The effect of precipitates on the superelastic response of [1 0 0] oriented FeMnAlNi single crystals under compression

LW Tseng, J Ma, BC Hornbuckle, I Karaman… - Acta Materialia, 2015 - Elsevier
FeMnAlNi shape memory alloys were recently discovered to have a small temperature
dependence of the superelastic critical stress in a large superelastic temperature window …

Multifunctional non‐equiatomic high entropy alloys with superelastic, high damping, and excellent cryogenic properties

C Zhang, C Zhu, T Harrington… - Advanced …, 2019 - Wiley Online Library
A new class of non‐equiatomic FeNiCoAlTaB (NCATB) high entropy alloy (HEA) is
introduced, which exhibits tunable properties from cryogenic/ambient superelasticity to ultra …

Nanoprecipitation effects on phase stability of Fe-Mn-Al-Ni alloys

P La Roca, A Baruj, CE Sobrero, JA Malarria… - Journal of alloys and …, 2017 - Elsevier
Early stages of coherent precipitation have been studied in several Fe-Mn-Al-Ni samples
aged at 200° C for different time intervals in order to analyze the effect of nanoprecipitation …

Elimination of room-temperature brittleness of Fe–Ni–Co–Al–Nb–V alloys by modulating the distribution of Nb through the addition of V

K Du, Y Zhang, Z Zhang, T Huang, G Zhao, L Liu… - Materials Science and …, 2022 - Elsevier
Abstract Compared with Ti–Ni-based and Cu–Al-based alloys, Fe–Ni–Co–Al-based
superelastic alloys have received great attention in recent years because of their low cost …

Superelasticity and functional fatigue of single crystalline FeNiCoAlTi iron-based shape memory alloy

W Abuzaid, H Sehitoglu - Materials & Design, 2018 - Elsevier
The development of Iron-based shape memory alloys is primarily motivated by the need for
a cost-effective alternative to NiTi. This work explores the superelastic and functional fatigue …

[HTML][HTML] Dynamic mechanical performance of FeNiCoAl-based high-entropy alloy: Enhancement via microbands and martensitic transformation

A Huang, C Zhang, Z Li, H Wang, M Xu, C Zhu… - Materials Today …, 2023 - Elsevier
The non-equiatomic FeNiCoAlTaB high-entropy alloy exhibits outstanding quasi-static
mechanical properties. Here, we investigate the microstructural evolution and mechanical …

Effect of grain orientation and precipitates on the superelasticity of Fe–Ni–Co–Al polycrystalline alloys

K Du, Y Zhang, G Zhao, T Huang, L Liu, J Li… - Materials Science and …, 2024 - Elsevier
In this paper, the evolution of microstructure in Fe–Ni–Co–Al polycrystalline alloys and its
effects on mechanical properties were systematically investigated. The results show that the …

Grain boundary precipitation of tantalum and NiAl in superelastic FeNiCoAlTaB alloy

C Zhang, C Zhu, S Shin, L Casalena… - Materials Science and …, 2019 - Elsevier
The precipitation behavior of tantalum (Ta) and NiAl along grain boundaries has been
investigated in polycrystalline Fe-28.5 Ni-17.5 Co-11.5 Al-2.5 Ta-0.05 B (NCATB)(at%) alloy …

Effects of V addition on microstructure and pseudoelastic response in Fe–Mn–Al–Ni alloys

K Dong, L Sun, Z Zhang, Z Li, J Li, L Liu, K Du, Y Zhang - Intermetallics, 2023 - Elsevier
Avoiding quench cracks and controlling the formation process of NiAl precipitates are
essential to regulate the microstructure and pseudoelastic properties of Fe–Mn–Al–Ni shape …

Effects of grain orientation and precipitates on the superelasticity in directionally solidified FeNiCoAlTaB shape memory alloy

H Fu, W Li, S Song, Y Jiang, J Xie - Journal of Alloys and Compounds, 2016 - Elsevier
FeNiCoAlTaB alloy with good superelasticity was fabricated by using the directional
solidification technology to control grain orientation and solution-aging treatment to change …