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A High Performance Torque Sensor for Milling Based on a Piezoresistive MEMS Strain Gauge

机译:基于压阻MEMS应变片的铣削高性能扭矩传感器

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In high speed and high precision machining applications, it is important to monitor the machining process in order to ensure high product quality. For this purpose, it is essential to develop a dynamometer with high sensitivity and high natural frequency which is suited to these conditions. This paper describes the design, calibration and performance of a milling torque sensor based on piezoresistive MEMS strain. A detailed design study is carried out to optimize the two mutually-contradictory indicators sensitivity and natural frequency. The developed torque sensor principally consists of a thin-walled cylinder, and a piezoresistive MEMS strain gauge bonded on the surface of the sensing element where the shear strain is maximum. The strain gauge includes eight piezoresistances and four are connected in a full Wheatstone circuit bridge, which is used to measure the applied torque force during machining procedures. Experimental static calibration results show that the sensitivity of torque sensor has been improved to 0.13 mv/Nm. A modal impact test indicates that the natural frequency of torque sensor reaches 1216 Hz, which is suitable for high speed machining processes. The dynamic test results indicate that the developed torque sensor is stable and practical for monitoring the milling process.
机译:在高速和高精度加工应用中,重要的是监视加工过程以确保高质量的产品。为此,必须开发一种适合这些条件的具有高灵敏度和高固有频率的测功机。本文介绍了基于压阻MEMS应变的铣削扭矩传感器的设计,校准和性能。进行了详细的设计研究,以优化两个相互矛盾的指标的灵敏度和固有频率。研发的扭矩传感器主要由薄壁圆柱体和压敏MEMS应变计组成,压应力MEMS应变计结合在最大剪切应变的传感元件表面上。应变仪包括八个压阻,四个电阻连接在完整的惠斯通电桥中,用于测量加工过程中施加的扭矩。实验静态校准结果表明,扭矩传感器的灵敏度已提高到0.13 mv / Nm。模态冲击试验表明,扭矩传感器的固有频率达到1216 Hz,适用于高速加工过程。动态测试结果表明,所开发的扭矩传感器稳定且实用,可用于监控铣削过程。

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