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Influence of flanges on the shear-carrying capacity of reinforced concrete beams without web reinforcement

机译:翼缘对无腹板钢筋混凝土梁抗剪承载力的影响

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摘要

T-beams are acknowledged as economic and efficient structural members widely used for floor slab construction systems. In many cases, according to practice in some countries, the beams do not present transverse reinforcement, and their shear strength is governing for dimensioning the width of the web. Although experimental investigations have shown that the presence of the compression flange enhances the shear capacity with respect to equivalent rectangular cross sections, most current design codes neglect this phenomenon, which leads to the overdesign of these members. In this paper, the role of the compression flange of slender T-beams with concentrated loads is investigated with reference to its influence on the shape of the critical shear crack and to the associated shear transfer actions (STA) of the beam. The flanges are considered elements that allow the smearing of applied loads over a certain length of the web. This consideration, in combination with the mechanical model of the Critical Shear Crack Theory (CSCT), allows a consistent treatment of the phenomenon and leads to simple design expressions accounting for the role of flanges. The results of the proposed model are compared together with design codes (Model Code 2010, Eurocode 2, and ACI 318-11) and other shear design approaches to a database of 239 beams on T-shaped members. The comparison shows that the role of flanges is finely accounted with the proposal based on the CSCT, leading to consistent agreement and to strength predictions that are more suitable for design purposes than the other investigated design models.
机译:T型梁是公认的经济高效的结构构件,广泛用于楼板施工系统。在许多情况下,根据某些国家/地区的实践,这些梁不提供横向加强,其抗剪强度决定着腹板宽度的尺寸。尽管实验研究表明,压缩凸缘的存在增强了相对于等效矩形横截面的剪切能力,但是大多数当前的设计规范都忽略了这种现象,这导致了这些构件的过度设计。在本文中,研究了细长T梁在集中载荷作用下的压缩翼缘的作用,并考虑了其对临界剪切裂缝的形状以及相关梁的剪切传递作用(STA)的影响。法兰被认为是允许在一定长度的腹板上涂抹施加的载荷的元件。这种考虑与临界剪切裂纹理论(CSCT)的机械模型相结合,可以对现象进行一致的处理,并导致考虑法兰作用的简单设计表达式。所提出模型的结果与设计规范(模型规范2010,欧洲规范2和ACI 318-11)以及其他剪切设计方法进行了比较,以比较T型构件上239个梁的数据库。比较表明,法兰的作用在基于CSCT的建议中得到了很好的解释,从而导致一致的一致性和强度预测比其他研究的设计模型更适合于设计目的。

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