Fall Dame, Duquennoy Marc, Ouaftouh Mohammadi, Piwakowski Bogdan, Jenot Frederic
Univ. Valenciennes, CNRS, Univ. Lille, ISEN, Centrale Lille, UMR 8520 - IEMN, DOAE, F-59313 Valenciennes, France.
Univ. Valenciennes, CNRS, Univ. Lille, ISEN, Centrale Lille, UMR 8520 - IEMN, DOAE, F-59313 Valenciennes, France.
Ultrasonics. 2018 Jan;82:371-378. doi: 10.1016/j.ultras.2017.09.018. Epub 2017 Sep 27.
Surface Acoustic Wave Interdigital Transducers (SAW-IDT) has a considerable application potential for characterization of properties of thin layers, coatings and functional surfaces. For optimization of these SAW-IDTs, it is necessary to study various SAW-IDT configurations by varying the number of electrodes, dimensions of the electrodes, their shapes and spacings. The finite element method (FEM) is generally used to model such transducers but results are obtained in several hours (or days). Thus it is necessary to implement effective and rapid technique for SAW-IDT modeling. In this study, we develop simulation tool based on Spatial Impulse Response model. Therefore, we reduce considerably computing time and results are obtained in a few seconds. In order to validate this method, theoretical and experimental results are compared with finite element method. The results obtained show a good concordance and confirm effectiveness of suggested method. In additional, this method requires less computer memory.
表面声波叉指换能器(SAW-IDT)在薄层、涂层和功能表面特性表征方面具有相当大的应用潜力。为了优化这些SAW-IDT,有必要通过改变电极数量、电极尺寸、形状和间距来研究各种SAW-IDT配置。有限元方法(FEM)通常用于对此类换能器进行建模,但结果需要数小时(或数天)才能获得。因此,有必要实现一种有效且快速的SAW-IDT建模技术。在本研究中,我们开发了基于空间脉冲响应模型的仿真工具。因此,我们大幅减少了计算时间,几秒钟内就能得到结果。为了验证该方法,将理论和实验结果与有限元方法进行了比较。所得结果显示出良好的一致性,并证实了所提方法的有效性。此外,该方法所需的计算机内存较少。