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Creep performance of concrete-filled steel tubular (CFST) columns and applications to a CFST arch bridge

机译:钢管混凝土柱的蠕变性能及其在钢管混凝土拱桥中的应用

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This paper first presents an experimental study of twelve specimens for their creep performance, including nine concrete-filled steel tubular (CFST) columns and three plain concrete columns, subjected to three levels of sustained axial loads for 1710 days. Then, the creep strain curves are predicted from the existing creep models including the ACI 209 model, the MC 78 model, and the MC 90 model, and further a fitted creep model is obtained by experimental data. Finally, the creep effects of a CFST arch bridge are analyzed to compare the accuracy of the existing creep models. The experimental results show that the creep strains in CFST specimens are far less than in the plain concrete specimens and still increase after two years. The ACI 209 model outperforms the MC 78 model and the MC 90 model when predicting the creep behavior of the CFST specimens. Analysis results indicate that the creep effects in the CFST arch bridge are significant. The deflections and stresses calculated by the ACI 209 model are the closest to the fitted model in the three existing models, demonstrating that the ACI 209 model can be used for creep analysis of CFST arch bridges and can meet the engineering accuracy requirement when lack of experimental data.
机译:本文首先对12个试样的蠕变性能进行了实验研究,包括9根钢管混凝土(CFST)柱和3根普通混凝土柱,它们承受了三个水平的持续轴向载荷,持续了1710天。然后,根据现有的蠕变模型(包括ACI 209模型,MC 78模型和MC 90模型)预测蠕变应变曲线,并通过实验数据获得拟合的蠕变模型。最后,分析了CFST拱桥的蠕变效应,以比较现有蠕变模型的准确性。实验结果表明,CFST试件的蠕变应变远小于普通混凝土试件,并且在两年后仍会增加。当预测CFST试样的蠕变行为时,ACI 209模型的性能优于MC 78模型和MC 90模型。分析结果表明,钢管混凝土拱桥的蠕变效应是显着的。在现有的三个模型中,ACI 209模型计算出的挠度和应力最接近拟合模型,表明ACI 209模型可以用于CFST拱桥的蠕变分析,并且在缺乏实验性的情况下可以满足工程精度要求数据。

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