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Analytical model and design formulae of circular CFSTs under axial tension

机译:圆形CFSTs轴向受力分析模型与设计公式

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摘要

A circular concrete-filled steel tube (CCFST) component is subjected to tension in certain practical engineering projects. Several past experimental programs have stressed that the apparent strength and stiffness enhancement phenomena observed in tensile circular steel tubes can be attributable to the filled concrete. In this study, an analytical model for describing the strength and stiffness enhancement of the circular steel tubes is developed. The interface performance between the steel tube and filled concrete is considered in the model. Based on the proposed analytical model, simplified design formulae for strength and stiffness enhancement coefficients are proposed. These design formulae indicate that the confining and fibre-reinforcing effects lead to the strength improvement, while the confining effect, fibre-reinforcing effect, and tension-stiffening effects all contribute to the stiffness enhancement. Then, a design procedure for determining the axial tensile strength and stiffness of CCFSTs is provided, and a design example is also demonstrated. The accuracy of both the proposed analytical model and design formulae are validated by the results of two groups of axial tension tests, which demonstrates that the full-process load-strain behaviour can be accurately captured by a bilinear model based on the proposed analytical formulae. Finally, analytical solutions for the longitudinal stress distributions of the steel tube and filled concrete are provided for a better understanding of the tension-stiffening effect. In addition, the contributions of different effects to strength and stiffness enhancements are quantitatively evaluated for all the test specimens. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在某些实际的工程项目中,圆形混凝土钢管(CCFST)部件会受到拉力作用。过去的一些实验程序已经强调,在圆形钢管中观察到的表观强度和刚度增强现象可归因于填充混凝土。在这项研究中,建立了描述圆形钢管强度和刚度增强的分析模型。该模型考虑了钢管与填充混凝土之间的界面性能。基于所提出的分析模型,提出了强度和刚度增强系数的简化设计公式。这些设计公式表明,约束作用和纤维增强作用导致强度提高,而约束作用,纤维增强作用和拉伸刚度作用均有助于刚性的提高。然后,提供了确定CCFST的轴向抗拉强度和刚度的设计程序,并说明了一个设计实例。通过两组轴向拉伸试验的结果验证了所提出的分析模型和设计公式的准确性,这表明基于所提出的分析公式的双线性模型可以准确地捕获全过程载荷-应变行为。最后,提供了钢管和填充混凝土的纵向应力分布的解析解,以更好地理解抗拉刚度效果。此外,对所有试样均定量评估了不同效果对强度和刚度增强的贡献。 (C)2017 Elsevier Ltd.保留所有权利。

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