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Research on a trans-scale inertial stick-slip platform driven by piezoelectric ceramics

机译:压电陶瓷驱动的跨尺度惯性粘滑平台研究

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摘要

The inertial stick-slip platforms driven by piezoelectric ceramics have comprehensively application in the field of nanomanipulation and nanoassemblies field. In this paper, our investigation is mainly focused on designing and manufacturing a novel structure of inertial stick-slip platform. There are some advantages that higher integration and consistency of every step, more easily changing the friction in fine adjustment, etc. To describe the inertial stick-slip phenomenon exhaustively, the LuGre friction model has been taken into account in the kinetics model. Intuitively, the whole movement of the inertial stick-slip system has been simulated by Matlab, and the result consists of curve of displacement. The prototype has been done some experiments, and the displacement of the inertial stick-slip driving stage has been taken down. Lastly, we compare the curve of displacement and velocity tested by Polytec Laser Vibrometer with the simulation result to verify the accuracy of the kinetics model.
机译:压电陶瓷驱动的惯性粘滑平台已在纳米操纵和纳米组装领域得到了广泛的应用。在本文中,我们的研究主要集中在设计和制造一种新颖的惯性粘滑平台结构上。优点是每个步骤的集成度和一致性更高,在微调中更容易更改摩擦等。为详尽描述惯性粘滑现象,在动力学模型中考虑了LuGre摩擦模型。直观地,通过Matlab模拟了惯性粘滑系统的整个运动,其结果由位移曲线组成。该原型机已经进行了一些实验,并减少了惯性粘滑驱动台的位移。最后,我们将Polytec激光测振仪测试的位移和速度曲线与仿真结果进行比较,以验证动力学模型的准确性。

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