激光超声信号变分模态分解与裂纹定量检测
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TH878 TG115. 285

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国家自然科学基金(51975452)项目资助


Variational mode decomposition of laser ultrasonic signal and crack quantitative detection
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    摘要:

    针对激光超声检测技术应用于金属增材件中所获取的信号具有复杂、多模态、信噪比低的特性的问题,获取激光超声信 号进行时频分析,探究其频域可分性,采用变分模态分解算法根据频域特征进行分离并提取最佳表面波模态。 在此基础上,提 出一种基于激光超声信号 B 扫图结合变分模态分解提取表面回波特征值技术,对金属增材件表面裂纹长度进行定量检测。 针 对直接观察 B 扫图获取裂纹长度信息存在误差较大的问题,通过对变分模态分解提取的表面波模态在有无裂纹时反射回波峰 峰值的变化分析,绘制扫查位置-峰峰值图并据此精确获取裂纹起始和结束位置,检测结果的相对误差不超过 8%。 与直接获取 原始信号 B 扫图的裂纹长度信息相比,提高了检测精度。 该方法在金属增材件的激光超声信号的特征提取与定量检测方面具 有可行性。

    Abstract:

    In terms of the problem that the signals obtained by laser ultrasonic testing technology applied to metal additive parts are complex, multimodal and with low signal-to-noise ratio, the laser ultrasonic signals are obtained for time-frequency analysis to explore their frequency domain separability. The variational mode decomposition algorithm is used to separate and extract the best surface wave mode according to the frequency domain characteristics. On this basis, a technique based on B-scan of laser ultrasonic signal combined with variational mode decomposition to extract surface echo eigenvalue is proposed for the quantitative detection of the surface crack length of metal additive parts. In view of the problem that there is a large error in obtaining crack length information by directly observing the B-scan image, the change of the peak to peak value of the reflected echo of the surface wave mode extracted by the variational mode decomposition is analyzed to detect crack. The scanning position-peak to peak value diagram is drawn, and the start and end positions of the crack can be accurately obtained according to the diagram. The relative error of the test results does not exceed 8%. Compared with directly obtaining the crack length information of the original B-scan image, the detection accuracy is improved. This method is feasible in feature extraction and quantitative detection of laser ultrasonic signals of metal additive parts.

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颜江涛,赵纪元,訾艳阳,王琛玮.激光超声信号变分模态分解与裂纹定量检测[J].仪器仪表学报,2023,44(1):223-230

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  • 在线发布日期: 2023-07-04
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