9,950
Views
31
CrossRef citations to date
0
Altmetric
Editorial

High entropy alloys

References

  • Christian J. W.: ‘Theory of transformations in metals and alloys’, Part I, 3rd edn; 2003, Oxford, Oxford University Press.
  • Badmos A. Y. and Bhadeshia H. K. D. H.: ‘Evolution of solutions’, Metall. Mater. Trans. A, 2000, 28, 2189–2193.
  • Sugden A. A. B. and Bhadeshia H. K. D. H.: ‘Microstructural entropy and the scatter in toughness’, in ‘Recent trends in welding science and technology’, (ed. David S. A. and Vitek J. M.., 745–748; 1989, Metals Park, OH, ASM International.
  • Bhadeshia H. K. D. H., Chintha A. and Kundu S.: ‘Model for multiple stress affected martensitic transformations, microstructural entropy and consequences on scatter in properties’, Mater. Sci. Technol., 2014, 30, 160–165.
  • Shannon C. E.: ‘A mathematical theory of communication’, Bell Syst. Tech. J., 1948, 27, 379–423.
  • 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, 299–303.
  • Chou T. S., Bhadeshia H. K. D. H., McColvin G. and Elliott I.: ‘Atomic structure of mechanically alloyed steels’, in ‘Structural applications of mechanical alloying’, 77–82; 1993, Materials Park, OH, ASM International.
  • Singh S., Wanderka N., Murty B. S., Glatzel U. and Banhart J.: ‘Decomposition in multi-component AlCoCrCuFeNi high-entropy alloy’, Acta Mater., 2011, 59, 182–190.
  • Tomilin L. A. and Kaloshkin S. D.: ‘“High entropy alloys” – “semi-impossible” regular solid solutions?’, Mater. Sci. Technol., 2015, 31, 1231–1234.
  • Mridha S., Sumanta S., Yousaf Khan P. and Biswas K.: ‘Processing and consolidation of nanocrystalline Cu–Zn–Ti–Fe–Cr high-entropy alloys via mechanical alloying’, Metall. Mater. Trans. A, 2013, 44, 4532–4541.
  • Mohanty S., Samal S., Tazuddin A., Twari C. S., Gurano N. P. and Biswas K.: ‘Effect of processing route on phase stability in equiatomic multicomponent Ti20Fe20Ni20Co20Cu20 high entropy alloy’, Mater. Sci. Technol., 2015, 31, 1214–1222.
  • Greer A. L.: ‘Confusion by design’, Nature, 1993, 366, 303–304.
  • Jones N. G., Christofidou K. A. and Stone H. J.: ‘Rapid precipitation in an Al0·5CrFeCoNiCu high entropy alloy’, Mater. Sci. Technol., 2015, 31, 1171–1177.
  • Jones N. G., Aveson J. W., Bhowmik A., Conduit B. D. and Stone H. J.: ‘On the entropic stabilisation of an Al0·5CrFeCoNiCu high entropy alloy’, Intermetallics, 2014, 54, 148–153.
  • Miracle D. B.: ‘High entropy alloys and their development as structural materials’, Mater. Sci. Technol., 2015, 31, 1142–1147.
  • Zhang W. Q., Lou C. S., Wu X. C., Fu H. M. and Zhang H. F.: ‘Microstructures and mechanical property of AlCoNiCrFe alloy annealed in high magnetic field’, Mater. Sci. Technol., 2015, 31, DOI 10.1179/1743284714Y.0000000698.
  • Tsai C. W., Tsai M. H., Tsai K. Y., Chang S. Y., Yeh J. W. and Yeh A. C.: ‘Microstructure and tensile properties of Al0·5CoCrCuFeNi alloys produced by simple rolling and annealing’, Mater. Sci. Technol., 2015, 31, 1178–1183.
  • Kozak R., Sologubenko A. and Steurer W.: ‘Single-phase high-entropy alloys – an overview’, Z. Kristallogr., 2015, 230, 55–68.
  • Chart T. G., Counsell J. F., Jones G. P., Slough W. and Spencer P. J.: ‘Provision and use of thermodynamic data for the solution of high-temperature practical problems’, Int. Metall. Rev., 1975, 20, 57–82.
