首页|An Anisotropic Biomimetic Lemongrass Flexible Piezoelectric Actuator-Inhibitory Regression

An Anisotropic Biomimetic Lemongrass Flexible Piezoelectric Actuator-Inhibitory Regression

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At present,the existing piezoelectric stick-slip actuators have an inherent back-slip problem,which greatly limits the devel-opment and application of stick-slip actuators.In order to inhibit the regression phenomenon,a new bionic lemongrass stickslip actuator was prepared by using polymer PDMS to replicate natural biological surface.The surface microstructure of the grass was copied by PDMS,and the PDMS film was prepared.The rigid and flexible bionic friction pair was further prepared,and the flexible anisotropic PDMS stick slip actuator was developed.It was found that the anisotropic friction characteristics of the surface microstructure of the grass inhibited the anti-sliding motion,and the elastic potential energy of the PDMS film improved the output characteristics of the driver.By adjusting the input voltage to control the contact between the drive foot and the rotor,the rigid and flexible hybrid drive can be realized and the backsliding phenomenon can be suppressed.The actuator is compact,lightweight and can achieve high speed and high resolution output without preloading force,which has important application value in the field of fast and accurate positioning with load limitation.

Piezoelectric actuatorBionic surfaceFrictionSurface frictionFlexible film

Tianwei Liang、Yunhong Liang、Jiru Wang、Hu Huang、Zhi Xu、Hongwei Zhao

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School of Mechanical and Aerospace Engineering,Jilin University,Changchun 130022,China

Institute of Structured and Architected Materials,Liaoning Academy of Materials,Shenyang 110167,China

The Key Laboratory of Bionic Engineering,Ministry of Education,Jilin University,Changchun 130025,China

Key Laboratory of CNC Equipment Reliability,Ministry of Education,Jilin University,Changchun 130022,China

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National Science Fund for Distinguished Young ScholarsNational major research instrument development projects国家自然科学基金创新研究群体项目国家自然科学基金国家自然科学基金国家自然科学基金

519255045222781052021003521752715202100352375287

2024

仿生工程学报(英文版)
吉林大学

仿生工程学报(英文版)

CSTPCDEI
影响因子:0.837
ISSN:1672-6529
年,卷(期):2024.21(4)