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Postbuckling and Free Nonlinear Vibration of Microbeams Based on Nonlinear Elastic Foundation

机译:基于非线性弹性基础的微观芯片的出现和自由非线性振动

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摘要

In this paper, post-buckling and free nonlinear vibration of microbeams resting on nonlinear elastic foundation subjected to axial force are investigated. The equations of motion of microbeams are derived by using the modified couple stress theory. Using Galerkin’s method, the equation of motion of microbeams is reduced to the nonlinear ordinary differential equation. By using the equivalent linearization in which the averaging value is calculated in a new way called the weighted averaging value, approximate analytical expressions for the nonlinear frequency of microbeams with pinned–pinned and clamped–clamped end conditions are obtained in closed-forms. Comparisons with previous solutions are showed accuracy of the present solutions. Effects of the material length scale parameter and the axial compressive force on the frequency ratios of microbeams; and effect of the material length scale parameter on the buckling load ratios of microbeams are investigated in this paper.
机译:本文研究了依赖于轴向力的非线性弹性基础上的微沟后屈曲和自由非线性振动。通过使用修改的夫妇应力理论来源微波运动的运动方程。使用Galerkin的方法,微波运动的运动方程降低到非线性常微分方程。通过使用以一种称为加权平均值的新方式计算平均值的等效线性化,以闭合形式获得具有固定覆盖和夹紧夹紧端部条件的微观射流的非线性频率的近似分析表达。与先前解决方案的比较显示了本解决方案的准确性。材料长度比参数的影响和轴向抗压力对微波频率的频率比;本文研究了材料长度比参数对微观掩模屈曲负荷比的影响。

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  • 作者

    Dang Van Hieu;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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