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Resistance of rectangular concrete-filled tubular (CFT) sections to the axial load and combined axial compression and bending

机译:矩形矩形钢管混凝土(CFT)截面对轴向载荷以及轴向压缩和弯曲的综合抵抗力

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This paper describes the development of the direct strength method (DSM) for concrete-filled tubular (CFT) sections. The axial and flexural strength of CFT sections with local buckling are proposed based on previous test results. Although Eurocode4 does not allow the use of slender steel skins for CFT sections, the limit of the width-to-thickness ratio for the steel skin has recently been extended to slender sections in AISC specifications. A simple formula for the axial and flexural strength of CFT sections for the DSM is proposed to account for the local buckling of a thin steel skin and for the enhanced compressive strength of concrete from the confining effect of the steel skin. The squash load predicted by the proposed formula is compared with test results and those predicted by AISC specifications and Eurocode4. A formula for strength interactions of CFT members under combined compression and flexure is proposed and is compared with test results. The comparison confirmed that the formula for axial and flexural strength and that for strength interactions can conservatively predict the resistance of CFT columns to the axial load and combined compression and bending.
机译:本文介绍了用于钢管混凝土(CFT)型材的直接强度法(DSM)的发展。根据先前的测试结果,提出了具有局部屈曲的CFT型材的轴向和抗弯强度。尽管Eurocode4不允许在CFT型材中使用细长的钢皮,但最近在AISC规范中将钢皮的宽厚比限制扩展至细长型钢。提出了用于DSM的CFT型材的轴向和抗弯强度的简单公式,以考虑薄钢皮的局部屈曲,并考虑由于钢皮的约束作用而提高的混凝土抗压强度。将拟议公式预测的壁球载荷与测试结果以及AISC规范和Eurocode4预测的壁球载荷进行比较。提出了CFT构件受压与受弯时强度相互作用的公式,并与试验结果进行了比较。比较结果证实,轴向和弯曲强度公式以及强度相互作用公式可以保守地预测CFT柱对轴向载荷以及压缩和弯曲相结合的抵抗力。

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