1-3压电复合材料横向模态的二维建模

D. Certon, F. Patat, O. Casula, L.P. Tran Hu Hue
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引用次数: 6

摘要

由于其周期性结构,1-3压电复合材料具有假模,这是由于声波在弹性晶格中进行布拉格散射造成的。在压电复合材料板的情况下,横向共振是由结构不连续之间的兰姆波的多次反射产生的。然而,对于2-2复合材料,一些作者通过分析横波在无限厚度的一维周期性介质中传播的问题,简化了理论方法。他们已经证明,这一假设提供了非常准确的理论预测。本文采用相同的假设,建立了1-3压电复合材料一阶和二阶侧向行为的简单预测模型。给出了干涉激光技术测量复合材料表面横向频率和位移场的实验结果,并与理论预测结果进行了比较
本文章由计算机程序翻译,如有差异,请以英文原文为准。
2 dimensional modelling of lateral modes in 1-3 piezocomposites
On account of their periodic structure 1-3 piezocomposites have spurious modes which are due to the acoustic waves undergoing Bragg-scattering in the elastic lattice. In the case of piezocomposite plates, lateral resonances are generated by multiple reflections of Lamb waves between structure discontinuities. However, for 2-2 composites several authors have simplified the theoretical approach by analysing the problem in terms of transverse waves travelling in a 1-D periodic medium of infinite thickness. They have shown that this hypothesis provides theoretical predictions with good accuracy. In this paper, by using the same assumption, a simple model for predicting the first and second lateral behavior in 1-3 piezocomposite is developed. Experimental results of lateral frequencies and displacement field at the composite surface measured with an interferometric laser technique are given and compared to theoretical predictions
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