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High-Strength Concrete Interior Beam-Column Joints with High-Yield-Strength Steel Reinforcements

机译:高强度钢筋的高强度混凝土内部梁柱节点

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This study presents the experimental and analytical investigations carried out on high-strength concrete beam-column joints with Grade 700 longitudinal bars in beams and columns. Seven full-scale interior RC beam-column joints with various reinforcement detailing were designed according to the specific seismic provisions of current building codes. Test specimen variables included concrete compressive strength, reinforcement yield strength, and axial compression loading level. The test specimens were subjected to constant column axial loading and quasi-static lateral load reversals. The performance of each test assembly was examined in terms of cracking patterns, lateral loading capacity, reinforcement strain profiles, secant stiffness, energy dissipation capacity, joint shear strength, and bond performance. All specimens displayed ductile failure mode and it is concluded that the use of high-strength concrete and applied axial compression loading can improve specimen bond conditions. Parametric studies via finite-element analysis were performed to examine the influence of various parameters on the strength, bond condition, and energy dissipation capacity of the specimens. In addition, a backbone curve model for the shear behavior of the joints is proposed. An explanation for the observed cracking pattern and further analytical investigation on the joint shear capacity of the specimens is presented. (C) 2017 American Society of Civil Engineers.
机译:这项研究提供了对具有700级纵梁在梁和柱中的高强度混凝土梁柱节点进行的实验和分析研究。根据当前建筑规范的特定抗震规定,设计了七个带有各种加固细节的全尺寸内部RC梁柱节点。试件变量包括混凝土抗压强度,钢筋屈服强度和轴向压缩载荷水平。试样承受恒定的圆柱轴向载荷和准静态的横向载荷反转。根据破裂模式,横向载荷能力,钢筋应变曲线,割线刚度,能量耗散能力,接头剪切强度和粘结性能等方面检查了每个测试组件的性能。所有样品均显示出延性破坏模式,并且得出的结论是,使用高强度混凝土和施加轴向压缩载荷可以改善样品的粘结条件。通过有限元分析进行参数研究,以检查各种参数对试样强度,粘结条件和能量耗散能力的影响。另外,提出了一种用于接头剪切行为的主干曲线模型。给出了观察到的裂纹模式的解释,并进一步分析了样品的联合剪切能力。 (C)2017年美国土木工程师学会。

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