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Blended cement containing high volume ground dune sand and ground granulated blast furnace slag for autoclave concrete industry

机译:混合水泥含有大容量地面沙丘砂和地面颗粒高炉炉渣,用于高压釜混凝土行业

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This paper presents the results of using ground dune sand (GDS) and ground granulated blast furnace slag (slag) as high volume cement replacement materials. In this study, plain and four blended mixtures were fabricated and cured under normal and autoclave conditions. For the blended mixtures, 40% GDS by weight of the total binder materials and different percentages of slag (15%, 30% and 45%) were incorporated as partial cement replacement materials. The effect of curing conditions (normal and autoclave) on the compressive strength of prepared mixtures was studied. The results showed that, for the autoclave cured mixture, up to 85% of cement can be replaced by GDS and slag without significant drop in the compressive strength. Microstructure analyses using scanning electron microscope (SEM) and X-ray diffraction analysis (XRD) were carried out to examine the microscale changes of the hydrated mixtures. The SEM revealed the formation of thin plate-like calcium silicate hydrate and compacted microstructure of autoclave cured mixture. XRD showed the elimination of calcium hydroxide and existence of residual crystalline silica of all blended mixtures.
机译:本文介绍了使用地面沙丘砂(GDS)和地面粒状高炉炉渣(渣)作为大容量水泥更换材料的结果。在本研究中,在正常和高压釜条件下制造普通和四种混合混合物并固化。对于混合的混合物,通过总粘合剂材料的40%GDS重量和不同百分比的渣(15%,30%和45%)作为部分水泥置换材料。研究了固化条件(正常和高压釜)对制备混合物的抗压强度的影响。结果表明,对于高压釜固化的混合物,可通过Gds和炉渣代替高达85%的水泥,而不会在抗压强度下降。进行使用扫描电子显微镜(SEM)和X射线衍射分析(XRD)的微观结构分析,以检查水合混合物的微观变化。 SEM揭示了薄板状硅酸钙水合物的形成和高压釜固化混合物的压实微观结构。 XRD显示消除氢氧化钙和所有混合混合物的残留晶体二氧化硅的存在。

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