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金属矿山 ›› 2026, Vol. 55 ›› Issue (6): 290-295.

• 矿物材料 • 上一篇    下一篇

模拟海水拌合增强超硫酸盐水泥性能及其作用机理

刘志刚1,2,3 李帅康3 王春梅1,2,3 李 冠3 杨立荣1,2,3   

  1. 1.河北省无机非金属材料重点实验室,河北 唐山 063210;2.河北省工业固废综合利用技术创新中心,河北 唐山 063210; 3.华北理工大学材料科学与工程学院,河北 唐山 063210
  • 出版日期:2026-07-15 发布日期:2026-07-21
  • 通讯作者: 王春梅(1973—),女,副教授,博士,硕士研究生导师。
  • 作者简介:刘志刚(1974—),男,教授,博士,硕士研究生导师。
  • 基金资助:
    燕赵钢铁实验室区域创新能力提升项目(编号:YZISL2024008);唐山市科技局项目(编号:23130208E)。

Enhancing the Performance of Super Sulfate Cement by Simulated Seawater Mixing and Its Action Mechanism

LIU Zhigang1,2,3 LI Shuaikang3 WANG Chunmei1,2,3 LI Guan3 YANG Lirong1,2,3   

  1. 1.Key Laboratory of Inorganic Non-metallic Materials of Hebei Province,Tangshan 063210,China; 2.Hebei Provincial Industrial Solid Waste Comprehensive Utilization Technology Innovation Center,Tangshan 063210,China; 3.College of Materials Science and Engineering,North China University of Science and Technology,Tangshan 063210,China
  • Online:2026-07-15 Published:2026-07-21

摘要: 为开发适用于海洋工程的低碳胶凝材料,研究了模拟海水拌合对超硫酸盐水泥(SSC)性能及水化过程 的影响。通过测试凝结时间、抗压强度,并结合X射线衍射、压汞法、综合热分析、水化热等方法,系统分析了模拟海 水拌合下SSC的微观结构演变与水化硬化机理。结果表明:模拟海水使SSC的初凝和终凝时间分别缩短20 min和25 min,其1 d、3 d和28 d抗压强度分别提升15.8%、4.5%和4.0%。性能提升主要归因于模拟海水(尤其是其中的 NaCl)促进了矿渣的溶解与水化,改变了水化产物的组成与分布。早期生成的Friedel′s盐与C-(A)-S-H凝胶共同填 充于钙矾石(AFt)晶体间隙,细化了硬化浆体的孔径,并显著降低了大于20 nm的有害毛细孔孔隙率。本研究为海水 拌合SSC在海洋工程中的应用提供了理论依据。

关键词: 海水拌合 , 超硫酸盐水泥 , 抗压强度 , 水化产物 , 微观结构 , 水化机理

Abstract: To develop low-carbon cementitious materials suitable for marine engineering,this study investigated the effects of simulated seawater mixing on the properties and hydration process of supersulfated cement (SSC).The setting time and compressive strength were tested,and the microstructural evolution and hydration-hardening mechanisms of SSC mixed with simulated seawater were systematically analyzed using X-ray diffraction,mercury intrusion porosimetry,thermogravimetric anal ysis,hydration heat measurement,and other methods.The results indicated that simulated seawater shortened the initial and fi nal setting times of SSC by 20 min and 25 min,respectively,and increased the compressive strength at 1 d,3 d,and 28 d by 15.8%,4.5%,and 4.0%,respectively.The performance improvement is mainly attributed to the simulated seawater (particu larly NaCl therein) promoting the dissolution and hydration of slag,thereby altering the composition and distribution of hydra tion products.The early-formed Friedel′s salt and C-(A)-S-H gel jointly filled the gaps between ettringite (AFt) crystals,re fined the pore size of the hardened paste,and significantly reduced the porosity of harmful capillary pores larger than 20 nm. This study provides a theoretical basis for the application of seawater-mixed SSC in marine engineering.

Key words: mixing with seawater,supersulfated cement,compressive strength,hydration products,microstructure,hydra tion mechanism

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