含钛高炉渣对贝利特水泥结构与水化特性的影响研究
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郑州工程技术学院 土木工程学院, 河南 郑州 450000

作者简介:

张欢欢(1990—),女,河南开封人,硕士,讲师,主要从事混凝土材料及建筑结构抗震方面的研究。

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中图分类号:

TF5;X757

基金项目:

“十三五”国家重点研发计划( 2018YTC1996488);河南省科技攻关计划项目(2020YBC08396)


Research on the influence of titanium containing blast furnace slag on the structure and hydration characteristics of belite cement
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Department of Civil Engineering, Zhengzhou University of Engineering and Technology, Zhengzhou 450000 ,China

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    摘要:

    有研究表明TiO2在水泥熟料烧制过程中可降低液相黏度并稳定β-C2S相。当前,我国存有大量富含TiO2及水泥材料成分的含钛高炉渣,本文以含钛高炉渣和水泥生料为原料,制备了具有优良干缩和抗化学侵蚀性能的贝利特水泥熟料(其主要成分为β-C2S,含少量C3S),并探讨了含钛高炉渣添加量对熟料相组成、显微结构与水化特性的影响规律,深入研究了Ti4+在熟料中的分布规律,得到以下主要结论:高炉渣的掺入有利于提高熟料的水化活性,增加抗压强度,空白水泥胶砂试样养护3d、7d、28d、90d的抗压强度分别为20.3MPa、27.2MPa、42.3MPa、53.8MPa,掺入4%高炉渣,抗压强度分别升至34.6MPa、40.5MPa、57.6MPa、68.3MPa;高炉渣提高熟料水化活性的机理为渣中的TiO2与MgO可以减少和破坏富硅液相的硅氧网络结构,从而减低液相的黏度;结构性差异因子D与半径差异百分比C值计算结果说明,相比熟料中的其他离子,Ti4+倾向取代Fe3+固溶于贝利特熟料物相,以C4AF为代表的中间相;Ti4+的固溶不仅可使得熟料中物相晶格发生畸变,水化活性得到提高,还能抑制β-C2S转变为无水化活性的γ-C2S,促进f-CaO与β-C2S反应生成C3S。该研究为含钛高炉渣的高效清洁利用提供了理论研究基础。

    Abstract:

    Some studies suggest that TiO2 can reduce the viscosity of the liquid phase and stabilize the β-C2S phase during the calcination of cement clinker. Currently, there is a large amount of titanium-containing blast furnace slag stockpiled in China, which contains a significant amount of TiO2 and cement raw material components. In this study, titanium-containing blast furnace slag and cement raw materials were taken as raw materials to preparebelite cement clinker with excellent dry shrinkage and chemical resistance properties, which was composed of largeamount β-C2S and a small amount of C3S. The study investigated the influence of titanium-containing blast furnace slag addition on the phase composition, microstructure, and hydration characteristics of the clinker, and conducted an in-depth study on the distribution pattern of Ti4+ in the clinker, leading to the following main conclusions. The addition of blast furnace slag enhanced the hydration activity of the clinker and increased compressive strength. The compressive strengths of blank cement mortar specimens cured for 3 days, 7 days, 28 days, and 90 days were 20.3MPa, 27.2MPa, 42.3MPa, and 53.8MPa, respectively. When 4% blast furnace slag was added, the compressive strengths increased to 34.6MPa, 40.5MPa, 57.6MPa, and 68.3MPa, respectively. The mechanism by which blast furnace slag enhanced the hydration activity of clinker was that the TiO2 and MgO in the slag reduce and disrupt the silicon-oxygen network structure of the silica-rich liquid phase, thereby lowering the viscosity of the liquid phase. The results of the structural difference factor D and radius difference percentage C calculations indicated that, compared to other ions in the clinker, Ti4+ tends to replace Fe3+ and dissolve into the belite clinker phase, such as the intermediate phase C4AF. The solid solution of Ti4+ not only causes lattice distortion in the clinker phases, thereby enhancing hydration activity, but also inhibits the transformation of β-C2S into γ-C2S with no hydration activity, promoting the reaction between f-CaO and β-C2S to form C3S. This study provides a theoretical foundation for the efficient and clean utilization of titanium-containing blast furnace slag.

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张欢欢. 含钛高炉渣对贝利特水泥结构与水化特性的影响研究[J].中国有色冶金,2025,54(3):161-168.

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  • 收稿日期:2024-12-28
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  • 在线发布日期: 2025-12-18
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