma & Byungmin Ahn. (2023) Oxidative and abrasive wear of multiphase AlSi0.75TiMnFeCux (X = 0, 0.25, 0.5) high entropy alloy under non-lubricating reciprocating motion. Powder Metallurgy 66:5, pages 623-634.
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Articles from other publishers (3)

Hansung Lee, Ashutosh Sharma & Byungmin Ahn. (2023) Exploring strengthening mechanism of FeCoNiAl high-entropy alloy by non-metallic silicon addition produced via powder metallurgy. Journal of Alloys and Compounds 947, pages 169545.
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Chanyeong Park, Hansung Lee, Nahyeon Lee, Byungmin Ahn & Jechan Lee. (2022) Upcycling of abandoned banner via thermocatalytic process over a MnFeCoNiCu high-entropy alloy catalyst. Journal of Hazardous Materials 440, pages 129825.
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Ashutosh Sharma, Hansung Lee & Byungmin Ahn. (2021) Tailoring Compressive Strength and Absorption Energy of Lightweight Multi-Phase AlCuSiFeX (X = Cr, Mn, Zn, Sn) High-Entropy Alloys Processed via Powder Metallurgy. Materials 14:17, pages 4945.
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