焊缝疲劳损伤自有漏磁场检测

Experiment on self-magnetic flux leakage detection of weld fatigue damage

  • 摘要: 焊缝受外部复杂交变载荷作用极易产生疲劳裂纹,进而引起焊接结构件破坏。文中使用隧道磁阻传感器对焊缝疲劳损伤过程自有漏磁场信号进行采集,得到不同疲劳载荷循环次数下检测信号波形及幅值变化特征,通过有限元仿真软件证实了检测结果的正确性。结果表明,裂纹萌生阶段,加载前后检测信号波形分布发生显著变化,随着载荷循环次数增加,信号波形及幅值在小范围内波动;裂纹萌生后,检测信号受裂纹处漏磁场影响信号幅值反向增大,裂纹扩展前期受裂纹长度及尖端张开角度限制,信号幅值增长缓慢;裂纹扩展中后期裂纹长度及尖端张开角度均快速增长,信号幅值也随之快速增大;断裂后磁场信号发生明显反转,可通过磁场极性改变判断是否发生断裂。研究结果为后续通过对焊缝疲劳损伤过程自有漏磁场检测分析,以判定其疲劳损伤状态提供了支撑。

     

    Abstract: Under the action of external complex alternating loads, the weld was easy to occur fatigue crack, which would cause damage to the structure. The tunnel magnetoresistance sensor was used to collect the self-magnetic flux leakage field signals in the weld fatigue damage process, and the waveform and amplitude variation characteristics of the detection signals with different fatigue loading cycles were obtained. The correctness of testing results was verified by the finite element simulation software. The results showed that, in crack initiation stage, the waveform distribution of detection signals changed significantly before and after loading. When the number of fatigue loading cycles continued to increase, the waveform and amplitude of signals fluctuated in a small range. After crack initiation, the detection signals were affected by the magnetic flux leakage field of the crack, and the amplitudes of signals increased inversely. In the early stage of crack propagation, the amplitudes increased slowly due to the limitation of crack length and tip opening angle. In the middle and later stage of crack propagation, the crack length and tip opening angle increased rapidly, and the amplitudes of signals also increased rapidly. After the fracture, the magnetic field signals were obviously reversed, and the fracture could be judged by the change of magnetic field polarity. Through the detection and analysis of self-magnetic flux leakage field in the weld fatigue damage process, the research results provided support to determine the fatigue damage state.

     

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