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Shear capacity of reinforced concrete corbels using mechanism analysis

机译:钢筋混凝土牛腿梁的抗剪承载力机理分析

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摘要

A mechanism analysis is developed to predict the shear capacity of reinforced concrete corbels. Based on shear failure observed in experimental tests, kinematically admissible failure mechanisms are idealised as an assemblage of two rigid blocks separated by a failure plane of displacement discontinuity. Shear capacity predictions obtained from the developed mechanism analysis are in better agreement with corbel test results of a comprehensive database compiled from the available literature than other existing models for corbels. The developed mechanism model shows that the shear capacity of corbels generally decreases with the increase of shear span-to-depth ratio, increases with the increase of main longitudinal reinforcement up to a certain limit beyond which it remains constant, and decreases with the increase of horizontal applied loads. It also demonstrates that the smaller the shear span-to-overall depth ratio of corbels, the more effective the horizontal shear reinforcement.
机译:进行了机理分析以预测钢筋混凝土牛腿的剪切能力。根据在实验测试中观察到的剪切破坏,运动学上可接受的破坏机制被理想化为由位移不连续性破坏平面分开的两个刚性块的组合。与其他现有的牛腿模型相比,从发达的机理分析中获得的剪切能力预测与根据现有文献汇编的综合数据库的牛腿试验结果更好地吻合。发达的力学模型表明,牛腿梁的抗剪承载力一般随剪跨深度比的增加而减小,随主纵向钢筋的增大而增大,直至达到一定极限,并保持恒定;而随抗剪强度的增加而减小。水平施加的载荷。它还表明,牛腿梁的剪力跨度与总深度之比越小,水平剪力增强效果越好。

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