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A six-variable quasi-3D isogeometric approach for free vibration of functionally graded graphene origami-enabled auxetic metamaterial plates submerged in a fluid medium
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作者 Wei CHEN Zhihong TANG +1 位作者 Yufen LIAO linxin peng 《Applied Mathematics and Mechanics(English Edition)》 2025年第1期157-176,共20页
This paper presents,for the first time,an effective numerical approach based on the isogeometric analysis(IGA)and the six-variable quasi-three dimensional(3D)higher-order shear deformation theory(HSDT)to study the fre... This paper presents,for the first time,an effective numerical approach based on the isogeometric analysis(IGA)and the six-variable quasi-three dimensional(3D)higher-order shear deformation theory(HSDT)to study the free vibration characteristics of functionally-graded(FG)graphene origami(GOri)-enabled auxetic metamaterial(GOEAM)plates submerged in a fluid medium.The plate theory incorporates the thickness stretching and the effects of transverse shear deformation without using any shear correction factors.The velocity potential function and Bernoulli's equation are used to derive the hydrodynamic pressure acting on the plate surface.Both horizontally and vertically immersed plate configurations are considered here in the form of inertia effects.The plates are composed of multilayer GOEAMs,with the GOri content varying through the plate's thickness in a layer-wise manner.This design results in graded auxetic growth.The material properties are evaluated by mixing rules and a genetic programming(GP)-assisted micromechanical model.The governing equations of motion for the FG-GOEAM plates immersed in a fluid medium are derived by Hamilton's principle.After validating the convergence and accuracy of the present model,a comprehensive parametric study is carried out to examine the effects of the GOri content,GOri distribution pattern,GOri folding degree,fluid level,immersed depth,and geometric parameter on the natural frequencies of the FG-GOEAM plates.The results show that the natural frequencies for the four GOri distribution patterns increase with the increase in the layer number when the lay number is fewer than 10,and then stabilize after the layer number reaches 10.Besides,in general,the natural frequency of the FG-GOEAM plate in a vacuum or fluid increases when the GOri content increases,while decreases when the GOri folding degree increases.Some additional findings related to the numerical results are presented in the conclusions.It is believed that the present results are useful for the precise design and optimization of FG-GOEAM plates immersed in a fluid medium. 展开更多
关键词 functionally-graded(FG)graphene origami(GOri)-enabled auxetic metamaterial(GOEAM)plate hydrodynamic pressure quasi-three dimensional(3D)higherorder shear deformation theory(HSDT) isogeometric analysis(IGA) free vibration
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基于3D连续壳理论和无网格法的任意壳受迫振动分析 被引量:3
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作者 彭林欣 张鉴飞 陈卫 《固体力学学报》 CAS CSCD 北大核心 2024年第2期238-252,共15页
板壳结构是航空航天和建筑水利等工程领域中最常见的基本构件,研究板壳受迫振动问题对工程应用具有重要意义.本文基于3D连续壳理论和移动最小二乘近似建立了任意壳的无网格模型,其中移动最小二乘近似不仅用于几何曲面插值,还用于位移场... 板壳结构是航空航天和建筑水利等工程领域中最常见的基本构件,研究板壳受迫振动问题对工程应用具有重要意义.本文基于3D连续壳理论和移动最小二乘近似建立了任意壳的无网格模型,其中移动最小二乘近似不仅用于几何曲面插值,还用于位移场近似.利用Hamilton原理导出描述任意壳受迫振动的无网格控制方程,并采用时域隐式Newmark方法求解该方程,采用完全转换法来施加本质边界条件.最后,通过MATLAB编制无网格程序计算了几个具有代表性的壳体算例,并将计算结果和ABAQUS有限元解进行比对,验证了本文方法求解任意壳受迫振动的有效性及准确性.结果表明,无网格法不依赖网格划分,适应性较强,所提方法可以有效地求解各种不同形状的板壳结构受迫振动问题,具有广阔的应用前景. 展开更多
关键词 3D连续壳理论 任意壳 受迫振动 无网格法 完全转换法
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