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Analysis on mass sensing characteristics of SWCNT-based nano-mechanical resonators using continuum mechanics based finite element analysis

机译:基于连续力学的有限元分析法分析基于SWCNT的纳米机械谐振器的质量传感特性

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In this study, we used the Finite element method (FEM) based on continuum mechanics, instead of molecular dynamics, to design and analyze an ultra-small mass nanomechanical sensor using Single wall carbon nanotube (SWCNT). We tested the validity of the FEM modeling technique based on continuum mechanics by comparing its analysis results with those of molecular dynamics modeling. After developing an elastic continuum shell model having an effective thickness, Young's modulus, and Poisson's ratio, we proved the superiority of the implemented analysis technique by comparing its resonance frequency with that of the molecular dynamics model. Additionally, using the developed model, we established various design parameters for a resonator and observed the parameter-dependent changes in frequency characteristics of the resonator.
机译:在这项研究中,我们使用基于连续力学而不是分子动力学的有限元方法(FEM),来设计和分析使用单壁碳纳米管(SWCNT)的超小型纳米机械传感器。我们通过比较其与分子动力学建模的分析结果,测试了基于连续体力学的FEM建模技术的有效性。建立具有有效厚度,杨氏模量和泊松比的弹性连续壳模型后,我们通过将共振频率与分子动力学模型的共振频率进行比较,证明了所实施分析技术的优越性。此外,使用开发的模型,我们为谐振器建立了各种设计参数,并观察了谐振器频率特性中与参数有关的变化。

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