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在原子力显微镜纳米操作中应用的椭球接触模型的研究与仿真。

Studying and simulation of ellipsoidal contact models for application in AFM nano manipulation.

机构信息

Robotic Research Laboratory, Center of Excellence in Experimental Solid Mechanics and Dynamics, School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran.

Department of Mechanical, Electrical, and Computer Engineering, Science and Research Branch, Islamic Azad University, Tehran, 16846, Iran.

出版信息

Micron. 2021 Jan;140:102960. doi: 10.1016/j.micron.2020.102960. Epub 2020 Oct 28.

Abstract

Four contact models including Hertz, Jamari, Jeng-Wang and Weng-Tang-Zhou-Zhu were considered. To verify the results of contact mechanics, the indentation depth has been compared with spherical geometry. According to the obtained results, by comparing the spherical and elliptical geometries, the indentation depth for spherical geometry is higher than for the ellipsoidal geometry, due to the existence of eccentricity in elliptical contact models which does not exist in spherical geometry. Among the models, the Jeng-Wang and Weng-Tang-Zhou-Zhu are models that are based on the contact of a particle with the substrate. Based on the existing experimental work, Jeng-Wang is the most suitable model for being applied in particle-substrate contact point. The Hertz model has been developed from crowned cylinder equations in order to be implemented for ellipsoidal geometry, moreover the Jamari model investigates two ellipses in contact with each other. By comparing Jeng-Wang and Weng-Tang-Zhou-Zhu models it is obvious that Jeng-Wang has the highest indentation depth while for the Weng-Tang-Zhou-Zhu model it is the lowest. These trends happen for two contact points. Also four materials are compared, among which graphite and chromium have the highest and the lowest indentation depths, respectively. Finally based on the obtained results Jeng-Wang and Jamari are the most suitable contact models that can be implemented in the manipulation of ellipsoidal nanoparticles.

摘要

考虑了四种接触模型,包括赫兹、Jamari、Jeng-Wang 和 Weng-Tang-Zhou-Zhu。为了验证接触力学的结果,比较了压痕深度与球形几何形状。根据所得结果,通过比较球形和椭圆形几何形状,由于在椭圆形接触模型中存在偏心,而在球形几何形状中不存在偏心,因此球形几何形状的压痕深度高于椭圆形几何形状。在这些模型中,Jeng-Wang 和 Weng-Tang-Zhou-Zhu 是基于颗粒与衬底接触的模型。基于现有的实验工作,Jeng-Wang 是最适合应用于颗粒-衬底接触点的模型。Hertz 模型是从冠柱方程发展而来的,以便在椭球几何形状中实施,此外,Jamari 模型研究了两个相互接触的椭圆。通过比较 Jeng-Wang 和 Weng-Tang-Zhou-Zhu 模型,很明显 Jeng-Wang 具有最高的压痕深度,而对于 Weng-Tang-Zhou-Zhu 模型,它具有最低的压痕深度。这些趋势适用于两个接触点。还比较了四种材料,其中石墨和铬的压痕深度分别最高和最低。最后,根据所得结果,Jeng-Wang 和 Jamari 是最适合在操纵椭球纳米颗粒时实施的接触模型。

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