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Quantitative Testing of Defect for Gun Barrels

机译:枪管缺陷的定量测试

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摘要

The magnetic flux leakage (MFL) method is commonly used in the nondestructive evaluation (NDE) of gun barrels. The key point of MFL testing is to estimate the crack geometry parameters based on the measured signal. The analysis of magnetic leakage fields can be obtained by solving Maxwell's equations using finite element method (FEM). The radial component of magnetic flux density is measured in MFL testing. The peak-peak value, the separation distance between positive and negative peaks of signal and the lift-off value of Hall-sensor are used as the main features of every sample. This paper establishes the multi-regression equations related to the width (the depth) of crack and the main characteristic values. The regression model is tested by use of the magnetic leakage data. The experimental results indicate that the regression equations can accurately predict the 2-D defect geometry parameters and the MFL quantitative testing can be achieved.
机译:磁通量泄漏(MFL)方法通常用于枪管的无损评估(NDE)。 MFL测试的关键是根据测得的信号估算裂纹的几何参数。可以通过使用有限元方法(FEM)求解麦克斯韦方程来获得漏磁场的分析。磁通密度的径向分量是在MFL测试中测量的。峰峰值,信号正负峰之间的间隔距离以及霍尔传感器的提离值被用作每个样本的主要特征。本文建立了与裂纹的宽度(深度)和主要特征值有关的多元回归方程。通过使用漏磁数据测试回归模型。实验结果表明,该回归方程可以准确地预测二维缺陷的几何参数,并可以进行MFL定量测试。

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