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May 20, 2026Journal of materials research/Pratt's guide to venture capital sources1 citationsOpen Access

Synthesis and effect of aging treatment on the properties of Ti16.67Zr16.67Hf16.67Ni25Co10Cu15 high-entropy shape memory alloy

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MAMairaj AhmadSapienza University of RomeMKM. Imran KhanShantou UniversityARAbbas RazaMaltepe University

Key Points

  • To explore the effects of prolonged aging on the properties of a high-entropy shape memory alloy.
  • Aging treatment for 1, 10, and 20 hours at 500 °C
  • Characterization performed using SEM, XRD, AFM, TMA, nanoindentation, and electrochemical tests
  • Analysis included microstructure, shape memory effect, mechanical properties, and corrosion behavior
  • Stable microstructure observed in SEM and XRD analyses during aging treatment
  • Hardness showed a slight decrease with prolonged aging
  • Corrosion rate and pitting corrosion increased post-aging treatment, despite good cold workability.

Abstract

Abstract Synthesis and the effect of prolonged aging time, for 1, 10, and 20 h at 500 °C, on microstructure, shape memory effect, mechanical, and electrochemical corrosion behavior of Ti 16.67 Zr 16.67 Hf 16.67 Ni 25 Co 10 Cu 15 high-entropy shape memory alloy (HESMA) were investigated. This alloy was developed by an arc melting process and characterized by scanning electron microscopy (SEM), X-ray diffraction (XRD), atomic force microscopy (AFM), a thermomechanical analyzer (TMA), nanoindentation, and Gamry Potentiostat. SEM and XRD results showed a stable microstructure during aging treatment. AFM results represented no significant change in RMS roughness and Ra roughness value. TMA results elaborated the stable transformation temperatures and thermal hysteresis. Nanoindentation and micro Vickers’ results showed a slightly decreasing trend in hardness by prolong aging treatment. Tafel, electrochemical impedance spectroscopy (EIS), and cyclic polarization (CP) results showed that by aging treatment, corrosion rate and pitting corrosion increased, while exhibiting cold workability up to 20% reduction in thickness without cracking. Graphical abstract

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Cite This Study

Ahmad et al. (2026) studied this question.

synapsesocial.com/papers/6a0d4f19f03e14405aa9a56dhttps://doi.org/10.1557/s43578-026-01814-9
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