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High-Entropy Ti 45Zr5Pt19Pd25Co6 High-Temperature Shape Memory Alloy with Improved Functional Stability Through In-Service Dislocation Recovery

YI-TING HSU, YU-NIEN SHEN

2026enshape memoryalloymaterial sciencehigh-entropyfunctional stability

Abstract

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This study investigates a Ti 45Zr5Pt19Pd25Co6 high-temperature shape memory alloy designed for functional stability through high-entropy strengthening and temperature-enabled dislocation recovery. Cyclic testing confirms better stability when the service temperature was extended to 500 °C compared to 400 °C. While 400 °C operation induces instability from dislocations, 500 °C promotes dislocation recovery, as evidenced by cyclic superelastic and microhardness tests. This demonstrates that strategic temperature selection can enhance the longevity of high-temperature high-entropy shape memory alloys.

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Cite This Work

@article{c5d171a5-0119-4b2b-a297-835b09db2fb9,
  title={High-Entropy Ti 45Zr5Pt19Pd25Co6 High-Temperature Shape Memory Alloy with Improved Functional Stability Through In-Service Dislocation Recovery},
  author={YI-TING HSU and YU-NIEN SHEN},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - High-Entropy Ti 45Zr5Pt19Pd25Co6 High-Temperature Shape Memory Alloy with Improved Functional Stability Through In-Service Dislocation Recovery
AU  - YI-TING HSU
AU  - YU-NIEN SHEN
PY  - 2026
LA  - en
ER  -

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