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Effect of Varying In-Plane Loads and Cutout Size on Buckling Behavior of Laminated Panels

机译:不同面内载荷和切口尺寸对层压板屈曲行为的影响

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摘要

Theoretical solutions for buckling problems of laminated panels under uniform in-plane edge loads have been obtained without considering damage/cutouts. Nevertheless, in practice, the structures are provided with cutouts of various sizes subjected to non-uniform edge loads. Analytical solutions for such problems are difficult to achieve. Hence in this work, a finite element software (ABAQUS) is used to analyze the buckling behavior of thin and thick laminated panels with and without cutouts subjected to distributed edge loads with different variations. The panel is modeled by using eight nodded elements (S8R5) with five degrees of freedom at each node. The efficiency of the model is confirmed by correlating present results with accessible literature. The effect of various parameters such as cutout size and its position, boundary conditions, ply orientations, and thickness of panel are included in this work. It is observed from this study that the non-uniform edge loads and cutout sizes have a remarkable outcome on buckling behavior of panels.
机译:已经获得了在不考虑损坏/切口的均匀面内边缘载荷下层叠面板屈曲问题的理论解。然而,在实践中,结构设置有经受非均匀边缘负载的各种尺寸的切口。对这种问题的分析解决方案很难实现。因此,在这项工作中,有限元软件(ABAQUS)用于分析薄型和厚的层压板的屈曲行为,而没有经受不同变化的分布边缘负载的切口的切口。面板通过使用八个点头元素(S8R5)为每个节点的五个自由度建模。通过通过可访问文献的存在结果来确认模型的效率。在这项工作中包括各种参数,例如切口尺寸和其位置,边界条件,尺寸方向和厚度的效果。从这项研究中观察到的是,非均匀的边缘载荷和切口尺寸具有显着的面板屈曲行为的结果。

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