基于新型扭转导波EMAT的缺陷高灵敏度检测方法
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中国飞行试验研究院 西安 710089

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TN911.7

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High-sensitivity detection method of defects based on the novel torsional guided-wave EMAT
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Chinese Flight Test Establishment,Xi′an 710089, China

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    摘要:

    T(0,1)扭转导波因其具有非频散的特点,在管道缺陷检测中被广泛应用。本文提出了一种新型内插式扭转导波电磁超声传感器,它具有非接触、结构简单以及高信噪比的优点。该传感器主要由弧形线圈、跑道型永磁体和支撑骨架构成,基于Wiedemann效应在管道中产生扭转导波。首先利用数值模拟对传感器的轴向动态磁场和周向静态偏置磁场进行了仿真,验证了该传感器产生扭转导波的可行性,且研究了管道弯曲半径对扭转导波传播的影响。然后通过所提出的T(0,1)扭转导波传感器并且结合频域-波数域分析方法,实现了弯管中轴向裂纹和直管中点蚀缺陷的高灵敏度检测。通过实验可以验证,该传感器在激励频率为0.32 MHz下能够对弯管中长度为3 mm的轴向裂纹和直管中直径为0.4 mm的点蚀缺陷进行有效检测。

    Abstract:

    The T(0,1) torsional guided wave is widely employed in pipe defect detection due to its non-dispersive characteristic. This paper presents a novel insertable torsional guided wave electromagnetic acoustic transducer, offering advantages of non-contact operation, simple structure, and high signal-to-noise ratio. The transducer primarily comprises arc-shaped coils, race-track shaped permanent magnets, and a support skeleton, generating torsional guided waves in the pipe based on the Wiedemann effect. Numerical simulations were first conducted to model the transducer′s axial dynamic magnetic field and circumferential static bias magnetic field, verifying the feasibility of torsional wave generation and investigating the influence of pipe bend radius on torsional wave propagation. Subsequently, utilizing the proposed T(0,1) torsional guided wave transducer combined with frequency-wavenumber analysis method, high-sensitivity detection of axial cracks in bent pipes and pitting defects in straight pipes was achieved. Experimental verification demonstrates that the transducer can effectively detect axial cracks 3 mm in length within bent pipes and pitting defects 0.4 mm in diameter within straight pipes at an excitation frequency of 0.32 MHz.

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刘登荣,毛丰晶.基于新型扭转导波EMAT的缺陷高灵敏度检测方法[J].电子测量技术,2025,48(24):34-42

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  • 在线发布日期: 2026-02-04
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