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Seismic Performance of RC Beam-Column Joints Constructed with Engineered Cementitious Composites

机译:用工程化水泥复合材料构建的RC梁柱接头的地震性能

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摘要

This paper presents experimental and analytical investigations carried out on RC beam-column joints incorporating engineered cementitious composite (ECC) material in the beam-column joint region. Six interior and exterior beam-column joints with different reinforcing detailing in the joint cores were designed and tested. Representative column axial loading and quasi-static lateral cyclic loadings were applied. Hysteresis behavior, crack patterns, joint shear stress, energy dissipation capacity, and strain profiles of reinforcements were examined. Results demonstrated ductile failure with flexural plastic hinges generated in the adjacent beams, which indicated an improvement of the joint shear capacity with the application of ECC. An analytical truss model for ECC joints was developed to investigate the joint shear force transfer mechanism. The predicted internal force flow of the ECC joints under seismic action yielded a reasonable correlation with the crack pattern. The effect of the joint transverse reinforcement also was studied based on the analytical model. A parametric study was performed via a validated finite-element analysis. Results indicated that higher column axial loading was detrimental to the performance of the joints, especially above an axial load ratio of 0.3 for joints incorporated with higher strength ECC. In addition, joint transverse rein-forcements still needed to be added in some cases to avoid joint shear failure. DOI: 10.1061/(ASCE)ST.1943-541X.0002824. (c) 2020 American Society of Civil Engineers.
机译:本文介绍了在梁柱接合区域中掺入工程化水泥复合材料(ECC)材料的RC光束柱关节上进行的实验和分析研究。设计并测试了具有不同增强细节的六个内部和外梁柱接头,并进行了测试。应用代表柱轴向载荷和准静态横向循环载荷。研究了滞后行为,裂缝图案,关节剪切应力,能量耗散能力和增强物的应变谱。结果表明,相邻光束中产生的弯曲塑料铰链的韧性失效,表明通过应用ECC改善关节剪切能力。开发了ECC关节的分析桁架模型,以研究关节剪切力转移机制。地震作用下的ECC关节的预测内力流动与裂纹图案产生合理的相关性。基于分析模型研究了关节横向增强的效果。通过验证的有限元分析进行参数研究。结果表明,较高的柱轴向负载对关节的性能有害,特别是对于掺入更高强度ECC的关节的轴向载荷比为0.3。此外,在某些情况下仍需要添加关节横向性抗体以避免联合剪切失效。 DOI:10.1061 /(asce)st.1943-541x.0002824。 (c)2020年美国土木工程师协会。

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