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首页> 外文期刊>Applied Mathematical Modelling >Nonlinear in-plane buckling of fixed shallow functionally graded graphene reinforced composite arches subjected to mechanical and thermal loading
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Nonlinear in-plane buckling of fixed shallow functionally graded graphene reinforced composite arches subjected to mechanical and thermal loading

机译:固定浅功能梯度石墨烯增强复合拱的非线性在平面屈曲,经过机械和热负荷

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摘要

The nonlinear in-plane buckling analysis for fixed shallow functionally graded (FG) graphene reinforced composite arches which are subjected to uniform radial load and temperature field is presented in this paper. The arch is composed of multiple graphene platelet reinforced composite (GPLRC) layers with gradient changes of concentration of graphene platelets (GPLs) in each layer. The principle of virtual work, combined with the effective materials properties estimated by the Halpin-Tsai micromechanics model for GPLRC layer, is used to derive the nonlinear buckling equilibrium equations of the FG-GPLRC arch, and then the analytical solutions for the limit point and bifurcation buckling loads are obtained. Comprehensive parametric studies are conducted to explore the effects of various distribution patterns and geometries of GPL, temperature field and arch geometry on the nonlinear equilibrium path and buckling behavior of the composite arch. The influence of temperature on the geometric parameters which are defined as switches between limit point buckling, bifurcation buckling and no buckling are also discussed. It is found that a higher temperature field can increase the buckling loads of the FG-GPLRC arch but reduce the value of the minimum geometric parameters that switching the buckling modes. The results also show that even a small amount of GPLs filler content can increase the buckling loads of the FG-GPLRC arch considerably, and distributing more GPLs near the surface layers is the best pattern to enhance the buckling performances of FG-GPLRC arches. (C) 2019 Elsevier Inc. All rights reserved.
机译:本文介绍了对经受均匀径向载荷和温度场的固定浅功能梯度(FG)石墨烯增强复合拱的非线性面内屈曲分析。弓形由多个石墨烯血小板增强复合(GPLRC)层组成,每层具有梯度变化的石墨烯血小板(GPLS)的浓度变化。虚拟工作原理,结合GPLRC层的HALPIN-TSI微机械模型估计的有效材料特性,用于导出FG-GPLRC拱的非线性屈曲平衡方程,然后是限制点的分析解决方案获得分叉屈曲载荷。进行综合参数研究以探讨GPL,温度场和拱形几何形状的各种分布图案和几何形状对复合拱的非线性平衡路径和屈曲行为的影响。还讨论了温度对限位点屈曲,分叉屈曲和没有屈曲之间的开关的几何参数的影响。发现较高的温度场可以增加FG-GPLRC拱的屈曲负载,而是降低切换屈曲模式的最小几何参数的值。结果还表明,即使是少量的GPLS填充物含量也可以显着增加FG-GPLRC拱的屈曲负载,并且在表面层附近分布更多的GPLS是增强FG-GPLRC拱的屈曲性能的最佳模式。 (c)2019 Elsevier Inc.保留所有权利。

著录项

  • 来源
    《Applied Mathematical Modelling》 |2019年第6期|315-327|共13页
  • 作者单位

    Guangzhou Univ Guangzhou Univ Tamkang Univ Joint Res Ctr Engn St Guangzhou 510006 Guangdong Peoples R China;

    Guangzhou Univ Guangzhou Univ Tamkang Univ Joint Res Ctr Engn St Guangzhou 510006 Guangdong Peoples R China;

    Guangzhou Univ Guangzhou Univ Tamkang Univ Joint Res Ctr Engn St Guangzhou 510006 Guangdong Peoples R China;

    Guangzhou Univ Guangzhou Univ Tamkang Univ Joint Res Ctr Engn St Guangzhou 510006 Guangdong Peoples R China;

    Guangzhou Univ Guangzhou Univ Tamkang Univ Joint Res Ctr Engn St Guangzhou 510006 Guangdong Peoples R China|Univ New South Wales Ctr Infrastruct Engn & Safety Sch Civil & Environm Engn Sydney NSW Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    In-plane buckling; Bifurcation; Limit point; Functionally graded; Graphene; Temperature field;

    机译:在平面屈曲;分叉;限制点;功能分级;石墨烯;温度场;

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