会议论文详细信息
3rd China-Romania Science and Technology Seminar
Analysis for hysteresis of piezoelectric actuator based on microscopic mechanism
自然科学;工业技术
Li, H.^1 ; Xu, Y.^3 ; Shao, M.^3 ; Guo, L.^1 ; An, D.^2,3
School of Mechanical Engineering, Shenyang Jianzhu University, Shenyang
110168, China^1
Research Center for Analysis and Detection Technology, Shenyang Jianzhu University, Shenyang
110168, China^2
Research Institute for Micronano Detection and Motion Control, Shenyang Jianzhu University, Shenyang
110168, China^3
关键词: Displacement mechanisms;    Electrostrictive effects;    Hysteresis characteristics;    Inverse piezoelectric effects;    Microscopic displacement;    Microscopic mechanisms;    Microscopic polarization;    Piezoelectric ceramic actuators;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/399/1/012031/pdf
DOI  :  10.1088/1757-899X/399/1/012031
来源: IOP
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【 摘 要 】

The hysteresis widely existing in piezoelectric ceramic actuators seriously affects the positioning accuracy in practical applications. Based on the microscopic displacement mechanism of piezoelectric actuators, this paper studied the displacement mechanism of the electrostrictive effect and the inverse piezoelectric effect from the microscopic polarization mechanism and, at the same time, the displacement mechanism of electric domain reversal in ferroelectric effect. This paper clarified that the inverse piezoelectric effect and the ferroelectric effect are the main causes for the displacement of the piezoelectric actuator. The contribution of the electrostrictive effect microscopically is extremely weak and can be ignored. This paper shows that the relationship between the voltage and displacement of the piezoelectric actuator in the inverse piezoelectric effect is linear, and the hysteresis characteristic mainly exists in the ferroelectric effect. In this paper, we pointed out that there is energy loss during the piezoelectric domain transition of piezoelectric ceramics, and some irreversible non-180° domain steering is the root cause of the hysteresis of the piezoelectric actuator. This paper provides a scientific basis for further hysteresis curves modelling or correcting hysteresis modelling errors of piezoelectric ceramic and for improving the control accuracy of piezoelectric ceramic actuators in practical applications.

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