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首页> 外文期刊>Journal of magnetism and magnetic materials >Soft magnetic property of (Fe_(60)Co_(35)Ni_5)_(78)Si_6B_(12)Cu_1Mo_3 alloys by laser additive manufacturing
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Soft magnetic property of (Fe_(60)Co_(35)Ni_5)_(78)Si_6B_(12)Cu_1Mo_3 alloys by laser additive manufacturing

机译:激光增材制造(Fe_(60)Co_(35)Ni_5)_(78)Si_6B_(12)Cu_1Mo_3合金的软磁性能

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摘要

Laser additive manufacturing (LAM) is a novel method for processing compositionally graded alloys and becomes increasingly important in the context of next-generation manufacturing technology. In this work, (Fe60Co35Ni5)(78)Si6B12Cu1Mo3 soft magnetic alloys with different laser power were designed and processed by the LAM. The magnitudes of magnetic properties were analyzed, and the relationships among compositionmicrostructure-magnetic properties assessed. Results show that the (Fe60Co35Ni5)(78)Si6B12Cu1Mo3 alloys by LAM exhibits relative uniform microstructure and comparable magnetic property compared with those conventional processed alloys. The bcc dominated microstructures exhibit a substantially higher saturation magnetization (Ms). With the increase in power, the average grain size of the alloy increased slightly and the increasing volume fraction of the Fe-Si phase leaded to the enhancement of magnetization. The (Fe60Co35Ni5)(78)Si6B12Cu1Mo3 alloys with laser power of 3000 W exhibits the highest Ms (199 emu/g). The appearance of Fe3B results in coarse dendrites and high coercivity (Hc) in the multiple re-heating cycles.
机译:激光增材制造(LAM)是一种用于加工成分渐变合金的新颖方法,在下一代制造技术的背景下变得越来越重要。在这项工作中,由LAM设计并加工了具有不同激光功率的(Fe60Co35Ni5)(78)Si6B12Cu1Mo3软磁合金。分析了磁性能的大小,并评估了组成微观结构与磁性能之间的关系。结果表明,与传统加工合金相比,LAM的(Fe60Co35Ni5)(78)Si6B12Cu1Mo3合金具有相对均匀的微观结构和相当的磁性能。以bcc为主的微观结构表现出明显更高的饱和磁化强度(Ms)。随着功率的增加,合金的平均晶粒尺寸略有增加,并且Fe-Si相的体积分数增加导致磁化强度增强。激光功率为3000 W的(Fe60Co35Ni5)(78)Si6B12Cu1Mo3合金具有最高的Ms(199 emu / g)。 Fe3B的出现导致多个再加热循环中的粗大枝晶和高矫顽力(Hc)。

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