Static and Dynamic Stability Analysis of Thick CNT Reinforced Beams Resting on Pasternak Foundation Under Axial and Follower Forces

M. Hosseini, A. G. Arani, M. Karamizadeh, S. Niknejad, A. Hosseinpour
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引用次数: 1

Abstract

In this paper, a numerical solution is presented for static and dynamic stability analysis of carbon nanotube (CNT) reinforced beams resting on Pasternak foundation. The beam is considered to be exposed to compressive axial and follower forces at its free end. The beam is modeled based on the Reddy’s third order shear deformation theory and governing equations and external boundary conditions are derived using Hamilton’s principle. The set of governing equations and boundary conditions are solved numerically using differential quadrature method. Convergence and accuracy of results are confirmed and effect of various parameters on the stability region of the beam is investigated including volume fraction and distribution of CNTs, width and thickness of the beam and elastic and shear coefficients of the foundation.
轴向力和从动力作用下帕斯捷尔纳克基础上厚碳纳米管加筋梁的静动力稳定性分析
本文给出了基于帕斯捷尔纳克地基的碳纳米管(CNT)增强梁静、动稳定性分析的数值解。梁被认为是暴露于压缩轴和从动力在其自由端。基于Reddy三阶剪切变形理论建立了梁的模型,利用Hamilton原理推导了梁的控制方程和外部边界条件。用微分求积分法对控制方程和边界条件进行了数值求解。验证了结果的收敛性和准确性,并研究了碳纳米管的体积分数和分布、梁的宽度和厚度以及基础的弹性和剪切系数等参数对梁稳定区域的影响。
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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