Study of Parametric Transducer Operation in Pulsed Eddy Current Non-Destructive Testing

Y. Kuts, S. Maievskyi, A. Protasov, I. Lysenko, O. Dugin
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引用次数: 4

Abstract

In this article is considered the experimental results of the using the parametric type of an eddy current transducer at two excitation modes - pulsed and harmonic. The flat samples from aluminum alloy and steel with artificial crack-like defects on them were selected as testing objects. The estimation of the amplitude, decrement and natural oscillation frequency of the eddy current transducer signal as informative parameters was performed according to the results of the analysis of experimental signals of the parametric transducer. The results of the comparative analysis of the eddy current transducer signals at harmonic and pulsed excitation are presented by estimating of changes in the signals amplitude values from the crack depth in the testing object. It is shown that the signals of parametric eddy current transducer in the form of damped harmonic oscillations obtained by pulse excitation of the transducer can be used in the eddy current non-destructive testing to estimate the depth of surface cracks. The types of the dependences of the attenuation and the natural oscillation frequency of the eddy current transducer signal from the change in the crack depth in the testing object were established using the experimental data. The analysis of the sensitivities of the informational parameters of the eddy current transducer at pulsed excitation to the crack depth in the testing objects is performed.
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脉冲涡流无损检测中参数传感器工作的研究
本文考虑了参数型涡流传感器在脉冲和谐波两种激励模式下的实验结果。选取带有人工裂纹样缺陷的铝合金和钢的平面试样作为测试对象。根据参数化换能器实验信号的分析结果,估计出涡流换能器信号的幅值、衰减量和固有振荡频率作为信息参数。通过估计被测物体裂纹深度对涡流传感器信号幅值的变化,给出了谐波激励和脉冲激励下涡流传感器信号的对比分析结果。结果表明,在涡流无损检测中,通过脉冲激励得到的参数涡流传感器的谐波衰减信号可用于表面裂纹深度的估计。利用实验数据,建立了被测物体裂纹深度变化对涡流换能器信号衰减和固有振荡频率的依赖类型。分析了脉冲激励下涡流传感器信息参数对被测物体裂纹深度的敏感性。
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