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Experimental investigation of square concrete filled stainless steel tubular stub columns after exposure to elevated temperatures

机译:方形混凝土在高温下填充的不锈钢管状短柱的试验研究

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The behaviour of square concrete filled stainless steel tubular (CFSST) stub columns after exposure to elevated temperatures under axial compression is presented in this paper. A total of sixty-nine specimens were tested, including forty-eight square CFSST stub columns at elevated temperatures cooled in air, nine square CFSST stub columns at elevated temperatures cooled in water and twelve square CFSST stub columns left untreated at ambient temperature. A total of twelve square CFSST stub columns were carried out load-strain tests. The main parameters explored in the test include thickness (1.0 mm, 1.2 mm, 1.5 mm, 2.0 mm), concrete strength (C20, C30, C40), temperatures ranging from 400 °C to 1000 °C and cooling methods. This paper presents the failure modes, ultimate load-bearing capacity, load-strain curves, load versus displacement curves, initial compressive stiffness at the elastic stage and ductility of the specimens. It was found that high temperature had the greatest influence on the ultimate load-bearing capacity of the columns, and the cooling methods also had some effect on it. As the elevated temperature to which the specimens were subjected increased, the percentage of the ultimate load-bearing capacity decrease had an obvious increase and the ductility of the specimens was enhanced. The initial compressive stiffness decreased evidently as the temperature increased to 800 °C. A new failure mode was identified without visible corner crack in the specimens after exposure to elevated temperatures compared with the specimens at ambient temperature. The ultimate load-bearing capacity increased and the axial deformation versus load curves had a longer elastic stage as the concrete strength increased.
机译:本文介绍了方形混凝土填充不锈钢管(CFSST)短柱在轴向压力下暴露于高温后的行为。总共测试了69个样品,包括在空气中冷却的高温下的48个方形CFSST短柱,在水中冷却的高温下的9个方形CFSST短柱和在环境温度下未经处理的12个方形CFSST短柱。总共进行了十二个方形CFSST短管柱的荷载应变测试。测试中探索的主要参数包括厚度(1.0毫米,1.2毫米,1.5毫米,2.0毫米),混凝土强度(C20,C30,C40),温度范围从400°C至1000°C以及冷却方法。本文介绍了破坏模式,极限承载力,载荷-应变曲线,载荷与位移曲线,弹性阶段的初始压缩刚度和试样的延性。结果发现,高温对柱的极限承载力影响最大,冷却方法也对其产生一定影响。随着试样温度的升高,极限承载力下降的百分比有明显的增加,试样的延展性提高。随着温度升高至800 C,初始压缩刚度明显下降。与环境温度下的样品相比,暴露于高温后的样品中发现了一种新的失效模式,没有可见的角裂纹。随着混凝土强度的增加,极限承载力增加,轴向变形与荷载的关系曲线具有更长的弹性阶段。

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