首页> 外文会议>Conference on micro- and nanotechnology: Materials, processes, packaging, and systems IV; 20081210-12; Melbourne(AU) >An effective multiscale approach for deformation analyses of carbon nanotube- based nanoswitches
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An effective multiscale approach for deformation analyses of carbon nanotube- based nanoswitches

机译:一种有效的多尺度方法,用于基于碳纳米管的纳米开关的变形分析

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This paper aims to develop an effective multiscale simulation technique for the deformation analysis of nanotube-based nanoswitches. In the multiscale simulation, the key material parameters, (e.g., Young's modulus and moment of inertia) are extracted from the MD simulation which can explore the atomic properties. Then, the switches are simplified to continuum structure which is discretized and simulated by the advanced RBF meshfree formulation. The system of equations is nonlinear because the nonlinear loading is calculated from coupled the electrostatic, the elastostatic, and the van der Waals energy domains. Besides the normal deformation analysis, the pull-in voltage characteristics of different nanoswitches based on the double-walled nanotubes are analyzed. Comparing with the results in the literature and from experiments, it has proven that the developed multiscale approach is accurate and efficient.
机译:本文旨在开发一种有效的多尺度模拟技术,用于基于纳米管的纳米开关的变形分析。在多尺度模拟中,从MD模拟中提取关键材料参数(例如,杨氏模量和惯性矩),从而可以探索原子特性。然后,将开关简化为连续体结构,并通过高级RBF无网格公式离散化和模拟。方程组是非线性的,因为非线性负载是根据静电,弹性和范德华能量域耦合来计算的。除了正常的变形分析,还分析了基于双壁纳米管的不同纳米开关的吸合电压特性。与文献和实验结果相比较,已证明所开发的多尺度方法是准确有效的。

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