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A Micro-Force Sensor with Slotted-Quad-Beam Structure for Measuring the Friction in MEMS Bearings

机译:带有缝四光束结构的微力传感器,用于测量MEMS轴承中的摩擦

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Presented here is a slotted-quad-beam structure sensor for the measurement of friction in micro bearings. Stress concentration slots are incorporated into a conventional quad-beam structure to improve the sensitivity of force measurements. The performance comparison between the quad-beam structure sensor and the slotted-quad-beam structure sensor are performed by theoretical modeling and finite element (FE) analysis. A hollow stainless steel probe is attached to the mesa of the sensor chip by a tailor-made organic glass fixture. Concerning the overload protection of the fragile beams, a glass wafer is bonded onto the bottom of sensor chip to limit the displacement of the mesa. The calibration of the packaged device is experimentally performed by a tri-dimensional positioning stage, a precision piezoelectric ceramic and an electronic analytical balance, which indicates its favorable sensitivity and overload protection. To verify the potential of the proposed sensor being applied in micro friction measurement, a measurement platform is established. The output of the sensor reflects the friction of bearing resulting from dry friction and solid lubrication. The results accord with the theoretical modeling and demonstrate that the sensor has the potential application in measuring the micro friction force under stable stage in MEMS machines.
机译:这里介绍的是一种开槽四梁结构传感器,用于测量微型轴承中的摩擦。应力集中槽被合并到常规四梁结构中,以提高力测量的灵敏度。通过理论建模和有限元分析,对四光束结构传感器和开缝四光束结构传感器进行性能比较。空心的不锈钢探头通过量身定制的有机玻璃固定装置连接到传感器芯片的台面。关于易碎梁的过载保护,将玻璃晶片粘合到传感器芯片的底部以限制台面的位移。封装设备的校准是通过三维定位平台,精密压电陶瓷和电子分析天平进行的实验,表明其良好的灵敏度和过载保护功能。为了验证所提出的传感器在微摩擦测量中的潜力,建立了一个测量平台。传感器的输出反映了由干摩擦和固体润滑引起的轴承摩擦。结果与理论模型相吻合,表明该传感器具有潜在的应用前景,可用于测量MEMS机器稳定阶段的微摩擦力。

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