首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Distribution of the internal stresses in DC Joule-heated Fe77.5B15Si7.5 conventional amorphous microwires
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Distribution of the internal stresses in DC Joule-heated Fe77.5B15Si7.5 conventional amorphous microwires

机译:直流焦耳加热的Fe77.5B15Si7.5常规非晶微线的内部应力分布

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摘要

The magnetic properties of conventional amorphous microwires are determined by the radial, azimuthal and axial internal stresses induced both during the preparation process and during suitable thermal treatments. We propose a theoretical model in order to determine the total internal stresses induced during the 'complete' dc Joule-heating thermal treatment (heating-crystallization-cooling). We have started from the internal stresses values obtained in the preparation process and we have found that: (i) maximal values of the axial, azimuthal and radial stresses obtained after the thermal treatment are larger than the corresponding values obtained in the preparation process, the differences being of about 350MPa, 150MPa and 200MPa, respectively; (ii) the dimensions of the cylindrical inner core increase significantly (with similar to 15.2%); this fact involves the appearance of a large Barkhausen effect in low axially applied magnetic fields; and (iii) the reduced remanence increases from 0.46 to 0.70.
机译:常规非晶态微线的磁性能由在制备过程中以及在适当的热处理过程中引起的径向,方位角和轴向内应力确定。为了确定在“完全”直流焦耳加热热处理(加热-结晶-冷却)过程中引起的总内应力,我们提出了一个理论模型。我们从制备过程中获得的内部应力值开始,发现:(i)热处理后获得的轴向,方位角和径向应力的最大值大于制备过程中获得的相应值,差异分别约为350MPa,150MPa和200MPa; (ii)圆柱形内芯的尺寸显着增加(接近15.2%);这个事实涉及在低轴向施加的磁场中出现大的巴克豪森效应; (iii)剩余剩磁从0.46增加到0.70。

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