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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Analysis of postbuckling behavior of general higher-order functionally graded nanoplates with geometrical imperfection considering porosity distributions
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Analysis of postbuckling behavior of general higher-order functionally graded nanoplates with geometrical imperfection considering porosity distributions

机译:考虑孔隙分布的几何缺陷,通用高阶功能梯度纳米板的出现行为分析

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This paper deals with postbuckling of geometrically imperfect functionally graded (FG) nanoplates with porosities based on general higher-order plate model and nonlocal elasticity. Porosity distributions are considered as even and uneven models. Porosity volume fraction is incorporated to the power-law modeling of FG materials. Employing a general higher-order plate theory with five field variables, it is possible to satisfy shear deformation effects without adding correction factors. The nonlinear governing equations are analytically solved to obtain the postbuckling load-deflection relation of the nanoplate. Obtained results indicate the significance of porosity coefficient, porosity distribution, geometrical imperfection, nonlocality, material composition and geometrical parameters on postbuckling characteristics of size-dependent nanoplates.
机译:本文涉及基于普通高阶板模型和非局部弹性的孔隙率的几何缺失功能梯度(FG)纳米板的出现。 孔隙度分布被认为是偶数和不均匀的模型。 孔隙率体积分数掺入FG材料的动力法造型。 使用具有五个场变量的一般高阶板理论,可以满足剪切变形效果而无需添加校正因子。 非线性控制方程被分析解决以获得纳米板的出现载荷偏转关系。 获得的结果表明孔隙率系数,孔隙率分布,几何缺陷,非母体,材料组成和几何参数对依赖于依赖性纳米板的出现特性的重要性。

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