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Nanocrystallization Behavior of Fe_(40)Ni_(38)B_(18)Mo_4 Soft Magnetic Alloy

机译:Fe_(40)Ni_(38)B_(18)MO_4软磁合金的纳米晶体化行为

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The Herzer model suggests that superior magnetic properties can be observed in magnetic alloys provided a suitable microstructure consisting of soft magnetic nanometre size precipitates separated by nanometre size distances is obtained. In order to explore new magnetic alloy compositions which can satisfy the Herzer model, we studied selected alloys in which we wished to obtain suitable microstructures, one such alloy has the composition Fe_(40)Ni_(38)B_(18)Mo_4. This alloy is amorphous as received, the heat treatment schedule required to obtain nano-precipitates was designed based on DSC, resistivity and x-ray results. Heat treatment at temperatures between 420 deg C and 500 deg C and different heat times was carried out on the amorphous ribbon Transmission Electron Microscopy (TEM) results of the early stage of crystallization behavior showed that soft magnetic precipitates of nano-size were indeed observed within the amorphous matrix. The crystal structure, composition analysis and thermal stability of the precipitates were studied by XRD, EDS and TEM. These results will be presented and the implication of these results to the production of new soft magnetic alloys will be emphasized.
机译:赫拉模型表明,在磁性合金中可以观察到优异的磁性,所以提供了由纳米尺寸距离分离的软磁纳米大小沉淀物组成的合适的微观结构。为了探索能够满足毛泽型料的新磁性合金组合物,我们研究了所选合金,其中我们希望获得合适的微观结构,其中一种这种合金具有组合物Fe_(40)Ni_(38)B_(18)Mo_4。该合金是如所接收的,所需的热处理时间表是基于DSC,电阻率和X射线结果设计的。在420℃和500℃之间的温度下的热处理和不同的热时间在非晶带透射电子显微镜(TEM)的早期结晶行为的结果表明,在内部纳米尺寸的软磁沉淀物确实观察到非晶基质。通过XRD,EDS和TEM研究沉淀物的晶体结构,组成分析和热稳定性。将强调将提出这些结果,并强调这些结果对新的软磁合金生产的影响。

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