Huang Yonghui, Yang Zhicheng, Liu Airong, Fu Jiyang
Guangzhou University-Tamkang University Joint Research Center for Engineering Structure Disaster Prevention and Control, Guangzhou University, Guangzhou 510006, China.
Materials (Basel). 2018 May 28;11(6):910. doi: 10.3390/ma11060910.
The buckling behavior of functionally graded graphene platelet-reinforced composite (FG-GPLRC) shallow arches with elastic rotational constraints under uniform radial load is investigated in this paper. The nonlinear equilibrium equation of the FG-GPLRC shallow arch with elastic rotational constraints under uniform radial load is established using the Halpin-Tsai micromechanics model and the principle of virtual work, from which the critical buckling load of FG-GPLRC shallow arches with elastic rotational constraints can be obtained. This paper gives special attention to the effect of the GPL distribution pattern, weight fraction, geometric parameters, and the constraint stiffness on the buckling load. The numerical results show that all of the FG-GPLRC shallow arches with elastic rotational constraints have a higher buckling load-carrying capacity compared to the pure epoxy arch, and arches of the distribution pattern X have the highest buckling load among four distribution patterns. When the GPL weight fraction is constant, the thinner and larger GPL can provide the better reinforcing effect to the FG-GPLRC shallow arch. However, when the value of the aspect ratio is greater than 4, the flakiness ratio is greater than 103, and the effect of GPL's dimensions on the buckling load of the FG-GPLRC shallow arch is less significant. In addition, the buckling model of FG-GPLRC shallow arch with elastic rotational constraints is changed as the GPL distribution patterns or the constraint stiffness changes. It is expected that the method and the results that are presented in this paper will be useful as a reference for the stability design of this type of arch in the future.
本文研究了具有弹性转动约束的功能梯度石墨烯片增强复合材料(FG-GPLRC)浅拱在均匀径向载荷作用下的屈曲行为。利用Halpin-Tsai细观力学模型和虚功原理,建立了具有弹性转动约束的FG-GPLRC浅拱在均匀径向载荷作用下的非线性平衡方程,由此可得到具有弹性转动约束的FG-GPLRC浅拱的临界屈曲载荷。本文特别关注了GPL分布模式、重量分数、几何参数和约束刚度对屈曲载荷的影响。数值结果表明,与纯环氧拱相比,所有具有弹性转动约束的FG-GPLRC浅拱都具有更高的屈曲承载能力,且分布模式为X的拱在四种分布模式中具有最高的屈曲载荷。当GPL重量分数恒定时,更薄且更大尺寸的GPL能为FG-GPLRC浅拱提供更好的增强效果。然而,当长径比大于4且扁平率大于103时,GPL尺寸对FG-GPLRC浅拱屈曲载荷 的影响较小。此外,具有弹性转动约束的FG-GPLRC浅拱的屈曲模式会随着GPL分布模式或约束刚度的变化而改变。期望本文所提出的方法和结果能为今后此类拱的稳定性设计提供参考。