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Buckling of composite cylindrical shells with rigid end disks under hydrostatic pressure

机译:静压下带有刚性端盘的复合圆柱壳的屈曲

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An analytical solution of the buckling problem formulated for a composite cylindrical shell with its ends closed by rigid disks and subjected to hydrostatic pressure is presented in the paper. The problem is solved using Fourier decomposition and the Galerkin method. The boundary conditions are assigned in the form accounting for axial displacements of the end disks caused by an axial contraction of the deformed shell. The hoop displacement and deflection of the shell are approximated by the beam function corresponding to the first mode shape of vibration of a clamped-clamped beam. The axial displacement is approximated by the third derivative of the beam function. Based on this solution, a number of analytical formulas enabling calculations of critical hydrostatic pressure for composite orthotropic cylindrical shells are derived. Using these formulas, the critical loads are calculated for the shells with various elastic and geometric properties. The calculations are verified by comparisons with the results of finite element analyses. The efficiency of analytical solutions in the search for fibre reinforcement arrangements providing maximum resistance to buckling is demonstrated by several examples. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种复合圆柱壳的屈曲问题的解析解,该复合圆柱壳的端部被刚性圆盘封闭并承受静水压力。使用傅里叶分解和Galerkin方法解决了该问题。边界条件的形式考虑了由于变形壳体的轴向收缩而导致的端盘的轴向位移。壳体的环向位移和挠度通过梁函数来近似,该梁函数对应于被夹紧的梁的振动的第一模式形状。轴向位移近似为梁函数的三阶导数。基于此解决方案,得出了许多计算公式,可以计算复合正交异性圆柱壳的临界静水压力。使用这些公式,可以计算出具有各种弹性和几何特性的壳体的临界载荷。通过与有限元分析结果进行比较来验证计算结果。通过几个示例可以证明分析解决方案在寻找最大程度抵抗屈曲的纤维增强装置方面的效率。 (C)2017 Elsevier Ltd.保留所有权利。

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