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Temperature Dependence of Coercivity and Magnetic Relaxation in a Mn–Al–C Permanent Magnet

机译:Mn-Al-C永磁体中矫顽力和磁性松弛的温度依赖性

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The kinetics of magnetization reversal in a rare-earth-free Mn–Al–C permanent magnet is reported. The $ext{L}1_{0}$ -phase material was prepared using a combination of the melt spinning and spark plasma sintering techniques and characterized with a vibrating sample magnetometer. Magnetic relaxation and susceptibility experiments were performed. Magnetic viscosity, fluctuation field, and activation volume were measured in a wide temperature range. These data were used to analyze the magnetization reversal and temperature dependence of the coercive field. The thermally activated mechanism of the reversed nucleus formation was confirmed for the intermediate temperatures. The role of wall thickness and crystallite size as additional characteristic lengths in magnetic-domain nucleation is discussed.
机译:报道了无稀土Mn-Al-C永磁体中的磁化反转动力学。 <内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ text {l} 1_ {0} $ -phase材料是使用熔体纺丝和火花等离子体烧结技术的组合制备的,并用a表征振动样品磁仪。进行磁性松弛和易感性实验。在宽温度范围内测量磁粘度,波动场和活化体积。这些数据用于分析矫顽场的磁化反转和温度依赖性。确认中间温度的反转核形成的热活化机制。讨论了壁厚和微晶尺寸作为磁域成核中的额外特征长度的作用。

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