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Stringer Stiffened Cylinders on Local Supports - The Plastic Buckling Behavior

机译:局部支撑上的桁条加劲缸-塑料屈曲行为

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The buckling behavior of locally supported cylinders is a topic that is still the subject of many investigations. Adequate design rules have yet to be incorporated into the codes. In this contribution, the plastic buckling behavior of a stiffened cylinder on local supports is studied. Our research consists of two principal components, i.e. experiments on scale models and numerical simulations. Here the numerical simulations are discussed. Firstly the effect of the yield stress is investigated. In order to find a design rule, a large parametrical study has to be performed. In this contribution, the characteristics and the results of this study are described. The simulations show that for a radius to thickness ratio of the cylinder equal to 250, the optimal stiffener dimensions correspond with a plastic buckling phenomenon and a failure stress that is larger than the yield stress. For larger values of the ratio, the elastic instability of the stiffeners precedes the plastic buckling and this shows that the stiffener configuration is not suitable for these values of the radius to thickness ratio.
机译:局部支撑圆柱体的屈曲行为仍然是许多研究的主题。适当的设计规则尚未纳入规范中。在这一贡献中,研究了加劲圆柱体在局部支撑上的塑性屈曲行为。我们的研究包括两个主要部分,即比例模型实验和数值模拟。这里讨论了数值模拟。首先研究屈服应力的影响。为了找到设计规则,必须执行大型参数研究。在这项贡献中,描述了这项研究的特点和结果。仿真表明,对于圆柱体的半径与厚度之比等于250而言,最佳的加强筋尺寸与塑性屈曲现象和大于屈服应力的破坏应力相对应。对于较大的比率值,加劲肋的弹性不稳定性先于塑性屈曲,这表明加劲肋结构不适用于这些半径与厚度之比的值。

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