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首页> 外文期刊>Journal of Constructional Steel Research >Experimental and numerical studies of short concrete-filled double skin composite tube columns under axially compressive loads
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Experimental and numerical studies of short concrete-filled double skin composite tube columns under axially compressive loads

机译:短混凝土双壁组合管柱在轴向压缩荷载下的试验与数值研究

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摘要

This paper presents a study on the performance of concrete-filled double skin composite tube columns (CFDSCT) under axially compressive loads using both experimental and numerical methods. The CFDSCT column investigated consists of an octagonal steel tube as its outer skin layer, a circle PVC-U pipe as its inner skin layer, and high strength concrete filled in between the two layers. Influences of concrete strength, radius-to-thickness ratio, hollow section ratio, and slenderness ratio on the ultimate axial compressive capacity of the CFDSCT column are examined. It is found that the ultimate axial compressive capacity of the CFDSCT column increases with the strength of concrete, but decreases with either increased radius-to-thickness ratio or increased hollow section ratio. Based on the findings from the present experimental and numerical studies, a design formula for predicting the ultimate load of the CFDSCT column is proposed.
机译:本文采用实验方法和数值方法,对在轴向压缩荷载下的混凝土双壁组合管柱(CFDSCT)的性能进行了研究。所研究的CFDSCT立柱由八角形钢管作为外皮层,圆形PVC-U管作为内蒙皮层以及填充在两层之间的高强度混凝土组成。研究了混凝土强度,半径-厚度比,中空截面比和细长比对CFDSCT柱极限轴向抗压能力的影响。发现CFDSCT柱的极限轴向抗压能力随混凝土强度的增加而增加,但随半径与厚度比的增加或中空截面比的增加而减小。根据目前的实验和数值研究结果,提出了预测CFDSCT柱极限荷载的设计公式。

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