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Buckling of uniaxially compressed composite anisogrid lattice cylindrical panel with clamped edges

机译:带夹边的单轴压缩复合各向异性网格格子圆柱板的屈曲

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An analytical solution of the buckling problem for a uniaxially compressed composite lattice cylindrical panel with the clamped edges is presented in this paper. The compressive load applied to the two opposite curved sides of the panel induces compression in the circumferential direction due to Poisson effect which is taken into account in this study. The lattice panel composed of the helical and hoop ribs is modelled as an equivalent orthotropic cylindrical panel with effective stiffness parameters. The deflection of buckled panel is described using the equations of the engineering theory of orthotropic cylindrical shells. The buckling equations are solved using the Galerkin method in which the displacements and deflection of the panel are approximated by the mode shape functions of a clamped-clamped beam. An analytical formula providing fast and reliable way of calculation of the critical buckling load is derived and applied to the analyses of the composite anisogrid panels with various parameters of lattice structures. The results are verified using a finite-element method. The mass efficiency of the lattice panels designed for a required critical load is analysed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种带有边夹的单轴压缩复合格子圆柱面板屈曲问题的解析解。由于泊松效应,在面板的两个相对弯曲侧上施加的压缩载荷会在圆周方向上引起压缩,在本研究中已将其考虑在内。由螺旋肋和箍筋组成的网格面板被建模为具有有效刚度参数的等效正交各向异性圆柱面板。使用正交异性圆柱壳的工程理论方程式描述了带扣面板的挠度。使用Galerkin方法求解屈曲方程,其中面板的位移和挠度通过夹钳梁的振型函数来近似。推导了一种分析公式,为计算临界屈曲载荷提供了快速,可靠的方法,并将其应用于具有各种晶格结构参数的复合隔震板的分析。使用有限元方法验证了结果。分析了为要求的临界载荷而设计的格子板的质量效率。 (C)2016 Elsevier Ltd.保留所有权利。

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