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A new approach to the evaluation of Casimir and van der Waals forces in the transition region

机译:在过渡区域评估Casimir和Van der Waals力的新方法

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This paper studies the incorporation of Casimir and van der Waals forces applied to a nanostructure with parallel configuration. The focus of this study is in a transition region in which Casimir force gradually transforms into van der Waals force. It is proposed that in the transition region, a proportion of both Casimir and van der Waals forces, as the interacting nanoscale forces, can be considered based on the separation distance between upper structure and substrate during deflection. Moreover, as the separation distance descends during deflection, the nanoscale forces could transform from Casimir to a proportion of both Casimir and van der Waals forces and so as to van der Waals. This is also extended to the entire surface of the nanostructure in such a way that any point of the structure may be subjected to Casimir, van der Waals or a proportion of both of them about its separation distance from the substrate. Therefore, a mathematical model is presented which calculate the incorporation of Casimir and van der Waals forces considering transition region and their own domination area. The mechanical behavior of a circular nanoplate has been investigated as a case study to illustrate how different approaches to nanoscale forces lead to different results. For this purpose, the pull-in phenomena and frequency response in terms of magnitude have been studied based on Eringen nonlocal elasticity theory. The results are presented using different values of the nonlocal parameter and indicated in comparison with those of the classical theory. These results also amplify the idea of studying the mechanical behavior of nanostructures using the nonlocal elasticity theory.
机译:本文研究了Casimir和Van der Wa的掺入施加到具有平行构型的纳米结构。本研究的重点是在过渡区域,其中Casimir力逐渐转变为范德华力。提出,在过渡区域中,可以基于在偏转期间的上部结构和衬底之间的分离距离来考虑作为相互作用的纳米级力的Casimir和van der WaAss力的比例。此外,随着在偏转期间的分离距离下降,纳米级力可以从Casimir转换为Casimir和Van der Waals力的比例,以及范德华。这也延伸到纳米结构的整个表面,使得结构的任何点可以经受Casimir,van der Wa,或它们两者的比例围绕与基板的分离距离进行。因此,提出了一种数学模型,其考虑了考虑过渡区域和自身的统治区域的Casimir和Van der WaaS力的融合。已经研究了圆形纳米层板的力学行为作为案例研究,以说明纳米级力的方法如何导致不同的结果。为此目的,基于eringen非局部弹性理论研究了在大小的中拉现象和频率响应。使用非识别数参数的不同值呈现结果,并与经典理论的那些相比表示。这些结果还扩增了使用非局部弹性理论研究纳米结构的力学行为的想法。

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