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A numerical study on nonlinear bending performance of transversely loaded composite singly curved stiffened surfaces

机译:横向加载复合物单弯曲硬化表面的非线性弯曲性能的数值研究

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摘要

The review of recent literature shows that the bending performances of transversely loaded laminated composite singly curved stiffened surfaces are not studied in detail using the geometrically nonlinear strains. The present paper aims to fill that void and proposes an isoparametric C ° finite element formulation combining von-Karman nonlinearity and Sanders’ first approximation theory. The curved surfaces are simulated using nonlinear strains. The stiffeners are formulated using geometrically linear and nonlinear strains. The correctness of the proposed approach is confirmed through solution of benchmark problems. The relative performances of stiffened curved surfaces in terms of maximum transverse displacements are studied for industrially important parametric variations like boundary conditions, laminations, stacking sequences, and number, orientations, eccentricities, and depth of stiffeners. The results are critically discussed and it is concluded that the clamped 0°/90°/0° shell with curved stiffeners ( y -stiffener) located below the mid-surface shows the greatest bending stiffness. The nonlinear approach is essential for both shell and stiffener for correct prediction of the transverse displacements. The relatively simpler linear approach can be considered for single x -stiffener only.
机译:近期文献的审查表明,使用几何非线性菌株未详细研究横向装载层压复合物单个弯曲的加强表面的弯曲性能。本文旨在填补空隙,并提出了一种组合von-Karman非线性和砂光机的第一近似理论的异戊酰胺C°有限元制剂。使用非线性菌株模拟曲面。使用几何线性和非线性菌株配制加强件。通过基准问题的解决方案确认了所提出的方法的正确性。在最大横向位移方面,研究了加强弯曲表面的相对性能,用于工业上重要的参数变化,如边界条件,叠片,堆叠序列和数量,取向,偏心和加强件的深度。结果批判性地讨论,并且得出结论,夹紧的0°/ 90°/ 0°壳,其位于中间表面下方的弯曲加强件(Y -Stiffener)表示最大的弯曲刚度。非线性方法对于壳体和加强件是必不可少的,用于正确预测横向位移。仅针对单个x -stiffener考虑相对简单的线性方法。

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