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Influence of Thermal Treatment on Frequency Dependence of the Switching Field in Amorphous and Nanocrystalline FeNiMoB Microwires

机译:热处理对非晶和纳米晶FeNiMoB微丝开关场频率依赖性的影响

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摘要

Amorphous and nanocrystalline ferromagnetic glass-coated microwires show excellent magnetic properties that make them very suitable to be employed as sensing elements in devices for technical applications. New Fe_(40)Ni_(38)Mo_4B_(18) alloy composition can be appropriate to prepare soft magnetic nanocrystalline microwires which exhibit magnetic bistability even in the nanocrystalline state. Stability of magnetic properties after different thermal treatments (T_a = 250-425 ℃) and after nanocrystallization was confirmed by the switching field H_(sw) measurements. The frequency dependence of the switching field was investigated. Two contributions to the domain wall switching mechanism were recognized: magnetoelastic one coming from the magnetoelastic interaction of the magnetic moments with the stresses and relaxation one coming from the structural relaxation of local defects at atomic scale. But, the relative role of both contributions has been shown to vary strongly in different stage of devitrification.
机译:非晶态和纳米晶铁磁玻璃涂层微线显示出出色的磁性,使其非常适合用作技术应用设备中的传感元件。新的Fe_(40)Ni_(38)Mo_4B_(18)合金成分可能适合制备即使在纳米晶态下也显示出磁性双稳态的软磁性纳米晶微线。通过开关场H_(sw)的测量证实了不同热处理(T_a = 250-425℃)和纳米结晶后的磁性能稳定性。研究了开关场的频率依赖性。认识到对畴壁转换机制的两个贡献:磁弹性的一个来自磁矩与应力的磁弹性相互作用,弛豫的一个来自原子尺度上局部缺陷的结构弛豫。但是,在失透的不同阶段,两种贡献的相对作用已显示出很大的差异。

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