首页> 外文期刊>Journal of structural engineering >Influence of Cross-Section Type and Boundary Conditions on Structural Behavior of Concrete-Filled Steel Tubular Columns Subjected to Fire
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Influence of Cross-Section Type and Boundary Conditions on Structural Behavior of Concrete-Filled Steel Tubular Columns Subjected to Fire

机译:横截面类型和边界条件对火灾钢管柱结构行为的影响

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Composite columns consisting of steel hollow sections filled with concrete offer numerous advantages including high fire re-sistance. However, there are limited provisions for fire design of these columns, and current European code provisions yield unconservative fire resistance in cases of composite columns having relative slenderness greater than 0.5. To overcome the current knowledge gaps, a set of fire-resistance experiments was carried out on a large number of concrete-filled steel tubular columns (CFST). The test variables in the experiments included cross-section type and size, column slenderness, and the support conditions of the CFST columns. From these tests, detailed response parameters, including the evolution of cross-sectional temperatures, axial displacements, lateral deflections, fire-induced axial forces, and failure times, were evaluated. Results from the analysis clearly indicate that cross-sectional shape, support conditions, and column slenderness have significant influence on the fire behavior of CFST columns. Specifically, the axial stiffness reduces the fire resistance of CFST columns, whereas the rotational stiffness increases their fire resistance. Furthermore, CFST columns with an elliptical cross section provide higher fire resistance than equivalent square-shaped or rectangular-shaped columns under certain boundary conditions. (c) 2020 American Society of Civil Engineers.
机译:由填充混凝土的钢中空部分组成的复合柱提供众多优点,包括高火重新震动。然而,这些专栏的火灾设计的有限规定,当前欧洲典范规定在具有相对细长的复合柱大于0.5的复合柱的情况下产生unferyservative耐火性。为了克服目前的知识间隙,在大量的混凝土填充钢管柱(CFST)上进行了一组防火实验。实验中的测试变量包括CFST柱的横截面类型和尺寸,色谱柱细长和柱子细长。从这些测试中,评估了详细的响应参数,包括横截面温度,轴向位移,横向偏转,灭菌轴向力和失效时间的演变。分析结果清楚地表明横截面形状,支撑条件和柱细长对CFST柱的火灾行为产生显着影响。具体地,轴向刚度降低了CFST柱的耐火性,而旋转刚度增加了它们的耐火性。此外,具有椭圆形横截面的CFST柱在某些边界条件下提供比当量方形或矩形柱的耐火性更高。 (c)2020年美国土木工程师协会。

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