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硅酸盐通报 ›› 2021, Vol. 40 ›› Issue (12): 3910-3917.

• 水泥混凝土 • 上一篇    下一篇

硫硅酸钙-硫铝酸钙水泥熟料矿物组成的优化研究

沈燕1,2, 王培芳2, 朱航宇2   

  1. 1.重庆电子工程职业学院建筑与材料学院,重庆 401331;
    2.扬州大学建筑科学与工程学院,扬州 225127
  • 出版日期:2021-12-15 发布日期:2022-01-07
  • 作者简介:沈燕(1987—),女,博士,讲师。主要从事水泥混凝土研究。E-mail:shenyan.q@163.com
  • 基金资助:
    国家自然科学青年科学基金(51802279)

Optimization Study on Mineral Composition of Ternesite-Ye’elimite Cement Clinker

SHEN Yan1,2, WANG Peifang2, ZHU Hangyu2   

  1. 1. College of Building and Materials, Chongqing College of Electronic Engineering, Chongqing 401331, China;
    2. College of Civil Science and Engineering, Yangzhou University, Yangzhou 225127, China
  • Online:2021-12-15 Published:2022-01-07

摘要: 硫硅酸钙-硫铝酸钙水泥是一种新型低碳水泥,硫硅酸钙矿物的水化活性对水泥性能具有积极作用。本文利用离子掺杂制备了硫硅酸钙-硫铝酸钙水泥,研究了硫硅酸钙、硫铝酸钙矿物以及后掺石膏的配比优化。结果表明,硫硅酸钙-硫铝酸钙水泥熟料的实际矿物组成与设计含量较为一致。硫铝酸钙含量的增加有利于提高水泥的早期强度,其适宜含量范围为30%~40%(质量分数);水泥的强度随着硫硅酸钙含量的增加而提高,当其设计含量增加至48%(质量分数)时,水泥强度降低,该矿物的适宜含量范围为40%~55%(质量分数),其优化含量根据硫铝酸钙的含量而有所不同。石膏的添加有利于硫硅酸钙-硫铝酸钙水泥强度的增长,与天然石膏相比,硬石膏更能促进水泥强度的发展;水泥的后掺石膏优选硬石膏,其优化掺量为8%(质量分数),28 d强度达到76 MPa。硬石膏掺量的增加促进了钙矾石的形成,但过高掺量的硬石膏会抑制硫硅酸钙的水化。

关键词: 硫硅酸钙-硫铝酸钙水泥, 低碳水泥, 矿物优化, 后掺石膏, 抗压强度

Abstract: Ternesite-ye’elimite cement is a new type of low-carbon cement. The hydration reactivity of ternesite has a positive effect on the performance of cement. In this work, ternesite-ye’elimite cement was produced by adding dopants. The optimization of ternesite, ye’elimite and gypsum contents was studied. The results indicate that the phase composition of clinkers is consistent with the designed value. The increase of ye’elimite content improves the early strength of cement pastes, and the appropriate content of ye’elimite is 30% to 40% (mass fraction). With the increase of ternesite content, the compressive strength increases. However, when the theoretical content of ternesite reaches 48% (mass fraction), the compressive strength of cement pastes decreases. The appropriate content of ternesite is 40% to 55% (mass fraction), and the optimized content of ternesite varies according to the content of ye’elimite. The addition of gypsum is beneficial for the strength development of cement pastes. Compared with natural gypsum, anhydrite can better promote the strength development. Therefore, anhydrite is preferentially selected as the added gypsum. The optimized content of anhydrite is 8% (mass fraction), and the cement obtains the compressive strength of 76 MPa at 28 d. The increased content of anhydrite promotes the formation of ettringite, but excessive anhydrite hinders the hydration of ternesite.

Key words: ternesite-ye’elimite cement, low-carbon cement, mineral optimization, added gypsum, compressive strength

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