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个人信息Personal Information
教授 博士生导师
性别:男
毕业院校:西南交通大学
学历:博士研究生毕业
学位:工学博士学位
在职信息:在职人员
所在单位:机械与电气工程学院
入职时间:2010-08-20
学科:机械工程
办公地点:电子科技大学清水河校区成电国际创新中心B栋303
曾获荣誉:成都市“蓉漂”人才计划、深圳“鹏城孔雀计划”人才。
2020年2月21日:博士生郝瑞在《J. Micro/Nanolith. MEMS MOEMS 》上发表关于MEMS振动台离轴误差的学术论文,祝贺!
发布时间:2024-09-24 点击次数:
Background: The piezoelectric microvibratory stage as a microelectromechanical system
(MEMS) actuator can tilt around the X∕Y axis and translate along the Z axis. However, when
the vibratory stage is tilted around the X axis, it also has an undesirable tilting angle around
the Y axis. It means that the X axis tilting and the Y axis tilting are not independent; therefore,
it is significant to eliminate the coupling of two motions.
Aim: The coupling of X∕Y tilting motion is studied theoretically and decoupled by optimization
of structural parameters.
Approach: A structural model was established to analyze the reasons of the X∕Y tilting
coupling. Reasonable structure parameters of L-shaped piezoelectric beam were designed to
eliminate the off-axis errors caused by X∕Y tilting coupling.
Results: The reason of X∕Y tilting coupling is that the stiffness of the L-shaped piezoelectric
support beam mismatch in the X axis and Y axis directions. The appropriate width ratio of the
two segments of the L-shaped piezoelectric beam can reduce the off-axis error effectively.
Conclusions: The test results show that the piezoelectric MEMS vibratory stage can achieve
X∕Y tilting motion with the relative off-axis error only at 1%.