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首页> 外文期刊>International journal of structural stability and dynamics >POSTBUCKLING ANALYSIS OF VARIABLE STIFFNESS COMPOSITE PLATES USING A FINITE ELEMENT-BASED PERTURBATION METHOD
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POSTBUCKLING ANALYSIS OF VARIABLE STIFFNESS COMPOSITE PLATES USING A FINITE ELEMENT-BASED PERTURBATION METHOD

机译:基于有限元摄动法的可变刚度复合板的后屈曲分析

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摘要

Modern fiber placement machines allow laminates with spatially varying stiffness properties to be manufactured. In earlier research, the authors optimized variable stiffness plates for maximum buckling load, demonstrating significant improvements in load-carrying capacity. In aerospace applications, panel structures are often permitted to enter the postbuckling regime during service. It is, therefore, not only important to understand their postbuckling behavior, but also to develop fast analysis methods that can subsequently be used in a design optimization framework. The aim of the present research is to study the postbuckling behavior of the optimized plates using a perturbation method that has been developed earlier within a generalpurpose finite element environment. The perturbation approach is used to compute postbuckling coefficients, which are used to make a quick estimate of the postbuckling stiffness of the panel and to establish a reduced-order model. In the present work, the postbuckling analysis of variable stiffness plates is carried out using the reduced-order model, and the potential of the approach for incorporation within the optimization process is demonstrated.
机译:现代纤维铺放机允许制造具有在空间上变化的刚度特性的层压板。在较早的研究中,作者对可变刚度板进行了优化,以实现最大屈曲载荷,从而证明了承载能力的显着提高。在航空航天应用中,通常允许面板结构在使用期间进入后屈曲状态。因此,不仅重要的是要了解它们的屈曲后行为,而且要开发出可随后用于设计优化框架中的快速分析方法。本研究的目的是使用一种在通用有限元环境中较早开发的扰动方法来研究优化板的后屈曲行为。摄动法用于计算后屈曲系数,用于快速估算面板的后屈曲刚度并建立降阶模型。在当前工作中,使用降阶模型对可变刚度板进行了屈曲后分析,并证明了该方法在优化过程中的应用潜力。

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