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Structural health monitoring of plate structures using lamb wave methods

机译:使用羊振波导的板结构结构健康监测

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In this paper, waveform is used to excite Lamb waves in the test plates during experimental testing. The optimal excitation frequency will depend on the test configuration. In order to select an excitation frequency, dispersion curves are first created to show what frequency range is best suited for Lamb wave excitation. According to dispersion curves were created for the aluminum test plates and it was concluded that a frequency below 1 MHz will be used in order to only excite the fundamental S_o and A_0 modes. Experiments are performed on the aluminum test plates described. Experimental testing is first performed on undamaged plates in order to determine the path-to-path and test-to-test variability in Lamb wave measurements in the absence of damage. The admittance data is analyzed in order to determine if any of the PZT transducers need to be replaced because of poor bonding or mechanical failure. The sensor diagnostic technique is applied to each plate and used to ensure proper consistency between PZT transducers
机译:在本文中,波形在实验测试期间使用波形在试验板中激发羊羔波。最佳激励频率取决于测试配置。为了选择励磁频率,首先创建色散曲线以显示最适合兰姆波激发的频率范围。根据分散曲线为铝制测试板创建,结论是,将使用低于1 MHz的频率以仅激励基本S_O和A_0模式。对描述的铝制试验板进行实验。首先在未损坏的板上执行实验测试,以确定在没有损坏的情况下在LAMB波测量中确定路径到路径和测试到测试变异。分析导纳数据,以确定是否需要替换任何PZT换能器,因为粘接性差或机械故障。传感器诊断技术应用于每个板,并用于确保PZT换能器之间的适当一致性

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