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Experimental investigation on the stress-strain behavior of steel fiber reinforced concrete subjected to uniaxial cyclic compression

机译:钢纤维混凝土单轴循环压缩应力-应变特性试验研究

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The behavior of steel fiber reinforced concrete (SFRC) under cyclic loading plays an important role in prediction of SFRC structural response. This paper deals with the stress-strain behavior and damage evolution of SFRC under uniaxial cyclic compression. A total of 36 specimens are tested for different fiber volume fractions and aspect ratios. Acoustic emission (AE) technique is used to characterize the damage progression and reveal the failure mechanism of SFRC during the whole loading process. The results show that slight strength degradation for SFRC specimens under cyclic loading is observed in comparison with monotonic loading cases. The increase in volume fraction of steel fiber can lead to a remarkable decrease in the plastic strain accumulation as well as an increase in the elastic stiffness ratio, while the effect of fiber aspect ratio is undiscernable. In addition, it is indicated from the AE parameters analysis that the total AE activities of SFRC specimens are higher than that of plain concrete specimen and become greater with an increase in the fiber volume fraction, while the opposite is true for increasing the fiber aspect ratio. Meanwhile, as substantiated by AE, the failure of SFRC mainly demonstrates a shear cracking mode that is induced by fiber pull-out and fiber sliding events, the amount of which is proportional to both fiber volume fraction and aspect ratio. Finally, based on the test results of stiffness degradation, an analytical formulation for the damage evolution law of SFRC is developed and the prediction yields a close estimation of SFRC damage progression. (C) 2017 Elsevier Ltd. All rights reserved.
机译:钢纤维混凝土(SFRC)在循环荷载作用下的行为在预测SFRC结构响应中起着重要作用。本文研究了单轴循环压缩下SFRC的应力应变行为和损伤演化。测试了总共36个样品的不同纤维体积分数和纵横比。声发射(AE)技术用于表征损伤进程并揭示整个加载过程中SFRC的破坏机理。结果表明,与单调加载情况相比,SFRC试件在循环加载下强度略有下降。钢纤维的体积分数的增加可导致塑性应变累积的显着减少以及弹性刚度比的增加,而纤维长径比的影响是不明显的。此外,从AE参数分析中可以看出,SFRC样品的总AE活性高于普通混凝土样品,并且随着纤维体积分数的增加而增加,而对于增加纤维长径比则相反。 。同时,正如AE所证实的那样,SFRC的失效主要表现为由纤维拉出和纤维滑动事件引起的剪切开裂模式,其数量与纤维体积分数和长宽比成正比。最后,基于刚度退化的测试结果,建立了SFRC损伤演化规律的解析公式,该预测对SFRC损伤的进展进行了近似估计。 (C)2017 Elsevier Ltd.保留所有权利。

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