Research on Output Characteristics of a Non-Contact Piezoelectric Actuator's Micro-Displacement Amplifying Mechanism

被引:0
|
作者
Li, Huaiyong [1 ,2 ]
Zhang, Dongya [1 ]
Lin, Yusheng [1 ]
Chen, Zhong [1 ,2 ]
Shi, Zhiwei [1 ]
Li, Chong [2 ,3 ]
Zhao, Liang [1 ,2 ]
机构
[1] Huaiyin Inst Technol, Fac Mech & Mat Engn, Huaian 223003, Peoples R China
[2] Huaiyin Inst Technol, Jiangsu Key Lab Adv Mfg Technol, Huaian 223003, Peoples R China
[3] Jiangsu Univ Sci & Technol, Sch Mech & Engn, Zhenjiang 212100, Peoples R China
关键词
non-contact piezoelectric actuator; micro-displacement amplifying mechanism; structural design; output characteristics; ULTRASONIC MOTOR; FLUID; FIELD;
D O I
10.3390/act13080309
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
A non-contact piezoelectric actuator is proposed. The non-contact power transfer between stator and rotor is realized by pneumatic transmission, characterized by fast response, long life, compact structure, and easy miniaturization and control. The structure of the non-contact piezoelectric actuator is designed and its working principle is elucidated. The equation of the relationship between the output displacements of the non-contact piezoelectric actuator's micro-displacement amplifying mechanism and the input displacements of piezoelectric stack is deduced, and the simulation analysis method of output displacement of the micro-displacement amplifying mechanism is established. Using the equation and the simulation analysis, the output characteristics of micro-displacement amplifying mechanism for the non-contact piezoelectric actuator and their changes along with the system parameters are investigated. The detailed process of optimal design of the micro-displacement amplifying mechanism is given by means of mathematical statistics. The prototype is made and the performance test is carried out. The correctness of the theoretical calculation and simulation analysis is verified by comparing the experimental values with the theoretical and simulated values of the output displacement of the micro-displacement amplifying mechanism. The results show that the initial angle of bridge structure I has an obvious effect on the output characteristics of the micro-displacement amplifying mechanism in the range of 5 degrees-15 degrees. When the lever's rod length is 13 mm-15 mm, the bridge structure II's rod length is 6 mm-7 mm, and the power arm length of bridge structure I's driving lever is 5 mm-7 mm, the bridge structure II's rod horizontal projection length is 5 mm-6 mm and the output displacement of the micro-displacement amplifying mechanism is larger. Through the optimal design, it is obtained that the bridge structure I's initial angle is 8 degrees, the lever's rod length is 15 mm, the bridge structure II's rod length is 7 mm, and the power arm length of bridge structure I driving lever is 5 mm, the bridge structure II's rod horizontal projection length is 6 mm, and the simulated output displacement of the micro-displacement amplifying mechanism is 0.1415 mm. The prototype test reveals that as the input excitation displacement decreases, the error increases, while as the input excitation displacement increases, the error decreases. Specifically, when the input excitation displacement is 0.005 mm, the measured output displacement of the micro-displacement amplifying mechanism is 0.1239 mm, resulting in a 19.8% deviation from the theoretical value and a 12.44% deviation from the simulated value. The research work in this paper enriches the research achievements of non-contact piezoelectric actuators, and also provides a reference for designing small structure and large travel micro-displacement amplifying mechanisms of this type of actuator.
引用
收藏
页数:32
相关论文
共 50 条
  • [41] Micro-displacement characteristics under tangential force between surfaces in contact .1. Analysis of tangential displacement mechanism by elastic deformation and slip for the case of isotropically rough surfaces
    Fujimoto, T
    Kagami, J
    Kawaguchi, T
    Hatazawa, T
    Yoshioka, N
    JOURNAL OF JAPANESE SOCIETY OF TRIBOLOGISTS, 1997, 42 (05) : 395 - 402
  • [42] Non-contact magnetic cantilever-type piezoelectric energy harvester for rotational mechanism
    Wu, Wen-Hsiang
    Kuo, Kai-Chun
    Lin, Yu-Hsiang
    Tsai, Yao-Chuan
    MICROELECTRONIC ENGINEERING, 2018, 191 : 16 - 19
  • [43] Micro-displacement characteristics under tangential force between ceramic surfaces in contact - In the case of contact between a isotropically rough surface and a smooth surface
    Kagami, J
    Kawaguchi, T
    Hatazawa, T
    Fujimoto, T
    JOURNAL OF JAPANESE SOCIETY OF TRIBOLOGISTS, 2000, 45 (08) : 636 - 644
  • [44] Non-contact voltage measurement technology based on dual coupling mechanism displacement current method
    Peng, Yinke
    Fu, Ling
    Ye, Yongjie
    Li, Hao
    2023 IEEE 4th China International Youth Conference on Electrical Engineering, CIYCEE 2023, 2023,
  • [45] Design and verification of a new non-contact piezoelectric energy harvester based on a sinusoidal exciting mechanism
    Li, Jie
    Qi, Ji
    Wang, Liang
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2024, 95 (04):
  • [46] Non-contact boxing as a mechanism for treating Parkinson's disease symptomatology
    Seibert, P.
    Calzacorta, C.
    Jones, E.
    Johnson, C.
    JOURNAL OF THE NEUROLOGICAL SCIENCES, 2017, 381 : 732 - 732
  • [47] Precision non-contact displacement sensor based on the near-field characteristics of fiber specklegrams
    Chen, Wang
    Feng, Fu
    Chen, Dihan
    Lin, Wei
    Chen, Shih-Chi
    SENSORS AND ACTUATORS A-PHYSICAL, 2019, 296 : 1 - 6
  • [49] Micro-displacement characteristics under tangential force between surfaces in contact .2. Experimental investigations on the analytical results of tangential displacement mechanism by elastic deformation and slip for the case of isotropically rough surfaces
    Fujimoto, T
    Kagami, J
    Kawaguchi, T
    Hatazawa, T
    Yoshioka, M
    JOURNAL OF JAPANESE SOCIETY OF TRIBOLOGISTS, 1997, 42 (05) : 403 - 410
  • [50] Research on Signal Processing of Micro/Nano Displacement Sensor for Piezoelectric Actuator Based on Forward Linear Prediction Wavelet Transform
    Chen, Renbing
    Yu, Yong
    Song, Bo
    Ge, Yunjian
    2009 IEEE INTERNATIONAL CONFERENCE ON MECHATRONICS AND AUTOMATION, VOLS 1-7, CONFERENCE PROCEEDINGS, 2009, : 3687 - +