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Design of horizontal stiffeners for stiffened steel plate walls in compression

机译:压缩状态下加劲钢板壁的水平加劲肋设计

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The compressive stress is remarkable in design of steel plate walls (SPWs) for high-rise buildings. Stiffeners are required to avoid the compressive buckling in service limit state. This paper first studies the elastic stability of horizontally stiffened steel plate walls (S-SPWs) in compression. The effect of stiffener torsional stiffness on elastic buckling stress is presented. Then the study extends to the elastic-plastic stability of imperfect S-SPWs. Comparing the elastic and elastic-plastic behaviour, the increased ultimate compressive strength is smaller than the increased elastic buckling stress due to the column type buckling behaviour of wide plate. Stiffener torsional stiffness can also increase the ultimate capacity. Formulas to predict the stiffness requirement on horizontal stiffeners are proposed based on the philosophy similar to the stiffness requirement on brace for columns in compression. With some minor modifications, the proposed formulas show good accuracy compared with numerical results.
机译:在高层建筑的钢板墙(SPW)设计中,压应力非常明显。需要加劲肋来避免在使用极限状态下压缩屈曲。本文首先研究了水平加劲钢板壁(S-SPW)在压缩状态下的弹性稳定性。提出了加劲肋扭转刚度对弹性屈曲应力的影响。然后,研究扩展到不完善的S-SPW的弹塑性稳定性。比较弹性和弹塑性行为,由于宽板的柱型屈曲行为,增加的极限抗压强度小于增加的弹性屈曲应力。加劲肋的扭转刚度也可以增加极限承载力。根据类似于压缩柱中支撑的刚度要求的原理,提出了预测水平加劲肋的刚度要求的公式。经过一些小的修改,与数值结果相比,提出的公式显示出良好的准确性。

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