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Influence of ground granulated blast furnace slag on early-age cracking potential of internally cured high performance concrete

机译:磨细的高炉矿渣对内部固化高性能混凝土早期开裂的影响

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High performance concrete (HPC) with low water-to-binder (w/b) ratio has been used widely in the actual project. However, high autogenous shrinkage induced by the low w/b ratio would cause the residual tensile stress in HPC when the shrinkage is restrained. The cracking may occur in HPC if the residual tensile stress exceeds the developing tensile strength. Ground granulated blast furnace slag (GGBFS) has been used widely in the mixture of HPC as a kind of mineral admixture. The influence of GGBFS on the cracking potential of concrete has been studied. However, investigations on the influence of GGBFS on the early-age cracking potential of internally cured high performance concrete (ICC) with super absorbent polymers (SAPs) as an internal curing (IC) agent by using the ring test are still lacking. Investigations on the early-age cracking potential of ICC with different GGBFS contents (0%, 20%, 35%, and 50%) by using the ring test were conducted in the present study. Results and corresponding analysis showed that: (1) the free shrinkage strain, residual tensile stress, stress relaxation, cracking potential parameter, and stress rate of ICC with SAPs decreased with the increase of GGBFS content; (2) the early-age cracking potential of ICC with SAPs based on the cracking potential parameter and stress rate decreased with the increase of GGBFS content. The results in the present study could be used to evaluate the influence of GGBFS on the early-age cracking potential of ICC with SAPs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:低水灰比(w / b)的高性能混凝土(HPC)已在实际项目中广泛使用。然而,当收缩率受到抑制时,低w / b比引起的高自发收缩率将在HPC中引起残余拉伸应力。如果残余拉伸应力超过显影拉伸强度,则在HPC中可能会出现裂纹。磨碎的高炉矿渣(GGBFS)已作为HPC的一种矿物混合物广泛用于HPC的混合物中。研究了GGBFS对混凝土开裂潜力的影响。但是,仍缺乏通过环试验研究GGBFS对以高吸收性聚合物(SAPs)作为内部固化(IC)剂的内部固化高性能混凝土(ICC)早期开裂潜力的影响的方法。本研究通过环试验研究了不同GGBFS含量(0%,20%,35%和50%)的ICC的早期开裂潜力。结果和相应的分析表明:(1)随着GGBFS含量的增加,带有SAPs的ICC的自由收缩应变,残余拉伸应力,应力松弛,开裂势参数和应力速率降低; (2)随着GGBFS含量的增加,基于裂化势参数和应力率的含SAP的ICC的早期裂化势降低。本研究的结果可用于评估GGBFS对带有SAP的ICC早期裂解潜力的影响。 (C)2019 Elsevier Ltd.保留所有权利。

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