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Seismic Performance of Steel Fiber Reinforced High–Strength Concrete Beam–Column Joints

机译:钢纤维钢纤维高强度混凝土梁柱接头的地震性能

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摘要

In high–strength concrete, the reinforcement concentration will cause some problems in the beam–column joints (BCJs) due to a large amount of transverse reinforcement. Hence, the main object of this paper is to prevent the reinforcement concentration and reduce the amount of transverse reinforcement in the BCJs through the ideal usage of steel fibers and reinforced high–strength concrete. Pseudo–static tests on seven specimens were carried out to investigate and evaluate the seismic performance of beam–column joints in steel fiber reinforced high–strength concrete (SFRHC). Test variables were steel fiber volume ratio, concrete strength, the stirrup ratio in the core area, and an axial compression ratio of the column end. During the test, the hysteresis curves and failure mode were recorded. The seismic indicators, such as energy dissipation, ductility, strength, and stiffness degradation, were determined. The experimental results indicated that the failure modes of SFRHC beam–column joints mainly included the core area failure and the beam end bending failure. With the increase in stirrup ratio, volume ratio of steel fiber, and axial compression ratio in the core area, both the ductility and energy consumption of beam–column joints increased, while the opposite was true for concrete strength.
机译:在高强度混凝土中,由于大量的横向增强,增强浓度将在梁柱接头(BCJ)中产生一些问题。因此,本文的主要目的是通过钢纤维的理想使用和增强高强度混凝土的理想使用,防止增强浓度并减少BCJ中的横向增强量。进行了七样本的伪静态试验,以研究和评价钢纤维增强高强度混凝土(SFRHC)中梁柱接头的地震性能。测试变量是钢纤维体积比,混凝土强度,芯面积中的搅拌比,以及柱末端的轴向压缩比。在测试期间,记录滞后曲线和故障模式。确定抗震指示剂,例如能量耗散,延展性,强度和刚度降解。实验结果表明,SFRHC梁柱接头的故障模式主要包括核心区域故障和光束端弯曲失效。随着钢纤维的搅拌比的增加,钢纤维的体积比和芯面积中的轴向压缩比,梁柱关节的延展性和能量消耗都增加,而相反的是混凝土强度。

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