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首页> 外文期刊>Scientific reports. >Dynamic volume magnetic domain wall imaging in grain oriented electrical steel at power frequencies with accumulative high-frame rate neutron dark-field imaging
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Dynamic volume magnetic domain wall imaging in grain oriented electrical steel at power frequencies with accumulative high-frame rate neutron dark-field imaging

机译:累积高帧速中子暗场成像在功率频率下取向电磁钢的动态体积磁畴壁成像

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摘要

The mobility of magnetic domains forms the link between the basic physical properties of a magnetic material and its global characteristics such as permeability and saturation field. Most commonly, surface domain structure are studied using magneto-optical Kerr microscopy. The limited information depth of approx. 20 nanometers, however, allows only for an indirect interpretation of the internal volume domain structures. Here we show how accumulative high-frame rate dynamic neutron dark-field imaging is able for the first time to visualize the dynamic of the volume magnetic domain structures in grain oriented electrical steel laminations at power frequencies. In particular we studied the volume domain structures with a spatial resolution of ~100?μm and successfully quantified domain sizes, wall velocities, domain annihilation and its duration and domain wall multiplication in real time recordings at power frequencies of 10, 25 and 50?Hz with ±262.5?A/m and ±525?A/m (peak to peak) applied field.
机译:磁畴的迁移率构成了磁性材料的基本物理特性与其整体特性(例如磁导率和饱和场)之间的联系。最常见的是,使用磁光Kerr显微镜研究表面域结构。有限的信息深度约为然而,20纳米仅允许间接解释内部体积域结构。在这里,我们展示了累积的高帧频动态中子暗场成像如何首次能够可视化在功率频率下晶粒取向电工钢叠片中体积磁畴结构的动态。特别是,我们研究了空间分辨率为〜100?μm的体积域结构,并成功地实时记录了功率频率为10、25和50?Hz时的域大小,壁速度,域an灭及其持续时间和域壁倍增在±262.5?A / m和±525?A / m(峰到峰值)的应用场中。

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