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Effects of Shell-Buckling Knockdown Factors in Large Cylindrical Shells

机译:大型圆柱壳中壳屈曲击倒因子的影响

摘要

Shell-buckling knockdown factors (SBKF) have been used in large cylindrical shell structures to account for uncertainty in buckling loads. As the diameter of the cylinder increases, achieving the manufacturing tolerances becomes increasingly more difficult. Knockdown factors account for manufacturing imperfections in the shell geometry by decreasing the allowable buckling load of the cylinder. In this paper, large-diameter (33 ft) cylinders are investigated by using various SBKF's. An investigation that is based on finite-element analysis (FEA) is used to develop design sensitivity relationships. Different manufacturing imperfections are modeled into a perfect cylinder to investigate the effects of these imperfections on buckling. The analysis results may be applicable to large- diameter rockets, cylindrical tower structures, bulk storage tanks, and silos.
机译:壳屈曲击倒因子(SBKF)已用于大型圆柱壳结构中,以解决屈曲载荷的不确定性。随着圆柱体直径的增加,制造公差变得越来越困难。降低因子通过减小圆柱体的允许屈曲载荷来解决壳体几何形状中的制造缺陷。在本文中,使用各种SBKF对大直径(33英尺)的气缸进行了研究。基于有限元分析(FEA)的调查可用于开发设计敏感性关系。将不同的制造缺陷建模为一个完美的圆柱体,以研究这些缺陷对屈曲的影响。分析结果可能适用于大直径火箭,圆柱塔架结构,散装储罐和筒仓。

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    Hrinda Glenn A.;

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  • 年度 2012
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