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A review of semi-analytical numerical methods for laminated composite and multilayered functionally graded elastic/piezoelectric plates and shells

机译:层状复合材料和多层功能梯度弹性/压电板和壳的半解析数值方法综述

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The paper is to present an overview of various semi-analytical numerical methods for quasi-three-dimensional (3D) analyses of laminated composite and multilayered (or sandwiched) functionally graded elastic/piezoelectric materials (FGEMs/FGPMs) plates and shells with combinations of simply-supported, free and clamped edge conditions. This review introduces the development of various semi-analytical numerical methods incorporating 3D analytical approaches (i.e., the state space and asymptotic ones) with numerical techniques (i.e., the differential quadrature, meshless reproducing kernel and finite element ones), and their applications to the analyses of plates and shells made of advanced materials, such as the fiber-reinforced composite materials, FGEMs and FGPMs, and carbon nanotube-reinforced composite materials. Two micromechanical schemes (i.e., the rule of mixtures and Mori-Tanaka scheme) used to estimate the effective material properties of functionally graded structures are presented. The strong and weak formulations of the 3D piezoelectricity theory and their corresponding possible edge conditions for circular hollow cylinders are presented for the illustration purposes. A comparative study of the results obtained by using assorted semi-analytical numerical methods is undertaken. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文将概述叠层复合材料和多层(或夹层)功能梯度弹性/压电材料(FGEMs / FGPMs)板和壳体的准三维(3D)分析的各种半分析数值方法的概述简单支撑,自由和夹紧的边缘条件。这篇综述介绍了各种半解析数值方法的发展,这些方法将3D分析方法(即状态空间和渐近方法)与数值技术(例如微分求积法,无网格再现核和有限元方法)结合起来,并应用于它们。分析由先进材料制成的板和壳,例如纤维增强复合材料,FGEM和FGPM,以及碳纳米管增强复合材料。提出了两种用于估计功能梯度结构的有效材料性能的微机械方案(即混合规则和Mori-Tanaka方案)。出于说明目的,给出了3D压电理论的强项和弱项公式以及圆形空心圆柱体的相应可能边缘条件。对使用各种半解析数值方法获得的结果进行了比较研究。 (C)2016 Elsevier Ltd.保留所有权利。

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