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Prediction of attenuated guided waves propagation in carbon fiber composites using Rayleigh damping model

机译:瑞利阻尼模型预测碳纤维复合材料中的衰减导波传播

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摘要

In this work, a predictive model of attenuated guided wave propagation in carbon fiber-reinforced polymer using Rayleigh damping is developed. After a brief introduction, this article reviews the theory of guided waves in anisotropic composite materials. It follows with a discussion of the piezoelectric wafer active sensors, which are lightweight and inexpensive transducers for structural health monitoring applications. Experiments were performed on a carbon fiber-reinforced polymer panel to measure the dispersion curves and the piezoelectric wafer active sensors tuning curves. Lamb wave damping coefficient was modeled using the multi-physics finite element method and compared with experimental results. A discussion about the capability to simulate, with multi-physics finite element method commercial software, guided wave in composite material using the Rayleigh damping is developed. This article ends with conclusion, and suggestions for further work are also presented.
机译:在这项工作中,建立了使用瑞利阻尼的碳纤维增强聚合物中衰减的导波传播的预测模型。在简要介绍之后,本文回顾了各向异性复合材料中的导波理论。接下来是对压电晶片有源传感器的讨论,该传感器是用于结构健康监测应用的轻便且便宜的传感器。在碳纤维增强的聚合物面板上进行了实验,以测量色散曲线和压电晶片有源传感器的调谐曲线。使用多物理场有限元方法对兰姆波阻尼系数进行了建模,并与实验结果进行了比较。讨论了使用多物理场有限元方法商业软件模拟使用瑞利阻尼的复合材料中的导波的能力。本文以结论结尾,并提出了进一步工作的建议。

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