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Uniaxial behavior of circular ultra-high-performance fiber-reinforced concrete columns confined by spiral reinforcement

机译:螺旋加强约束圆形超高性能纤维混凝土柱的单轴性能

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摘要

This paper presents results from the uniaxial tests of six large-scale ultra-high-performance fiber-reinforced concrete (UHPFRC) circular columns confined by spirals. The UHPFRC used in this study had 1.5% of hybrid micro-steel fibers (1.0% of 19.5 mm fibers and 0.5% of 16.3 mm fibers) in the mixture and had compressive strengths varying from 163 to 181 MPa. The effects of the volumetric ratio of spiral reinforcement, compressive strength of concrete, and presence of hybrid micro-steel fibers on the axial load responses, including post-peak deformability, were investigated. In addition, the ductility level reached by circular UHPFRC columns designed according to the minimum spiral reinforcement of current design provisions of the CSA A23.3-14 Standard and the ACI 318-14 Code were evaluated to investigate the applicability of these equations to UHPFRC columns. Test results showed that the combined effect of the minimum spiral reinforcement and steel fibers resulted in sufficient post-peak ductility of the UHPFRC columns. To investigate the efficiency of the shape of the confinement reinforcement, the test results of the circular UHPFRC columns confined by spirals were compared with those from equivalent-sized square UHPFRC columns confined by hoops. The test results demonstrate the superior performance of circular spirals for developing the ductile behavior of UHPFRC columns than the same volumetric ratio of rectilinear hoops. A design recommendation for spiral reinforcement that ensures the ductile behavior of UHPFRC columns in moderate seismic regions is proposed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了六种由螺旋约束的大型超高性能纤维混凝土(UHPFRC)圆形圆柱的单轴试验结果。本研究中使用的UHPFRC在混合物中含有1.5%的混合微钢纤维(1.0%的19.5 mm纤维和0.5%的16.3 mm纤维),抗压强度从163到181 MPa不等。研究了螺旋增强的体积比,混凝土的抗压强度以及混合微钢纤维的存在对轴向载荷响应(包括峰后变形性)的影响。此外,评估了根据CSA A23.3-14标准和ACI 318-14规范的现行设计规定的最小螺旋加强设计的圆形UHPFRC色谱柱达到的延展性水平,以研究这些方程式对UHPFRC色谱柱的适用性。测试结果表明,最小螺旋加强筋和钢纤维的共同作用导致UHPFRC色谱柱具有足够的峰后延性。为了研究约束加强件形状的效率,将用螺旋约束的圆形UHPFRC圆柱的试验结果与用箍筋约束的等效大小的方形UHPFRC圆柱的试验结果进行了比较。测试结果表明,与相同体积比的直线箍相比,圆形螺旋管在开发UHPFRC柱的延展性能方面具有优越的性能。提出了一种螺旋加固设计建议,以确保UHPFRC柱在中等地震区域的延性。 (C)2018 Elsevier Ltd.保留所有权利。

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