| Literature DB >> 27479230 |
Cong Zhu1, Xiangcheng Chu2, Songmei Yuan3, Zuojin Zhong4, Yanqiang Zhao1, Shuning Gao4.
Abstract
This paper presents a novel linear piezoelectric motor which is suitable for rapid ultra-precision positioning. The finite element analysis (FEA) was applied for optimal design and further analysis, then experiments were conducted to investigate its performance. By changing the input signal, the proposed motor was found capable of working in the fast driving mode as well as in the precision positioning mode. When working in the fast driving mode, the motor acts as an ultrasonic motor with maximum no-load speed up to 181.2mm/s and maximum thrust of 1.7N at 200Vp-p. Also, when working in precision positioning mode, the motor can be regarded as a flexible hinge piezoelectric actuator with arbitrary motion in the range of 8μm. The measurable minimum output displacement was found to be 0.08μm, but theoretically, can be even smaller. More importantly, the motor can be quickly and accurately positioned in a large stroke.Entities:
Keywords: Flexible hinge; Linear piezoelectric motor; Optimization design; Ultrasonic motor
Year: 2016 PMID: 27479230 DOI: 10.1016/j.ultras.2016.07.010
Source DB: PubMed Journal: Ultrasonics ISSN: 0041-624X Impact factor: 2.890