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Design and Analysis of a Compact Precision Positioning Platform Integrating Strain Gauges and the Piezoactuator

机译:集成应变计和压电执行器的紧凑型精密定位平台的设计与分析

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摘要

Miniaturization precision positioning platforms are needed for in situ nanomechanical test applications. This paper proposes a compact precision positioning platform integrating strain gauges and the piezoactuator. Effects of geometric parameters of two parallel plates on Von Mises stress distribution as well as static and dynamic characteristics of the platform were studied by the finite element method. Results of the calibration experiment indicate that the strain gauge sensor has good linearity and its sensitivity is about 0.0468 mV/μm. A closed-loop control system was established to solve the problem of nonlinearity of the platform. Experimental results demonstrate that for the displacement control process, both the displacement increasing portion and the decreasing portion have good linearity, verifying that the control system is available. The developed platform has a compact structure but can realize displacement measurement with the embedded strain gauges, which is useful for the closed-loop control and structure miniaturization of piezo devices. It has potential applications in nanoindentation and nanoscratch tests, especially in the field of in situ nanomechanical testing which requires compact structures.
机译:微型化精密定位平台是原位纳米机械测试应用所必需的。本文提出了一个紧凑的精密定位平台,集成了应变仪和压电执行器。采用有限元方法研究了两块平行板的几何参数对冯·米塞斯应力分布以及平台静,动力特性的影响。校准实验的结果表明,应变仪传感器具有良好的线性度,其灵敏度约为0.0468 mV /μm。为了解决平台的非线性问题,建立了一个闭环控制系统。实验结果表明,对于排量控制过程,排量增加部分和减少部分均具有良好的线性,验证了控制系统的有效性。开发的平台结构紧凑,但可以通过嵌入式应变仪实现位移测量,这对于压电设备的闭环控制和结构小型化很有用。它在纳米压痕和纳米划痕测试中具有潜在的应用,特别是在需要紧凑结构的原位纳米力学测试领域。

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