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Postcracking tensile behavior of blended steel fiber-reinforced concrete

机译:混纺钢纤维钢筋混凝土的后拉伸行为

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Fiber blends have the potential to improve the mechanical and sustainability credentials of steel fiber-reinforced concrete (SFRC), but at which ratios these can work is not known a priori. This paper investigates the uniaxial tensile stress-strain (sigma-epsilon) relationship of blended SFRC using manufactured steel fibers on their own, or blended with sorted steel fibers recycled from end-of-life tires (recycled tire steel fiber [RTSF]), at total fiber dosages of 30, 35, and 45kg/m(3). The accuracy of two sigma-epsilon relations proposed by RILEM TC 162-TDF and Model Code 2010 is assessed using the experimental results from concrete prisms. By using nonlinear finite element (FE) analysis, it is found that the RILEM approach can lead to significant overestimation (up to 72%) of peak flexural load and energy absorption capacity (up to 39%), while the Model Code 2010 can provide a rather accurate prediction of the energy absorption capacity and some overestimation (less than 34%) of the peak flexural load. Inverse FE analysis is used to determine indirectly the uniaxial tensile sigma-epsilon relations of the examined SFRC mixes, and a simplified trilinear relation for SFRC is proposed. It is concluded that the tensile strength of SFRC with RTSF at a low total fiber dosage is only marginally improved by fiber addition, and the postcracking tensile strengths at different strains can be determined directly from residual flexural tensile strengths (f(Ri)) of prisms.
机译:纤维混合物有可能改善钢纤维钢筋混凝土(SFRC)的机械和可持续性凭证,但在哪些比率上工作尚未认识。本文研究了混合SFRC的单轴拉伸应力 - 菌株(SIGMA-EPSILON)与使用制造钢纤维的混合SFRC的关系,或者与从寿命终端 - 寿衣端(再生轮胎钢纤维[RTSF])混合的分选钢纤维混合,在总纤维剂量为30,35和45kg / m(3)。利用混凝土棱镜的实验结果评估由Rilem TC 162-TDF和模型代码2010提出的两个Sigma-epsilon关系的准确性。通过使用非线性有限元(FE)分析,发现黎勒姆方法可能导致峰值弯曲负荷和能量吸收能力的显着高估(高达72%)(高达39%),而模型代码2010则可以提供一种相当准确的能量吸收能力预测和峰值弯曲载荷的一些高度估计(小于34%)。反向Fe分析用于间接确定检查的SFRC混合物的单轴拉伸σ-ε-ε-ε-ε-提出了一种简化的SFRC的三线性关系。得出结论,通过纤维添加仅在低总纤维剂量下具有RTSF的SFRC的拉伸强度,并且可以直接从棱镜的残余弯曲拉伸强度(F(RI))直接测定不同菌株处的突出抗拉伸强度。

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