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High Strength Concrete Columns under Axial Compression Load: Hybrid Confinement Efficiency of High Strength Transverse Reinforcement and Steel Fibers

机译:轴向压缩载荷下的高强度混凝土柱:高强度横向钢筋与钢纤维的混合约束效率

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摘要

Addition of steel fibers to high strength concrete (HSC) improves its post-peak behavior and energy absorbing capability, which can be described well in term of toughness. This paper attempts to obtain both analytically and experimentally the efficiency of steel fibers in HSC columns with hybrid confinement of transverse reinforcement and steel fibers. Toughness ratio (TR) to quantify the confinement efficiency of HSC columns with hybrid confinement is proposed through a regression analysis by involving sixty-nine TRs of HSC without steel fibers and twenty-seven TRs of HSC with hybrid of transverse reinforcement and steel fibers. The proposed TR equation was further verified by compression tests of seventeen HSC columns conducted in this study, where twelve specimens were reinforced by high strength rebars in longitudinal and transverse directions. The results show that the efficiency of steel fibers in concrete depends on transverse reinforcement spacing, where the steel fibers are more effective if the spacing transverse reinforcement becomes larger in the range of 0.25–1 effective depth of the section column. Furthermore, the axial load–strain curves were developed by employing finite element software (OpenSees) for simulating the response of the structural system. Comparisons between numerical and experimental axial load–strain curves were carried out.
机译:在高强度混凝土(HSC)中添加钢纤维可改善其峰后性能和能量吸收能力,这在韧性方面可以很好地描述。本文尝试通过横向加固和钢纤维的混合约束,在分析和实验上获得钢纤维在HSC柱中的效率。通过回归分析提出了韧性比(TR),用于定量分析混合约束的HSC柱的约束效率,该分析涉及不带钢纤维的HSC的69个TR和含横向加强筋和钢纤维的HSC的27个TR。本研究通过对17根HSC柱进行压缩试验进一步验证了拟议的TR方程,其中12个试样通过高强度钢筋在纵向和横向上进行了加固。结果表明,钢纤维在混凝土中的效率取决于横向钢筋间距,如果在截面柱有效深度0.25–1的范围内横向钢筋间距增大,则钢纤维会更有效。此外,通过使用有限元软件(OpenSees)模拟结构系统的响应,开发了轴向载荷-应变曲线。进行了数值和实验轴向载荷-应变曲线的比较。

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