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首页> 外文期刊>Journal of structural engineering >Shear Strength Analysis and Prediction for Reinforced Concrete Beams without Stirrups
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Shear Strength Analysis and Prediction for Reinforced Concrete Beams without Stirrups

机译:无箍筋的钢筋混凝土梁的抗剪强度分析与预测

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摘要

The analysis of shear strength of longitudinally reinforced concrete beams, in which a constant shear force acts throughout the shear span, is performed. The shear mechanism is found to be governed by a second order differential equation linking the internal lever arm with the distance from the support. The solution of the shear governing equation is provided, and then the corresponding shear expression is parametrically defined by means of a mechanical analysis. The empirical parameters are determined from more than 900 test data and results found in the literature. The proposed shear strength formula predicts the experimental behavior in a more accurate and uniform way than most known expressions. It is also proposed a design formula, which is more consistent and reliable than the Eurocode one and even than the laborious procedures suggested by ACI Code and AASHTO Standards, since it exhibits a minor number of unsafe predictions.
机译:进行了纵向钢筋混凝土梁的抗剪强度分析,其中在整个剪力跨度中均作用有恒定的剪力。发现剪切机制由将内部杠杆臂与支撑件的距离联系起来的二阶微分方程控制。提供剪切控制方程的解,然后通过力学分析在参数上定义相应的剪切表达式。根据900多个测试数据和文献中的结果确定经验参数。所提出的抗剪强度公式比大多数已知表达式更准确,更统一地预测了实验行为。还提出了一种设计公式,该设计公式比欧洲规范甚至是ACI规范和AASHTO标准所建议的繁琐程序更加一致和可靠,因为它显示了少数不安全的预测。

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