Sharifan Mohammad Hossein, Jabbari Mohsen
Department of Mechanical Engineering, Islamic Azad University, South Tehran Branch, Tehran 15847-43311, Iran.
J Press Vessel Technol. 2020 Aug 1;142(4):041302. doi: 10.1115/1.4046707. Epub 2020 Apr 10.
In this paper, mechanical buckling analysis of a functionally graded (FG) elliptical plate, which is made up of saturated porous materials and is resting on two parameters elastic foundation, is investigated. The plate is subjected to in-plane force and mechanical properties of the plate assumed to be varied through the thickness of it according to three different functions, which are called porosity distributions. Since it is assumed that the plate to be thick, the higher order shear deformation theory (HSDT) is employed to analyze the plate. Using the total potential energy function and using the Ritz method, the critical buckling load of the plate is obtained and the results are verified with the simpler states in the literature. The effect of different parameters, such as different models of porosity distribution, porosity variations, pores compressibility variations, boundary conditions, and aspect ratio of the plate, is considered and has been discussed in details. It is seen that increasing the porosity coefficient decreases the stiffness of the plate and consequently the critical buckling load will be reduced. Also, by increasing the pores' compressibility, the critical buckling load will be increased. Adding the elastic foundation to the structure will increase the critical buckling load. The results of this study can be used to design more efficient structures in the future.
本文研究了一种功能梯度(FG)椭圆板的机械屈曲分析,该椭圆板由饱和多孔材料制成,放置在双参数弹性地基上。板承受面内力,并且假设板的力学性能根据三种不同的函数沿其厚度变化,这三种函数被称为孔隙率分布。由于假设板较厚,因此采用高阶剪切变形理论(HSDT)来分析该板。利用总势能函数并采用瑞利法,得到了板的临界屈曲载荷,并将结果与文献中的简单情形进行了验证。考虑并详细讨论了不同参数的影响,如不同的孔隙率分布模型、孔隙率变化、孔隙压缩性变化、边界条件以及板的长宽比。可以看出,孔隙率系数的增加会降低板的刚度,从而降低临界屈曲载荷。此外,通过增加孔隙的压缩性,临界屈曲载荷会增加。在结构中添加弹性地基会增加临界屈曲载荷。本研究结果可用于未来设计更高效的结构。