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Impact of concrete strength on seismic behavior of T-shaped double-skin composite walls

机译:混凝土强度对T形双皮肤复合墙体地震行为的影响

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摘要

This study investigates the seismic performance of T-shaped double-skin composite walls (DSCWs), which are comprised of double-skin composite flange and web walls and concrete filled steel tubular (CFST) boundary elements, through experimental tests. Six T-shaped DSCW specimens, which are categorized into three groups, according to flange width and type of mechanical connectors (shear studs/tie bars), are tested under combined axial compressive loads and lateral cyclic loads. The DSCWs fail in a ductile flexural mode with similar damage patterns, characterized by buckling of steel tubes and faceplates, concrete crushing, and fracture of steel tubes at the wall base, and exhibit asymmetric hysteresis behaviors, with higher stiffness and strength but lower deformation capacities when the flange walls are under tension. Special focus should be placed on the design of CFST boundary element connected to the web wall, whose compressive failure triggers the loss of load carrying capacity of the specimens. The comparisons between the behaviors of two specimens in each group, which are infilled with high strength (C70) and normal strength concrete (C30) respectively, suggest that employment of high strength concrete improves the seismic behavior of T-shaped DSCW significantly regardless of the flange wall width when shear studs are used. Tie bars may impair the seismic behaviors of DSCWs by inducing premature local buckling of perforated steel faceplates. Numerical studies are conducted using detailed finite element models to investigate the buckling behaviors of steel faceplates which are connected to infilled concrete by tie bars and shear studs. The simulation results reveal that the former buckles earlier than the latter due to smaller critical stress. The slenderness ratio limits to prevent local buckling prior to yielding of steel faceplates are also suggested when these two types of mechanical connectors are used.
机译:本研究调查了T形双皮复合墙(DSCW)的地震性能,通过实验试验组成,由双皮复合法兰和腹板和混凝土填充钢管(CFST)边界元件组成。根据法兰宽度和机械连接器类型(剪切螺柱/系杆),六个T形DSCW样本分为三组,根据机械连接器(剪切螺柱/杆),在组合轴向压缩载荷和横向循环负载下进行测试。 DSCWS在具有类似损伤模式的延性弯曲模式下失效,其特征在于钢管和面板,混凝土压碎和钢管在墙体基板上,表现出不对称的滞后行为,具有更高的刚度和强度,但变形能力较低当法兰墙处于张力时。应在连接到腹板墙壁的CFST边界元件的设计上进行特殊焦点,其压缩失败触发了标本的负载承载能力的损失。分别用高强度(C70)和正常强度混凝土(C30)浸入每组两组的行为之间的比较表明,高强度混凝土的使用显着提高了T形DSCW的地震行为,无论如何使用剪切螺柱时法兰壁宽度。通过诱导穿孔钢面板造成过早的局部屈曲,领带杆可能会损害DSCWS的地震行为。使用详细的有限元模型进行数值研究,以研究钢面板的屈曲行为,通过系杆和剪切柱连接连接到indiled混凝土。仿真结果表明,由于临界压力较小,前者比后者早起。当使用这两种类型的机械连接器时,还提出了在屈服之前防止局部屈曲的细长比限制。

著录项

  • 来源
    《Engineering Structures》 |2021年第1期|112039.1-112039.20|共20页
  • 作者单位

    Guilin Univ Technol Guangxi Key Lab Engn Struct & Bldg Engergy Effici Guilin 541004 Peoples R China|Guangxi Univ Coll Civil Engn & Architecture 100 Daxue Rd Nanning 530004 Peoples R China;

    Guangxi Univ Coll Civil Engn & Architecture 100 Daxue Rd Nanning 530004 Peoples R China;

    Guangxi Architectural Res & Design Inst Nanning 530004 Peoples R China;

    Harbin Inst Technol Sch Civil Engn Key Lab Struct Dynam Behav & Control Minist Ind & Minist Educ Key Lab Smart Prevent & Mitigat Civil Harbin 150090 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Seismic behavior; Experimental study; High strength concrete; Local buckling; Cyclic loading; T-shaped double skin composite wall;

    机译:地震行为;实验研究;高强度混凝土;局部屈曲;循环载荷;T形双皮复合墙;

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