Mechanical behavior of ECC-reinforced coupled shear wall

IF 3.5 Q1 ENGINEERING, MULTIDISCIPLINARY International Journal of Structural Integrity Pub Date : 2024-04-12 DOI:10.1108/ijsi-12-2023-0147
Jun Zhao, Hao Zhang, Junwei Liu, Yanfen Gong, Songqiang Wan, Long Liu, Jiacheng Li, Ziyi Song, Shiyao Zhang, Qingrui Li
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Abstract

PurposeBased on the weak seismic performance and low ductility of coupled shear walls, engineered cementitious composites (ECC) is utilized to strengthen it to solve the deformation problem in tall buildings more effectively and study its mechanical properties more deeply.Design/methodology/approachThe properties of reinforced concrete coupled shear wall (RCCSW) and reinforced ECC coupled shear wall (RECSW) have been studied by numerical simulation, which is in good agreement with the experimental results. The reliability of the finite element model is verified. On this basis, a detailed parameter study is carried out, including the strength and reinforcement ratio of longitudinal rebar, the placement height of ECC in the wall limb and the position of ECC connecting beams. The study indexes include failure mode and the skeleton curve.FindingsThe results suggest that the bearing capacity of RECSW is significantly affected by the ratio of longitudinal rebar. When the ratio of longitudinal rebar increases from 0.47% to 3.35%, the bearing capacity of RECSW increases from 250 kN to 303 kN, an increase of 21%. The strength of longitudinal rebar has little influence on the bearing capacity of RECSW. When the strength of the longitudinal rebar increases, the bearing capacity of RECSW increases little. The failure mode of RECSW can be improved by lowering the casting height of the ECC beam in a certain range.Originality/valueIn this paper, ECC is used to strengthen the coupled shear wall, and the accuracy of the finite element model is verified from the failure mode and skeleton curve. On this basis, the casting height of the ECC casting wall limb, the strength and reinforcement ratio of longitudinal rebar and the position of the ECC beam are studied in detail.
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ECC 加固耦合剪力墙的力学性能
目的基于耦合剪力墙抗震性能弱、延性低的特点,利用工程水泥基复合材料(ECC)对其进行加固,以更有效地解决高层建筑的变形问题,并对其力学性能进行更深入的研究。设计/方法/途径通过数值模拟研究了钢筋混凝土耦合剪力墙(RCCSW)和加固 ECC 耦合剪力墙(RECSW)的性能,与实验结果吻合良好。有限元模型的可靠性得到了验证。在此基础上,进行了详细的参数研究,包括纵向钢筋的强度和配筋率、墙肢中 ECC 的放置高度以及 ECC 连接梁的位置。研究结果表明,RECSW 的承载能力受到纵向钢筋配筋率的显著影响。当纵向钢筋比例从 0.47% 增加到 3.35% 时,RECSW 的承载能力从 250 kN 增加到 303 kN,增加了 21%。纵向钢筋的强度对 RECSW 的承载能力影响不大。当纵向钢筋的强度增加时,RECSW 的承载能力增加很少。在一定范围内降低 ECC 梁的浇筑高度可改善 RECSW 的破坏模式。在此基础上,详细研究了 ECC 浇注墙肢的浇注高度、纵向钢筋的强度和配筋率以及 ECC 梁的位置。
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来源期刊
International Journal of Structural Integrity
International Journal of Structural Integrity ENGINEERING, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
14.80%
发文量
42
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