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Effects of shape of transverse cross-section on the load carrying capacity of laminated glass columns

机译:横截面形状对夹层玻璃柱承载力的影响

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摘要

In this paper simplified expressions for the calculus of the load carrying capacity of glass columns having rectangular, tee (T) and cruciform (X) transverse cross-sections are proposed and verified against available experimental data. Members with T and X cross-sections are obtained by gluing single multilayered glass panels. The expressions derived take into account of the: shape of the transverse cross-section (rectangular, T, and, X sections); buckling phenomenon (flexural and torsional); failure in the glued sections; long time effects. Case of full connections and absence of connections are considered to determine the range of variation of expressions adopted. The comparison between the analytical and the experimental results highlights that in the case of columns or beam-like elements having rectangular cross-sections the flexural buckling resistance governs the load carrying capacity of columns, while in the case of glass columns with X and T cross-sections failure due to torsional buckling effects strongly limits the load carrying capacity of members, also penalized by the glued connection failure.
机译:在本文中,提出了具有矩形,三通(T)和十字形(X)横截面的玻璃柱的承载力计算的简化表达式,并针对现有的实验数据进行了验证。具有T和X横截面的成员是通过将单个多层玻璃面板粘合在一起而获得的。导出的表达式考虑了以下因素:横截面的形状(矩形,T和X截面);屈曲现象(弯曲和扭转);胶合部分失效;长时间的影响。考虑完全连接和没有连接的情况,以确定所采用的表达方式的变化范围。分析结果与实验结果之间的比较表明,在具有矩形横截面的圆柱或梁状单元的情况下,弯曲屈曲阻力决定了圆柱的承载能力,而在具有X和T交叉的玻璃圆柱的情况下由于扭转屈曲效应而导致的断面失效严重地限制了构件的承载能力,这也因胶合连接失效而受到惩罚。

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