State Key Laboratory of Transducer Technology, Key Laboratory of Biomimetic Sensing and Advanced Robot Technology of Anhui Province, Institute of Intelligent Machines, Chinese Academy of Sciences, Hefei 230031, China.
Science Island branch of Graduate School, University of Science and Technology of China, Hefei 230009, China.
Sensors (Basel). 2020 Jan 22;20(3):626. doi: 10.3390/s20030626.
Micro-Cantilever (MCL) is a thin film structure that is applied for aerosol particle mass sensing. Several modifications to the rectangular MCL (length-to-width ratio, slots at the anchor, serrations at its side edges) are made to deduce the role and influence of the shape of rectangular MCL-based aerosol mass sensors and reduce gas damping. A finite element fluid-structure interaction model was used to investigate the performance of MCL. It is found that (I) the mass sensitivity and quality factor decline with the increasing of length-to-width ratio which alters the resonant frequency of the MCL. The optimum conditions, including the length-to-width ratio (σlw = 5) and resonant frequency (f0 = 540.7 kHz) of the MCL, are obtained with the constant surface area ( = 45,000 μm) in the frequency domain ranging from 0 to 600 kHz. (II) The slots can enhance the read-out signal and bring a small Q factor drop. (III) The edge serrations on MCL significantly reduce the gas damping. The results provide a reference for the design of aerosol mass sensor, which makes it possible to develop aerosol mass sensor with high frequency, sensitivity, and quality.
微悬臂梁(MCL)是一种用于气溶胶粒子质量传感的薄膜结构。对矩形 MCL(长宽比、在固定端的狭缝、边缘锯齿)进行了几种改进,以推导出基于矩形 MCL 的气溶胶质量传感器的形状的作用和影响,并降低气体阻尼。使用有限元流固耦合模型来研究 MCL 的性能。结果表明:(I)质量灵敏度和品质因数随长宽比的增加而降低,从而改变了 MCL 的共振频率。在 0 至 600 kHz 的频率范围内,通过保持恒定的表面积(=45,000 μm),可以获得最佳条件,包括 MCL 的长宽比(σlw = 5)和共振频率(f0 = 540.7 kHz)。(II)狭缝可以增强读出信号,并带来较小的 Q 因子下降。(III)MCL 边缘的锯齿显著降低了气体阻尼。这些结果为气溶胶质量传感器的设计提供了参考,使得开发具有高频、灵敏度和品质的气溶胶质量传感器成为可能。