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首页> 外文期刊>Latin American Journal of Solids and Structures >Closed-form Solution for Freely Vibrating Functionally Graded Thick Doubly Curved Panel-A New Generic Approach
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Closed-form Solution for Freely Vibrating Functionally Graded Thick Doubly Curved Panel-A New Generic Approach

机译:自由振动功能梯度厚双曲面板的封闭形式解决方案-一种新的通用方法

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Abstract Today, double curvature shell panels are the main parts of each design because their geometrical characteristics provide high strength to weight ratio, aerodynamic form and beauty for the structures such as boats, submarines, automobiles and buildings. Also, functionally graded materials which present multiple properties such as high mechanical and heat resistant, simultaneously, have attracted designers. So, as the first step of any dynamic analysis, this paper concentrates on presenting a high precision and reliable method for free vibration analysis of functionally graded doubly curved shell panels. To this end, panel is modeled based on third order shear deformation theory and both of the Donnell and Sanders strain-displacement relations. A new set of potential functions and auxiliary variables are proposed to present an exact Levy-type close-form solution for vibrating FG panel. The validity and accuracy of present method are confirmed by comparing results with literature and finite element method. Also, effect of various parameters on natural frequencies are studied which are helpful for designers.
机译:摘要如今,双曲率壳板已成为每种设计的主要组成部分,因为它们的几何特性可为船,潜艇,汽车和建筑物等结构提供高强度重量比,空气动力学形状和美观。同样,同时具有多种特性(例如高机械强度和耐热性)的功能梯度材料也吸引了设计师。因此,作为任何动态分析的第一步,本文着重介绍一种用于功能梯度双曲壳面板的自由振动分析的高精度和可靠方法。为此,基于三阶剪切变形理论以及Donnell和Sanders的应变-位移关系对面板进行建模。提出了一组新的潜在函数和辅助变量,以提出用于振动FG面板的精确Levy型闭合形式解决方案。通过与文献和有限元方法的比较,证实了本方法的有效性和准确性。此外,研究了各种参数对固有频率的影响,这对设计者有帮助。

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