A new suspension structure of micro/nano probe

Yong Li, Shuai Wang, Z. Chu, Jie Tang, Yang Xu, Zhujun Ai, Hongtao Wang
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Abstract

The measuring force of a micro/nano probe is an important factor affecting the probe measurement accuracy. The strength of the force largely depends on the nature of the suspension structure. How to improve the flexibility of the suspension structure is a difficult issue. To tackle the problem, this paper will put forwards an integrated suspension structure, which composed of three evenly spaced elastic hinges. Each elastic hinge has two beams, one of which is used to as the support. In measurement, the maximum displacement is occurred at the intersection of the two beams. In this paper, the flexibility of the suspension structure and probe measuring capability related to the elastic hinge's size and material are investigated based on theoretical modeling and simulation. The research result is significant to reduce the probe measuring force and improve its sensitivity.
一种新型微纳探针悬浮结构
微纳探针的测量力是影响探针测量精度的重要因素。力的强弱在很大程度上取决于悬架结构的性质。如何提高悬架结构的柔性是一个难题。为了解决这一问题,本文将提出一种由三个均匀间隔的弹性铰链组成的整体悬架结构。每个弹性铰有两根梁,其中一根用作支撑。在测量中,最大位移发生在两梁的交点处。本文在理论建模和仿真的基础上,研究了悬架结构的柔性以及与弹性铰链尺寸和材料相关的测头测量能力。研究结果对减小探头测量力,提高探头灵敏度具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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