This article is a literature review of recent advances in novel Fe-Mn based alloys, drawing specific examples on Hadfield and TWIP steels, and high entropy and shape memory alloys …
J Xia, Y Noguchi, X Xu, T Odaira, Y Kimura… - Science, 2020 - science.org
Shape memory alloys recover their original shape after deformation, making them useful for a variety of specialized applications. Superelastic behavior begins at the critical stress …
With the rapid development of nano-preparation processes, nanocrystalline materials have been widely developed in the fields of mechanics, electricity, optics, and thermal physics …
Deformation-induced martensitic transformation that rapidly occurs generally leads to a significant reduction in elongation of metastable austenitic steels, particularly at low …
The effects of nano-precipitation on stress-induced martensitic transformation (SIM) in Fe 43.5 Mn 34 Al 15 Ni 7.5 shape memory alloy wires were investigated. It was shown that a …
In the field of structural health monitoring, innovative methods of non-destructive evaluation (NDE) are being investigated to enable safer, longer lasting structures. In concrete …
J Xia, T Omori, R Kainuma - Scripta Materialia, 2020 - Elsevier
The effect of Al content on the abnormal grain growth of Fe–Mn–Al–Ni shape memory alloy is investigated in comparison with the previously reported Fe–Mn–Al–Ni–Ti alloy …
LW Tseng, J Ma, M Vollmer, P Krooß, T Niendorf… - Scripta Materialia, 2016 - Elsevier
The effect of heat treatments on superelasticity was investigated in a FeMnAlNi polycrystalline alloy using incremental tensile strain tests at room temperature. Large grains …
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 …