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Local buckling and shift of effective centroid of cold-formed steel columns

机译:冷弯钢柱的局部屈曲和有效质心的偏移

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Local buckling is a major consideration in the design of thin-walled cold-formed steel sections. The main effect of local buckling in plate elements under longitudinal compressive stresses is to cause a redistribution of the stresses in which the greatest portion of the load is carried near the supporting edges of the plate junctions. The redistribution produces increased stresses near the plate junctions and high bending stresses as a result of plate flexure, leading to ultimate loads below the squash load of the section. In singly symmetric cross-sections, the redistribution of longitudinal stress caused by local buckling also produces a shift of the line of action of internal force (shift of effective centroid). The fundamentally different effects of local buckling on the behaviour of pin-ended and fixed-ended singly symmetric columns lead to inconsistencies in traditional design approaches. The paper describes local buckling and shift of effective centroid of thin-walled cold-formed steel channel columns. Tests of channel columns have been described. The experimental local buckling loads were compared with the theoretical local buckling loads obtained using an elastic finite strip buckling analysis. The shift of the effective centroid was also compared with the shift predicted using the Australian/New Zealand and American specifications for cold-formed steel structures.
机译:局部屈曲是薄壁冷弯型钢设计的主要考虑因素。板元件在纵向压缩应力下的局部屈曲的主要作用是引起应力的重新分布,其中大部分载荷在板结的支撑边缘附近承载。重新分布会在板连接处附近增加应力,并由于板弯曲而产生较高的弯曲应力,从而导致极限荷载低于该截面的压弯荷载。在单个对称的横截面中,由局部屈曲引起的纵向应力的重新分布也会产生内力作用线的偏移(有效质心的偏移)。局部屈曲对固定端和固定端的单对称柱行为的根本不同影响导致传统设计方法中的不一致。本文描述了薄壁冷弯型钢槽钢立柱的局部屈曲和有效质心的偏移。已经描述了通道列的测试。将实验的局部屈曲载荷与使用弹性有限条形屈曲分析获得的理论局部屈曲载荷进行了比较。有效质心的偏移也与使用澳大利亚/新西兰和美国规范针对冷弯钢结构预测的偏移进行了比较。

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