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Nonlinear supersonic flutter for the viscoelastic orthotropic cylindrical shells in supersonic flow

机译:超声速流动中粘弹性正交异性圆柱壳的非线性超声颤振

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On the example of an orthotropic shell, the problems of the dynamics of thin-walled structures under aerodynamic loading are studied, taking into account the viscoelastic properties of material and geometric nonlinearity. The aerodynamic pressure is determined using the AA. llyushin's piston theory. Equations of motion relative to displacements are described by a system of integro-differential equations in partial derivatives. Using the Bubnov-Galerkin method, based on the polynomial approximation of deflections, the problem is reduced to a system of ordinary integro-differential equations, where time is an independent variable. Solutions of integro-differential equations are determined by a numerical method based on the elimination of the singularity in the relaxation kernel of the integral operator. Computational algorithms and applied programs have been developed to solve the problems on the nonlinear flutter for viscoelastic elements of an aircraft. The critical flutter speed for the viscoelastic orthotropic cylindrical shells is determined. It is established that an account of viscoelastic properties of shell material leads to a decrease in the critical flutter. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:以正交异性壳体为例,考虑了材料的粘弹性和几何非线性,研究了气动载荷作用下薄壁结构的动力学问题。空气压力使用AA确定。柳申的活塞理论。相对于位移的运动方程由偏导数的积分微分方程系统描述。使用Bubnov-Galerkin方法,基于变形的多项式近似,将问题简化为一个普通的积分微分方程组,其中时间是一个独立变量。基于消除积分算子的松弛核中的奇异性,通过数值方法确定积分微分方程的解。已经开发出计算算法和应用程序来解决飞机的粘弹性元件的非线性颤动的问题。确定了粘弹性正交各向异性圆柱壳的临界颤振速度。已经确定,考虑壳材料的粘弹性能导致临界颤动的减小。 (C)2018 Elsevier Masson SAS。版权所有。

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