Laboratoire de Physique des Matériaux, Faculté des Sciences de Sfax, BP 815, 3018 Sfax, Tunisia.
Ultrasonics. 2011 Apr;51(3):310-6. doi: 10.1016/j.ultras.2010.10.003. Epub 2010 Oct 8.
A numerical matrix method relative to the propagation of ultrasonic guided waves in functionally graded piezoelectric heterostructure is given in order to make a comparative study with the respective performances of analytical methods proposed in literature. The preliminary obtained results show a good agreement, however numerical approach has the advantage of conceptual simplicity and flexibility brought about by the stiffness matrix method. The propagation behaviour of Love waves in a functionally graded piezoelectric material (FGPM) is investigated in this article. It involves a thin FGPM layer bonded perfectly to an elastic substrate. The inhomogeneous FGPM heterostructure has been stratified along the depth direction, hence each state can be considered as homogeneous and the ordinary differential equation method is applied. The obtained solutions are used to study the effect of an exponential gradient applied to physical properties. Such numerical approach allows applying different gradient variation for mechanical and electrical properties. For this case, the obtained results reveal opposite effects. The dispersive curves and phase velocities of the Love wave propagation in the layered piezoelectric film are obtained for electrical open and short cases on the free surface, respectively. The effect of gradient coefficients on coupled electromechanical factor, on the stress fields, the electrical potential and the mechanical displacement are discussed, respectively. Illustration is achieved on the well known heterostructure PZT-5H/SiO(2), the obtained results are especially useful in the design of high-performance acoustic surface devices and accurately prediction of the Love wave propagation behaviour.
为了与文献中提出的分析方法的各自性能进行比较研究,给出了一种相对超声导波在功能梯度压电异质结构中传播的数值矩阵方法。初步得到的结果表明吻合良好,但是数值方法具有由刚度矩阵方法带来的概念简单性和灵活性的优点。本文研究了功能梯度压电材料(FGPM)中洛夫波的传播行为。它涉及到一个完美地粘结到弹性基底上的薄 FGPM 层。非均匀 FGPM 异质结构沿深度方向分层,因此每个状态都可以被认为是均匀的,并且应用了常微分方程方法。所得到的解用于研究物理性质的指数梯度的影响。这种数值方法允许对机械和电学性能应用不同的梯度变化。对于这种情况,得到的结果显示出相反的效果。对于自由表面上电开路和短接的情况,分别得到了层状压电薄膜中洛夫波传播的频散曲线和相速度。讨论了梯度系数对机电耦合因子、应力场、电势和机械位移的影响。以众所周知的异质结构 PZT-5H/SiO(2)为例进行了说明,所得到的结果对于高性能声表面器件的设计和洛夫波传播行为的准确预测特别有用。