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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Ultrasonic based structural damage detection using combined finite element and model Lamb wave propagation parameters in composite materials
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Ultrasonic based structural damage detection using combined finite element and model Lamb wave propagation parameters in composite materials

机译:基于有限元和模型兰姆波在复合材料中传播参数的超声结构损伤检测

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摘要

This paper presents a combined finite element and model Lamb waves propagation parameters method as a tool for structural health monitoring in composite materials. Modal analysis allows identifying the mode conversions induced by the defects. A simulation combining a lossless finite element approach and Lamb wave propagation parameter for finding natural frequencies and mode shapes of the structures in undamaged and damaged condition is proposed. This analysis is performed on two carbon-fiber-reinforced plastic bars in both undamaged and damaged state, where the two damaged states are (1) having a cut partway through the bar, perpendicular to the long axis of the bar and (2) having a circular hole. The lamb wave propagation parameters are calibrated using the ultrasonic pulse generator test setup. The natural frequencies for the theoretical, finite element and experimental results are compared and close agreement is found between the frequencies obtained experimentally and computationally.
机译:本文提出了一种结合有限元模型和兰姆波模型的传播参数方法,作为复合材料结构健康监测的工具。模态分析可以识别由缺陷引起的模态转换。提出了一种结合无损有限元方法和兰姆波传播参数的仿真方法,以寻找结构在未受损和受损状态下的固有频率和振型。对两个处于未损坏状态和损坏状态的碳纤维增强塑料棒进行此分析,其中两个损坏状态是(1)垂直于棒的长轴在棒的途中有切口,(2)具有一个圆孔。使用超声波脉冲发生器测试设置来校准兰姆波传播参数。比较了理论,有限元和实验结果的固有频率,并在实验和计算得出的频率之间找到了密切的一致性。

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