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Research Articles

Crystal structure evolution in mehcanical alloying and spark plasma sintering of AlxCoCrCuFeNi HEAs

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Pages 54-63 | Received 28 Jan 2019, Accepted 26 Nov 2020, Published online: 08 Dec 2020

References

  • Yeh JW, Chen SK, Lin SJ, et al. Nanostructured high-entropy alloys with multiple principal elements: novel alloy design concepts and outcomes. Adv Eng Mater. 2004;6:299–303.
  • Zhang Y, Zuo TT, Tang Z, et al. Microstructures and properties of high-entropy alloys. Prog Mater Sci. 2014;61:1–93.
  • Murty BS, Yeh JW, Ranganathan S. High entropy alloys. 3rd ed. London: Elsevier; 2014.
  • Yeh C, Chang YJ, Tsai W, et al. On the solidification and phase stability of a Co-Cr-Fe-Ni-Ti high-entropy alloy. Metall Mater Trans A. 2014;45:184–190.
  • Lu Y, Dong Y, Guo S, et al. A promising new class of high-temperature alloys: eutectic high-entropy alloys. Sci Rep. 2015;4:6200.
  • Liu YX, Cheng CQ, Shang JL, et al. Oxidation behavior of high-entropy alloys AlxCoCrFeNi (x = 0.15, 0.4) in supercritical water and comparison with HR3C steel. Trans Nonferrous Met Soc China. 2015;25:1341–1351.
  • Senkov ON, Wilks GB, Scott JM, et al. Mechanical properties of Nb25Mo25Ta25W25 and V20Nb20Mo20Ta20W20 refractory high entropy alloys. Intermetallics. 2011;19:698–706.
  • Liu Y, Ma SH, Gao MC, et al. Tribological properties of AlCrCuFeNi2 high-entropy alloy in different conditions. Metall Mater Trans A. 2016;47:3312–3321.
  • Gorr B, Azim M, Christ HJ, et al. Microstructure evolution in a new refractory high-entropy alloy W-Mo-Cr-Ti-Al. Metall Mater Trans A. 2016;47:961–970.
  • Chen H, Kauffmann A, Gorr B, et al. Microstructure and mechanical properties at elevated temperatures of a new Al-containing refractory high-entropy alloy Nb-Mo-Cr-Ti-Al. J Alloys Compd. 2016;661:206–215.
  • Praveen S, Anupam A, Sirasani T, et al. Characterization of oxide dispersed AlCoCrFe high entropy alloy synthesized by mechanical alloying and spark plasma sintering. Trans Indian Inst Met. 2013;66:369–373.
  • Chuang MH, Tsai MH, Wang WR, et al. Microstructure and wear behavior of AlxCo1.5CrFeNi1.5Tiy high-entropy alloys. Acta Mater. 2011;59:6308–6317.
  • Wu J, Lin S, Yeh JW, et al. Adhesive wear behavior of AlxCoCrCuFeNi high-entropy alloys as a function of aluminum content. Wear. 2006;261:513–519.
  • Varalakshmi S, Kamaraj M, Murty BS. Formation and stability of equiatomic and nonequiatomic nanocrystalline CuNiCoZnAlTi high-entropy alloys by mechanical alloying. Metall Mater Trans A. 2010;41:2703–2709.
  • Praveen S, Murty BS, Kottada RS. Phase evolution and densification behavior of nanocrystalline multicomponent high entropy alloys during spark plasma sintering. JOM. 2013;65:1797–1804.
  • Ji W, Fu ZH, Wang W, et al. Mechanical alloying synthesis and spark plasma sintering consolidation of CoCrFeNiAl high-entropy alloy. J Alloys Compd. 2014;589:61–66.
  • Tong C-J, Chen Y-L, Yeh J-W, et al. Microstructure characterization of AlxCoCrCuFeNi high-entropy alloy system with multiprincipal elements. Metall Mater Trans A. 2005;36:881–893.
  • Yang C, Lin J, Zeng J, et al. High-strength AlCrFeCoNi high entropy alloys fabricated by using metallic glass powder as precursor. Adv Eng Mater. 2016;18:348–353.
  • Zhou YJ, Zhang Y, Wang YL, et al. Solid solution alloys of AlCoCrFeNiTix with excellent room-temperature mechanical properties. Appl Phys Lett. 2007;90:181904.
  • Gali A, George EP. Tensile properties of high- and medium-entropy alloys. Intermetallics. 2013;39:74–78.
  • Sun Y, Chen P, Liu L, et al. Local mechanical properties of AlCoCrCuFeNi high entropy alloy characterized using nanoindentation. Intermetallics. 2018;93:85–88.
  • Zhang KB, Fu ZY, Zhang JY, et al. Characterization of nanocrystalline CoCrFeNiTiAl high-entropy solid solution processed by mechanical alloying. J Alloys Compd. 2010;495(1):33–38.
  • Yeh J-W, Chang S-Y, Hong Y-D, et al. Anomalous decrease in X-ray diffraction intensities of Cu–Ni–Al–Co–Cr–Fe–Si alloy systems with multi-principal elements. Mater Chem Phys. 2007;103(1):41–46.
  • Chen Y-L, Hu Y-H, Hsieh C-A, et al. Competition between elements during mechanical alloying in an octonary multi-principal-element alloy system. J Alloys Compd. 2009;481(1–2):768–775.
  • Wang C, Ji W, Fu Z. Mechanical alloying and spark plasma sintering of CoCrFeNiMnAl high-entropy alloy. Adv Powder Technol. 2014;25(4):1334–1338.
  • Zhang KB, Fu ZY, Zhang JY, et al. Nanocrystalline CoCrFeNiCuAl high-entropy solid solution synthesized by mechanical alloying. J Alloys Compd. 2009;485(1–2):L31–L34.
  • LeClair PR. Structural order and disorder in materials, Semantic Scholar. 2010. https://www.semanticscholar.org/paper/Structural-Order-and-Disorder-in-Materials-Leclair/25b7c30ca9171c2245ea36a88bacb6b8d5dec2ea#paper-heade
  • Sriharitha R, Murty BS, Kottada RS. Phase formation in mechanically alloyed AlxCoCrCuFeNi (x = 0.45, 1, 2.5, 5 mol) high entropy alloys. Intermetallics. 2013;32:119–126.
  • Sriharitha R, Murty BS, Kottada RS. Alloying, thermal stability and strengthening in spark plasma sintered AlxCoCrCuFeNi high entropy alloys. Intermetallics. 2014;583:419–426.
  • Wen LH, Kou HC, Li JS, et al. Effect of aging temperature on microstructure and properties of AlCoCrCuFeNi high-entropy alloy. Intermetallics. 2009;17:266–269.
  • Tong C-J, Chen M-R, Yeh J-W, et al. Mechanical performance of the AlxCoCrCuFeNi high-entropy alloy system with multiprincipal elements. Metall Mater Trans A. 2005;36(5):1263–1271.
  • Sui H. The enhancement of solid solubility limits of AlCo intermetallic compound by high-energy ball milling. J Appl Phys. 1992;71(6):2945–2949.
  • Yavari AR, Desré PJ, Benameur T. Mechanically driven alloying of immiscible elements. Phys Rev Lett. 1992;68:2235–2238.
  • Huang B-L, Perez RJ, Lavernia EJ, et al. Formation of supersaturated solid solutions by mechanical alloying. Nanostruct Mater. 1996;7(1–2):67–79.
  • Tsai K-Y, Tsai M-H, Yeh J-W. Sluggish diffusion in Co–Cr–Fe–Mn–Ni high-entropy alloys. Acta Mater. 2013;61(13):4887–4897.

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