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Behaviour of plate anchorage in plate-reinforced composite coupling beams

机译:板式锚固在板式钢筋混合梁中的性能

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摘要

As a new alternative design, plate-reinforced composite (PRC) coupling beam achieves enhanced strength and ductility by embedding a vertical steel plate into a conventionally reinforced concrete (RC) coupling beam. Based on a non-linear finite element model developed in the authors’ previous study, a parametric study presented in this paper has been carried out to investigate the influence of several key parameters on the overall performance of PRC coupling beams. The effects of steel plate geometry, span-to-depth ratio of beams and steel reinforcement ratios at beam spans and in wall regions are quantified. It is found that the anchorage length of the steel plate is primarily controlled by the span-to-depth ratio of the beam. Based on the numerical results, a design curve is proposed for determining the anchorage length of the steel plate. The load-carrying capacity of short PRC coupling beams with high steel ratio is found to be controlled by the steel ratio of wall piers. The maximum shear stress of PRC coupling beams should be limited to 15 MPa.
机译:作为一种新的替代设计,板增强复合材料(PRC)耦合梁通过将垂直钢板嵌入传统的钢筋混凝土(RC)耦合梁中来提高强度和延展性。基于作者先前研究中开发的非线性有限元模型,本文进行了参数研究,以研究几个关键参数对PRC耦合梁整体性能的影响。量化了钢板几何形状,梁的跨度-深度比以及梁跨度和壁区域中的钢筋比的影响。已经发现,钢板的锚固长度主要由梁的跨度与深度之比控制。根据数值结果,提出了确定钢板锚固长度的设计曲线。发现高钢比率的短PRC耦合梁的承载能力受墙墩的钢比率控制。 PRC耦合梁的最大剪切应力应限制为15 MPa。

著录项

  • 作者

    Su RKL; Lam WY; Pam HJ; Li L;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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