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A REVIEW OF NONLINEAR AERO-THERMO-ELASTICITY OF FUNCTIONALLY GRADED PANELS

机译:功能梯度板的非线性气动热弹性研究进展

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Functionally Graded Materials (FGM) have attracted significant interest as heat-shielding materials for space vehicle, skin substructures, gas turbine blades technologies, and many other high-temperature industrial applications. This paper reviews the state-of-the-art in linear and nonlinear aero-thermo-elasticity of FGM panels with emphasis on the authors' contributions to the topic. An overview of the pertinent literature discussing the linear and nonlinear behavior of flat and curved panels when exposed to Ugh temperature supersonic flow fields is presented first. The effect of material property dependency on temperature is also discussed. The study addresses divergence and flutter and methodologies used to determine these aero-thermo-elastic instabilities. In particular, critical and post-critical behaviors for panels in presence of thermal loads are addressed, along with a series of divergence, flutter, and post-flutter results obtained with linearonlinear dynamics approaches. Regular and chaotic motions regime are determined through qualitative tools, such as bifurcation analysis using Poincart maps, panel time history, phase-space evolutions, and frequency spectra, and with quantitative tools, such as the Lyapunov's exponents and dimensions. Finally, conclusions and directions for further work in the field are presented.
机译:功能梯度材料(FGM)作为用于航天器,蒙皮下部结构,燃气轮机叶片技术以及许多其他高温工业应用的隔热材料引起了人们的极大兴趣。本文回顾了FGM面板的线性和非线性气动热弹性的最新技术,重点是作者对该主题的贡献。首先介绍有关平面和弯曲面板在超高温超声流场中的线性和非线性行为的相关文献的概述。还讨论了材料特性对温度的影响。该研究解决了发散和颤振以及用于确定这些航空热弹性不稳定性的方法。特别地,解决了在存在热载荷的情况下面板的临界和临界后行为,以及通过线性/非线性动力学方法获得的一系列发散,颤动和震颤后结果。规则运动和混沌运动的状态是通过定性工具确定的,例如使用Poincart映射的分叉分析,面板时间历史,相空间演化和频谱,以及使用定量工具(例如Lyapunov的指数和维数)来确定。最后,给出了该领域进一步工作的结论和方向。

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