A multi-axis force-moment micro sensor for application in fluid mechanics

D. Dao, A. Nguyen, C. Nguyen, T. Toriyama, J. Wells, S. Sugiyama
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Abstract

This paper presents the development of a six-degree of freedom (6-DOF) force moment sensor utilizing the piezoresistive effects in silicon. The proposed sensor can independently detect six components of force and moment on a test particle in a turbulent flow. By combining p-type conventional and shear piezoresistors in Si[111], and arranging them suitably on the sensing area, the total number of piezoresistors used in this sensing chip is only eighteen, much fewer than that of the prior art piezoresistive 6-DOF force sensors. Calibration for six components of force versus output voltages was completed. The sensitivities are linear, close to the design values. Preliminary results of measurement of forces and moments acting on a test particle in turbulent flow will be presented.
一种用于流体力学的多轴力力矩微传感器
本文介绍了一种利用硅的压阻效应的六自由度(6-DOF)力矩传感器的研制。所提出的传感器可以独立检测湍流中测试颗粒上的力和力矩的六个分量。将p型常规压敏电阻和剪切压敏电阻组合在Si[111]中,并将其适当地布置在传感区域上,该传感芯片中使用的压敏电阻总数仅为18个,远远少于现有技术的压阻式6自由度力传感器。完成了力与输出电压的六个分量的校准。灵敏度是线性的,接近设计值。本文将介绍紊流中作用在测试粒子上的力和力矩的初步测量结果。
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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