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Crystallization and magnetic behaviour of Fe-Nb-Cu-Si-B alloys

机译:Fe-Nb-Cu-Si-B合金的结晶和磁行为

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The crystallization and magnetic properties of Fe72.5Nb4.5Cu1Si10B12, Fe73.5Nb3Cu1Si13.5B9 and Fe72Nb4.5Cu1Si13.5B9 alloys have been studied. After primary crystallization, the alpha-Fe(Si) phase was formed for the alloy which has 10 at.%Si. The ordered Fe80Si20 phase was formed for alloys containing 13.5 at.% Si. The activation energy for the formation of the alpha-Fe(Si) phase was 67 kcal mol(-1), which is lower than that for the formation of the ordered phase. In the scanning temperature variation of resistivity measurement, a drop in resistivity was found during the formation of the alpha-Fe(Si) phase whereas a rise in resistivity was observed during primary crystallization for the other two alloys. Grain-boundary scattering and the low-temperature coefficient of resistivity were the causes of the rise in resistivity during the formation of the ordered phase. The Fe72Nb4.5Cu1Si13.5B9 alloy exhibited superior soft-magnetic properties among the measured alloys when annealed between 825 and 875 K for 30 min. The rapid deterioration in the magnetic properties at higher temperatures of the annealed alloys was primarily due to the formation of the Fe2B phase, which has a strong magnetocrystalline anisotropy energy. [References: 20]
机译:研究了Fe72.5Nb4.5Cu1Si10B12,Fe73.5Nb3Cu1Si13.5B9和Fe72Nb4.5Cu1Si13.5B9合金的结晶和磁性。初次结晶后,形成了具有10at。%Si的合金的α-Fe(Si)相。对于含13.5 at。%Si的合金,形成有序的Fe80Si20相。形成α-Fe(Si)相的活化能为67 kcal mol(-1),低于形成有序相的活化能。在电阻率测量的扫描温度变化中,在形成α-Fe(Si)相期间发现电阻率下降,而其他两种合金在初次结晶过程中发现电阻率上升。晶界散射和低温电阻率系数是有序相形成过程中电阻率升高的原因。当在825和875 K之间退火30分钟时,Fe72Nb4.5Cu1Si13.5B9合金在被测合金中表现出优异的软磁性能。退火合金在较高温度下的磁性能迅速下降主要是由于形成了Fe2B相,该相具有很强的磁晶各向异性能。 [参考:20]

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