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Simulation and verification of polydimethylsiloxane (PDMS) channels on acoustic microfluidic devices

机译:声学微流体装置上聚二甲基硅氧烷(PDMS)通道的模拟与验证

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摘要

Polydimethylsiloxane (PDMS) is widely used as a channel material in microfluidic applications. Due to its highly elastomeric characteristics, PDMS absorbs the acoustic energy of the surface acoustic waves (SAWs) generated by the interdigital transducers (IDTs). Insertion loss is one of the indicators that present the degree of attenuation caused by the PDMS channels for SAW devices. In this paper, we investigate the effect of PDMS channel side wall thickness on insertion loss via ANSYS(A (R)) Finite Element (FE) Modelling software (ANSYS Inc., Canonsburg, PA). The 3-Dimensional simulation study was carried out in two main steps; first, a calibration step of bare 128A degrees YX-cut lithium niobate LiNbO3 for obtaining the boundary conditions and second, with the PDMS channels constructed on top of the substrate. The PDMS channel side wall thickness was varied between 2 and 8 mm and the results were compared with experimental results of a prior study. The results illustrate that insertion loss is increased as the PDMS side wall thickness is increased highlighting the need to minimize the PDMS side wall thickness in the design.
机译:聚二甲基硅氧烷(PDMS)广泛用作微流体应用中的通道材料。由于其高度弹性特性,PDMS吸收由叉指传感器(IDT)产生的表面声波(锯)的声能。插入损耗是呈现由SAW器件的PDMS通道引起的衰减程度的指示器之一。在本文中,我们研究了PDMS通道侧壁厚度对通过ANSYS(A(R))有限元(FE)建模软件(ANSYS Inc.,Canonsburg,PA)的插入损耗的影响。三维仿真研究在两个主要步骤中进行;首先,裸露128A度YX切割锂铌酸锂LINBO3的校准步骤,用于获得边界条件和第二,PDMS通道在基板的顶部构成。 PDMS通道侧壁厚度在2至8mm之间变化,并将结果与​​先前研究的实验结果进行了比较。结果说明了随着PDMS侧壁厚度的突出显示设计的需要使插入损耗增加,以最小化设计中的PDMS侧壁厚度。

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