Influences of surface state on thermal stability and magnetic properties of Fe-Si-B-C amorphous alloy

S. Zhang, Wenqiang Li, Chengfu Han, S. Wu, Chen Chen, Ran Wei, Tan Wang, Fushan Li
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Abstract

Influences of surface state on thermal stability and magnetic properties for Fe82Si1B12C5 completely amorphous alloys and Fe83Si1B12C4 amorphous alloys with partial crystallization at their surface have been investigated by layer polished-removal method. The crystallization enthalpy of α-Fe phase for the two amorphous alloys decreases obviously with polishing removal of surface layer with the thickness of removal, due to the alteration of internal stress state. An increase of only 1.2% in Fe content causes an increase of 8.4 % in crystallization enthalpy of α-Fe phase for the alloy system with an initial casting thickness, indicating that the thermal stability is stress-sensitive for Fe-based amorphous alloys with high Fe content close to amorphous forming boundary are easier to crystallize. It was found that in the as-quenched state the coercivity for both of them increases linearly with the thickness of removal, which is caused by an increase in internal stress. And it was confirmed by experiment that adequate annealing can greatly improve the soft magnetic properties and alter thermal stability.
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表面状态对Fe-Si-B-C非晶合金热稳定性和磁性能的影响
采用层磨去除法研究了表面状态对Fe82Si1B12C5完全非晶合金和Fe83Si1B12C4表面部分结晶非晶合金热稳定性和磁性能的影响。由于内应力状态的改变,两种非晶态合金α-Fe相的结晶焓随着抛光去除表层厚度的增加而明显降低。铁含量仅增加1.2%,α-Fe相的结晶焓增加8.4%,表明铁基非晶合金的热稳定性是应力敏感的,铁含量越高,靠近非晶形成边界越容易结晶。结果表明,在淬火状态下,两种材料的矫顽力均随去除厚度的增加而线性增加,这是由内应力的增加引起的。实验证实,适当的退火处理可以大大改善材料的软磁性能,改变材料的热稳定性。
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