Blast furnace slag properties at different grinding times and its effect on foam concrete properties

Dien Vu Kim, Sofya Ildarovna Bazhenova, Trong-Chuc Nguyen, V. Tang, Minh Chien Do, Van Loi Le, V. D. Nguyen, C. Nguyen, Minh Thuan Hoang
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引用次数: 2

Abstract

The paper presents the blast furnace slag properties at different grinding times by the dry grinding method. The process of fine grinding blast furnace slag is prepared at different times (10 minutes, 20 minutes, 30 minutes, 40 minutes). The results indicated that the main component in BFS is the amorphous structure defined in about 25÷35 degrees (with the appearance of Akermanite at 31.1, Calcite at 29.2 and Aragonite at 26.4). The results also showed that the compressive strength and activity index of blast furnace slag increased significantly after extending the grinding time from 0-40 minutes (corresponding to compressive strength from 51.2 ÷ 7 2.1 MPa at 28 days of age and activity index of blast furnace slag from 91.92% -129.44%). The fine grinding process shows that the particle size of blast furnace slag is significantly reduced. In addition, the paper also presents the effect of finely ground blast furnace slag in 40 minutes on foam concrete properties. Research results show that the use of finely crushed blast furnace slag by the mechanical grinding method to replace sand in foam concrete not only improves the mechanical properties such as compressive strength, flexural strength, the elastic modulus of foam concrete but also protect the environment, reduce product costs.
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不同磨矿时间的高炉矿渣性能及其对泡沫混凝土性能的影响
采用干磨法对高炉矿渣在不同磨次下的性能进行了研究。高炉矿渣细磨工艺是在不同时间(10分钟、20分钟、30分钟、40分钟)制备的。结果表明,BFS的主要成分为无定形结构,定义在25÷35度左右(阿克曼石在31.1度,方解石在29.2度,文石在26.4度)。磨矿时间从0 ~ 40 min延长后,矿渣的抗压强度和活性指数显著提高(28日龄时,矿渣的抗压强度从51.2 MPa降至72.1 MPa,矿渣的活性指数从91.92%降至129.44%)。细磨过程表明,高炉炉渣的粒度明显减小。此外,本文还介绍了40分钟细磨高炉矿渣对泡沫混凝土性能的影响。研究结果表明,用机械研磨法粉碎的高炉矿渣代替泡沫混凝土中的砂石,不仅提高了泡沫混凝土的抗压强度、抗折强度、弹性模量等力学性能,而且保护了环境,降低了产品成本。
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