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Deflection Frequency and Stress Characteristics of Rectangular Triangular and Step Profile Microcantilevers for Biosensors

机译:矩形三角形和阶梯轮廓微悬臂梁的挠度频率和应力特性用于生物传感器

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摘要

This study presents the deflection, resonant frequency and stress results of rectangular, triangular, and step profile microcantilevers subject to surface stress. These cantilevers can be used as the sensing element in microcantilever biosensors. To increase the overall sensitivity of microcantilever biosensors, both the deflection and the resonant frequency of the cantilever should be increased. The effect of the cantilever profile change and the cantilever cross-section shape change is first investigated separately and then together. A finite element code ANSYS Multiphysics is used and solid finite elements cantilever models are solved. A surface stress of 0.05 N/m was applied to the top surface of the cantilevers. The cantilevers are made of silicon with elastic modulus 130 GPa and Poisson’s ratio 0.28. To show the conformity of this study, the numerical results are compared against their analytical ones. Results show that triangular and step cantilevers have better deflection and frequency characteristics than rectangular ones.
机译:这项研究提出了矩形,三角形和阶梯型微悬臂梁在受到表面应力作用下的挠度,共振频率和应力结果。这些悬臂可用作微悬臂生物传感器中的传感元件。为了增加微悬臂生物传感器的总体灵敏度,悬臂的挠度和共振频率都应增加。首先分别研究悬臂轮廓变化和悬臂横截面形状变化的影响,然后一起研究。使用了有限元代码ANSYS Multiphysics,并求解了固体有限元悬臂模型。将0.05 N / m的表面应力施加到悬臂的顶表面。悬臂由硅制成,弹性模量为130 GPa,泊松比为0.28。为了表明这项研究的一致性,将数值结果与分析结果进行了比较。结果表明,三角形和阶梯形悬臂比矩形悬臂具有更好的挠度和频率特性。

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