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Effect of P addition on nanocrystallization and high temperature magnetic properties of low B and Nb containing FeCo nanocomposites

机译:磷的添加对低B和Nb的FeCo纳米复合材料的纳米晶化和高温磁性能的影响

摘要

The P content dependencies of the nanocrystallization behaviors and high temperature magnetic properties of the Fe54.6Co29.4Si2.8(B0.8−YPY)14Nb1Cu1 (Y = 0, 0.2, and 0.3) alloys have been investigated. Alloys were prepared by melt spinning and subsequently annealed in an argon atmosphere to induce nanocrystallization. P addition increases primary crystallizationtemperature (Tx1), thermal stability (ΔTx), and activation energy (QJMA) for secondary crystallization in as-cast alloys. The saturation induction (Bs) of 1.68 T for as-cast P free alloy decreases continuously with the addition of P. However, the soft magnetic properties are enhanced for P added alloys. The XRD pattern reveals that grain refinement increases with increasing P contents. Alloysannealed at 430 °C confirm primary nanocrystallization of α-FeCo in the amorphous matrix, while annealing at 550 °C causes secondary crystallization of other non-magnetic phases as well. The magnetic moment of as-cast and annealedalloys, measured by vibrating sample magnetometry (VSM), has minimum values at two temperatures, labeled Tc1, Tc2, prior to secondary crystallization, corresponding to the ferromagnetic transitions of as-quenched amorphous and residual amorphous phase, respectively. The stabilization of amorphous phase delays primary crystallization, resulting in increase of Tc1 for P-rich as-cast alloys.
机译:研究了Fe54.6Co29.4Si2.8(B0.8-YPY)14Nb1Cu1(Y = 0、0.2和0.3)合金的纳米晶行为和高温磁性能的P含量依赖性。通过熔融纺丝制备合金,然后在氩气气氛中退火以诱导纳米结晶。 P的添加会增加铸态合金中二次结晶的一次结晶温度(Tx1),热稳定性(ΔTx)和活化能(QJMA)。不含P的铸态P合金的饱和磁感应强度(Bs)为1.68 T,随着P的添加而连续降低。但是,添加P的合金的软磁性能得到了增强。 XRD图谱表明,随着P含量的增加,晶粒细化程度增加。在430 C退火的合金证实了非晶态基体中α-FeCo的初次纳米结晶,而在550 C的退火也导致了其他非磁性相的二次结晶。通过振动样品磁强计(VSM)测量的铸态和退火合金的磁矩在二次结晶之前在两个温度下分别标为Tc1,Tc2,具有最小值,与淬火后的非晶态和残余非晶态相的铁磁跃迁相对应。 , 分别。非晶相的稳定化延迟了一次结晶,导致富P铸态合金的Tc1增加。

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