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Postbuckling behavior of shear deformable anisotropic laminated cylindrical shell under combined external pressure and axial compression

机译:剪切变形各向异性叠层圆柱壳在外部压力和轴向压缩作用下的后屈曲特性

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Structural design of composite shells are more challenging than conventional metals due to the complex mechanical behavior and damage mechanisms which composite materials exhibit. Postbuckling analysis for a moderately thick anisotropic laminated cylindrical shell subjected to combined loadings of external pressure and axial compression is presented which extends the boundary layer theory of shell buckling. The governing equations are based on Reddy's higher order shear deformation shell theory with von Karman Donnell type of kinematic nonlinearity. Both nonlinear prebuckling deformations and initial geometric imperfections of the shell are taken into account. A two-step singular perturbation method is used to determine interactive buckling loads and postbuckling equilibrium paths. A verification study is conducted, and the validity of the formulation is established through comparison with results of nonlinear finite element software such as ABAQUS (R). The internal physical mechanism of the shell geometric parameters on the buckling load and the postbuckling equilibrium path is obtained. The numerical illustrations concern the postbuckling response of perfect and imperfect, moderately thick, anisotropic laminated cylindrical shells with different load-proportional parameters. The analytical model can provide an effective tool to investigate postbuckling of composite shell structures.
机译:复合材料壳的结构设计比常规金属更具挑战性,因为复合材料表现出复杂的机械性能和破坏机理。提出了一种中等厚度的各向异性层合圆柱壳在外部压力和轴向压缩力共同作用下的屈曲后分析,扩展了壳屈曲的边界层理论。控制方程基于Reddy的高阶剪切变形壳理论和von Karman Donnell类型的运动非线性。同时考虑了壳体的非线性预屈曲变形和初始几何缺陷。使用两步奇异摄动法确定交互式屈曲载荷和屈曲后的平衡路径。通过与非线性有限元软件如ABAQUS(R)的结果进行比较,进行了验证研究,并确定了配方的有效性。获得了壳几何参数对屈曲载荷和屈曲后平衡路径的内部物理机制。数值说明涉及具有不同的载荷比例参数的完美,不完美,中等厚度,各向异性的叠层圆柱壳的屈曲后响应。该分析模型可以为研究复合材料壳结构的后屈曲提供有效的工具。

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