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Magnetostriction of Silicon Steel Sheets Under Different Magnetization Conditions

机译:硅钢板在不同磁化条件下的磁致伸缩

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The magnetostriction of electrical steel is one of the main sources causing deformation and vibration in rotational machine and transformer cores. The presence of dc bias or higher harmonics of magnetic field in the electrical apparatus cores makes the vibration and noise of cores more serious. Therefore, it is necessary to identify how different magnetization patterns contribute to the magnetostriction noise. This paper performs the measurement of magnetostrictive strain in non-oriented and grain-oriented electrical steel sheets under sinusoidal excitation, one with a dc bias and the other with a third harmonic component, respectively. An investigation of the effect of dc biased magnetic field on the magnetostrictive property is carried out. The influences of a third harmonic of magnetic field with a variety of amplitudes and phase delay on magnetostriction are studied and the acoustic noise level is calculated due to the presence of the second (100 Hz) and fourth (200 Hz) harmonics of magnetostrictive strain. The research results are important for evaluating the noise of electrical machine and transformer core effectively.
机译:电工钢的磁致伸缩是引起旋转电机和变压器铁芯变形和振动的主要来源之一。电气设备磁芯中存在直流偏置或磁场的高次谐波,使磁芯的振动和噪声更加严重。因此,有必要确定不同的磁化模式如何引起磁致伸缩噪声。本文对正弦激励下无取向和晶向电磁钢板的磁致伸缩应变进行了测量,其中一个带有直流偏置,另一个带有三次谐波分量。研究了直流偏置磁场对磁致伸缩性能的影响。研究了具有不同幅度和相位延迟的磁场三次谐波对磁致伸缩的影响,并由于存在磁致伸缩应变的第二(100 Hz)和第四(200 Hz)谐波,计算了声噪声级。研究结果对有效评估电机和变压器铁芯的噪声具有重要意义。

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