纳米C—S—H/PCE对硅酸盐-硫铝酸盐复合水泥凝结硬化的影响
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TU528.04

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十三五国家重点研发计划(2017YFB0310000);中国铁道科学研究院基金(2017YJ043、2018YJ049)


Effect of nano-C—S—H/PCE on the setting and hardening process of Portland-Sulphoaluminate composite cement
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    摘要:

    研究了纳米C—S—H/PCE对硅酸盐-硫铝酸盐复合水泥凝结时间、早期水化历程及抗压强度的影响,采用XRD、TG、pH计和SEM等分析测试手段对早龄期水化产物和液相碱度等进行表征,探讨了纳米C—S—H/PCE对硅酸盐-硫铝酸盐复合水泥的增强机理。结果表明:掺加纳米C—S—H/PCE能有效缩短硅酸盐-硫铝酸盐复合水泥浆体初凝及终凝时间,当C—S—H掺量≥1.0%时,硅酸盐-硫铝酸盐复合水泥的初、终凝时间差明显缩短。纳米C—S—H/PCE加快了硅酸盐-硫铝酸盐复合水泥水化放热速率,提高了总的水化放热量,早期水化产物生成数量多,但对水泥水化产物类型没有影响,硅酸盐-硫铝酸盐复合水泥体系8、12、16 h的抗压强度显著提高。

    Abstract:

    The effects of nano-C—S—H/PCE on the setting time, early hydration and compressive strength of Portland-Sulphoaluminate composite cement were studied. XRD, TG, pH meter and SEM were used to characterize the early hydration products and liquid alkalinity. The enhancement mechanism of nano-C—S—H/PCE on Portland-Sulphoaluminate composite cement was studied. The results showed that the addition of nano-C—S—H/PCE could effectively shorten both the initial setting time and final setting time of fresh composite cement paste. When the C—S—H content was more than 1.0%, the initial time difference of the composite cement was obviously shortened. The nano-C—S—H/PCE accelerated the hydration heat releasing rate of the composite cement, and increased the total hydration heat. The early-age hydration products were increased obviously, however, it had no effect on the type of cement hydration products. The compressive strength of the composite cement mortars at 8 h, 12 h and 16 h were significantly increased.

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胡建伟,谢永江,刘子科,郑新国,曾志,王月华,翁智财,蒋睿.纳米C—S—H/PCE对硅酸盐-硫铝酸盐复合水泥凝结硬化的影响[J].土木与环境工程学报(中英文),2021,43(2):138-147. HU Jianwei, XIE Yongjiang, LIU Zike, ZHENG Xinguo, ZENG Zhi, WANG Yuehua, WENG Zhicai, JIANG Rui. Effect of nano-C—S—H/PCE on the setting and hardening process of Portland-Sulphoaluminate composite cement[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2021,43(2):138-147.10.11835/j. issn.2096-6717.2020.059

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  • 收稿日期:2020-02-11
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  • 在线发布日期: 2021-03-06
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