基于AFM纳米机器人的纳米操作过程中最优接触函数和路径的寻找

H. Khaksar
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引用次数: 0

摘要

在以AFM纳米机器人为基础的文献中,提出了各种接触理论。但是,选择最佳接触理论需要考虑不同的情况。此外,在粒子的纳米操作过程中,寻找粒子的最优运动路径也很重要。因此,本研究主要研究了应用于操作的最优接触方程的选择以及利用混合遗传算法寻找最优运动路径的问题。本研究结果表明,与JKR和Hertz两种模型相比,面积为21.689 nm2的Jamari理论创造了最高的接触水平。此外,在寻找真实路径上的最佳路径的范围内,发现在充满银的盘子上创建的最佳路径长度为13.29µm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Finding the optimal contact function and path in nanomanipulation process-based on AFM nanorobot
In the area of the body of literature based on AFM nanorobot, various contact theories have been presented. But, choosing the best contact theory entails taking in different situations. Also, during the nanomanipulation of particles, finding the optimal path to move takes on importance. Therefore, in this research, choosing the optimal contact equation to be applied in manipulation and also finding the optimal path of movement using hybrid genetic algorithm method have been investigated. The findings of this study reflect that Jamari theory with an area of 21.689 nm2 creates the highest level of contact compared to the two JKR and Hertz models. Also, in the sphere of finding the optimal path on a real path, it was found that the optimal length of the created path is 13.29 µm on a plate full of silver.
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