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Mechanical properties and hydration mechanisms of high-strength fluorogypsum-blast furnace slag-based hydraulic cementitious binder

机译:高强度氟石膏-高炉矿渣基水硬性水泥粘结剂的力学性能和水化机理

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摘要

Microstructure and mechanical properties of new binder with high fluorogypsum amount and low Portland cement amount were investigated. The strengths of mortars with fluorogypsum-blast furnace slag-based hydraulic cementitious binder (FBB) were studied at different hydration ages, showing that their later strengths increased rapidly. In 28 days, their compressive strengths, flexural strengths and softening coefficients were all above 59.0 MPa, 10.0 MPa and 0.90, respectively. Microscopic analysis indicated that their hydration products were mainly ettringite, C-S-H gels, xonotlite, dihydrate gypsum crystals, with wairakite generated after 90 days. The generation of zeolite minerals and packing action of filamentous C-S-H gels further improved the strength and water resistance of the paste. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了高氟石膏用量和低波特兰水泥用量的新型粘结剂的微观结构和力学性能。研究了在不同水化年龄下含氟石膏-高炉矿渣基水硬性水泥粘合剂(FBB)的砂浆强度,表明其后期强度迅速提高。在28天内,它们的抗压强度,抗弯强度和软化系数都分别高于59.0 MPa,10.0 MPa和0.90。显微分析表明,它们的水合产物主要是钙矾石,C-S-H凝胶,硬硅钙石,二水合石膏晶体,在90天后产生了伟拉克岩。沸石矿物的产生和丝状C-S-H凝胶的堆积作用进一步提高了糊料的强度和耐水性。 (C)2016 Elsevier Ltd.保留所有权利。

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