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Analysis of geometric imperfections in full-scale welded steel silos

机译:满焊钢筒仓的几何缺陷分析

摘要

The design of metal silo structures is dominated by the need to resist shell buckling failures in service. Shell buckling can occur in many different modes, and the strengths are very sensitive to the form and amplitude of very minor deviations of geometry (geometric imperfections) from the ideal shape. Many imperfection forms have been studied in the theoretical literature on shell buckling, but only one study appears to have ever extensively and rigorously measured the imperfections in real full-scale metal silos: this is the study of the 10,000 tonne Port Kembla grain silos in NSW, Australia. The data from this study of three seemingly identical silos are very extensive and cannot be assimilated without considerable processing. In this paper, the first attempt is made to provide a full characterisation of the imperfection set in a manner that permits them to be used in shell buckling analyses of the silo shell that do not rely on simplifying assumptions.
机译:金属筒仓结构的设计主要是要抵抗使用中的壳体屈曲故障。壳的屈曲可以以多种不同的方式发生,并且强度对几何形状(与理想形状之间的微小偏差)的形式和幅度非常敏感。在关于壳屈曲的理论文献中已经研究了许多缺陷形式,但是只有一项研究似乎已经广泛,严格地测量了真实的全尺寸金属筒仓中的缺陷:这是对新南威尔士州10,000吨Port Kembla谷物筒仓的研究,澳大利亚。这项对三个看似相同的筒仓的研究得出的数据非常广泛,如果不进行大量处理就无法吸收。在本文中,首次尝试提供一种完整的缺陷集特征,使其能够用于不依赖简化假设的筒仓壳的壳屈曲分析中。

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