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压电惯性驱动器惯性冲击力的分析与检测

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压电惯性驱动器惯性冲击力的分析与检测 第23卷第6期 2015年6月
1004-924X(2015)06-1681-07
文章编号
光学精密工程
Optics and Precision Engineering
Vol.23No.6
Jun,2015
压电惯性驱动器惯性冲击力的分析与检测
程光明,李晓旭“,温建明,胡意立,曾平(浙江师范大学精密机械研究所,浙江金华321004)
摘要:由于惯性冲击力是压电惯性驱动器产生运动的关键,故本文探讨了方波激励下压电振子的惯性冲击力大小。推导了压电双晶片报子在方波激励下的冲击响应,分析了惯性冲击力的时域特性和幅频特性,分析得到方波激励下惯性冲击力信号频率主要集中在0~500Hz。采用加速度传感器初步测试了压电双晶片振子的加速度参数,测试结果与理论模型相近。结合压电双晶片振子的端部惯性质量计算得到惯性冲击力的数值,利用快速傅里叶算法获得了加速度参数的幅频特性。最后,采用摩擦学的方法对惯性冲击力的数值进行了验证,验证结果表明两种方法的最大相对误差为 8.98%,表明加速度传感器测试惯性冲击力是可行的。
关键调:压电惯性驱动器;惯性冲击力;方波;冲击响应
中图分类号:TN384
文献标识码:A
doi;10.3788/OPE.20152306.1681
Analysisandtestingoninertialimpactofpiezoelectricinertialactuator
CHENGGuang-ming,LI Xiao-xu',WEN Jian-ming,HUYi-li,ZENG Ping
(InstituteofPrecisionMachinery,ZhejiangNormalUniversity,Jinhua321004,China)
Correspondingauthor,E-mailliziaozu.fuyu@163.com
Abstract: The movement of a piezoelectric inertial actuator is come from the inertia impact, so this paper explores the inertia impact of a piezoelectric vibrator excited by a square wave. The impact response of the piezoelectric vibrator excited by the square wave was deducted. The time-domain and amplitude-frequency characteristics of the piezoelectric vibrator were analyzed and the theory and experiment results show that the frequency of the inertial impact signal mainly is concentrate on the O-5oo Hz in square wave excitation. An acceleration sensor was used to test the acceleration parameters and the test results are closed to that of the model. The inertial impact force was calculated by the end inertial mass of the piezoelectric bimorph vibrator, and the amplitude-frequency characteristics of acceleration parameter were obtained by the fast Fourier transfer algorithm, Finally, the tribology method was used to verify the test results. Theory and experiment results show that the maximum relative error of two methods is 8. 98%, which verifies that the tests of inertial impacts by acceleration sensors are feasible.
Key words: piezoelectric inertial actuator; inertial impact; square wave; impact response
收稿日期:2014-12-15;修订日期:2015-02-01.
基金项目:国家自然科学基金资助项目(No.51175478,No.51205369);浙江自然科学基金资助项目(No.Y1110529)
上一章:深切口椭圆柔性铰链优化设计 下一章:瞄准镜光学系统的研究现状

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