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首页> 外文期刊>Research in nondestructive evaluation: a journal of the American Society for Nondestructive Testing >A DEFECT EVALUATION METHODOLOGY BASED ON MULTIPLE MAGNETIC FLUX LEAKAGE (MFL) TESTING SIGNAL EIGENVALUES
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A DEFECT EVALUATION METHODOLOGY BASED ON MULTIPLE MAGNETIC FLUX LEAKAGE (MFL) TESTING SIGNAL EIGENVALUES

机译:基于多磁通量泄漏(MFL)测试信号特征值的缺陷评估方法

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摘要

This article is based on the associated linearity of magnetic flux leakage signal eigenvalues and detection status information, proposing a methodology that applies multiple magnetic flux leakage signal eigenvalues to evaluate defects and goes a step further in conforming the limitation of the traditional evaluation system, which merely uses signal peak values. In response to the situation that magnetic flux leakage testing signal peak values have been applied as the main parameters to evaluate defects and carry out various related research, we find that the single magnetic flux leakage testing signal peak values cannot exactly represent the leakage magnetic field and reflect the information of the defects. So we attempt to come up with a new way of defects evaluation to better and more accurately evaluate defects. By means of simulation analysis in simulation software ANSYS and experimental verification, the linear relationships between multiple magnetic flux leakage signal eigenvalues and defect parameters through which we can exactly evaluate the defects are obtained, respectively. Finally, the validity of this evaluation system is firmly demonstrated by a practical defect.
机译:本文基于磁通量泄漏信号特征值的相关线性度和检测状态信息,提出应用多个磁通泄漏信号特征值以评估缺陷的方法,并进一步符合传统评估系统的限制,该方法仅适用于传统评估系统的限制使用信号峰值值。为了响应磁通漏电检测信号峰值作为评估缺陷的主要参数并进行各种相关研究的情况,我们发现单磁通量泄漏测试信号峰值不能完全代表漏磁场和反映缺陷的信息。因此,我们试图以一种新的缺陷评估方式提出更好,更准确地评估缺陷。通过仿真软件ANSYS和实验验证的仿真分析,分别获得多个磁通量泄漏信号特征值与我们可以精确地评估缺陷的缺陷参数之间的线性关系。最后,通过实际缺陷牢固地证明了该评估系统的有效性。

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