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A STRUCTURAL HEALTH MONITORING SYSTEM FOR LAMINATED COMPOSITES

机译:层状复合材料的结构健康监测系统

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摘要

This investigation examines the application of low frequency Lamb waves for the detection of delaminations in thick composite laminates. Surface mounted piezoelectric devices were excited with a tone burst of few cycles generating a stress wave that propagates along the structure. Experiments were carried out on composite beam specimens where wave propagation distances over 2 m were achieved and artificially induced delaminations as small as 1 cm~2 were successfully identified. The resonance spectrum method, which is based on the study of spectra obtained by forced mechanical resonance of samples using sine-sweep excitation, was used for measuring the A_o Lamb mode phase velocity. Finite element analyses of wave generation and propagation in wide laminated plates are also presented. The feasibility of employing piezoelectric devices for the development of smart structures, where a small and lightweight transducer system design is required, has been demonstrated.
机译:这项研究调查了低频兰姆波在厚复合材料层压板中检测分层的应用。表面安装的压电器件以几个周期的音调脉冲激发,从而产生沿结构传播的应力波。在复合梁试件上进行了实验,该复合试件的波传播距离达到2 m以上,并成功地识别出了小至1 cm〜2的人为分层。共振光谱法是基于对通过使用正弦扫描激励的样品进行强制机械共振而获得的光谱进行研究的方法,用于测量A_o Lamb模式相速度。还介绍了宽叠层板中波的产生和传播的有限元分析。已经证明了使用压电器件开发智能结构的可行性,其中需要小型轻便的传感器系统设计。

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