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Structural responses of restrained steel columns at elevated temperatures. Part 1: Experiments

机译:受约束的钢柱在高温下的结构响应。第1部分:实验

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This paper outlines a research program on an experimental investigation to determine the failure time of unprotected steel columns subjected to various axial restraint ratios. Axial restraints were applied to simulate the thermal restraint effects due to adjacent cooler parts of a steel framed structure in fire. All columns had an effective length of 1.74 m, and were divided into 4 groups according to their minor-axis slenderness ratios of 45, 55, 81 and 97, respectively. The columns were axially loaded and exposed to a monotonically increasing heating condition. Initial imperfections such as column crookedness and load eccentricity were measured by a specially designed facility. The test results show that axial restraints, as well as initial imperfections, significantly reduce the failure times of axially-loaded steel columns. By contrast, bearing friction substantially retards column failure times. These effects are represented by flexural springs at both ends of a column specimen. Besides, a simple but reliable Rankine approach is used to compute the column failure times. The Rankine predictions agree well with experimental results.
机译:本文概述了一项有关实验研究的研究计划,以确定在各种轴向约束比下无保护钢柱的失效时间。应用了轴向约束来模拟火灾中钢框架结构的相邻较冷部分所产生的热约束效果。所有列的有效长度为1.74 m,根据其短轴细长比分别为45、55、81和97分为4组。所述柱被轴向加载并暴露于单调增加的加热条件。最初的缺陷,例如圆柱体弯曲度和载荷偏心度,是通过专门设计的设备测量的。测试结果表明,轴向约束以及初始缺陷可以显着减少轴向加载钢柱的失效时间。相反,轴承摩擦会大大延迟色谱柱的故障时间。这些影响由圆柱试样两端的弯曲弹簧表示。此外,使用一种简单但可靠的Rankine方法来计算色谱柱故障时间。 Rankine的预测与实验结果非常吻合。

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