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Controllable Magnetic Hysteresis Measurement of Electrical Steels in a Single-Yoke Open Configuration

机译:单轭开放式结构中电工钢的可控磁滞测量

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摘要

A newly developed measurement system was comprehensively tested for the industrially attractive case of an open magnetic circuit. Series of industrial electrical steels were magnetized by a single yoke through a gap of several millimeters. According to standards, the magnetic induction waveform was adjusted to a 50-Hz sine curve using a digital feedback procedure. The magnetic surface fields above the sample were measured directly by a vertically mounted array of three Hall sensors. The actual magnetic field was determined by a linear extrapolation of the measured field profile to the sample face. It was experimentally shown that control of the induction waveform and simultaneous direct determination of the sample field make the hysteresis loop measurements independent of the yoke-sample gap. In addition, the obtained physically correct data show good linear correlations with the corresponding standard values measured by a single sheet tester. These outcomes are important for revision of the principles of industrial testing and further development of the measurement standards.
机译:新开发的测量系统已针对具有工业吸引力的开放式磁路案例进行了全面测试。一系列轭铁将一系列工业电工钢磁化了几毫米的间隙。根据标准,使用数字反馈程序将磁感应波形调整为50 Hz正弦曲线。样品上方的磁场表面是通过垂直安装的三个霍尔传感器阵列直接测量的。实际磁场是通过将测得的磁场轮廓线性外推到样品表面来确定的。实验表明,感应波形的控制和样品场的同时直接确定使得磁滞回线的测量不受轭样品间隙的影响。另外,所获得的物理正确数据与由单张纸测试仪测量的相应标准值显示出良好的线性相关性。这些结果对于修订工业测试原理和进一步发展测量标准非常重要。

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