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Comparison of AC and pulsed magnetization-based elasto-magnetic methods for tensile force measurement in steel strand

机译:基于AC和脉冲磁化的弹性磁性方法的比较钢绞线拉伸力测量

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摘要

AC and pulsed magnetization-based elasto-magnetic measurement methods of tensile force in steel strand are compared in the study. Completely opposite conclusions on the dependency of maximum magnetic induction on the tensile force are drawn from the two modes. The opposite conclusions are consistent with the predicted results before and after the Villari reversal point. Harmonic and spectral analysis techniques are introduced to investigate new feature parameters for tensile force characterization. In AC mode, the distortion factor of the induced voltage signals demonstrates the better stability and force prediction accuracy than the conventional time-domain feature parameters of maximum magnetic induction and coercive force. In the pulsed mode, the linear correlation between the spectral amplitudes of the induced pulsed signals and the tensile force is analyzed. A new parameter, the summation of the spectrum amplitudes in a particular band, is introduced to characterize tensile force. The calibration curve for tensile force measurement with the new parameter shows a lower prediction error and hysteresis error compared to the time-domain analysis results. Conclusions obtained from the comparative study on the performance of the two magnetization modes and two types of parameters may provide new insights into the improvements in the tensile force detection accuracy of the elasto-magnetic methods.
机译:在研究中比较了钢绞线拉伸力的基于AC和基于磁化的弹性磁性测量方法。完全相反的结论是从两种模式抽出拉力上的最大磁感应的依赖性的结论。相反的结论与Villari Reversal Point之前和之后的预测结果一致。引入谐波和光谱分析技术来研究拉伸力表征的新特征参数。在交流模式中,感应电压信号的失真因子显示出比最大磁感应和矫顽力的传统时域特征参数更好的稳定性和力预测精度。在脉冲模式中,分析了感应脉冲信号的光谱幅度与拉力之间的线性相关性。一种新参数,特定频带中的光谱幅度的总和,以表征拉力。与新参数的拉伸力测量的校准曲线显示出与时域分析结果相比的较低预测误差和滞后误差。从对比较研究获得的结论是两种磁化模式的性能和两种参数的性能可以提供新的见解,以改善弹性磁性方法的拉伸力检测精度的改进。

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