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Fracture properties of slag/fly ash-based geopolymer concrete cured in ambient temperature

机译:常温固化的矿渣/粉煤灰基高分子聚合物的断裂性能

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Slag/fly ash (FA)-based geopolymer cured in ambient temperature as a green alternative to Portland cement is attracting increasing attentions. The fracture properties of slag/FA-based geopolymer concrete (SFGC) was studied by conducting three-point bending (TPB) tests on precut beams. The effects of material parameters including the alkali concentration, the modulus of alkali activator, the slag/FA mass ratio and the liquid/binder ratio on the fracture properties of SFGC were assessed. The results exhibit that the fracture behaviors of SFGC are influenced significantly by the material parameters. The fracture energy and the ultimate load of TPB tests of SFGC beams increase with the increase of the alkali concentration, the modulus of alkali activator as well as the slag/FA ratio while decrease with the increase of liquid/binder ratio. The Baiant and Becq-Giraduon model predicts well whereas the CEB-FIP model underestimates the fracture energy of SFGC beams. Besides, the characteristic length of SFGC decreases with the increase of compressive strength regardless of the mix proportion, and is higher than the prediction for Portland cement concrete (PCC) given the similar compressive strength, suggesting that SFGC might be more ductile. In addition, the relationships between compressive strength, splitting tensile strength, elastic modulus and material parameters of SFGC specimens are also discussed. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在室温下固化的基于矿渣/粉煤灰(FA)的地质聚合物作为硅酸盐水泥的绿色替代品正引起越来越多的关注。通过对预剪梁进行三点弯曲(TPB)试验研究了矿渣/ FA基地质聚合物混凝土(SFGC)的断裂性能。评估了包括碱浓度,碱活化剂的模量,炉渣/ FA质量比和液/粘结剂比在内的材料参数对SFGC断裂性能的影响。结果表明,SFGC的断裂行为受到材料参数的显着影响。 SFGC梁的断裂能和TPB试验的极限载荷随着碱浓度,碱活化剂模量以及炉渣/ FA比的增加而增加,而随着液/粘合剂比的增加而降低。 Baiant和Becq-Giraduon模型的预测效果很好,而CEB-FIP模型则低估了SFGC梁的断裂能。此外,SFGC的特征长度随抗压强度的增加而减小,而与混合比无关,并且在具有相同抗压强度的情况下高于对波特兰水泥混凝土(PCC)的预测,这表明SFGC可能更具延性。此外,还讨论了SFGC试样的抗压强度,抗拉强度,弹性模量和材料参数之间的关系。 (C)2018 Elsevier Ltd.保留所有权利。

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