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Effect of Al on the Structure and Magnetic Properties of Nanocrystalline FeSiBPCu Melt-Spun Ribbons

机译:Al对纳米晶Fesibpcu熔纺带的结构和磁性的影响

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In this work, we have studied the effects of the addition of Al on the structure, thermal behavior and magnetic properties of rapidly solidified Fe-83.3(Si0.25B0.562P0.188)(16-x)Cu0.7Alx (x = 0, 0.5, 1 and 1.5) melt spun ribbons prepared by single roller melt-spinning process. All of the samples were studied using various techniques such as X-ray diffraction (XRD), differential scanning calorimetry, vibrating sample magnetometer and B-H loop tracer. The average crystallite sizes obtained for the Al-added samples were in the range of 10-18 nm confirmed by XRD results. Thermal analysis results revealed that by adding Al up to 1 at.%, the first crystallization peak shifted towards lower temperature and second peak to the higher temperature compared to the sample without Al. The highest maximum saturation magnetization (1.8 T) was obtained for the 0.5 at.% Al added alloy. Also the magnitude of coercivity was lowest for 1 at.% Al-added alloy. This was mainly related to the decrease of magnetostriction and magnetocrystalline anisotropy substitution of Al atoms for Si, P and Fe in the structure of bcc-Fe.
机译:在这项工作中,我们研究了Al对快速凝固Fe-83.3(Si0.25b0.562p0.188)(16-x)Cu0.7alx(x = 0)的结构,热行为和磁性的影响,0.5,1和1.5)通过单辊熔融纺丝工艺制备的0.5,1和1.5)熔纺带。使用诸如X射线衍射(XRD),差示扫描量热仪和B-H环路示踪剂等各种技术研究了所有样品。通过XRD结果证实的Al-添加的样品获得的平均微晶尺寸在10-18nm的范围内。热分析结果表明,通过最多1℃加入。%,与没有Al的样品相比,第一结晶峰朝向更低的温度和第二峰升高到较高温度。获得最高最大饱和磁化强度(1.8吨),得到0.5at。%Al加入合金。矫顽力的大小也为1at。%Al加入合金。这主要与BCC-Fe结构中的Si,P和Fe的Al原子的磁致伸缩和磁镀层各向异性取代的减少有关。

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