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Flutter analysis of sandwich plates with functionally graded face sheets in thermal environment

机译:热环境中带有功能渐变面板的夹心板的颤振分析

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This paper presents an analytical model for flutter analysis of sandwich plates with functionally graded face sheets in the thermal environment. The material properties of the face sheets are supposed to be temperature-dependent by a nonlinear distribution satisfying one-dimensional heat equation, and vary according to power law distribution in terms of the volume fractions along the thickness of the plate. The vibration of the sandwich plate is modeled on the basis of different plate theories including Mindlin theory, classical theory, exponential theory, third-order theory, sinusoidal theory, hyperbolic theory and fifth-order theory. Modified shear deformation theories applied herein are capable of considering inertia effects and transverse shear stresses. First order piston theory is utilized to model the aerodynamic load due to supersonic flow. The coupled governing equations are derived using Hamilton's principle and, Galerkin approach is applied to obtain vibrational characteristics and critical dynamic pressure of the system. Some comparisons with available results in the literature are performed to validate the present modeling, and excellent agreement is observed. Our attention is focused on analyzing the effects of different parameters such as thickness ratio, aspect ratio, thermal load, the thickness of face sheet and power law index on dynamic stability of the sandwich plate. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:本文提出了一种用于热环境中具有功能梯度面板的夹心板颤动分析的分析模型。面板的材料特性被认为是通过满足一维热方程的非线性分布与温度相关的,并且根据幂律分布而沿着板的厚度的体积分数根据功率定律分布而变化。夹层板的振动是基于包括Mindlin理论,古典理论,指数理论,三阶理论,正弦波理论,双曲线理论和五阶理论在内的不同板理论建模的。本文应用的修改后的剪切变形理论能够考虑惯性效应和横向剪切应力。利用一阶活塞理论对超音速流引起的空气动力负荷进行建模。使用汉密尔顿原理导出耦合的控制方程,并应用Galerkin方法获得系统的振动特性和临界动压力。与文献中的可用结果进行了一些比较,以验证当前的建模,并观察到了极好的一致性。我们的注意力集中在分析不同参数(如厚度比,长宽比,热负荷,面板的厚度和幂律指数)对夹心板动态稳定性的影响上。 (C)2019 Elsevier Masson SAS。版权所有。

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