Institute of Applied Mechanics, National Taiwan University, Taipei 106, Taiwan.
WPI-AIMR, Tohoku University, Sendai 980-0845, Japan.
Ultrasonics. 2014 Sep;54(7):1984-90. doi: 10.1016/j.ultras.2014.05.007. Epub 2014 May 24.
This paper presents results on the numerical and experimental studies of focusing and waveguiding of the lowest anti-symmetric Lamb wave in micro-fabricated piezoelectric phononic plates. The phononic structure was based on an AT-cut quartz plate and consisted of a gradient-index phononic crystal (GRIN PC) lens and a linear phononic plate waveguide. The band structures of the square-latticed AT-cut quartz phononic crystal plates with different filling ratios were analyzed using the finite element method. The design of a GRIN PC plate lens which is attached with a linear phononic plate waveguide is proposed. In designing the waveguide, propagation modes in square-latticed PC plates with different waveguide widths were studied and the results were served for the experimental design. In the micro-fabrication, deep reactive ion etching (Deep-RIE) process with a laboratory-made etcher was utilized to fabricate both the GRIN PC plate lens and the linear phononic waveguide on an 80 μm thick AT-cut quartz plate. Interdigital transducers were fabricated directly on the quartz plate to generate the lowest anti-symmetric Lamb waves. A vibro-meter was used to detect the wave fields and the measured results on the focusing and waveguiding of the piezoelectric GRIN PC lens and waveguide are in good accordance with the numerical predictions. The results of this study may serve as a basis for developing an active micro plate lens and related devices.
本文介绍了在微制造压电声子板中聚焦和引导最低反称 Lamb 波的数值和实验研究结果。声子结构基于 AT 切石英板,由梯度折射率声子晶体(GRIN PC)透镜和声子板波导组成。采用有限元法分析了不同填充率的方晶格 AT 切石英声子晶体板的能带结构。提出了一种附有线性声子板波导的 GRIN PC 板透镜的设计。在设计波导时,研究了不同波导宽度的方晶格 PC 板中的传播模式,实验设计的结果为这些模式提供了参考。在微制造中,利用实验室自制的深反应离子刻蚀(Deep-RIE)工艺在 80μm 厚的 AT 切石英板上制造了 GRIN PC 板透镜和声子线性波导。叉指换能器直接制造在石英板上,用于产生最低反称 Lamb 波。振动计用于检测波场,实验结果表明,压电 GRIN PC 透镜和声子波导的聚焦和波导性能与数值预测结果吻合良好。本研究结果可为开发有源微板透镜及相关器件提供依据。