China Mechanical Engineering

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Lamb Waves Inspection Based on Cross-shaped Array and 2D-MUSIC Algorithm

LIU Zenghua1,2;ZHANG Tingting1,2;SU Ruixiang1,2;CHEN Honglei1,2;HE Cunfu1,2;WU Bin1,2   

  1. 1. Faculty of Materials and Manufacturing, Beijing University of Technology, Beijing, 100124
    2. Beijing Engineering Research Center of Precision Measurement Technology and Instruments, Beijing University of Technology, Beijing, 100124
  • Online:2020-09-10 Published:2020-09-30

基于十字形阵列和2D-MUSIC算法的Lamb波检测

刘增华1,2;张婷婷1,2;苏瑞祥1,2;陈洪磊1,2;何存富1,2;吴斌1,2   

  1. 1. 北京工业大学材料与制造学部,北京,100124
    2. 北京工业大学北京市精密测控与仪器工程技术研究中心,北京,100124
  • 基金资助:
    国家重点研发计划资助项目(2018YFC0809003)

Abstract: A cross-shaped array which was composed of piezoelectric sensors was used for the excitation and reception of Lamb wave signals. A two-dimensional multiple signal classification (2D-MUSIC) method was proposed to locate and detect defects in aluminum plates. Firstly, the appropriate excitation frequency was selected for the generation of a single mode signal to avoid the influences of multi-mode and reduce the dispersion of Lamb waves. Then, received signals were segmented by 2D-MUSIC algorithm. Finally, reflected signals and 2D steering vectors were combined to locate the defects in the aluminum plate. The results show that the proposed 2D-MUSIC algorithm is more accurate than traditional multiple signal classification algorithm for defecting locations in aluminum plates.

Key words: Lamb wave; piezoelectric transducer; array; wavelet transform; imaging, aluminum plates

摘要: 采用由压电传感器组成的十字形阵列进行Lamb波信号的激励和接收,提出一种二维多重信号分类(2D-MUSIC)方法对铝板中的缺陷进行定位检测。选用合适的频率激励产生单一模态信号,可避免多模态的影响,降低Lamb波的频散;利用2D-MUSIC算法对接收信号进行分段处理,并结合反射信号和二维导向矢量对铝板中的缺陷进行定位。结果表明,提出的2D-MUSIC算法对铝板中的缺陷定位比传统MUSIC算法更精准。

关键词: Lamb波, 压电传感器, 阵列, 小波变换, 成像, 铝板

CLC Number: