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Buckling of imperfect cone-cylinder transition subjected to external pressure

机译:屈曲的锥形圆柱缸过渡对外压力

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The paper presents a result of the numerical investigation into the buckling behaviour of geometrically imperfect cone-cylinder transition subjected to external pressure. The models are assumed to be made from the Hiduminium alloy (HE-15). Various initial geometric imperfections such as eigenmode imperfection and Single Load Indentation (SLI) imperfections were superimposed on the perfect cone-cylinder shell. The reduction of the buckling strength was then quantified numerically. As expected, the buckling strength of cone-cylinder shells were strongly affected by initial geometric imperfection and the reduction in buckling strength was seen to be strongly dependent on the choice and location of imperfection. Overall, the lowest SLI imperfection curve produces the worst sensitivity as compared to the eigenmode imperfection curve. Conservative knockdown factors that can be implemented for the design of cone-cylinder transition have been proposed for both eigenmode imperfection and SLI imperfection. Finally, a simple empirical solution based on several case studies has been proposed that could reasonably be used to estimate the buckling of externally pressurized cone-cylinder shell transition under Geometrical and Materially Non-linear Analysis (GMNA) and Geometrical and Materially Non-linear Imperfection Analysis (GMNIA) cases. A good correlation with the ultimate strength is observed with the application of the proposed empirical formula.
机译:本文介绍了几何不完全锥缸过渡对外压力的屈曲行为的数值研究。假设模型由HIDIMINIUM合金(HE-15)制成。叠加在完美的锥形圆柱壳上的各种初始几何缺陷等诸如特征模型缺陷和单载压痕(SLI)缺陷。然后在数值上量化屈曲强度的降低。正如预期的那样,锥形圆柱壳的屈曲强度受到初始几何缺陷的强烈影响,并且看到屈曲强度的降低强烈依赖于缺陷的选择和位置。总的来说,与特征模型缺陷曲线相比,最低的SLI缺陷曲线产生最差的灵敏度。为特征模型缺陷和SLI缺陷提出了可以为锥形缸过渡设计实施的保守敲低因素。最后,提出了一种基于几种案例研究的简单经验解决方案,可以合理地用于估计几何和物质非线性分析(GmNA)和几何和物质非线性缺陷下的外部加压锥缸壳过渡的屈曲分析(GMNIA)病例。利用所提出的经验公式的应用,观察到与最终强度的良好相关性。

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