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Mechanics of thermophoretic and thermally induced edge forces in carbon nanotube nanodevices
Authors:Zhengrong Guo  Tienchong Chang  Xingming Guo  Huajian Gao
Institution:1. Shanghai Institute of Applied Mathematics and Mechanics, Division of Modern Mechanics of E-Institute of Shanghai Universities, Shanghai Key Laboratory of Mechanics in Energy Engineering, Shanghai University, Shanghai 200072, People’s Republic of China;2. School of Engineering, Brown University, Providence, RI 02912, USA
Abstract:A double walled carbon nanotube thermal actuator consisting of a short outer tube sliding along a long inner tube under a temperature gradient is used as a model system to investigate the mechanics of thermophoretic and thermally induced edge forces in nanoscale contact based on the theory of lattice dynamics. It is shown that the total thermophoretic force has two components: a gradient force due to the change in van der Waals energy in the direction of temperature gradient and an unbalanced edge force due to the temperature difference between the two tube ends. Closed-form analytical expressions are derived for the gradient and unbalanced edge forces, with results in excellent agreement with molecular dynamics simulations. This study represents a first analytical study of thermophoretic and thermally induced edge forces between two solid bodies, and may have far reaching implications on thermomechanical nanodevices and nanoscale contact.
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