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Behavior of steel fiber reinforced concrete-filled steel tube columns under axial compression

机译:钢纤维增强钢管混凝土柱的轴向受压性能

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摘要

This paper presents an experimental work for short steel tube columns filled with plain concrete and steel fiber reinforced concrete under axial load. The study aimed to explore the effect of steel fiber on the behavior of concrete-filled steel tube (CFST) columns with different concrete strengths and thicknesses of steel tube. Thirty-six specimens were tested with steel fiber volume percentages of 0%, 0.6%, 0.9% and 1.2%, thicknesses of steel tube of 3, 4 and 5 mm and concrete strengths from 50 to 70 MPa. The failure modes, ultimate loads and axial load-axial shortening relationships are presented. Experimental results show that steel fiber fails to change the failure mode of CFST columns, but delays the local buckling of steel tube through bridging the plastic cracks near the sliding plane and improving the shear-frictional resistance of concrete. This beneficial effect from steel fibers also leads to significant improvement of the ductility and the energy dissipation capacity of CFST columns. Compared with thicker steel tube, adding steel fibers to concrete is a more effective and economical method in enhancing the ductility of CFST columns. The results also indicate that the presence of steel fibers has no obvious effect on the ultimate load of CFST columns. Design formulas for the load capacity and ductility of CFST columns are proposed, and the predictions agree well with the experimental results from this study and the literature. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了在轴向载荷下填充普通混凝土和钢纤维增强混凝土的短钢管柱的实验工作。该研究旨在探讨钢纤维对不同混凝土强度和钢管厚度的钢管混凝土柱性能的影响。测试了36个样品,其中钢纤维体积百分比为0%,0.6%,0.9%和1.2%,钢管的厚度为3、4和5 mm,混凝土强度为50至70 MPa。给出了失效模式,极限载荷和轴向载荷-轴向缩短的关系。实验结果表明,钢纤维不能改变CFST柱的破坏方式,但可以通过弥合滑动面附近的塑性裂纹并提高混凝土的抗剪摩性来延缓钢管的局部屈曲。钢纤维的这种有益效果还导致CFST柱的延展性和能量消散能力的显着提高。与较厚的钢管相比,在混凝土中添加钢纤维是提高CFST柱延性的一种更有效,更经济的方法。结果还表明,钢纤维的存在对CFST柱的极限荷载没有明显影响。提出了CFST柱承载力和延性的设计公式,其预测结果与本研究和文献的实验结果吻合良好。 (C)2015 Elsevier Ltd.保留所有权利。

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