论文标题
比较球形壳的屈曲强度与凹凸不平的缺陷
Comparing the buckling strength of spherical shells with dimpled versus bumpy defects
论文作者
论文摘要
我们研究了缺陷几何形状在指示外部压力载荷下球形壳的临界屈曲条件的灵敏度方面的效果。具体而言,我们在包含凹痕(内)与颠簸(向外)高斯缺陷的壳之间进行比较研究。前者已成为许多最近的弹扣研究中的标准形状,而后者仍未探索。我们采用有限元模拟,这些模拟先前已针对实验进行了验证,以计算两种情况的敲低因子,同时系统地探索缺陷几何形状的参数空间。对于缺陷的振幅和角度宽度的相同幅度,我们发现包含颠簸缺陷的壳始终显示出比具有更经典的凹痕缺陷的壳体明显更高的敲低因子。此外,在两种情况下,敲低与缺陷幅度的函数的关系在质量上有所不同,两种情况下也表现出明显的弯曲后行为。基于这两种情况的均值曲线谱的质量差异,对结果进行了推测解释。
We investigate the effect of defect geometry in dictating the sensitivity of the critical buckling conditions of spherical shells under external pressure loading. Specifically, we perform a comparative study between shells containing dimpled (inward) versus bumpy (outward) Gaussian defects. The former has become the standard shape in many recent shell-buckling studies, whereas the latter has remained mostly unexplored. We employ finite-element simulations, which were validated previously against experiments, to compute the knockdown factors for the two cases while systematically exploring the parameter space of the defect geometry. For the same magnitudes of the amplitude and angular width of the defect, we find that shells containing bumpy defects consistently exhibit significantly higher knockdown factors than shells with the more classic dimpled defects. Furthermore, the relationship of the knockdown as a function of the amplitude and width of the defect is qualitatively different between the two cases, which also exhibit distinct post-buckling behavior. A speculative interpretation of the results is provided based on the qualitative differences in the mean-curvature profiles of the two cases.