Mahapatra D Roy, Singhal Ashish, Gopalakrishnan Srinivasan
Department of Aerospace Engineering, Indian Institute of Science, Bangalore 560012, India.
IEEE Trans Ultrason Ferroelectr Freq Control. 2005 Oct;52(10):1851-60. doi: 10.1109/tuffc.2005.1561641.
An equivalent, single-layer model for Lamb wave generation by interdigital transducer (IDT) on composite host structures is developed. The additional complexities generally encountered while launching the surface acoustic wave (SAW) on composite structure, such as the coupling between the Lamb wave modes, the complicated nature of the electromechanical actuation etc. are considered. The model of infinite IDT is extended to deal with the finite IDT with edge discontinuities. The effect of electromechanical actuation on the wavelength shifts with respect to the passive case is investigated. The problem of electrically driven instability within the IDT is analyzed. Numerical results are reported by considering a model of the IDT integrated with the host structure, which shows that there are significant deviations from the conventional design estimates while launching a targeted mode. The proposed approach may enable one to obtain new designs in material systems and geometry that avoid mode-mixing, or to introduce it by choice.
开发了一种用于在复合主体结构上通过叉指换能器(IDT)产生兰姆波的等效单层模型。考虑了在复合结构上激发表面声波(SAW)时通常遇到的其他复杂性,例如兰姆波模式之间的耦合、机电驱动的复杂性质等。无限IDT模型被扩展以处理具有边缘不连续性的有限IDT。研究了机电驱动对相对于无源情况的波长偏移的影响。分析了IDT内电驱动不稳定性的问题。通过考虑与主体结构集成的IDT模型报告了数值结果,结果表明在激发目标模式时与传统设计估计存在显著偏差。所提出的方法可能使人们能够在材料系统和几何形状中获得避免模式混合的新设计,或者根据需要引入模式混合。