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Special Issue Papers

Microstructure and aging behaviour of Al5Cr32Fe35Ni22Ti6 high entropy alloy

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References

  • Yeh J. W., Chen S. K., Lin S. J., Gan J. Y., Chin T. S., Shun T. T., Tsau C. H. and Chang S. Y.: ‘Nanostructured high-entropy alloys with multiple principal elements: novel alloy design concepts and outcomes’, Adv. Eng. Mater., 2004, 6, (5), 299–303.
  • Zhang Y., Zuo T. T., Tang Z., Gao M. C., Dahmen K. A., Liaw P. K. and Lu Z. P.: ‘Microstructures and properties of high-entropy alloys’, Prog. Mater. Sci., 2014, 61, 1–93.
  • Tsai M. H. and Yeh J. W.: ‘High-entropy alloys: a critical review’, Mater. Res. Lett., 2014, 2, (3), 107–123.
  • Tong C. J., Chen M. R., Chen S. K., Yeh J. W., Shun T. T., Lin S. J. and Chang S. Y.: ‘Mechanical performance of the AlxCoCrCuFeNi high-entropy alloy system with multiprincipal elements’, Metall. Mater. Trans. A, 2005, 36A, (5), 1263–1271.
  • Zhou Y. J., Zhang Y., Wang Y. L. and Chen G. L.: ‘Solid solution alloys of AlCoCrFeNiTix with excellent room-temperature mechanical properties’, Appl. Phys. Lett., 2007, 90, (18), 181904.
  • Wen L. H., Kou H. C., Li J. S., Chang H., Xue X. Y. and Zhou L.: ‘Effect of aging temperature on microstructure and properties of AlCoCrCuFeNi high-entropy alloy’, Intermetallics, 2009, 17, (4), 266–269.
  • Chen S. T., Tang W. Y., Kuo Y. F., Chen S. Y., Tsau C. H., Shun T. T. and Yeh J. W.: ‘Microstructure and properties of age-hardenable AlxCrFe1.5MnNi0.5 alloys’, Mater. Sci. Eng. A, 2010, A527, (21–22), 5818–5825.
  • Gludovatz B., Hohenwarter A., Catoor D., Chang E. H., George E. P. and Ritchie R. O.: ‘A fracture-resistant high-entropy alloy for cryogenic applications’, Science, 2014, 345, (6201), 1153–1158.
  • Chuang M. H., Tsai M. H., Wang W. R., Lin S. J. and Yeh J. W.: ‘Microstructure and wear behavior of AlxCo1.5CrFeNi1.5Tiy high-entropy alloys’, Acta Mater., 2011, 59, (16), 6308–6317.
  • Hsu C. Y., Juan C. C., Wang W. R., Sheu T. S., Yeh J. W. and Chen S. K.: ‘On the superior hot hardness and softening resistance of AlCoCrxFeMo0.5Ni high-entropy alloys’, Mater. Sci. Eng. A, 2011, A528, (10-11), 3581–3588.
  • Senkov O. N., Wilks G. B., Scott J. M. and Miracle D. B.: ‘Mechanical properties of Nb25Mo25Ta25W25 and V20Nb20Mo20Ta20W20 refractory high entropy alloys’, Intermetallics, 2011, 19, (5), 698–706.
  • Tsai M. H., Wang C. W., Tsai C. W., Shen W. J., Yeh J. W., Gan J. Y. and Wu W. W.: ‘Thermal stability and performance of NbSiTaTiZr high-entropy alloy barrier for copper metallization’, J. Electrochem. Soc., 2011, 158, (11), H1161–H1165.
  • Liu W. H., Wu Y., He J. Y., Nieh T. G. and Lu Z. P.: ‘Grain growth and the Hall–Petch relationship in a high-entropy FeCrNiCoMn alloy’, Scr. Mater., 2013, 68, (7), 526–529.
  • Chou Y. L., Wang Y. C., Yeh J. W. and Shih H. C.: ‘Pitting corrosion of the high-entropy alloy Co1.5CrFeNi1.5Ti0.5Mo0.1 in chloride-containing sulphate solutions’, Corros. Sci., 2010, 52, (10), 3481–3491.
  • Kao Y. F., Lee T. D., Chen S. K. and Chang Y. S.: ‘Electrochemical passive properties of AlxCoCrFeNi (x = 0, 0.25, 0.50, 1.00) alloys in sulfuric acids’, Corros. Sci., 2010, 52, (3), 1026–1034.
  • de Boer F. R., Boom R., Mattens W. C. M., Miedema A. R. and Niessen A. K.: ‘Cohesion in metals: transition metal alloys’; 1988, Amsterdam, Elsevier Science Publishers B.V..
  • Roebuck B. and Coles W.: ‘Mechanical test discriminability for WC hardmetals’, Int. J. Refract. Met. Hard Mater., 1992, 11, (3), 127–136.
  • Schubert W. D., Neumeister H., Kinger G. and Lux B.: ‘Hardness to toughness relationship of fine-grained WC–Co hardmetals’, Int. J. Refract. Met. Hard Mater., 1998, 16, (2), 133–142.
  • Jones D. A.: ‘Principles and prevention of corrosion’; 1996, Upper Saddle River, NJ, Prentice-Hall.
  • Strutt P. R., Polvani R. S. and Ingram J. C.: ‘Creep behavior of the heusler type structure alloy Ni2AlTi’, Metall. Trans. A, 1976, 7A, (1), 23–31.
  • Tung C. C., Yeh J. W., Shun T. T., Chen S. K., Huang Y. S. and Chen H. C.: ‘On the elemental effect of AlCoCrCuFeNi high-entropy alloy system’, Mater. Lett., 2007, 61, (1), 1–5.
  • Hu R. X. and Nash P.: ‘Review: Experimental enthalpies of formation of compounds in Al–Ni–X systems’, J. Mater. Sci., 2006, 41, (3), 631–641.
  • Tsai M. H., Yuan H., Cheng G., Xu W., Jian W. W., Chuang M. H., Juan C. C., Yeh A. C., Lin S. J. and Zhu Y.: ‘Significant hardening due to the formation of a sigma phase matrix in a high entropy alloy’, Intermetallics, 2013, 33, 81–86.
  • Guo S. and Liu C. T.: ‘Phase stability in high entropy alloys: Formation of solid-solution phase or amorphous phase’, Prog. Nat. Sci. Mater. Int., 2011, 21, (6), 433–446.
  • Sedriks A. J.: ‘Effects of alloy composition and microstructure on the passivity of stainless steels’, Corrosion, 1986, 42, (7), 376–389.
  • Laitinen T., Bojinov M., Betova I., Maekelae K. and Saario T.: ‘The Properties of and transport phenomena in oxide films on iron, nickel, chromium and their alloys in aqueous environments’; 1999, Helsinki, Radiation and Nuclear Safety Authority.

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