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Modeling and Analysis of a Novel Ultrasensitive Differential Resonant Graphene Micro-Accelerometer with Wide Measurement Range

机译:新型宽量程超灵敏差分石墨烯微加速度计的建模与分析

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摘要

A novel, ultrahigh-sensitivity wide-range resonant micro-accelerometer using two differential double-clamped monolayer graphene beams is designed and investigated by steady-state simulation via COMSOL Multiphysics software in this paper. Along with stiffness-enhanced optimized folded support beams, two symmetrical 3-GPa prestressed graphene nano-beams serve as resonant sensitive elements with a size of 10 μm × 1 μm (length × width) to increase the acceleration sensitivity while extending the measurement range. The simulation results show that the accelerometer with cascade-connected graphene and proof-mass assembly exhibits the ultrahigh sensitivity of 21,224 Hz/g and quality factor of 9773 in the range of 0–1000 g. This is remarkably superior to previously reported studies characterized by attaching proof mass to the graphene components directly. The proposed accelerometer shows great potential as an alternative to quartz and silicon-based resonant sensors in high-impact and highly sensitive inertial measurement applications.
机译:本文设计了一种新颖的,使用两个差分双钳位单层石墨烯光束的超高灵敏度宽范围共振微加速度计,并通过COMSOL Multiphysics软件进行稳态仿真。与增强刚度的优化折叠支撑梁一起,两个对称的3-GPa预应力石墨烯纳米束用作共振敏感元件,尺寸为10μm×1μm(长×宽),从而在扩展测量范围的同时提高了加速度灵敏度。仿真结果表明,带有级联石墨烯和质量检测组件的加速度计在0-1000 g范围内具有21,224 Hz / g的超高灵敏度和9773的品质因数。这显着优于先前报道的研究,这些研究的特征是将质量块直接附着到石墨烯组分上。拟议的加速度计在高冲击和高灵敏度惯性测量应用中具有替代石英和硅基谐振传感器的巨大潜力。

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