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Mechanical properties of alkali-activated slag concrete mixed by seawater and sea sand

机译:海水和海砂混合碱渣混凝土的力学性能

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The utilization of slag as an alternative to Portland cement in producing alkali-activated slag concrete (ASC) contributes to environmental protection. Replacement of freshwater and river sand by seawater and sea sand in concrete production is meaningful to island construction. Thus, the intention of this paper is to analyze the mechanical properties of ASC mixed by seawater and sea sand. Four types of ASC are prepared by considering the effects of seawater, sea sand and combination of the two constituents, respectively. Based on the SEM (scanning electron microscope) and XRD (X-ray diffraction) analysis, the seawater and sea sand are found to have some effect on the morphology and hydration products of the ASC. Therefore, the strengths of the four ASC are close to each other. The ASC with seawater or sea sand has slightly higher drying shrinkage but better resistance to chloride ion permeability. Moreover, bond performance of FRP (fiber-reinforced polymer) and steel bars to ASC is studied using pull-out tests. The short-term bond strength, interfacial shear rigidity and shear fracture energy of steel bars with ASC are apparently higher than those of FRP bars with ASC. But the ratios of the residual frictional stress to the bond strength are larger for the FRP bars. The bond strength and residual frictional stress in the ASC with sea water or sea sand are slightly higher and the largest shear fracture energy is observed in the ASC with the combination of sea water and sea sand. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在生产碱活化矿渣混凝土(ASC)中,利用矿渣替代波特兰水泥的做法有助于环境保护。在混凝土生产中用海水和海砂代替淡水和河砂对岛屿建设具有重要意义。因此,本文旨在分析海水和海砂混合的ASC的力学性能。通过分别考虑海水,海沙和两种成分的组合来制备四种ASC。基于SEM(扫描电子显微镜)和XRD(X射线衍射)分析,发现海水和海沙对ASC的形态和水合产物有一定影响。因此,四个ASC的优势彼此接近。带有海水或海沙的ASC具有稍高的干燥收缩率,但具有更好的抗氯离子渗透性。此外,使用拉拔试验研究了FRP(纤维增强聚合物)和钢筋与ASC的粘结性能。带ASC的钢筋的短期粘结强度,界面剪切刚度和剪切断裂能明显高于带ASC的FRP钢筋。但是,对于FRP筋,残余摩擦应力与粘结强度的比值更大。 ASC与海水或海砂的结合强度和残余摩擦应力略高,并且在海水和海砂结合的ASC中观察到最大的剪切断裂能。 (C)2018 Elsevier Ltd.保留所有权利。

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