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首页> 外文期刊>Acta metallurgica Sinica >STUDY OF MECHANISM OF RQ EMBRITTLEMENT OF Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9 NANOCRYSTALLINE SOFT MAGNETIC ALLOY
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STUDY OF MECHANISM OF RQ EMBRITTLEMENT OF Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9 NANOCRYSTALLINE SOFT MAGNETIC ALLOY

机译:Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9纳米软磁合金RQ析出机理的研究

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摘要

Rapidly quenching embrittlement (RQE) sometimes appears in Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9 nanocrystalline soft magnetic alloy (FINEMET) during production process. As a result of RQE the ductility of the as-quenched ribbon drops seriously. The mechanism of RQE has been elucidated in the recent works of current authors. It was believed that RQE is due to the structural relaxation but not related to alpha-Fe (Si) crystallization. In this paper, the high resolution TEM (HRTEM) method and image digital processing were applied to analyze the HRTEM images of two FINEMET rapidly quenched ribbons with different thicknesses in detail. In the thinner ductile sample, the ordering domains with the size of about 3nm are observed. In the thicker RQE sample, the metastable nanocrystalline domains with the size of 18nm are observed along with the structural relaxation. These domains seem to have Fe_3B-like metastable phase structure on nanometer scale. The result indicates that the local atomic ordering regions extend when RQE induced by structural relaxation occurs.
机译:在生产过程中,Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9纳米晶软磁合金(FINEMET)有时会出现快速淬火脆化(RQE)。由于RQE,淬火碳带的延展性严重下降。在当前作者的最新著作中已经阐明了RQE的机制。据认为,RQE是由于结构松弛而与α-Fe(Si)结晶无关。本文采用高分辨率TEM(HRTEM)方法和图像数字处理技术,对两根不同厚度的FINEMET快速淬火带的HRTEM图像进行了详细分析。在较薄的延展性样品中,观察到大小约为3nm的有序域。在较厚的RQE样品中,观察到18纳米大小的亚稳态纳米晶域以及结构弛豫。这些域似乎具有纳米级的Fe_3B样亚稳相结构。结果表明,当由结构弛豫引起的RQE发生时,局部原子有序区域扩展。

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