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Ultimate capacity of welded box section columns with slender plate elements

机译:带有细长板件的焊接箱形截面柱的极限承载力

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摘要

For an axially loaded box-shaped member, the width-to-thickness ratio of the plate elements preferably should not be greater than 40 for Q23 5 steel grades in accordance with the Chinese code GB 50017-2003. However, in practical engineering the plate width-to-thickness ratio is up to 120, much more than the limiting value. In this paper, a 3D nonlinear finite element model is developed that accounts for both geometrical imperfections and residual stresses and the ultimate capacity of welded built-up box columns, with larger width-to-thickness ratios of 60, 70, 80, and 100, is simulated. At the same time, the interaction buckling strength of these members is determined using the effective width method recommended in the Chinese code GB50018-2002, Eurocode 3 EN1993-1 and American standard ANSI/AISC 360-10 and the direct strength method developed in recent years. The studies show that the finite element model proposed can simulate the behavior of nonlinear buckling of axially loaded box-shaped members very well. The width-to-thickness ratio of the plate elements in welded box section columns can be enlarged up to 100 for Q235 steel grades. Good agreements are observed between the results obtained from the FEM and direct strength method. The modified direct strength method provides a better estimation of the column strength compared to the direct strength method over the full range of plate width-to-thickness ratio. The Chinese code and Eurocode 3 are overly conservative prediction of column capacity while the American standard provides a better prediction and is slightly conservative for b/t = 60. Therefore, it is suggested that the modified direct strength method should be adopted when revising the Chinese code.
机译:对于轴向加载的箱形构件,根据中文代码GB 50017-2003,对于Q23 5钢种,板件的宽度与厚度之比最好不大于40。但是,在实际工程中,板的宽厚比高达120,远远超过极限值。在本文中,开发了一个3D非线性有限元模型,该模型考虑了几何缺陷和残余应力以及焊接组合箱式立柱的极限承载力,其宽厚比为60、70、80和100 ,是模拟的。同时,这些构件的相互作用屈曲强度是使用中文规范GB50018-2002,欧洲规范3 EN1993-1和美国标准ANSI / AISC 360-10中推荐的有效宽度方法以及最近开发的直接强度方法确定的。年份。研究表明,所提出的有限元模型可以很好地模拟轴向加载的箱形构件的非线性屈曲行为。对于Q235钢种,焊接箱形截面柱中板元件的宽厚比可以增加到100。从有限元法和直接强度法获得的结果之间观察到良好的一致性。与直接强度方法相比,改进的直接强度方法在板宽与厚度的整个范围内提供了更好的柱强度估算。中文代码和欧洲法规3对列容量的预测过于保守,而美国标准提供了更好的预测,对于b / t = 60则稍为保守。因此,建议在修改中文时应采用改进的直接强度法码。

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