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Semi-energy finite strip post-buckling analysis of laminated plates concerning the effects of mechanical coupling

机译:关于机械耦合效应的层合板半能有限带后屈曲分析

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In composite laminated plates the mechanical coupling is one of the significant properties which dominate the performance of a laminated plate structure in large out-of-plane deformations. Some effects of mechanical coupling on the post-buckling behavior of composite laminated plates have been studied in this paper by implementing a finite strip approach based on the concept of a rigorous post-buckling solution for composite plates and plate structures, namely the semi-energy approach, which has been originally developed by the authors of current paper. Moreover, to check the validity and soundness of presented semi-energy FSM the results obtained from developed approach are compared with those obtained from a fairly conventional and well exploited finite strip technique, namely the full-energy finite strip method as well as the obtained results from ANSYS (i.e. the general purpose finite element method software). In this paper, the post-buckling behavior of an anti-symmetric angle-ply square plate with the stacking sequence configuration as [±45]_2 has been studied. Moreover, according to anti-symmetric nature of lamination in the mentioned plate there exists a mechanical coupling between in-plane membrane and out-of-plane twisting curvature; therefore, the results of this analysis have been referred as coupled solution in this paper. In order to evaluate the effects of mechanical coupling on the post-buckling performance of mentioned plates, the uncoupled solution has also been determined by precluding the coupling terms (i.e. B_(16), B_(26)). The post-buckling load-end shortening and load-maximum out-of-plane deflection paths have been obtained for coupled as well as uncoupled solutions. The comparison between the obtained results by coupled and uncoupled solutions revealed markedly different behaviors due to presence of mechanical coupling in the anti-symmetric angle-ply laminates. The outcome of the paper can help structural designers have a better understanding of the effects of mechanical coupling on the post-buckling behavior of laminated composite plates at the design stage.
机译:在复合层压板中,机械耦合是重要的特性之一,它在较大的平面外变形中支配层压板结构的性能。通过基于复合板和板结构的严格后屈曲解决方案(半能量)概念的有限带方法,研究了机械耦合对复合层压板后屈曲行为的一些影响。该方法最初由当前论文的作者开发。此外,为了检查所提出的半能量FSM的有效性和合理性,将通过开发方法获得的结果与通过相当常规的且经过充分利用的有限条技术(即全能量有限条方法)获得的结果进行比较。来自ANSYS(即通用有限元方法软件)。在本文中,研究了堆叠顺序为[±45] _2的反对称角板方板的屈曲后行为。此外,根据所述板的层压的反对称性质,在面内膜和面外扭曲曲率之间存在机械耦合;因此,在平面内膜之间存在机械耦合。因此,本文的分析结果称为耦合解。为了评估机械耦合对上述板的后屈曲性能的影响,还通过排除耦合项(即B_(16),B_(26))来确定未耦合解。对于耦合和非耦合解决方案,已经获得了屈曲后的载荷端缩短和载荷最大平面外偏转路径。通过耦合和非耦合解决方案获得的结果之间的比较表明,由于在反对称角铺层层压板中存在机械耦合,因此存在明显不同的行为。本文的结果可以帮助结构设计者在设计阶段更好地了解机械耦合对层压复合板的屈曲后行为的影响。

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