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Forced periodic vibrations of cylindrical shells in laminated composites with curvilinear fibres

机译:曲线纤维层合复合材料中圆柱壳的强迫周期性振动

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Geometrically non-linear forced vibrations of cylindrical shells with variable stiffness are analysed. The ordinary differential equations of motion are derived by the principle of virtual work in conjunction with a p-version finite element formulation. The shells are in composite laminates with curvilinear fibres, hence the stress-strain relation varies in space, leading to variable stiffness. External harmonic excitations are applied to the shell and periodic responses are sought, therefore, the solution can be expressed in a Fourier series. Distinctively, the harmonic balance method is applied via a procedure in the complex domain, with which one can employ as many harmonics as one wishes without manual changes in the algorithm or on its expressions. The resulting algebraic equation is solved by an arc-length continuation method. Studies of the convergence with the number of shape functions and with the number of harmonics are presented. The influence of the curvilinear fibre paths and of the curvature of the shells on the forced response are analysed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:分析了刚度可变的圆柱壳的几何非线性强迫振动。普通的运动微分方程是通过虚拟功原理结合p版本有限元公式得出的。壳体位于具有曲线纤维的复合层压板中,因此应力-应变关系在空间中会发生变化,从而导致可变的刚度。将外部谐波激励应用于壳体,并寻求周期性响应,因此,该解决方案可以用傅立叶级数表示。独特的是,谐波平衡方法是通过复杂域中的一种过程应用的,该方法可以根据需要使用任意数量的谐波,而无需人工更改算法或其表达式。通过弧长连续法求解所得的代数方程。提出了关于形状函数数量和谐波数量的收敛性的研究。分析了曲线纤维路径和壳体曲率对强制响应的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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