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The nonlocal frequency behavior of nanomechanical mass sensors based on the multi-directional vibrations of a buckled nanoribbon

机译:基于弯曲纳米架的多向振动的纳米力学质量传感器的非识别频率特性

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摘要

Considering the potential applications of the buckled structures as nanomechanical mass sensors, this paper presents an analytical method to solve the frequency shifts of the first-order transverse and longitudinal vibration modes when a mass attaches on the surface of a buckled nanoribbon based on the nonlocal elastic theory and the Lagrange's motion equation. The first-order transverse and longitudinal vibration modes of the buckled nanoribbon are introduced. A comparison between the analytic solution and the finite element analysis (FEA) is presented. Then, the effects of the compressive strain, the magnitude and location of attached mass, the nonlocal parameter and attached mass numbers on the frequency shifts are presented. From example calculations, it is seen that the magnitude of attached mass increases the frequency shifts of the first-order modes, except the first-order transverse vibration mode at the location Z1=0. The frequency shifts for the first-order transverse and longitudinal vibration modes are different, and could be used as important principles in mass sensing. What's more, the compressive strain and the nonlocal parameter play significant roles on the sensing process of the buckled nanoribbon. The results could serve as useful references for the fabrications and applications of buckled structures based nanomechanical mass sensors.
机译:考虑到弯曲结构作为纳米机械质量传感器的潜在应用,本文提出了一种解决了当基于非函数弹性的弯曲纳米孔表面上的质量时求解一阶横向和纵向振动模式的频移的分析方法理论与拉格朗日的运动方程。介绍了弯曲纳米罩的一阶横向和纵向振动模式。提出了分析解决方案与有限元分析(FEA)的比较。然后,提出了压缩应变,附着质量的幅度和位置,频移上的非函数参数和附接质量数的影响。从示例计算,可以看出,除了位置Z1 = 0处的一阶横向振动模式之外,附着质量的幅度增加了一阶模式的频移。一阶横向和纵向振动模式的频移是不同的,并且可以用作质量感测的重要原理。更重要的是,压缩菌株和非本地参数在弯曲纳米孔的传感过程中起显着的作用。结果可以作为基于纳米机械质量传感器的弯曲结构的制造和应用的有用参考。

著录项

  • 来源
    《Applied Mathematical Modelling》 |2020年第1期|1780-1796|共17页
  • 作者单位

    School of Naval Architecture Ocean and Civil Engineering (State Key Laboratory of Ocean Engineering) Shanghai Jiaotong University Shanghai 200240 China Departments of Civil and Environmental Engineering. Mechanical Engineering and Materials Science and Engineering Northwestern University Evanston IL 60208 USA AML Department of Engineering Mechanics Tsinghua University Beijing 100084 China;

    School of Naval Architecture Ocean and Civil Engineering (State Key Laboratory of Ocean Engineering) Shanghai Jiaotong University Shanghai 200240 China;

    Departments of Civil and Environmental Engineering. Mechanical Engineering and Materials Science and Engineering Northwestern University Evanston IL 60208 USA;

    School of Naval Architecture Ocean and Civil Engineering (State Key Laboratory of Ocean Engineering) Shanghai Jiaotong University Shanghai 200240 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Buckled nanostructures; Nanomechanical mass sensor; Compressive strain; Nonlocal effect; Analytical method;

    机译:弯曲的纳米结构;纳米力学质量传感器;压缩菌株;非局部效应;分析方法;

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