Composition design principles for Fe–Mn–Si–Cr–Ni based alloys with better shape memory effect and higher recovery stress
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference14 articles.
1. Shape memory effect in γ⇄ϵ transformation in Fe-30Mn-1Si alloy single crystals
2. Physical properties controlling shape memory effect in FeMnSi alloys
3. Effects of alloying additions on Fe-Mn-Si shape memory alloys.
4. Effect of Cu, Mo, Si on the content of retained austenite of austempered ductile iron
5. Effect of Pre-Deformation of Austenite on Shape Memory Properties in Fe-Mn-Si-based Alloys Containing Nb and C
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1. Tailoring functional properties of a FeMnSi shape memory alloy through thermo-mechanical processing;Journal of Materials Research and Technology;2024-03
2. Simulation and experimental characterization of VC precipitation and recovery stress formation in an FeMnSi-based shape memory alloy;Journal of Alloys and Compounds;2023-04
3. Recovery stress and strain behavior of Cr20Mn20Fe20Co35Ni5 high entropy alloy deformed via severe plastic deformation;Materials Characterization;2023-03
4. Numerical simulation of extrusion of FeMnSiCrNi/NiTiNb dissimilar shape memory alloy composite tube based on finite element method and cellular automaton;IOP Conference Series: Materials Science and Engineering;2022-12-01
5. Grain size effect on the recovery stress and strain of a Fe–Mn–Si shape memory alloy in a wide range of grain sizes;Materials Science and Engineering: A;2022-10
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