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Supersonic Flutter Prediction of Functionally Graded Panel

机译:功能分级面板的超音速颤动预测

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In this paper, the supersonic flutter behaviors of functionally graded panels are analyzed by using the Differential Transformation Method (DTM). The material properties are assumed to be graded in the thickness direction and the Mori-Tanaka scheme and a simple power-law are used to estimate the effective material properties. The structural formulation is based on Classical Plate Theory (CPT) and the aerodynamic loading is formulated using quasi-steady supersonic piston theory. The governing equations are derived using the Hamilton's principle.
机译:本文通过使用差分变换方法(DTM)分析了功能梯度面板的超音速颤动行为。假设材料特性在厚度方向上进行分级,并且使用Mori-Tanaka方案和简单的动力法用于估计有效材料特性。结构制剂基于经典板理论(CPT),并且使用准稳定的超音子活塞理论配制空气动力学载荷。使用汉密尔顿原则来源的控制方程。

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