Title: Evolution of microstructure and texture in FeCoCr(Al, Mn)0.25 magnetic high entropy alloy during thermomechanical processing and its mechanical properties
Authors: Ahmed, Zaid
Sathiaraj, Dan
Kumar, Satheesh
Chelvane, Arout
Freudenberger, Jens
Kučerová, Ludmila
Citation: JIRKOVÁ, Hana ed.; JENÍČEK, Štepán ed. Proceedings PING 2019: modern trends in material engineering: 10.-13.09.2019, Pilsen. 1. vyd. Plzeň: University of West Bohemia, 2019, s. 48. ISBN 978-80-261-0879-5.
Issue Date: 2019
Publisher: University of West Bohemia
Document type: konferenční příspěvek
conferenceObject
URI: http://hdl.handle.net/11025/35232
ISBN: 978-80-261-0879-5
Keywords: magnetická slitina s vysokou entropií;termomechanické zpracování;elektronová zpětně rozptýlená difrakce;mikrostruktura;textura
Keywords in different language: magnetic high entropy alloy;thermomechancial processing;electron backscattered diffraction;microstructure;texture
Abstract in different language: Since last decade, HEAs have gained tremendous importance due to its superior mechanical and functional properties when compared to conventional alloys. Among the different functional alloys FCC structured FeCoCr(Al, Mn)0.25 alloy possessing high magnetic saturation, high Curie temperature, low coercivity coupled with excellent tensile ductility is introduced recently. In this study, the cast and homogenized FeCoCr(Al, Mn)0.25 alloy is thermomechanically processed by cold rolling (93% reduction) and subsequent annealing at varying temperatures (800C, 900C, 1000C and 1100C for 1hr). The effect of thermomechanical processing conditions on the microstructural evolution is characterized by Electron backscattered diffraction (EBSD) studies and correlation is established between mechanical properties and evolution of microstructure and crystallographic texture.
Rights: © University of West Bohemia
Appears in Collections:Proceedings PING 2019: modern trends in material engineering
Konferenční příspěvky / Conference Papers (RTI)
Proceedings PING 2019: modern trends in material engineering

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