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首页> 外文期刊>International Journal of Mechanical Sciences >Postbuckling of 3D braided composite cylindrical shells under combined external pressure and axial compression in thermal environments
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Postbuckling of 3D braided composite cylindrical shells under combined external pressure and axial compression in thermal environments

机译:热环境中组合外部压力和轴向压缩作用下3D编织复合圆柱壳的后屈曲

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摘要

A postbuckling analysis is presented for a three-dimensional (3D) braided composite cylindrical shell of finite length subjected to combined loading of external pressure and axial compression in thermal environments. Based on a micro-macro-mechanical model, a 3D braided composite may be a cell system and the geometry of each cell is highly dependent on its position in the cross-section of the cylindrical shell. The material properties of epoxy are expressed as a linear function of temperature. The governing equations are based on a higher order shear deformation shell theory with a von Karman-Donnell-type kinematic nonlinearity and includes thermal effects. A singular perturbation technique is employed to determine interactive buckling loads and postbuckling equilibrium paths. The numerical illustrations concern the postbuckling behavior of perfect and imperfect, braided composite cylindrical shells with different values of shell geometric parameter and of fiber volume fraction under combined loading conditions. The results show that the shell has lower buckling loads and postbuckling paths when the temperature-dependent properties are taken into account. The effects of temperature rise, fiber volume fraction, shell geometric parameter, load-proportional parameter, as well as initial geometric imperfections are studied.
机译:提出了一种有限长度的三维(3D)编织复合圆柱壳的屈曲后分析,该壳在热环境中受到外部压力和轴向压缩的共同载荷。基于微宏观力学模型,3D编织复合材料可以是单元系统,每个单元的几何形状高度取决于其在圆柱壳横截面中的位置。环氧树脂的材料特性表示为温度的线性函数。控制方程基于具有von Karman-Donnell型运动非线性的高阶剪切变形壳理论,并包括热效应。采用奇异摄动技术来确定交互式屈曲载荷和屈曲后的平衡路径。数值说明涉及在组合载荷条件下,理想的和不理想的,编织的复合圆柱壳的后屈曲行为,其壳几何参数和纤维体积分数的值不同。结果表明,考虑到温度相关的特性,壳体具有较低的屈曲载荷和后屈曲路径。研究了温度上升,纤维体积分数,壳的几何参数,载荷比例参数以及初始几何缺陷的影响。

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