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首页> 外文期刊>Thin-Walled Structures >Nonlinear analysis of functionally graded skewed and tapered wing-like plates including porosities: A bifurcation study
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Nonlinear analysis of functionally graded skewed and tapered wing-like plates including porosities: A bifurcation study

机译:功能梯度偏移和锥形翼状板的非线性分析,包括孔隙症:分叉研究

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摘要

In the present study, nonlinear panel flutter and bifurcation behavior of functionally graded ceramic/metal winglike tapered and skewed plates are investigated. Porosities are distributed over the cross-section of the functionally graded structure. The flutter speed, limit cycle oscillations, and bifurcation diagrams of the functionally graded plate with two types of geometrical non-uniformities being skewness and taperness are explored. Nonlinear structural model is utilized based on the virtual work principle by including the von-Karman nonlinear kinematic strain assumption. The first order shear deformation theory is employed to consider the transverse shear effect in the structural model. First-order linear piston theory is used to model the aerodynamic loading while the generalized differential quadrature method is employed to solve the governing equations of motion. Time integration of the final ordinary equations of motion is carried out using the Newmark average acceleration method. Different volume fractions are investigated to enhance the flutter instability margins and post-flutter behavior of functionally graded plates. Results demonstrate that the volume fraction and porosity coefficients have significant effects on dynamic behavior and limit cycle oscillation amplitudes.
机译:在本研究中,研究了功能梯度陶瓷/金属翼状锥形锥形和偏斜板的非线性面板颤动和分叉行为。孔隙率分布在功能分级结构的横截面上。探索了具有两种类型几何非均匀性的功能渐变板的颤振速度,极限循环振动和分叉图是偏斜和锥形的。基于虚拟工作原理使用非线性结构模型,包括von-Karman非线性运动应变假设。首次剪切变形理论用于考虑结构模型中的横向剪切效果。一阶线性活塞理论用于模拟空气动力学载荷,而采用广义差分正交方法来解决动作的控制方程。使用Newmark平均加速方法进行最终普通运动方程的时间集成。研究了不同的体积分数以增强功能梯度板的颤动不稳定性边缘和颤动的行为。结果表明,体积分数和孔隙率系数对动态行为和极限周期振荡幅度具有显着影响。

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