Simulation analysis and experimental investigation of wire rope leakage magnetic field detection

Hongyao Wang, Jie Tian, Z. Tian, H. Guo, Jian-Wu Ma, Yang Wang
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Abstract

As a key bearing component, steel wire ropes suffer from partial wire breakage, broken strands and other types of damage during long-term continuous use. In this study, a magnetic flux circuit was constructed around a wire rope, an excitation detection device and an air gap. The relationship between the direction and angle of the magnetic line of force on the damaged end face was analysed and the waveforms of the inverted U-shaped and M-shaped leakage flux signals and their transition intervals were determined. Following this, focusing on the influence of factors such as the length of the damage, the cross-sectional area and the lift-off value on the magnetic flux leakage signal, the changes in the wave width and the peak value under different variables were analysed and the distribution law of the leakage magnetic field around the wire rope damage under different control variables was determined.
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钢丝绳漏磁场检测的仿真分析与实验研究
钢丝绳作为关键的承载部件,在长期连续使用过程中会出现部分断丝、断股等类型的损坏。在本研究中,在钢丝绳、励磁检测装置和气隙周围构建磁通回路。分析了损伤端面磁力线方向与角度的关系,确定了倒u型和倒m型泄漏磁通信号的波形及其过渡区间。接着,重点研究损伤长度、截面积、升离值等因素对漏磁信号的影响,分析了不同变量下的波宽和峰值变化,确定了不同控制变量下钢丝绳损伤周围漏磁场的分布规律。
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