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Experiment research on the Metal Magnetic Memory in gear micro crack detection

机译:金属磁记忆技术在齿轮微裂纹检测中的实验研究

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Based on the magnetic flux leakage detection principle of magnetic dipole, a model of magnetic flux leakage signal of gear's early local micro crack is derived. The characters of the crack area that include the peak in the tangential component of magnetic flux leakage signal, pass zero point in normal component and the peak in the gradient of it are analyzed. The analysis results provide the basic theoretical foundation of the Metal Magnetic Memory application. Then based on the theory above, the detection of micro crack on the side of an actual gear is applied which includes static testing and dynamic detection with load. The detection position and load effect on detection results is analyzed. The detection results show the effectiveness of the peak in the gradient of normal component magnetic flux leakage signal normal component in the gear magnetic flux leakage signal model and the feasibility of the magnetic memory testing on gear fault.
机译:基于磁偶极子的漏磁检测原理,推导了齿轮早期局部微裂纹的漏磁信号模型。分析了裂纹区域的特征,包括磁通量泄漏信号的切向分量中的峰值,正态分量中通过零点以及其梯度中的峰值。分析结果为金属磁存储器的应用提供了基础的理论基础。然后根据上述理论,对实际齿轮侧面的微裂纹进行检测,包括静态测试和带负载的动态检测。分析了检测位置和负载对检测结果的影响。检测结果表明,在齿轮漏磁信号模型中,正常分量漏磁信号正常分量的梯度峰值的有效性以及齿轮故障的磁记忆测试的可行性。

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