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Microstructure and Magnetic Properties of Undercooled Fe-80atNi Alloys

机译:Fe-80at%Ni过冷合金的组织和磁性

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Bulk Fe-g0at%Ni melts were undercooled by using cyclic superheating and glass slag purification technique, and the maximum undercooling 340 K could be achieved. The microstructures of Fe-80at%Ni alloys were observed by means of optical microscope (OM). The phase composition was identified by X-ray diffraction (XRD) analysis. The magnetic properties of Fe-80at% Ni alloys were measured by vibrating sample magnetometer (VSM) with a DC M-H analyzer. The results showed that there was only single γ-(Fe, Ni) phase existing in undercooled Fe-80at%Ni alloys. Two grain refinements and one grain coarsening were observed in the undercooling range from 28 K to 340 K. The first grain refinement could be ascribed to dendrite-remelting, and the second to recrystallization induced by the stress originating from rapid solidification. The grain coarsening could be considered as a result of solid-state grain coalescence. The measurement of soft magnetic properties showed that the grain size D decreases with an increase of undercooling, the maximum Ms is 109.98emu/g, corresponding to minimum grain size 42.9μm or undercooling 210 K, and the coercive force Hc is in proportion to the reciprocal of grain size D-1.
机译:利用循环过热和玻璃渣净化技术对块状Fe-g0at%Ni熔体进行过冷,可以达到最大过冷340K。通过光学显微镜(OM)观察了Fe-80at%Ni合金的显微组织。通过X射线衍射(XRD)分析鉴定相组成。 Fe-80at%Ni合金的磁性能通过使用DC M-H分析仪振动样品磁力计(VSM)进行测量。结果表明,过冷的Fe-80at%Ni合金中仅存在单个γ-(Fe,Ni)相。在28 K至340 K的过冷范围内观察到两次晶粒细化和一次晶粒粗化。第一次晶粒细化可归因于枝晶重熔,第二次晶粒细化归因于快速凝固产生的应力。晶粒粗化可以认为是固态晶粒聚结的结果。软磁性能的测量结果表明,随着过冷度的增加,晶粒度D减小,最大Ms为109.98emu / g,对应最小晶粒度42.9μm或过冷度210 K,矫顽力Hc与晶粒度成正比。晶粒尺寸D-1的倒数。

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