Sensitivity enhancement of MEMS fluid flow rate and flow direction sensor

U. Gogoi, T. Shanmuganantham
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引用次数: 6

Abstract

MEMS based flow rate sensor and flow direction sensor is a crucial to the determination of exact fluid flow path. Conventional rectangular cantilever beam detects based on the surface strain of the beam with respect to the mass flow. Different structured beam will greatly affect the sensitivity. In this paper different geometries of cantilever beam such as rectangular, inverted trapezoidal, triangular are designed and simulated using the finite element software INTELLISUITE 8.7. The simulation results show that the inverted trapezoidal geometries having the more deflection at same stress of the conventional beam and thus increase the sensitivity by approx. 1.45 times.
MEMS流体流量和流向传感器的灵敏度增强
基于MEMS的流量传感器和流向传感器是精确确定流体流道的关键。传统的矩形悬臂梁检测基于梁的表面应变相对于质量流。不同结构的梁对灵敏度有很大影响。本文利用有限元软件INTELLISUITE 8.7对矩形、倒梯形、三角形等不同几何形状的悬臂梁进行了设计和仿真。仿真结果表明,在相同的应力下,倒梯形结构比传统梁具有更大的挠度,从而使灵敏度提高了约1倍。1.45倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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