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Elastic failure of locally supported silos with U-shaped longitudinal stiffeners

机译:带有U型纵向加劲肋的局部支撑筒仓的弹性破坏

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摘要

For practical considerations, thin-walled steel silos are often supported by a limited number of discrete equidistant supports around their circumference. In such cases, large loads are transferred to the limited number of supports, causing locally high axial compressive stress concentrations. A possible solution is to add a partial-height U-shaped longitudinal stiffener above each support. Such stiffeners create a more gradual transmission of vertical loads to the supports, increasing the maximum failure load. This paper aims to map the influence of the dimensions of such longitudinal stiffeners on the failure behaviour of a thin-walled silo. Both the parameters of the cross-section and the height of the stiffeners are discussed. All the results and the findings are based on geometrically and material nonlinear analyses - GMNA - performed with finite element software. The simulations indicate that, in general, thin-walled silos will fail by pure elastic buckling in the unstiffened silo wall above the terminations of the longitudinal stiffeners. However, this is only true if the cross-section of the stiffeners, and to a lesser degree the moment of inertia, is sufficiently large in order that the longitudinal stiffeners can absorb the supporting loads. In contrast, for longitudinal stiffeners with a small cross-section, the silo structure will fail by premature elasto-plastic collapse of the stiffeners itself at significantly lower load levels. Furthermore, the height of the stiffeners and the degree of support - the circumferential width of the supports and the stiffeners is equal to each other - are the most important geometrical parameters which are beneficial to reach a maximum load level for a specific silo. Finally, the buckling behaviour and the failure load are hardly influenced by radial width and the thickness of the longitudinal stiffeners.
机译:出于实际考虑,薄壁钢筒仓通常由围绕它们的圆周的有限数量的离散等距支撑来支撑。在这种情况下,大的载荷被转移到有限数量的支撑上,从而导致局部较高的轴向压缩应力集中。一种可能的解决方案是在每个支架上方添加部分高度的U形纵向加劲肋。这种加劲肋可将垂直载荷逐步传递到支撑件,从而增加最大破坏载荷。本文旨在绘制这种纵向加劲肋的尺寸对薄壁筒仓破坏行为的影响。讨论了横截面的参数和加劲肋的高度。所有结果和发现均基于使用有限元软件进行的几何和材料非线性分析-GMNA。模拟表明,通常,薄壁筒仓会因纵向加劲肋端部上方的未加筋筒仓壁中的纯弹性屈曲而失效。但是,只有在加劲肋的横截面以及较小程度的惯性矩足够大以便纵向加劲肋可以吸收支撑载荷的情况下,这才是正确的。相反,对于具有较小横截面的纵向加劲肋,筒仓结构会由于加劲肋本身在过低的载荷水平下过早弹塑性塌陷而失效。此外,加劲肋的高度和支撑程度-支撑和加劲肋的周向宽度彼此相等-是最重要的几何参数,有利于达到特定筒仓的最大载荷水平。最后,屈曲行为和破坏载荷几乎不受径向宽度和纵向加劲肋厚度的影响。

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