Vibration Analysis of Rotary Tapered Axially Functionally Graded Timoshenko Nanobeam in Thermal Environment

N. Shafiei, M. Hamisi, M. Ghadiri
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引用次数: 7

Abstract

In this paper, vibration analysis of rotary tapered axially functionally graded (AFG) Timoshenko nanobeam is investigated in a thermal environment based on nonlocal theory. The governing equations of motion and the related boundary conditions are derived by means of Hamilton’s principle based on the first order shear deformation theory of beams. The solution method is considered using generalized differential quadrature element (GDQE) method. The accuracy of results are validated by other results reported in other references. The effect of various parameters such as AFG index, rate of cross section change, angular velocity, size effect and boundary conditions on natural frequencies are discussed comprehensively. The results show that with increasing angular velocity, non-dimensional frequency is increased and it depends on size effect parameter. Also, in the zero angular velocity, it can be seen with increasing AFG index, the frequencies are reducing, but in non-zero angular velocity, AFG index shows complex behavior on frequency.
旋转锥形轴向功能梯度Timoshenko纳米梁在热环境中的振动分析
本文基于非局部理论,研究了旋转锥形轴向功能梯度(AFG) Timoshenko纳米梁在热环境下的振动分析。根据梁的一阶剪切变形理论,利用哈密顿原理推导了梁的运动控制方程和相关的边界条件。采用广义微分正交元(GDQE)方法求解。结果的准确性通过其他文献报道的其他结果得到验证。全面讨论了AFG指数、截面变化率、角速度、尺寸效应和边界条件等参数对固有频率的影响。结果表明,随着角速度的增大,无量纲频率增大,且与尺寸效应参数有关。在零角速度下,随着AFG指数的增加,频率呈降低趋势,但在非零角速度下,AFG指数对频率表现出复杂的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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