杠杆纳米运动微电热致动器的可行性研究

Xue-jin Shen, Yongyu Zhang, Xiaoyang Chen
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引用次数: 5

摘要

纳米操作需要小型化的微工具进行微小的调整或原位力学表征。本文论证了用体硅电热膨胀微驱动器驱动杠杆纳米运动平台的可行性。可行性研究包括试样制备和动静态特性测试。试件由一个微电热致动器和两级杠杆组成,杠杆比为24.6,用于将热膨胀致动器的微位移转化为平台的纳米位移,试件整体尺寸为1150 μ m × 850 μ m。另一个对称两级杠杆用于将平台的纳米位移同时放大到微位移上,并与热膨胀执行器的纳米位移进行比较。杠杆支点为柔性铰链。在测试中,施加的电压范围从0到5v。热膨胀执行器的最大静态输入位移大于2 μ m,输出位移约为输入位移的一半。在动态过程中发现了不同步现象,这取决于施加交流电压的频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feasibility Study of Micro Electro-thermal Actuator for Lever Nano Motion
The nano manipulation needs miniaturized microtools for minute adjustment or in situ mechanical characterization. This paper demonstrates the feasibility of using bulk silicon electro-thermal expansion micro actuator to drive a lever nano motion platform. The feasibility study includes specimen preparation and dynamic and static characteristic testing. The specimen is made up of a micro electro-thermal actuator and two stage lever with 24.6 lever ratio for transforming the micro displacement of thermal expansion actuator into nano displacement of platform, and the dimension of whole specimen is 1150 mumx 850 mum. The other symmetry two stage lever is used to amplify the nano displacement of platform upon the micro displacement simultaneously for comparing with that one of thermal expansion actuator. The lever fulcrum is flexure hinge. In the testing, the apply voltage ranging from 0 to 5 V. The biggest static input displacement of thermal expansion actuator is more than 2 mum, and the output displacement is about half of the input ones. The non-synchronizing phenomenon has been found in the dynamic process, which is depending on the frequency of applied alternating voltage.
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