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Eccentric compression behaviour of concrete columns reinforced with steel-FRP composite bars

机译:用钢-FRP复合杆加固混凝土柱的偏心压缩行为

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Eccentric compression behaviour of reinforced concrete (RC) columns reinforced by steel-FRP composite bars (SFCBs) was investigated through experimental work and theoretical analyses. The tension and compression test results show that SFCBs demonstrate a stable post-yield stiffness. The mechanical properties of the composite reinforcement have a significant influence on eccentric compression behaviour of the reinforced concrete columns, in terms of failure mode, crack width, deformation and bearing capacity. Formulae were also developed to discriminate failure mode and to determine moment magnification factor, bearing capacity and crack width of the columns studied, with the theoretical predictions being in a good agreement with the experimental results. In addition, parametric studies were conducted to evaluate the effects of mechanical properties of reinforcement, reinforcement ratio, eccentricity, slenderness ratio, types of reinforcement and concrete on the eccentric compression behaviour of RC columns. The results show that the compressive performance is significantly improved by using the high performance concrete, i.e. reactive powder concrete (RPC) and engineered cementious composites (ECC).
机译:通过实验性工作和理论分析研究了钢FRP复合棒(SFCBS)加强钢筋混凝土(RC)柱的偏心压缩行为。张力和压缩测试结果表明,SFCBS表明稳定的产率刚度。在故障模式,裂缝宽度,变形和承载力方面,复合增强件的机械性能对钢筋混凝土柱的偏心压缩行为有显着影响。还开发了公式以区分故障模式,并确定所研究的柱子的力量放大因子,承载力和裂缝宽度,理论上的预测与实验结果很好。此外,进行了参数研究,以评估加固,加固比,偏心,细长比,加固和混凝土类型对RC柱的偏心压缩行为的影响。结果表明,通过使用高性能混凝土,即反应性粉末混凝土(RPC)和工程化胶合复合材料(ECC),通过高性能混凝土显着改善了压缩性能。

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