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Information Journal Paper

Title

3D MODELING OF NANOPARTICLE MANIPULATION IN AIR USING HK FRICTION MODEL

Pages

  275-282

Abstract

 Nowadays, atomic force microscopy has widely attracted researchers’ attention in manufacturing of micro/nano equipment. For this purpose, the displacement and manipulation equations for micro/nanoparticle are essential. Although surface forces such as friction and adhesion are ignorable in macro scale, increased surface to volume ratio in micro/nano scale makes them very important. Various friction models have been used for two-dimensional manipulation in previous works. In this paper, HK FRICTION MODEL has been used to model and simulate three dimensional manipulation dynamically in order to have closer results to real manipulation. For this purpose, the important friction models have been studied and developed for use in micro/nano scale. Then, three-dimensional manipulation equations have been obtained and stiffness coefficient matrix for beam is extracted and all of the equations are combined to calculate the critical force and time of manipulation. Finally, simulation of obtained equations was used to calculate the critical force and time values of the three-dimensional manipulation for gold particle using HK FRICTION MODEL. The results indicate that rolling starts aroundx axis beforey -axis, and sliding starts along y -axis before x -axis.

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  • Cite

    APA: Copy

    TAHERI, MOEIN. (2017). 3D MODELING OF NANOPARTICLE MANIPULATION IN AIR USING HK FRICTION MODEL. MODARES MECHANICAL ENGINEERING, 16(10 ), 275-282. SID. https://sid.ir/paper/178266/en

    Vancouver: Copy

    TAHERI MOEIN. 3D MODELING OF NANOPARTICLE MANIPULATION IN AIR USING HK FRICTION MODEL. MODARES MECHANICAL ENGINEERING[Internet]. 2017;16(10 ):275-282. Available from: https://sid.ir/paper/178266/en

    IEEE: Copy

    MOEIN TAHERI, “3D MODELING OF NANOPARTICLE MANIPULATION IN AIR USING HK FRICTION MODEL,” MODARES MECHANICAL ENGINEERING, vol. 16, no. 10 , pp. 275–282, 2017, [Online]. Available: https://sid.ir/paper/178266/en

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