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Shear Behavior Models of Steel Fiber Reinforced Concrete Beams Modifying Softened Truss Model Approaches

机译:修正软化桁架模型方法的钢纤维混凝土梁抗剪性能模型

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摘要

Recognizing that steel fibers can supplement the brittle tensile characteristics of concrete, many studies have been conducted on the shear performance of steel fiber reinforced concrete (SFRC) members. However, previous studies were mostly focused on the shear strength and proposed empirical shear strength equations based on their experimental results. Thus, this study attempts to estimate the strains and stresses in steel fibers by considering the detailed characteristics of steel fibers in SFRC members, from which more accurate estimation on the shear behavior and strength of SFRC members is possible, and the failure mode of steel fibers can be also identified. Four shear behavior models for SFRC members have been proposed, which have been modified from the softened truss models for reinforced concrete members, and they can estimate the contribution of steel fibers to the total shear strength of the SFRC member. The performances of all the models proposed in this study were also evaluated by a large number of test results. The contribution of steel fibers to the shear strength varied from 5% to 50% according to their amount, and the most optimized volume fraction of steel fibers was estimated as 1%–1.5%, in terms of shear performance.
机译:认识到钢纤维可以补充混凝土的脆性拉伸特性,因此对钢纤维增强混凝土(SFRC)构件的剪切性能进行了许多研究。但是,以前的研究主要集中在抗剪强度上,并根据其实验结果提出了经验抗剪强度方程。因此,本研究试图通过考虑SFRC构件中钢纤维的详细特性来估算钢纤维中的应变和应力,从而可以更准确地估算SFRC构件的剪切行为和强度以及钢纤维的破坏模式。也可以确定。提出了四个SFRC构件的剪切行为模型,这些模型已从钢筋混凝土构件的软化桁架模型中进行了修改,它们可以估计钢纤维对SFRC构件的总剪切强度的贡献。这项研究中提出的所有模型的性能也通过大量测试结果进行了评估。钢纤维对剪切强度的贡献根据其含量从5%到50%不等,就剪切性能而言,最优化的钢纤维体积分数估计为1%-1.5%。

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