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Database of Shear Experiments on Steel Fiber Reinforced Concrete Beams without Stirrups

机译:无箍筋的钢纤维混凝土梁剪力试验数据库

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摘要

Adding steel fibers to concrete improves the capacity in tension-driven failure modes. An example is the shear capacity in steel fiber reinforced concrete (SFRC) beams with longitudinal reinforcement and without shear reinforcement. Since no mechanical models exist that can fully describe the behavior of SFRC beams without shear reinforcement failing in shear, a number of empirical equations have been suggested in the past. This paper compiles the existing empirical equations and code provisions for the prediction of the shear capacity of SFRC beams failing in shear as well as a database of 488 experiments reported in the literature. The experimental shear capacities from the database are then compared to the prediction equations. This comparison shows a large scatter on the ratio of experimental to predicted values. The practice of defining the tensile strength of SFRC based on different experiments internationally makes the comparison difficult. For design purposes, the code prediction methods based on the Eurocode shear expression provide reasonable results (with coefficients of variation on the ratio tested/predicted shear capacities of 27–29%). None of the currently available methods properly describe the behavior of SFRC beams failing in shear. As such, this work shows the need for studies that address the different shear-carrying mechanisms in SFRC and its crack kinematics.
机译:在混凝土中添加钢纤维可提高张力驱动破坏模式下的承载能力。一个例子是具有纵向增强和不具有剪切增强的钢纤维增强混凝土(SFRC)梁的抗剪承载力。由于没有机械模型可以完全描述SFRC梁的性能,而没有在剪切作用下出现剪切补强失效,因此过去提出了许多经验公式。本文汇编了现有的经验公式和代码规定,以预测SFRC梁在剪切作用下的抗剪承载力,并建立了一个文献报道的488个试验的数据库。然后将数据库中的实验剪切能力与预测方程进行比较。这种比较显示出实验值与预测值之比的较大分散。在国际上根据不同的实验来定义SFRC的拉伸强度的做法使比较变得困难。出于设计目的,基于Eurocode剪切表达式的代码预测方法提供了合理的结果(测试/预测的剪切容量比的变异系数为27-29%)。当前没有可用的方法正确描述SFRC梁在剪切作用下的破坏行为。因此,这项工作表明需要进行研究以解决SFRC中不同的剪切承载机制及其裂纹运动学问题。

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