4.6 Article

Design and development of (Ti, Zr, Hf)-Al based medium entropy alloys and high entropy alloys

Journal

MATERIALS CHEMISTRY AND PHYSICS
Volume 276, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.matchemphys.2021.125409

Keywords

High entropy alloys; Alloy design; Rapid-solidification; Microstructure; Electron microscopy

Funding

  1. JSPS KAKENHI [18H05254, 21H00146]
  2. Council for Science, Technology and Innovation (CSTI)
  3. Cross-Ministerial Strategic Innovation Promotion Program (SIP)
  4. Innovative Design/Manufacturing Technologies program (Establishment and Validation of the Base for 3D Design and Additive Manufacturing Standing on the Concepts of Anisotropy and Customization) of the New Energy and Industrial Technology Development Or
  5. Light Metal Educational Foundation, Inc. Japan
  6. Grants-in-Aid for Scientific Research [18H05254, 21H00146] Funding Source: KAKEN

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The design and development of TiZrHfAl medium entropy alloy and TiZrHfAlNb0.2 and TiZrHfAlV0.2 high entropy alloys were discussed, focusing on alloy parameters, ground state diagrams, and phase diagrams. Rapid solidification effectively suppressed intermetallic compound formation, resulting in differences in constituent phases and Vickers hardness between ingots and melt-spun ribbons.
The design and development of TiZrHfAl medium entropy alloy (MEA), and the TiZrHfAlNb0.2 and TiZrHfAlV0.2 high entropy alloys (HEAs) is described. The combination of 4th subgroup elements (Ti, Zr, and Hf) with Al is discussed based on the periodic table and taxonomy of HEAs. The alloys were designed using alloy parameters for HEAs, predicted ground state diagrams from the Materials Project, and the calculation of phase diagrams (CALPHAD). Rapid solidification was effective to suppress the formation of intermetallic compounds, resulting in BCC/B2 phase formation. Significant differences in the constituent phases and Vickers hardness between ingots and melt-spun ribbons were found among the TiZrHfAl MEA, TiZrHfAlNb0.2, and TiZrHfAlV0.2 HEAs.

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