Buckling Analysis of Nonlocal Nanocolumns Using Finite Element Method

Tosporn Prasertsri, Suppawit Intratanoo, Thunyamas Jirajaran, W. Phongtinnaboot, J. Rungamornrat
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Abstract

. This research introduces a finite element method, considering size-dependent effect via nonlocal elasticity to analyze the buckling load of columns subjected to concentrated, distributed, and combined load cases. Two types of columns are considered: columns with a constant moment of inertia and nonuniform cross-section. The end conditions of columns comprise the following: clamped-free, hinged – hinged, clamped – hinged, and clamped – clamped. This paper illustrates the computational results using the relationship between buckling load normalized via the classical eigenvalue buckling load. The current findings show that the buckling load dramatically decreases at the normalized material length scale between 1 and 10. The most and least considerable effects on buckling load reduction are clamped – clamped and clamped-free end conditions. For the case of combined loads, a buckling concentrated load decreased proportionally as applied uniformly distributed force increased. An increase in concavity (or convexity) of parabolic columns will influence the buckling of the concentrated and uniformly distributed buckling loads.
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非局部纳米柱屈曲有限元分析
. 本文采用有限元法,考虑非局部弹性的尺寸依赖效应,分析柱在集中荷载、分布荷载和组合荷载下的屈曲荷载。考虑两种类型的柱:具有恒定惯性矩的柱和非均匀截面的柱。柱的末端条件包括以下内容:无夹紧,铰接-铰接,夹紧-铰接,和夹紧-夹紧。本文利用屈曲载荷的经典特征值归一化关系对计算结果进行了说明。研究结果表明,在1 ~ 10的归一化材料长度范围内,屈曲载荷显著减小。对减少屈曲载荷影响最大和最小的是端部有夹紧和端部无夹紧的情况。在组合荷载情况下,屈曲集中荷载随施加均匀分布力的增大而成比例减小。抛物线柱的凹度(或凸度)增大将影响集中均匀分布屈曲荷载的屈曲。
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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审稿时长
20 weeks
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