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Shear strength of deep beams: a mathematical model and design formula

机译:深梁的抗剪强度:数学模型和设计公式

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This paper presents a proposal for estimating the shear capacity of reinforced concrete deep beams. The proposed model is based on the fixed-angle softened truss model and utilizes a newly proposed formula for the effective transverse compressive stress acting on the beam web. The proposed formula is developed using a stepwise multiple linear regression analysis of the reported shear capacity values of 445 experimental deep beams. The validity of the mathematical model is examined by comparing its response with the experimental results as well as the predictions of other formulas available in the literature, and it results in the one best fitting the measured shear strengths. The mathematical model leads to an explicit single closed-form expression for computing the shear strength of deep beams. The proposed expression is dimensionless and contains four variables that express the horizontal and vertical reinforcement ratios, the concrete strength and the shear span-to-depth ratio. On the basis of the results of this paper, a design formula is proposed with predictions that are more consistent and also more reliable than those of the ACI Code and the Eurocode.
机译:本文提出了一种估计钢筋混凝土深梁抗剪承载力的方案。所提出的模型基于固定角度软化桁架模型,并利用新提出的公式来计算作用在梁腹板上的有效横向压缩应力。拟议的公式是通过对445个实验深梁的报告抗剪承载力值进行逐步多元线性回归分析得出的。通过将数学模型的响应与实验结果以及文献中提供的其他公式的预测进行比较,可以检验数学模型的有效性,从而得出最适合所测剪切强度的模型。该数学模型导致了用于计算深梁抗剪强度的显式单一闭合形式表达式。拟议的表达式是无量纲的,包含四个变量,分别表示水平和垂直钢筋比率,混凝土强度和剪切跨度-深度比率。根据本文的结果,提出了一种设计公式,其预测比ACI规范和Eurocode的预测更一致也更可靠。

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