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Free vibration analysis of Euler-Bernoulli nanobeam using differential transform method

机译:欧拉-伯努利纳米束的自由振动的微分变换分析

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摘要

In this paper, a semi analytical-numerical technique called differential transform method (DTM) is applied to investigate free vibration of nanobeams based on non-local Euler-Bernoulli beam theory. The essential steps of the DTM application include transforming the governing equations of motion into algebraic equations, solving the transformed equations and then applying a process of inverse transformation to obtain accurate mode frequency. All the steps of the DTM are very straightforward, and the application of the DTM to both the equations of motion and the boundary conditions seems to be very involved computationally. Besides all these, the analysis of the convergence of the results shows that DTM solutions converge fast. In this paper, a detailed investigation has been reported and MATLAB code has been developed to analyze the numerical results for different scaling parameters as well as for four types of boundary conditions. Present results are compared with other available results and are found to be in good agreement.
机译:本文基于非局域Euler-Bernoulli束理论,将一种称为微分变换方法(DTM)的半解析数字技术应用于研究纳米束的自由振动。 DTM应用程序的基本步骤包括将运动的控制方程式转换为代数方程式,求解转换后的方程式,然后应用逆变换过程以获取准确的模式频率。 DTM的所有步骤都非常简单,将DTM应用于运动方程和边界条件似乎在计算上非常复杂。除此之外,对结果收敛性的分析表明DTM解决方案收敛迅速。在本文中,已经进行了详细的调查报告,并开发了MATLAB代码来分析不同缩放参数以及四种边界条件的数值结果。将当前结果与其他可用结果进行比较,发现结果吻合良好。

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