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A new signal processing method for the nondestructive testing of a steel wire rope using a small device

机译:一种新的信号处理方法,用于使用小型装置的钢丝绳无损检测

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摘要

Problems arise in the detection of defects in wire rope by magnetic flux leakage testing. The most obvious problems are that the excitation devices are cumbersome and inconvenient and the signal-to-noise ratio of damage signals is often low. This paper proposes a small detector. Compared with traditional detection devices, the proposed device has the advantages of a simple structure, easy installation, low weight and good portability. The weight of the device is only 508 g. The surface of the wire rope is characterized by wires and strands. The amplitude of the strand-waveform magnetic signal generated by the special helical structure of wire rope is larger than that of the defect signal. The magnetic image is processed using an adaptive spatial notch filter and the gradient method, and the detection results are analyzed. The strand-waveform magnetic signal cannot be completely eliminated, and not all defects can be detected. A new method is proposed to eliminate strand-waveform noise using the instantaneous phase solution in Hilbert transform and wavelet analysis. Experiments show that the proposed method suppresses noise well and detects and accurately locates all defects.
机译:通过磁通漏电检测检测钢丝绳缺陷的问题。最明显的问题是激励装置是麻烦的,并且损坏信号的信噪比通常很低。本文提出了一个小探测器。与传统检测装置相比,所提出的装置结构简单,安装方便,重量低,便携性良好。设备的重量仅为508克。钢丝绳的表面的特征在于电线和股线。由钢丝绳的特殊螺旋结构产生的股线波形磁信号的幅度大于缺陷信号的幅度。使用自适应空间缺口滤波器和梯度方法处理磁性图像,并分析检测结果。不能完全消除股线波形磁信号,并且并非所有缺陷都不能检测到。建议使用Hilbert变换和小波分析中的瞬时阶段解决方案来消除股线波形噪声。实验表明,所提出的方法抑制噪声良好并检测并准确地定位所有缺陷。

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