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Size-dependent nonlinear bending behavior of porous FGM quasi-3D microplates with a central cutout based on nonlocal strain gradient isogeometric finite element modelling

机译:基于非识别应变梯度异诊室内有限元建模的基于非识别率梯度异构型有限元模拟的中央切口多孔FGM准三维微孔板的大小依赖性非线性弯曲行为

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摘要

With the aid of the non-uniform rational B-spline (NURBS)-based isogeometric technique, for the first time, the size-dependent geometrically nonlinear bending characteristics of microplates made of porous functionally graded materials (FGMs) having a central cutout with different shapes are studied. The nonlocal strain gradient continuum elasticity within the framework a hybrid higher-order quasi-3D plate theory is adopted to describe the kinematic relations via only four unknowns. To capture the effective material properties, a porosity-dependent rule of mixture is employed. The nonlocal strain gradient nonlinear load-deflection responses are obtained corresponding to various geometrical and material parameters as well as different boundary conditions. It is revealed that the significance of both the nonlocal and strain gradient reduces. This prediction is the same for all values of the material property gradient index as well as the porosity index. Also, it is demonstrated that a central cutout leads to change the trend of load-deflection response, and this change occurs at a specific value for the applied distributed load which depends on several parameters such as the cutout geometry and boundary conditions. In addition, it is displayed that corresponding to different maximum deflections, the significance of the strain gradient size effect in the absence of nonlocality on the nonlinear flexural stiffness of a porous FGM microplate is more than that of the nonlocal size effect in the absence of the strain gradient size dependency.
机译:借助于非均匀的Rational B样条(NURBS)基于异诊室,首次依赖于多孔功能分级材料(FGM)的微孔板的尺寸依赖性几何非线性弯曲特性,其具有不同的中央切口研究了形状。框架内的非局部应变梯度连续弹性混合高阶准三维板理论采用描述仅通过四个未知数的运动学关系。为了捕获有效材料特性,采用孔隙依赖性混合物规则。对应于各种几何和材料参数以及不同的边界条件,获得非局部应变梯度非线性负载偏转响应。据透露,非局部和应变梯度的重要性降低。对于材料特性梯度指数的所有值以及孔隙度指数,该预测是相同的。而且,证明中央切口导致改变负载偏转响应的趋势,并且这种改变发生在所应用的分布式负载的特定值,这取决于诸如切口几何形状和边界条件的若干参数。另外,显示对应于不同的最大偏转的,在没有非植物上没有非植物对多孔FGM微孔板的非线性弯曲刚度的显着性的重要性大于非识别尺寸效应的非线性偏差应变梯度尺寸依赖性。

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