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Single Cylinder-Type Piezoelectric Actuator with Two Active Kinematic Pairs

机译:具有两个主动运动对的单缸型压电执行器

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摘要

There is an ever-increasing demand for small-size, low-cost, and high-precision positioning systems. Therefore, investigation in this field is performed to search for various solutions that can meet technical requirements of precise multi-degree-of-freedom (DOF) positioning systems. This paper presents a new design of a piezoelectric cylindrical actuator with two active kinematic pairs. This means that a single actuator is used to create vibrations that are transformed into the rotation of the sphere located on the top of the cylinder and at the same time ensure movement of the piezoelectric cylinder on the plane. Numerical and experimental investigations of the piezoelectric cylinder have been performed. A mathematical model of contacting force control was developed to solve the problem of positioning of the rotor when it needs to be rotated or moved according to a specific motion trajectory. The numerical simulation included harmonic response analysis of the actuator to analyze the trajectories of the contact points motion. A prototype actuator has been manufactured and tested. Obtained results confirmed that such a device is suitable for both positioning and movement of the actuator in the plane.
机译:对小型,低成本和高精度定位系统的需求不断增长。因此,进行该领域的研究以寻找可以满足精确多自由度(DOF)定位系统的技术要求的各种解决方案。本文提出了具有两个主动运动对的压电圆柱致动器的新设计。这意味着使用单个致动器来产生振动,该振动转换为位于圆柱体顶部的球体的旋转,同时确保压电圆柱体在平面上的运动。进行了压电圆柱体的数值和实验研究。建立了接触力控制的数学模型,以解决需要根据特定运动轨迹旋转或移动转子时转子的定位问题。数值模拟包括执行器的谐波响应分析,以分析接触点运动的轨迹。原型致动器已被制造和测试。所获得的结果证实了这种装置既适合于致动器在平面内的定位又适合于在平面内运动。

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