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首页> 外文期刊>Intermetallics >Influence of Bridgman solidification on microstructures and magnetic behaviors of a non-equiatomic FeCoNiAlSi high-entropy alloy
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Influence of Bridgman solidification on microstructures and magnetic behaviors of a non-equiatomic FeCoNiAlSi high-entropy alloy

机译:布里奇曼凝固对非等原子FeCoNiAlSi高熵合金的组织和磁行为的影响

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摘要

The non-equiatomic FeCoNiAlSi alloy is prepared by the Bridgman solidification (BS) technique at different withdrawal velocities (V = 30, 100, and 200 pm/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. (C) 2015 Elsevier Ltd. All rights reserved.
机译:非等原子FeCoNiAlSi合金是通过Bridgman凝固(BS)技术以不同的拉拔速度(V = 30、100和200 pm / s)制备的。已经使用各种表征技术来研究微观结构和晶体取向。从等轴晶粒到柱状晶体,伴随以不同退出速度制备的合金晶体生长的形态演变几乎相同。矫顽力的转变与局部微观结构密切相关,而饱和磁化强度在不同位置变化很小。当所施加的磁场方向平行于晶体生长方向时,无论抽出速度如何,矫顽力都可以从等轴晶区域到柱状晶体区域显着降低。另外,当施加的磁场方向不同时,合金具有磁各向异性。 (C)2015 Elsevier Ltd.保留所有权利。

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