基于afm的附着力测量系统的介绍和改进

M. Rakotondrabe, P. Rougeot
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引用次数: 1

摘要

本文的目的是介绍和改进一个基于afm的系统,专门用于测量附着力。由于afm杠杆呈现出高线性度和高分辨率,它可以用来表征两个微物体之间出现的力,当它们的相对距离很小时。本文采用原子力显微镜对黏附力随距离的变化进行了分析。特别是,拉脱力和范德华力可以量化。不幸的是,压电管上的磁滞的存在使测量失真,使整个系统不精确。因此,引入了Prandtl-Ishlinskii迟滞补偿器。为了证明改进后的测量系统的效率,在不同的材料上进行了实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Presentation and improvement of an AFM-based system for the measurement of adhesion forces
The aim of this paper is the presentation and improvement of an AFM-based system dedicated to measure adhesion forces. Because an AFM-lever presents a high linearity and a high resolution, it can be used to characterize forces that appears between two micro-objects when their relative distance is small. In this paper, an AFM is used to evaluate the adhesion forces versus the distance. Especially, the pull-off and the Van Der Waals forces can be quantified. Unfortunately, the presence of the hysteresis on the piezotube distorts the measurement and makes the whole system imprecise. Hence, a Prandtl-Ishlinskii hysteresis compensator is introduced. To show the efficiency of the improved measurement system, experiments on different materials where performed.
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