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BULLETIN OF THE CHINESE CERAMIC SOCIETY ›› 2025, Vol. 44 ›› Issue (10): 3503-3516.DOI: 10.16552/j.cnki.issn1001-1625.2025.0357

• Cement and Concrete •     Next Articles

Early Age Properties of Rapid Hardening and Early Strength Cementitious Material at Negative Temperature Environment: a Review

ZHANG Chao1, WANG Zhihang1, WANG Chao1, NIE Liangxue2, LI Bingchen1, LUO Xin3, CHEN Tao4   

  1. 1. Air Force Logistics Academy, Xuzhou 221000, China;
    2. Unit 93125, PLA, Xuzhou 221005, China;
    3. National Defense Engineering Research Institute, Academy of Military Sciences, Beijing 100036, China;
    4. Huanghe S&T College, Zhengzhou 450063, China
  • Received:2025-04-08 Revised:2025-06-09 Online:2025-10-15 Published:2025-11-03

Abstract: The urgent repair and construction engineering requires that the cementitious material must have the characteristics of rapid hardening and early strength, and the cementitious material must face negative temperature environment in high altitude-high latitude areas and cold weather in winter. Traditional cementitious material cannot hydrate normally in this environment, and do not solidify and without strength. Magnesium phosphate cement, sulphoaluminate cement, alkali-activated slag cementitious material and composite cementitious material have the characteristics of fast setting and rapid hardening, hydration heat release concentration, early strength and high strength, showing the potential of application in negative temperature environment. In this paper, the research progress on the early age properties of rapid hardening and early strength cementitious materials under negative temperature environment was reviewed. The effects of the types and properties of raw materials and the ratio of raw materials on the early strength formation of magnesium phosphate cement under negative temperature environment were emphatically analyzed, as well as the improvement effects of cementing material components, antifreeze, early strength agents and nanomaterials on the early age property of sulphoaluminate cement. In addition, the future development of rapid hardening and early strength cementitious material under negative temperature environment was prospected.

Key words: cementitious material, negative temperature environment, strength, magnesium phosphate cement, sulphoaluminate cement

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