短柱微压电动力执行器的结构设计与动态特性分析

Q4 Engineering
Huaiyong Li, Shijie Gao, Zhong Chen, Yonghua Yin
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After working for a long time, the contact surface will be lost due\nto friction, which will reduce the response speed and rotation accuracy and even cause the rotor to\nslip, affecting the actuator operating life.\n\n\n\nIn order to solve the above technical problems, the author innovates the driving mode\nbetween stator and rotor and proposes a novel short-column micro piezoelectric actuator based on\nmulti-tooth alternating meshing transmission.\n\n\n\nFirstly, the structure and operating principle of short-column micro piezoelectric power\nactuator, which can realize linear motion into rotary motion, and has three main advantages: compactness\nin size, multi-tooth meshing drive and large driving torque, are proposed and elucidated.\nSecondly, the structure size of each component of the actuator is determined to complete the 3D\nstructure design. Thirdly, the modal analysis and the harmonic response analysis of the actuator\nare studied. The frequency range of the sawtooth wave voltage excitation signal applied to the actuator\nis determined. Finally, the prototype is made, and the performance test is carried out.\n\n\n\nIn this paper, a micro piezoelectric power actuator different from the existing patent is\nproposed, which is assembled by a drive module, a transmission module, an elastic element, an\noutput shaft, a base module and a shell. The results show that when the excitation frequency applied\nby the actuator is 157Hz, the amplitude of the tooth column along the axis of the actuator is\n3.071mm, the axial amplitude of the output shaft is zero, and there is no axial motion. At this time,\nthe displacement of the tooth column is the largest, and the driving performance is the best. 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引用次数: 0

摘要

随着科学技术的飞速发展,工业产品不断向轻量化和微型化方向发展,对驱动微型机械的动力源的需求也越来越大,因此与微执行器相关的专利也越来越受到重视。基于压电驱动的微型致动器将压电体的变形能转化为传动机构的动能,从而驱动输出轴旋转。现有执行器的定子和转子是具有一定预紧力的表面接触。为了解决上述技术难题,作者对定子和转子之间的驱动方式进行了创新,提出了一种基于多齿交替啮合传动的新型短柱微型压电执行器。首先,提出并阐明了短柱微型压电动力执行器的结构和工作原理,该执行器可将直线运动变为旋转运动,具有体积小、多齿啮合传动和驱动力矩大三大优点;其次,确定了执行器各部件的结构尺寸,完成了三维结构设计。第三,研究了推杆的模态分析和谐波响应分析。最后,确定了施加在致动器上的锯齿波电压激励信号的频率范围。本文提出了一种不同于现有专利的微型压电动力执行器,它由驱动模块、传动模块、弹性元件、输出轴、底座模块和外壳组装而成。结果表明,当推杆施加的激励频率为 157Hz 时,齿柱沿推杆轴线的振幅为 3.071mm,输出轴的轴向振幅为零,无轴向运动。此时,齿柱的位移最大,驱动性能最好。本文提出的微型压电动力执行器采用定子和转子之间多齿交替啮合的方式传递动力,改变了现有技术中依靠摩擦力传递动力的模式,降低了摩擦损耗,避免了转子打滑,提高了执行器的响应速度、旋转精度和使用寿命。本文的研究工作为微型机械动力源的研究和设计提供了一种新思路和新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural Design and Dynamic Characteristic Analysis of Short-column Micro Piezoelectric Power Actuator
With the rapid development of science and technology, industrial products continue to develop towards the direction of lightweight and miniaturization, and the demand for power sources to drive micromachinery is increasing, so the patents related to microactuators are also increasingly valued. The microactuator based on a piezoelectric drive converts the deformation energy of the piezoelectric body into the kinetic energy of the transmission mechanism to drive the output shaft rotation. The stator and the rotor of the existing actuator are the surface contact with a certain preload force. After working for a long time, the contact surface will be lost due to friction, which will reduce the response speed and rotation accuracy and even cause the rotor to slip, affecting the actuator operating life. In order to solve the above technical problems, the author innovates the driving mode between stator and rotor and proposes a novel short-column micro piezoelectric actuator based on multi-tooth alternating meshing transmission. Firstly, the structure and operating principle of short-column micro piezoelectric power actuator, which can realize linear motion into rotary motion, and has three main advantages: compactness in size, multi-tooth meshing drive and large driving torque, are proposed and elucidated. Secondly, the structure size of each component of the actuator is determined to complete the 3D structure design. Thirdly, the modal analysis and the harmonic response analysis of the actuator are studied. The frequency range of the sawtooth wave voltage excitation signal applied to the actuator is determined. Finally, the prototype is made, and the performance test is carried out. In this paper, a micro piezoelectric power actuator different from the existing patent is proposed, which is assembled by a drive module, a transmission module, an elastic element, an output shaft, a base module and a shell. The results show that when the excitation frequency applied by the actuator is 157Hz, the amplitude of the tooth column along the axis of the actuator is 3.071mm, the axial amplitude of the output shaft is zero, and there is no axial motion. At this time, the displacement of the tooth column is the largest, and the driving performance is the best. From the experimental results, it can be seen that the prototype appears to have intermittent rotation under this frequency excitation. The proposed micro piezoelectric power actuator adopts multi-tooth alternating meshing between the stator and the rotor to transfer power, which changes the transmission mode relying on friction in the existing technology, reduces the friction loss, avoids rotor slip, and improves the response speed, rotation accuracy and operating life of the actuator. The research work in this paper provides a new idea and a new method for the research and design of micromechanical power sources.
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来源期刊
Recent Patents on Mechanical Engineering
Recent Patents on Mechanical Engineering Engineering-Mechanical Engineering
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