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首页> 外文期刊>Journal of Nondestructive Evaluation >A Novel Non-destructive Testing Method by Measuring the Change Rate of Magnetic Flux Leakage
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A Novel Non-destructive Testing Method by Measuring the Change Rate of Magnetic Flux Leakage

机译:一种新的非破坏性测试方法,通过测量磁通量泄漏的变化率

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摘要

The application of magnetic sensors in the traditional magnetic flux leakage (MFL) technique has a significant influence on the detection results. The sensor is typically used to directly measure the amplitude of the magnetic leakage flux intensity as the detection signal. In view of noise effects on the detection result and the subsequent misinterpretation of defect signals, a new non-destructive testing method is proposed. The proposed method intends to measure the magnetic flux change rate using two sensors. A mathematical model is first established to present the principle of the change rate measurement. Based on the magnetic dipole theory, it is inferred that the new method is applicable and sensitive to the detection and location of defects. Moreover, this method is advantageous as it inhibits the interference of MFL noises such as the distension noise, background noise, and vibration noise. The model predictions are then verified by a series of simulations. Finally, an experimental platform is set up to practically detect the defect of a steel plate, and the results agree with the demonstrations and simulations.
机译:磁传感器在传统磁通泄漏(MFL)技术中的应用对检测结果产生了显着的影响。传感器通常用于直接测量作为检测信号的磁漏通量强度的幅度。鉴于对检测结果的噪声影响和随后对缺陷信号的误解,提出了一种新的非破坏性测试方法。所提出的方法旨在使用两个传感器测量磁通量变化率。首先建立数学模型以呈现变化率测量的原理。基于磁性偶极理论,推断新方法适用和对缺陷的检测和位置敏感。此外,该方法是有利的,因为它抑制了诸如扩散噪声,背景噪声和振动噪声的MFL噪声的干扰。然后通过一系列模拟验证模型预测。最后,建立了实验平台,以实际上检测钢板的缺陷,结果同意演示和模拟。

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