Free vibration analysis of functionally graded triply periodic minimal surface plates using a first order shear deformation theory and meshfree method

P. Phung-Van, P. T. Hùng, H. Nguyen-Gia, H. Nguyen-Xuan
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Abstract

This paper explores a free vibration analysis of functionally graded triply periodic minimal surface plates using a first order shear deformation theory in conjunction with moving Kriging meshfree method. The FG-TPMS plates are modeled the same as porous structures with three different patterns (Primitive, Gyroid, and wrapped package-graph) and six different volume distributions for each pattern. Employing a fitting method based on a two-phase piece-wise function, the mechanical properties of the FGTPMS plates are determined. The governing equations for the FG-TPMS plates are established using the virtual work principle and subsequently solved using the moving Kriging meshfree method. The study encompasses FG-TPMS square and circular plate, examining the natural frequency of the FG-TPMS plates with various length-to-thickness ratios, TPMS types, volume distributions, and boundary conditions.
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利用一阶剪切变形理论和无网格法对功能分级三周期极小曲面板进行自由振动分析
本文采用一阶剪切变形理论,结合移动克里金(Kriging)无网格法,探讨了功能分级三周期极小曲面板的自由振动分析。FG-TPMS 板的建模方式与多孔结构相同,有三种不同的模式(原始模式、陀螺模式和包裹包图模式),每种模式有六种不同的体积分布。利用基于两相片断函数的拟合方法,确定了 FGTPMS 板的机械性能。利用虚功原理建立了 FG-TPMS 板的控制方程,随后使用移动 Kriging 无网格法进行了求解。研究涵盖了 FG-TPMS 方形板和圆形板,考察了不同长厚比、TPMS 类型、体积分布和边界条件下 FG-TPMS 板的固有频率。
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