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A Rayleigh-Ritz approach for postbuckling analysis of variable angle tow composite stiffened panels

机译:Rayleigh-Ritz方法用于变角度牵引复合材料加劲板的后屈曲分析

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摘要

Rayleigh-Ritz solution approach for generally restrained multilayered variable angle tow stiffened plates in postbuckling regime is presented. The plate model is based on the first order shear deformation theory and accounts for geometrical nonlinearity through the von Karman's assumptions. Stiffened plates are modelled as assembly of plate-like elements and penalty techniques are used to join the elements in the assembled structure and to apply the kinematical boundary conditions. General symmetric and unsymmetric stacking sequences are considered and Legendre orthogonal polynomials are employed to build the trial functions. A computer code was developed to implement the proposed approach and to establish its applicability and its features for investigating variable angle tow structures. The proposed solution is validated by comparison with literature and finite elements results. Original results are presented for postbuckling of variable angle tow stiffened plates showing the potentialities of the method. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了在屈曲状态下一般约束多层可变角度拖曳加劲板的瑞利-里兹解法。平板模型基于一阶剪切变形理论,并通过冯·卡曼(von Karman)的假设解决了几何非线性问题。加劲板被建模为板状元素的组装,并且惩罚技术用于将元素连接到组装的结构中并应用运动学边界条件。考虑一般的对称和非对称叠加序列,并采用Legendre正交多项式构建试验函数。开发了计算机代码以实施所提出的方法,并确定其适用性及其特征,以研究可变角度的拖曳结构。通过与文献和有限元结果进行比较,验证了所提出的解决方案。提出的原始结果显示了变角度拖曳加劲板的后屈曲,显示了该方法的潜力。 (C)2017 Elsevier Ltd.保留所有权利。

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