首页> 外文期刊>The Transactions of the Royal Institution of Naval Architects >NUMERICAL STUDY OF THE EFFECT OF GEOMETRY AND BOUNDARY CONDITIONS ON THE COLLAPSE BEHAVIOUR OF STOCKY STIFFENED PANELS
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NUMERICAL STUDY OF THE EFFECT OF GEOMETRY AND BOUNDARY CONDITIONS ON THE COLLAPSE BEHAVIOUR OF STOCKY STIFFENED PANELS

机译:几何和边界条件对加筋板的塌陷行为影响的数值研究

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摘要

This study aims at studying different configurations of the stiffened panels in order to identify robust configurations that would not be much sensitive to the imprecision in boundary conditions that can exist in experimental set ups. A numerical study is conducted to analyze the influence of the stiffener's geometry and boundary conditions on the ultimate strength of stiffened panels under uniaxial compression. The stiffened panels with different combinations of mechanical material properties and geometric configurations are considered. The four types of stiffened panels analysed are made of mild or high tensile steel and have bar, 'L' and 'U' stiffeners. To understand the effect of finite element modelling on the ultimate strength of the stiffened panels, four types of FE models are investigated in FE analysis including 3 bays, 1/2+1+1/2 bays, 1+1 bays and 1 bay with different boundary conditions.
机译:这项研究旨在研究加筋板的不同配置,以便确定对实验装置中可能存在的边界条件不精确性不太敏感的坚固配置。进行了数值研究,以分析加劲肋的几何形状和边界条件对单轴压缩下加劲板的极限强度的影响。考虑具有机械材料特性和几何构造的不同组合的加劲板。所分析的四种类型的加劲板均由低强度或高强度钢制成,并具有钢筋,“ L”和“ U”加劲肋。为了了解有限元建模对加筋板极限强度的影响,在有限元分析中研究了四种类型的有限元模型,包括3个隔间,1/2 + 1 + 1/2个隔间,1 + 1个隔间和1个隔间,不同的边界条件。

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