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首页> 外文期刊>International journal of structural stability and dynamics >RELIABILITY ASSESSMENT OF AXIALLY COMPRESSED COMPOSITE CYLINDRICAL SHELLS WITH RANDOM IMPERFECTIONS
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RELIABILITY ASSESSMENT OF AXIALLY COMPRESSED COMPOSITE CYLINDRICAL SHELLS WITH RANDOM IMPERFECTIONS

机译:具有随机缺陷的轴向压缩复合圆柱壳的可靠性评估

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摘要

Cylindrical shells under axial compression are susceptible to buckling and hence require the development of enhanced underlying mathematical models in order to accurately predict the buckling load. Imperfections of the geometry of the cylinders may cause a drastic decrease of the buckling load and give rise to the need of advanced techniques in order to consider these imperfections in a buckling analysis. A deterministic buckling analysis is based on the use of the so-called knockdown factors, which specifies the reduction of the buckling load of the perfect shell in order to account for the inherent uncertainties in the geometry. In this paper, it is shown that these knockdown factors are overly conservative and that the fields of probability and statistics provide a mathematical vehicle for realistically modeling the imperfections. Furthermore, the influence of different types of imperfection on the buckling load are examined and validated with experimental results.
机译:轴向压缩下的圆柱壳容易发生屈曲,因此需要开发增强的基础数学模型才能准确预测屈曲载荷。圆柱体几何形状的不完善可能会导致屈曲载荷的急剧下降,并且需要先进的技术,以便在屈曲分析中考虑这些不完美之处。确定性屈曲分析基于所谓的组合系数的使用,该组合系数指定了理想壳体的屈曲载荷的减小量,以便解决几何图形中固有的不确定性。在本文中,表明这些击倒因子过于保守,概率和统计领域为实际模拟缺陷提供了数学工具。此外,检查了不同类型的缺陷对屈曲载荷的影响,并通过实验结果进行了验证。

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