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A unified formulation of PVD-based finite cylindrical layer methods for functionally graded material sandwich cylinders

机译:基于PVD的功能梯度材料夹层圆筒的有限圆柱层方法的统一表述

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摘要

A unified formulation of finite cylindrical layer methods (FCLMs) based on the principle of virtual displacements (PVDs) is developed for the quasi-three-dimensional (3D) bending and free vibration analyses of simply-supported, functionally graded material (FGM) sandwich circular hollow cylinders, in which the material properties of the FGM layer are assumed to obey the power-law distributions of the volume fractions of the constituents through the thickness coordinate. In this formulation, the cylinder is divided into a number of cylindrical finite layers, where the trigonometric functions and Lagrange polynomials are used to interpolate the in- and out-of-surface variations of the displacement components of each individual layer, respectively. Because an h-refinement is adopted in this article to yield the convergent solutions, the relative orders used for expansion of the displacement components remain variable, and can be freely chosen as linear, quadratic and cubic ones. The accuracy and convergence rate of a variety of PVD-based FCLMs developed in this article are assessed by comparing their solutions with the available 3D ones.
机译:开发了基于虚拟位移(PVDs)原理的有限圆柱层方法(FCLM)的统一公式,用于简单支撑的功能梯度材料(FGM)夹层的准三维(3D)弯曲和自由振动分析圆形空心圆柱体,其中FGM层的材料特性被假定为通过厚度坐标服从组成部分的体积分数的幂律分布。在此公式中,圆柱体分为多个圆柱有限层,其中三角函数和拉格朗日多项式分别用于内插每个单独层的位移分量的表面内和表面外变化。由于本文采用h细化来产生收敛解,因此用于位移分量扩展的相对阶数保持可变,可以自由选择为线性,二次和三次。通过将它们的解决方案与可用的3D解决方案进行比较,可以评估本文中开发的各种基于PVD的FCLM的准确性和收敛速度。

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