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LOCAL AND POSTLOCAL BUCKLING OF FABRICATED STEEL AND COMPOSITE CROSS SECTIONS

机译:装配式钢和复合材料截面的局部和局部后屈曲

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摘要

Composite sections are being increasingly used as columns in multistory buildings. These sections provide considerable economy as they eliminate plywood formwork and allow large percentages of steel to be utilized in their application. The initial local buckling load of these sections is enhanced by the presence of the concrete infill and this allows very slender steel plates to be used in their fabrication. This paper investigates the local and postlocal buckling behavior of welded sections as box or wide flange I-sections. An extensive set of experiments was conducted on both hollow and concrete-filled steel box sections. Furthermore, a detailed study of flange outstands with and without concrete infill is considered in this paper. A numerical model based on the finite strip method is used to determine the initial local buckling stress incorporating residual stresses, and this is shown to agree well with the experiments. Finally, an effective width model developed elsewhere and presented in existing international codes is augmented and calibrated with the test results. This method is found to be useful in determining the axial compressive strength of these cross sections.
机译:复合材料部分越来越多地被用作多层建筑的柱子。这些部分提供了相当大的经济性,因为它们消除了胶合板模板,并允许在其应用中使用大量钢材。混凝土填充物的存在增强了这些部分的初始局部屈曲荷载,这使得在制造过程中可以使用非常细长的钢板。本文研究了作为箱形或宽法兰 I 型截面的焊接截面的局部和局部后屈曲行为。在空心和混凝土填充钢箱型材上进行了广泛的实验。此外,本文还对有和没有混凝土填充的法兰突出物进行了详细研究。采用有限带法的数值模型测定了包含残余应力的初始局部屈曲应力,结果表明与实验结果吻合较好。最后,对在其他地方开发并在现有国际规范中提出的有效宽度模型进行了增强和校准,并结合测试结果进行了校准。该方法可用于确定这些横截面的轴向抗压强度。

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