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Experimental study of flexural critical reinforced concrete filled composite plate shear walls

机译:弯曲临界钢筋混凝土组合板剪力墙试验研究。

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The reinforced concrete filled composite plate shear walls (CPSW) system employs two steel plates with infilled reinforced concrete. Based on an experimental study of four flexural critical CPSW specimens under high axial compression ratio ranging from 0.313 to 0.542 and reciprocal lateral load, the seismic performance of shear studs connected CPSW systems with orthogonal reinforcement in wall web and longitudinal reinforcement in boundary element is examined. The failure mode, load-displacement relationship, flexural strength, displacement capacity, stiffness degradation and equivalent damping ratio are reported in detail. The compression yielding of boundary element was observed before its local buckling, and yielding of faceplate was observed before faceplate local buckling. The fracture failure of the boundary element and crushing of infilled concrete were observed at the descending branch. The test results showed that the CPSW systems connected by shear studs had adequate ductility, and the ultimate drift ratio ranged from 1.17% to 1.78%. The overstrength ratio of the moment capacity ranged from 1.06 to 1.18 in the test. Based on the plasticity theory, the strain measurement results of steel faceplates were used to calculate the shear force contribution of the steel plate. The influence of axial compression ratio on the internal force transfer and ultimate capacity is investigated. In addition, a database of 47 flexural critical CPSW specimens with boundary element was established, and the overstrength ratio for the anchorage design was proposed with adequate safety.
机译:钢筋混凝土填充复合板剪力墙(CPSW)系统使用两块钢板填充钢筋混凝土。基于在0.313至0.542的高轴向压缩比和反向横向载荷的作用下对四个弯曲临界CPSW试件进行的实验研究,研究了将CPSW系统与墙腹板中的正交钢筋和边界单元中的纵向钢筋连接起来的抗剪栓钉的抗震性能。详细报告了失效模式,载荷-位移关系,抗弯强度,位移能力,刚度下降和等效阻尼比。在边界元件局部屈曲之前观察到边界元素的压缩屈服,而在面板局部屈曲之前观察到面板的屈服。在下降分支处观察到边界元素的断裂破坏和填充混凝土的破碎。测试结果表明,通过剪力螺柱连接的CPSW系统具有足够的延展性,最终的漂移比在1.17%至1.78%之间。在测试中,力矩承载力的超强度比在1.06至1.18的范围内。基于可塑性理论,使用钢板面板的应变测量结果来计算钢板的剪切力贡献。研究了轴向压缩比对内力传递和极限承载力的影响。此外,建立了47个带有边界单元的挠性临界CPSW试件的数据库,并提出了足够安全的锚固设计超强度比。

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