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Utilization of ladle furnace slag as cement partial replacement: Influences on the hydration and hardening properties of cement

机译:用利用钢包炉渣作为水泥部分替代:对水泥水合和硬化性能的影响

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摘要

Ladle furnace slag (LFS) is a potential new resource for the preparation of cementitious materials with early hydration activities. To evaluate the application performance of LFS as a supplementary cementitious material, the effects of LFS on the hydration and hardening performance of cement were studied from the aspects of the hydration process, the physical and mechanical properties, the microstructure of the hardened paste, and the volume stability. The results showed that LFS has a significant setting acceleration effect and micro-expansion effect on cement. The blended cement containing LFS and ordinary Portland cement (LFS-OPC) had a better hydration product structure, mechanical strength, and volume stability at a low dosage (= 10%) of LFS. LFS with a high content (10%-30%) had a significant acceleration setting effect on the cement system, and the C(3)AH(6) and AFm contents were high in the ultra-early stage (1 d), which were the main source of the ultra-early mechanical strength of the cement system. However, the strength and volume stability of the LFS-OPC with a high content of LFS were poor in the middle and late stages. It was also found that the hydration process of the LFS-OPC system could be divided into two distinct stages: the early hydration of aluminate minerals, such as C(12)A(7) and C(3)A, and the later hydration of silicate minerals, such as C3S. With the increase in the LFS content, the hydration heat release rate of first stage of the blended cement increased significantly, indicating that LFS has the hydration characteristics of aluminate minerals. As a supplementary cementitious material, LFS has an excellent early hydration reaction activity.
机译:Ladle Furnace Slag(LFS)是一种潜在的新资源,用于制备具有早期水合活性的水泥材料。为了评估LFS作为补充水泥材料的应用性能,从水合过程的各个方面,物理和机械性能,硬化浆料的微观结构研究了LFS对水泥的水合和硬化性能的影响,以及硬化浆料的微观结构。体积稳定性。结果表明,LFS对水泥具有显着的设定加速度和微膨胀效果。含有LFS和普通波特兰水泥(LFS-OPC)的混合水泥具有更好的水合产物结构,机械强度和低剂量(& = 10%)的LFS的体积稳定性。具有高含量的LFS(10%-30%)对水泥系统具有显着的加速设定效果,C(3)αH(6)和AFM内容在超早期阶段(1 d)高,是水泥系统超早期机械强度的主要来源。然而,中间和晚期LFS含量高的LFS-OPC的强度和体积稳定性差。还发现,LFS-OPC系统的水合过程可分为两个不同的阶段:铝酸盐矿物的早期水合,例如C(12)A(7)和C(3)A,以及后续水合硅酸盐矿物质,如C3s。随着LFS含量的增加,混合水泥的第一阶段的水合热释放速率显着增加,表明LFS具有铝酸盐矿物的水化特性。作为补充水泥材料,LFS具有优异的早期水合反应活性。

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