| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 1599712 | Intermetallics | 2015 | 6 Pages | 
Abstract
												The non-equiatomic FeCoNiAlSi alloy is prepared by the Bridgman solidification (BS) technique at different withdrawal velocities (V = 30, 100, and 200 μm/s). Various characterization techniques have been used to study the microstructure and crystal orientation. The morphological evolutions accompanying the crystal growth of the alloy prepared at different withdrawal velocities are nearly the same, from equiaxed grains to columnar crystals. The transition of coercivity is closely related to the local microstructure, while the saturation magnetization changes little at different sites. The coercivity can be significantly reduced from the equiaxed grain area to the columnar crystal area when the applied magnetic field direction is parallel to the crystal growth direction, no matter what is the withdrawal velocity. In addition, the alloy possesses magnetic anisotropy when the applied magnetic field is in different directions.
											Keywords
												
											Related Topics
												
													Physical Sciences and Engineering
													Materials Science
													Metals and Alloys
												
											Authors
												Tingting Zuo, Xiao Yang, Peter K. Liaw, Yong Zhang, 
											