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Generating Sub-nanometer Displacement Using Reduction Mechanism Consisting of Torsional Leaf Spring Hinges

机译:使用扭转板簧铰链的复位机制产生亚纳米位移

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Recent demand on the measurement resolution of precise positioning comes up to tens of picometers. Some distinguished researches have been performed to measure the displacement in picometer order, however, few of them can verify the measurement performance as available tools in industry. This is not only because the picometer displacement is not yet required for industrial use, but also due to the lack of standard tools to verify such precise displacement. We proposed a displacement reduction mechanism for generating precise displacement using torsional leaf spring hinges (TLSHs) that consist of four leaf springs arranged radially. It has been demonstrated that a prototype of the reduction mechanism was able to provide one-nanometer displacement with 1/1000 reduction rate by a piezoelectric actuator. In order to clarify the potential of the reduction mechanism, a displacement reduction table that can be mounted on AFM stage was newly developed using TLSHs. This paper describes the design of the reduction mechanism and the sub-nanometer displacement performance of the table obtained from its dynamic and static characteristics measured by displacement sensors and from the AFM images.
机译:对精确定位的测量分辨率的最新需求高达数十皮米。已经进行了一些杰出的研究来测量皮克级的位移,但是,很少有研究可以作为工业上可用的工具来验证测量性能。这不仅是因为工业上尚不需要皮克计的位移,而且还因为缺乏验证这种精确位移的标准工具。我们提出了一种减少位移的机制,该机制可使用扭转板簧铰链(TLSH)产生精确的位移,TLSH由四个径向排列的板簧组成。已经证明,减速机构的原型能够通过压电致动器提供1/1000的减速率的纳米位移。为了阐明减小机构的潜力,使用TLSH新开发了可安装在AFM载物台上的位移减小工作台。本文介绍了变径机构的设计以及工作台的亚纳米位移性能,该工作原理是通过位移传感器测量的动,静态特性以及AFM图像获得的。

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