Punching shear strength of reinforced concrete slabs without transverse reinforcement

IF 1.5 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY ACI Structural Journal Pub Date : 2008-07-01 DOI:10.14359/19858
A. Muttoni
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引用次数: 536

Abstract

A mechanical explanation of the phenomenon of punching shear in slabs without transverse reinforcement is presented on the basis of the opening of a critical shear crack. It leads to the formulation of a new failure criterion for punching shear based on the rotation of a slab. This criterion correctly describes punching shear failures observed in experimental testing, even in slabs with low reinforcement ratios. Its application requires the knowledge of the load-rotation relationship of the slab, for which a simple mechanical model is proposed. The resulting approach is shown to give better results than current design codes, with a very low coefficient of variation (COV). Parametric studies demonstrate that it correctly predicts several aspects of punching shear previously observed in testing as size effect (decreasing nominal shear strength with increasing size of the member). Accounting for the proposed failure criterion and load-rotation relationship of the slab, the punching shear strength of a flat slab is shown to depend on the span of the slab, rather than on its thickness as often proposed.
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无横向配筋钢筋混凝土板的冲剪强度
基于临界剪切裂缝的开启,对无横向配筋板的冲剪现象进行了力学解释。由此提出了一种新的基于板的旋转冲剪破坏准则。该准则正确地描述了在实验测试中观察到的冲剪破坏,即使在低配筋率的板中也是如此。它的应用需要了解板的荷载-转动关系,为此提出了一个简单的力学模型。结果表明,该方法比现行设计规范提供了更好的结果,具有非常低的变异系数(COV)。参数研究表明,它正确地预测了先前在试验中观察到的冲压剪切的几个方面,即尺寸效应(随着构件尺寸的增加,公称抗剪强度降低)。考虑到所提出的破坏准则和板的荷载-旋转关系,平板的冲孔抗剪强度取决于板的跨度,而不是通常提出的板的厚度。
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来源期刊
ACI Structural Journal
ACI Structural Journal 工程技术-材料科学:综合
CiteScore
3.20
自引率
11.10%
发文量
134
审稿时长
2.5 months
期刊介绍: This peer-reviewed journal continues the publishing tradition the Institute started in 1904. Information published in ACI Structural Journal includes: structural design, analysis of concrete elements and structures, research related to concrete elements and structures, and papers addressing design and analysis theory.
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