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Behavior of steel tube columns filled with steel-fiber-reinforced self-stressing recycled aggregate concrete under axial compression

机译:钢纤维增强自应力再生骨料混凝土钢管柱的轴向受压性能

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摘要

Faced with the large annual output of construction and demolition waste, cyclic utilization of recycled coarse aggregate (RCA) is inevitable. This study uses steel-fiber-reinforced recycled aggregate concrete (RAC) in the manufacture of concrete-filled steel tube columns, to improve the utilization of RAC. A comprehensive study of the axial behavior of 54 steel-fiber-reinforced self-stressing recycled aggregate concrete-filled steel tube (SSRCFST) columns was conducted. The variables in the experiments included the steel fiber content, self-stress, quality replacement rate of RCA, concrete strength grade, and steel tube thickness. The experimental results show that a poor concrete strength is obtained with increasing RCA content. However, under tri-axial stress in the steel tube, the negative influence of RCA is weakened. An enhancement of the ductility of SSRCFST columns can be achieved by adding a moderate amount of steel fiber. Self-stress can significantly improve the ultimate capacity and stiffness of SSRCFST columns. Moreover, design equations for the ultimate capacity of SSRCFST columns are proposed, and the predictions agree satisfactorily with the experimental results.
机译:面对大量的建筑和拆除废物年产量,循环利用粗骨料(RCA)是不可避免的。这项研究在钢管混凝土柱的制造中使用钢纤维增强的再生骨料混凝土(RAC),以提高RAC的利用率。对54根钢纤维自应力再生骨料-钢管混凝土柱的轴向性能进行了综合研究。实验中的变量包括钢纤维含量,自应力,RCA的质量替代率,混凝土强度等级和钢管厚度。实验结果表明,随着RCA含量的增加,混凝土强度下降。然而,在钢管中的三轴应力下,RCA的负面影响减弱了。通过添加适量的钢纤维可以提高SSRCFST色谱柱的延展性。自应力可以显着提高SSRCFST柱的极限承载力和刚度。此外,提出了SSRCFST柱极限承载力的设计方程,其预测结果与实验结果令人满意。

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