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Static analysis of functionally graded plates using third-order shear deformation theory and a meshless method

机译:基于三阶剪切变形理论和无网格方法的功能梯度板静力分析

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摘要

The collocation multiquadric radial basis functions are used to analyze static deformations of a simply supported functionally graded plate modeled by a third-order shear deformation theory. The plate material is made of two isotropic constituents with their volume fractions varying only in the thickness direction. The macroscopic response of the plate is taken to be isotropic and the effective properties of the composite are derived either by the rule of mixtures or by the Mori-Tanaka scheme. Effects of aspect ratio of the plate and the volume fractions of the constituents on the centroidal deflection are scrutinized. When Poisson's ratios of the two constituents are nearly equal, then the two homogenization techniques give results that are close to each other. However, for widely varying Poisson's ratios of the two constituents, the two homogenization schemes give quite different results. The computed results are found to agree well with the solution of the problem by an alternative meshless method.
机译:搭配多二次径向基函数用于分析由三阶剪切变形理论建模的简单支撑的功能梯度板的静态变形。板材由两种各向同性的成分制成,它们的体积分数仅在厚度方向上变化。板的宏观响应被认为是各向同性的,并且复合材料的有效特性可以通过混合规则或通过Mori-Tanaka方案得出。仔细研究了板的长宽比和成分的体积分数对形心挠度的影响。当两种成分的泊松比几乎相等时,则两种均化技术会得出彼此接近的结果。但是,对于两种成分的泊松比变化很大的情况,两种均化方案给出的结果大不相同。通过替代的无网格方法,发现计算结果与问题的解决方案非常吻合。

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