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Compressive strength and stiffness of concrete-filled double-tube columns

机译:钢管混凝土双管柱的抗压强度和刚度

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Concrete-filled double-tube (CFDT) columns have the potential to be widely used in high-rise buildings due to their very high load-carrying capacity, excellent ductility and good fire resistance. This new type of composite construction has attracted increasing research attention in the last decade, but there is a need to develop practical design recommendations for this construction. This paper aims to study the ultimate strength, the ultimate strain corresponding to the ultimate strength (ductility), and the stiffness of CFDT stub columns under axial compression. An existing finite element model is directly used to study square CFDT stub columns and this model is further modified to simulate circular CFDT stub columns under axial compression. Numerical data are generated to cover a wide range of parameters for CFDT stub columns. Through regression analysis, simple equations are proposed to calculate the ultimate strength, the compressive stiffness and the ultimate strain of CFDT stub columns. These equations can assist engineers to conduct structural analysis and design of CFDT columns.
机译:钢管混凝土双管(CFDT)立柱具有极高的承载能力,出色的延展性和良好的耐火性,因此有可能被广泛用于高层建筑。在过去的十年中,这种新型的复合材料结构吸引了越来越多的研究关注,但是有必要为这种结构开发实用的设计建议。本文旨在研究CFDT短柱在轴向压缩下的极限强度,与极限强度(延性)相对应的极限应变和刚度。直接使用现有的有限元模型来研究方形CFDT短柱,然后对该模型进行进一步修改以模拟在轴向压缩下的圆形CFDT短柱。生成的数值数据涵盖了CFDT短管柱的各种参数。通过回归分析,提出了简单的方程式来计算CFDT短柱的极限强度,抗压刚度和极限应变。这些方程式可以帮助工程师进行CFDT色谱柱的结构分析和设计。

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