夹紧
电压
压电
流离失所(心理学)
刚度
悬臂梁
验证质量
惯性参考系
虚拟力
声学
谐波
物理
压电马达
振动
控制理论(社会学)
材料科学
机械
计算机科学
机械工程
经典力学
工程类
心理学
热力学
控制(管理)
心理治疗师
复合材料
人工智能
量子力学
作者
Ping Zeng,Shujie Sun,Lian Li,Feng Xu,Guangming Cheng
摘要
In this paper, an asymmetrical inertial impact driving principle is first proposed, and accordingly a novel piezoelectrically actuated linear micro-motor is developed. It is driven by the inertial impact force generated by piezoelectric smart cantilever (PSC) with asymmetrical clamping locations during a driving cycle. When the PSC is excited by typical harmonic voltage signals, different equivalent stiffness will be induced due to its asymmetrical clamping locations when it is vibrating back and forth, leading to a tiny displacement difference on the two opposite directions in a cycle, and then the accumulation of tiny displacement difference will allow directional movements. A prototype of the proposed motor has been developed and investigated by means of experimental tests. The motion and dynamics characteristics of the prototype are well studied. The experimental results demonstrate that the resolution of the micro-motor is 0.02 μm, the maximum velocity is 16.87 mm/s, and the maximum loading capacity can reach up to 1 kg with a voltage of 100 V and 35 Hz.
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