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Free vibration of microscaled Timoshenko beams

机译:微型季莫申科光束的自由振动

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摘要

In this paper, a comprehensive model is presented to investigate the influence of surface elasticity and residual surface tension on the natural frequency of flexural vibrations of microbeams in the presence of rotary inertia and shear deformation effects. An explicit solution is derived for the natural oscillations of microscaled Timoshenko beams considering surface effects. The analytical results are illustrated with numerical examples in which two types of microbeams are configured based on Euler-Bernoulli and Timoshenko beam theory considering surface elasticity and residual surface tension. The natural frequencies of vibration are calculated for selected beam length on the order of nanometer to microns and the results are compared with those corresponding to the classical beam models, emphasizing the differences occurring when the surface effects are significant. It is found that the nondimensional natural frequency of the vibration of micro and nanoscaled beams is size dependent and for limiting case in which the beam length increases, the results tends to the results obtained by classical beam models. This study might be helpful for the design of high-precision measurement devices such as chemical and biological sensors.
机译:本文提出了一个综合模型,研究在存在转动惯量和剪切变形效应的情况下,表面弹性和残余表面张力对微梁弯曲振动固有频率的影响。考虑到表面效应,微尺度的季莫申科光束的自然振动得到了一个明确的解决方案。通过数值示例说明了分析结果,其中基于Euler-Bernoulli和Timoshenko束理论,在考虑表面弹性和残余表面张力的情况下配置了两种类型的微束。针对选定的光束长度,计算出纳米级到微米级的固有振动频率,并将其结果与对应于传统光束模型的振动频率进行比较,强调了表面效应显着时产生的差异。发现微尺度和纳米尺度的梁的振动的无量纲固有频率与尺寸有关,并且在梁长度增加的有限情况下,结果趋向于通过经典梁模型获得的结果。这项研究可能对设计高精度测量设备(例如化学和生物传感器)有所帮助。

著录项

  • 来源
    《Applied Physicsletters》 |2009年第14期|143122.1-143122.3|共3页
  • 作者单位

    Department of Mechanical Engineering, Iran University of Science and Technology, Tehran 16844, Iran;

    Department of Mechanical Engineering, Iran University of Science and Technology, Tehran 16844, Iran;

    Department of Mechanical Engineering and Applied Mechanics, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6315, USA;

    Department of Mechanical Engineering, Ferdowsi University of Mashhad, Mashhad 91775-1111, Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:19:59

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