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Application of hetero junction CNTs as mass nanosensor using nonlocal strain gradient theory: An analytical solution

机译:异质结碳纳米管在非局部应变梯度理论中作为质量纳米传感器的应用:一种分析解决方案

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This paper aims to propose an analytical solution for dynamic analysis of the hetero junction carbon nanotubes (HJCNTs)-based mass nanosensors using a nonlocal strain gradient Timoshenko beam model. To have a more precise nanosensor, it is necessary to have deep information about the vibration characteristics of the nanostructure. So, two main goals are followed in this paper. At first, the vibration of HJCNTs with general (elastic) boundary conditions and without attached mass are studied using a proposed analytical solution. Afterward, the HJCNT is applied as a cantilever mass sensor for sensing light as well as heavy masses attached to its tip. For the large and heavy masses, the rotary inertia of the attached mass is also considered in the analysis. The governing differential equations are derived based on the Hamilton's principle and solved by an analytical method, which is based on the modified Fourier series. The weighted residual method is employed for obtaining the variationally consistent boundary conditions using the known equations of motion of the structure. The field quantities are obtained in the closed forms. The convergence and accuracy of the proposed solution are validated through some special cases available in the literature. The effects of small scale parameters and the elastic boundaries on the frequency and mode shapes of HJCNTs are studied. Moreover, the factors that affect the frequency shift of HJCNT-mass sensor are discussed. The obtained results introduce HJCNTs as new mass nanosensors that can operate more efficiently than uniform CNTs. This paper can be greatly useful in designing HJCNT-mass sensors and may serve as a benchmark for the future research in this field. (C) 2019 Elsevier Inc. All rights reserved.
机译:本文旨在提出一种使用非局部应变梯度Timoshenko束模型对基于异质结碳纳米管(HJCNTs)的质量纳米传感器进行动态分析的分析解决方案。为了拥有更精确的纳米传感器,必须具有有关纳米结构振动特性的深入信息。因此,本文遵循两个主要目标。首先,使用拟议的分析解决方案研究了具有一般(弹性)边界条件且没有附着质量的HJCNT的振动。之后,HJCNT用作悬臂式质量传感器,用于感测附着在其尖端的轻质量和重质量。对于大质量和重质量,在分析中还考虑了附着质量的旋转惯性。控制性微分方程是根据汉密尔顿原理导出的,并通过基于修正傅里叶级数的解析方法进行求解。加权残差法用于使用结构的已知运动方程式获得变化一致的边界条件。场量以封闭形式获得。通过文献中提供的一些特殊情况验证了所提出解决方案的收敛性和准确性。研究了小尺度参数和弹性边界对HJCNTs频率和模式形状的影​​响。此外,讨论了影响HJCNT质量传感器频率偏移的因素。获得的结果介绍了HJCNTs作为新型的质量纳米传感器,它比均匀的CNT可以更有效地工作。本文对于设计HJCNT质量传感器非常有用,并且可以作为该领域未来研究的基准。 (C)2019 Elsevier Inc.保留所有权利。

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