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Special Issue Papers

Phase selection rules for cast high entropy alloys: an overview

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Sheetal Kumar Dewangan, Cheenepalli Nagarjuna, Hansung Lee, Ashutosh Sharma & Byungmin Ahn. (2023) Surface morphology transformation and densification behaviour of conventionally sintered AlFeCoNiSi high entropy alloys. Powder Metallurgy 66:5, pages 650-661.
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A. Ayrenk & I. Kalay. (2022) Microstructure and mechanical properties of Al–Co–Cr–Fe–Ni–(Nb–Ti) high entropy alloys. Philosophical Magazine 102:19, pages 1961-1973.
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S. Sivasankaran, Hany R. Ammar & Fahad A. Al-Mufadi. (2022) Continuous hot-compaction behavior of nanostructured FeCrCuMnTi-(V, Zn) high-entropy alloys. Materials and Manufacturing Processes 37:10, pages 1122-1131.
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H. Zhang, H. Tang, W. H. Li, J.L. Wu, X. C. Zhong, G. Chen & S. Guo. (2018) Novel high-entropy and medium-entropy stainless steels with enhanced mechanical and anti-corrosion properties. Materials Science and Technology 34:5, pages 572-579.
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M. Murali, S. P. Kumaresh Babu, Jichil Majhi, A. Vallimanalan & R. Mahendran. (2018) Processing and characterisation of nano crystalline AlCoCrCuFeTi high-entropy alloy. Powder Metallurgy 61:2, pages 139-148.
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Qiumin Yang, Yanyuan Tang, Yan Wen, Qinying Zhang, Dengfei Deng & Xinren Nai. (2018) Microstructures and properties of CoCrCuFeNiMox high-entropy alloys fabricated by mechanical alloying and spark plasma sintering. Powder Metallurgy 61:2, pages 115-122.
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L. Jiang, Y.P. Lu, H. Jiang, T.M. Wang, B.N. Wei, Z.Q. Cao & T.J. Li. (2016) Formation rules of single phase solid solution in high entropy alloys. Materials Science and Technology 32:6, pages 588-592.
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E. J. Pickering & N. G. Jones. (2016) High-entropy alloys: a critical assessment of their founding principles and future prospects. International Materials Reviews 61:3, pages 183-202.
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J. Y. C. Fang, W. H. Liu, J. H. Luan & Z. B. Jiao. (2021) Phase Stability and Precipitation in L12-Strengthened CoCrNi Medium-Entropy Alloys at Intermediate Temperatures. Journal of Phase Equilibria and Diffusion 42:5, pages 781-793.
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