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Comparison between Deflection and Vibration Characteristics of Rectangular and Trapezoidal profile Microcantilevers

机译:矩形和梯形微悬臂梁的挠度和振动特性比较

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Arrays of microcantilevers are increasingly being used as physical, biological, and chemical sensors in various applications. To improve the sensitivity of microcantilever sensors, this study analyses and compares the deflection and vibration characteristics of rectangular and trapezoidal profile microcantilevers. Three models of each profile are investigated. The cantilevers are analyzed for maximum deflection, fundamental resonant frequency and maximum stress. The surface stress is modelled as in-plane tensile force applied on the top edge of the microcantilevers. A commercial finite element analysis software ANSYS is used to analyze the designs. Results show paddled trapezoidal profile microcantilevers have better sensitivity.
机译:微悬臂阵列越来越多地被用作各种应用中的物理,生物和化学传感器。为了提高微悬臂梁传感器的灵敏度,本研究分析并比较了矩形和梯形轮廓微悬臂梁的偏转和振动特性。研究了每个配置文件的三个模型。分析悬臂的最大挠度,基本共振频率和最大应力。将表面应力建模为施加在微悬臂梁顶部边缘的平面内拉力。商业有限元分析软件ANSYS用于分析设计。结果表明,梯形轮廓微悬臂梁具有更好的灵敏度。

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