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首页> 外文期刊>KSCE journal of civil engineering >Tensile Cracking Constitutive Model of Steel Fiber Reinforced Concrete (SFRC)
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Tensile Cracking Constitutive Model of Steel Fiber Reinforced Concrete (SFRC)

机译:钢纤维混凝土的拉伸断裂本构模型

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摘要

This paper deals with the tensile cracking constitutive relationship of Steel Fiber Reinforced Concrete (SFRC) considering the effects of steel fiber content and fiber length. To investigate the effect of fiber content and length, notched 3-point bending tests were executed, where the fiber content was varied from 0.87% to 2.61%. From the bending tests, it was found that the flexural tensile strength of SFRC linearly increases with increasing fiber content and the rule of mixture can be applied to SFRC. Additionally, an inverse analysis was performed to determine the tensile cracking constitutive model of SFRC and a tri-linear tensile softening model is also suggested. The suggested model successfully represents the increase of the stress-constant bridging zone and the decrease of the stress-resisting zone with increasing fiber content. The proposed constitutive models including both long and short fibers for various fiber contents are simple and can be effectively applied to the numerical analysis of SFRC, which can consider steel fiber effects.
机译:考虑钢纤维含量和纤维长度的影响,本文研究了钢纤维混凝土(SFRC)的拉伸断裂本构关系。为了研究纤维含量和长度的影响,进行了缺口三点弯曲试验,其中纤维含量从0.87%到2.61%不等。从弯曲试验发现,SFRC的弯曲抗拉强度随着纤维含量的增加而线性增加,并且可以将混合规则应用于SFRC。另外,进行了反分析以确定SFRC的拉伸裂纹本构模型,并提出了三线性拉伸软化模型。所提出的模型成功地代表了随着纤维含量的增加,应力恒定桥接区的增加和应力抵抗区的减少。所提出的本构模型包括各种纤维含量的长纤维和短纤维,很简单,可以有效地应用于考虑钢纤维效应的SFRC数值分析中。

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