Electron beam welding of Fe–Mn–Al–Ni shape memory alloy: Microstructure evolution and shape memory response
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In: Functional Materials Letters Vol. 10 / No. 4 (2017-07-03) , S. ; eisssn:1793-7213
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The present study reports on the impact of abnormal grain growth (AGG) on the microstructural evolution following electron beam (EB) welding of Fe–Mn–Al–Ni shape memory alloy (SMA). Polycrystalline sheet-like material was EB-welded and a cyclic heat treatment, studied in previous work, was conducted for inducing AGG and a bamboo-like microstructure, respectively. Optical and electron microscopy were carried out to characterize the prevailing microstructure upon cyclic heat treatment. For characterization of the functional properties following AGG, a load increase test was conducted. The current results clearly show that good shape memory response can be obtained in Fe–Mn–Al–Ni SMA upon EB welding and subsequent post-heat treatment. These results further substantiate the potential use of conventional processing routes for Fe–Mn–Al–Ni SMA.
@article{doi:10.17170/kobra-202305198051, author ={Krooß, Philipp and Günther, Johannes and Halbauer, Lars and Vollmer, Malte and Buchwalder, Anja and Zenker, Rolf and Biermann, Horst and Niendorf, Thomas}, title ={Electron beam welding of Fe–Mn–Al–Ni shape memory alloy: Microstructure evolution and shape memory response}, keywords ={620 and 660 and Elektronenstrahlschweißen and Bambus and Mikrostruktur and Phasenumwandlung and Kornwachstum and Pseudoelastizität and Memory-Legierung}, copyright ={http://creativecommons.org/licenses/by/4.0/}, language ={en}, journal ={Functional Materials Letters}, year ={2017-07-03} }