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Study of Metal Magnetic Memory (MMM) Technique Using Permanently Installed Magnetic Sensor Arrays

机译:使用永久安装的磁传感器阵列的金属磁存储器(MMM)技术研究

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The metal magnetic memory (MMM) effect has been reported to be a non-destructive testing technique capable of evaluating stress concentration and detecting defects in steel. This method has been shown to work well in some instances, but has failed in other trials. Its mechanism has been explained widely but the sensitivity to stress concentration has not been satisfactorily investigated. In this paper, both the normal and tangential components of the stress induced MMM signal were measured by two permanently installed magnetic sensor arrays on two types of notched L80 steel specimens. As expected, the results show that an externally applied magnetic field changes the magnetic field perturbation due to the notches linearly. Plastic deformation and residual stress around notches will increase the remnant flux leakage but the effects are small, which suggests that the MMM effect is very small in the material tested and that it will not be useful in practice.
机译:据报道,金属磁存储器(MMM)效应是一种能够评估应力浓度和钢中缺陷的非破坏性测试技术。此方法已在某些情况下显示良好,但在其他试验中失败。其机制已被广泛解释,但对压力浓度的敏感性尚未令人满意地研究。在本文中,通过两个永久安装的磁传感器阵列进行了两种缺陷的L80钢样本来测量应力诱导的MMM信号的正常和切向分量。正如预期的那样,结果表明,外部施加的磁场因线性线性而导致的磁场扰动。凹陷周围的塑料变形和残余应力将增加残余的助焊剂泄漏,但效果很小,这表明在测试的材料中毫米效应非常小,并且在实践中将无用。

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