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Experimental/FE Numerical Correlation of a Composite Sandwich Panel of a High-Speed Train

机译:高速列车复合三明治板的实验/ FE数值相关

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The aim of this work is the correlation between experimental and numerical modal analyses of a composite sandwich panel used for a high speed train in order to verify FE model reliability for the acoustic performances of the investigated sandwich panel, finalized to its acoustic optimization. Firstly, the results of the experimental determination of the Transmission Loss (TL) property of the panel, through the employment of an intensity sound probe, are presented. The obtained TL parameter is useful to characterize the material acoustic attenuation with respect to the design specifications compliance. Secondly, an experimental and a numerical modal analyses are performed. Starting from both FE simulation and impact testing outcomes, it is possible to implement a correlation study through the computation of the Modal Assurance Criterion (MAC). Good agreement between numerical and experimental analyses have been found up to the frequency 1000 Hz. In order to realize a numerical model reliable at higher frequencies, a more careful impact testing procedure has to be carried out. Future developments could regard the possibility to refine FE-Test correlation implementing a sensitivity and updating procedure, so to define an accurate FE model which could be used for the improvement process of the panel acoustic performances.
机译:这项工作的目的是用于高速列车的复合夹层面板的实验和数值模态分析之间的相关性,以验证对研究夹心板的声学性能的FE模型可靠性,最终确定为其声学优化。首先,介绍了通过使用强度声音探头的面板的实验确定的实验确定的结果。所获得的TL参数可用于表征关于设计规范符合性的材料声学衰减。其次,进行实验和数值模态分析。从FE模拟和影响测试结果开始,可以通过计算模态保证标准(MAC)来实现相关性研究。已经发现数值和实验分析之间的良好一致性达到1000 Hz。为了实现在较高频率下可靠的数值模型,必须进行更仔细的冲击测试程序。未来的发展可以赋予实施灵敏度和更新过程的FE测试相关性的可能性,从而定义可用于面板声学性能的改进过程的准确FE模型。

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