论文标题
在纤维金属层压板上大频率范围内羊肉波分散图的实验测定
Experimental determination of Lamb wave dispersion diagrams over large frequency ranges in fiber metal laminates
论文作者
论文摘要
纤维金属层压板(FML)对轻质结构非常感兴趣,因为它们结合了金属和纤维增强聚合物的有利材料特性。但是,低速影响会导致复杂的内部损害。因此,具有指导性超声波(GUW)的结构健康监测是确定这种损害的方法。数值模拟构成了相应研究的基础,但是在文献中几乎找不到对宽频率范围内的色散图的实验验证。在这项工作中,对于由碳纤维增强的聚合物和钢制成的FML,GUW的分散关系是实验确定的。为此,使用多频激发信号来生成GUW,并通过激光扫描振动法测量所得波场。数据通过不均匀离散的2D傅立叶变换处理,并在频率波域域中进行分析。实验数据与分析框架的数值解决方案的数据非常吻合。总之,这项工作提出了一种高度可自动的方法,可以通过高精度在大频率范围内实验确定GUW的色散图。
Fiber metal laminates (FML) are of high interest for lightweight structures as they combine the advantageous material properties of metals and fiber-reinforced polymers. However, low-velocity impacts can lead to complex internal damage. Therefore, structural health monitoring with guided ultrasonic waves (GUW) is a methodology to identify such damage. Numerical simulations form the basis for corresponding investigations, but experimental validation of dispersion diagrams over a wide frequency range is hardly found in the literature. In this work the dispersive relation of GUWs is experimentally determined for an FML made of carbon fiber-reinforced polymer and steel. For this purpose, multi-frequency excitation signals are used to generate GUWs and the resulting wave field is measured via laser scanning vibrometry. The data are processed by means of a non-uniform discrete 2d Fourier transform and analyzed in the frequency-wavenumber domain. The experimental data are in excellent agreement with data from a numerical solution of the analytical framework. In conclusion, this work presents a highly automatable method to experimentally determine dispersion diagrams of GUWs in FML over large frequency ranges with high accuracy.