  • Sundman B., Jansson B. and Andersson J. O.: ‘The Thermo-Calc databank system’, CALPHAD, 1985, 9, 153–190.
  • Mott N.: ‘Electrons in crystalline and non-crystalline metals: from Hume-Rothery to the present day’, Met. Sci., 1980, 14, 557–561.
  • Stepanov N. D., Yu Yurchenko N., Shaysultanov D. G., Salishchev G. A. and Tikhonovsky M. A.: ‘Effect of Al on structure and mechanical properties of AlxNbTiVZr high entropy alloys’, Mater. Sci. Technol., 2015, 31, 1184–1193.
  • Guo S.: ‘Phase selection rules for cast high entropy alloys: an overview’, Mater. Sci. Technol., 2015, 31, 1123–1230.
  • Zhang B., Gao M. C., Zhang Y., Yang S. and Guo S. M.: ‘Senary refractory high entropy alloy MoNbTaTiVW’, Mater. Sci. Technol., 2015, 31, 1207–1213.
  • Bhadeshia H. K. D. H.: ‘Neural networks in materials science’, ISIJ Int., 1999, 39, 966–979.
  • Nong Z. S., Zhu J. C., Cao Y., Yang X. W., Lai Z. H. and Liu Y.: ‘Stability and structure prediction of cubic phase in as cast high entropy alloys’, Mater. Sci. Technol., 2014, 30, 363–369.
  • Domínguez L. A., Goodall R. and Todd I.: ‘Prediction and validation of quaternary high-entropy alloys using statistical approaches’, Mater. Sci. Technol., 2015, 31, DOI 10.1179/1743284715Y.0000000019.
  • Soare V., Mitrica D., Constantin I., Badilita V., Stoiciu F., Popescu A. M. J. and Carcea I.: ‘Influence of remelting on microstructure, hardness and corrosion behaviour of AlCoCrFeNiTi high entropy alloy’, Mater. Sci. Technol., 2015, 31, 1201–1206.
  • Qiu Y., Gibson M. A., Fraser H. L. and Birbilis N.: ‘Corrosion characteristics of high entropy alloys’, Mater. Sci. Technol., 2015, 31, 1235–1243.
  • Hall E. L. and Briant C. K.: ‘Chromium depletion in the vicinity of carbides in sensitized austenitic stainless steels’, Metall. Trans. A, 1984, 15, 793–811.
  • Lin C. W., Tsai M. H., Tsai C. W., Yeh J. W. and Chen S. K.: ‘Microstructure and aging behaviour of Al5Cr32Fe35Ni22Ti6 high entropy alloy’, Mater. Sci. Technol., 2015, 31, DOI 10.1179/1743284715Y.0000000025.
  • Brooks A. R., Clayton C. R., Doss K. and Lu Y. C.: ‘On the role of Cr in the passivity of stainless steel’, J. Electrochem. Soc., 1986, 133, 2459–2464.
  • Olsson C. O. A. and Landolt D.: ‘Passive films on stainless steels – chemistry, structure and growth’, Electrochim. Acta, 2003, 48, 1093–1104.
  • Zheng Z. Y., Li X. C., Zhang C. and Li J. C.: ‘Microstructure and corrosion behaviour of FeCoNiCuSnx high entropy alloys’, Mater. Sci. Technol., 2015, 31, 1148–1152.
  • Zhang H., Pan Y. and He Y. Z.: ‘Synthesis and characterization of FeCoNiCrCu high-entropy alloy coating by laser cladding’, Mater. Des., 2011, 32, 1910–1915.
  • Liu D., Cheng J. B. and Ling H.: ‘Electrochemical behaviour of (NiCoFeCrCu)95B5 high entropy alloy coatings’, Mater. Sci. Technol., 2015, 31, 1159–1164.
  • Jiao Z., Chu M., Yang H., Wang Z. and Qiao J.: ‘Nanoindentation characterised plastic deformation of Al0·5CoCrFeNi high entropy alloys’, Mater. Sci. Technol., 2015, 31, 1244–1250.
  • Steinberg D. J., Cochran S. G. and Guinan M. W.: ‘A constitutive model for metals applicable at high-strain rate’, J. Appl. Phys., 1980, 51, 1498–1504.
  • Mishra R. S., Kumar N. and Komarasamy M.: ‘Lattice strain framework for plastic deformation in complex concentrated alloys including high entropy alloys’, Mater. Sci. Technol., 2015, 31, 1261–1265.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.