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首页> 外文期刊>Journal of Applied Physics >Ultra low frequency Barkhausen noise versus domain structure and reversal magnetization in sintered (NdDy)(FeCo)B magnets
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Ultra low frequency Barkhausen noise versus domain structure and reversal magnetization in sintered (NdDy)(FeCo)B magnets

机译:烧结(NdDy)(FeCo)B磁体中超低频Barkhausen噪声与畴结构和反向磁化的关系

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摘要

The continuous and jumpwise components of the magnetic relaxation were analyzed in the (NdDy)(FeCo)B sintered magnets in the stationary magnetic field close to the coercive field. The jumpwise magnetic relaxation of the extremely low frequency (similar to 0.01-0.1 Hz) and a large average amplitude (similar to 0.2%) of the saturation magnetization were revealed. The 2%-3% Sm doping ions increase the continuous relaxation up to 2 times and decrease the magnetization probability and average jump size down to 1.5 times. The spectral power of the magnetization jumps corresponds to the white noise appearing due to the uncorrelated individual magnetization reversal of the similar to 10(3) independent grains. The continuous relaxation is due to the domain wall motion. Magnetic force microscopy allows us to distinguish the domain walls shift and the reversal of the grains to estimate the energy and width of the domain walls. First order reversal curve analysis revealed the contribution of the 2-14-1 phase and isolated 1-4-1 phase inclusions and the effect of Sm doping on the distribution of the switching and interaction fields of these phases. Published by AIP Publishing.
机译:在(NdDy)(FeCo)B烧结磁体中在接近矫顽场的固定磁场中分析了磁弛豫的连续分量和跳跃分量。显示了极低频率(类似于0.01-0.1 Hz)的跳跃磁弛豫和饱和磁化强度的大平均幅度(类似于0.2%)。 2%-3%Sm掺杂离子可将连续弛豫提高2倍,并将磁化概率和平均跳变大小降低至1.5倍。磁化跃迁的谱功率对应于白噪声,该白噪声是由于与10(3)个独立晶粒相似的独立磁化反转而产生的。连续松弛是由于畴壁运动引起的。磁力显微镜使我们能够区分畴壁的移动和晶粒的反转,从而估算畴壁的能量和宽度。一阶反转曲线分析揭示了2-14-1相和孤立的1-4-1相夹杂物的贡献以及Sm掺杂对这些相的开关场和相互作用场分布的影响。由AIP Publishing发布。

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