Influence Mechanism of Calcium Sulfate Variety on Strength of Portland Cement-calcium Aluminate Cement Blends

Q4 Materials Science
Xu Linglin, W. Peiming, Zhang Guofang, G. Schutter
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引用次数: 5

Abstract

The influence mechanism of calcium sulfate varieties on the strength of Portland cement-calcium aluminate cement blends were investigated by means of calorimetry, X-ray diffraction, environmental scanning electron microscopy. Results show that the variety of calcium sulfate determines its solubility and dissolution rate, which directly lead to the differences in the formation content,time and size of ettringite(AFt), and affects the volume stability, which finally determines the strength of pastes. When the calcium sulfate dosage is 7.5%, the formation content of AFt firstly increases and then decreases. However, the time when AFt content reaches the maximum and the size of AFt have close relationships with the variety of calcium sulfate. When anhydrite is added, the transit time from AFt to monosulfate is the latest, and the size of AFt is much longer and thinner than those with other calcium sulfate, additionally the AFt content before 8 hours is prominently lower than others, which leads to lower strength. When the calcium sulfate dosage is 15%, secondary gypsum also forms besides AFt, is ten times bigger than AFt. This can lead to the expansion and even complete lost of strength for the systems with hemi-hydrite.
硫酸钙品种对硅酸盐水泥-铝酸钙水泥共混物强度的影响机理
采用量热法、x射线衍射、环境扫描电镜等手段研究了硫酸钙品种对硅酸盐水泥-铝酸钙水泥共混物强度的影响机理。结果表明,硫酸钙的种类决定了其溶解度和溶解速率,直接导致钙矾石(AFt)的形成含量、时间和粒度的差异,并影响其体积稳定性,最终决定了膏体的强度。当硫酸钙用量为7.5%时,AFt的生成含量先增加后降低。而AFt含量达到最大值的时间和AFt的大小与硫酸钙的种类有密切的关系。添加硬石膏时,AFt向单硫酸盐过渡的时间最晚,且AFt的粒径比添加其他硫酸钙的AFt长得多、薄得多,且8 h前AFt的含量明显低于其他硫酸钙,从而导致强度降低。当硫酸钙用量为15%时,除AFt外还会形成二次石膏,其体积是AFt的10倍,这可能导致半水合体体系膨胀甚至完全失去强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
9103
期刊介绍: Journal of the Chinese Ceramic Society was founded in 1957 and published scientific research papers in Chinese or English for Chinese and English academic journals (16 journals). Journal of silicate is a core journal in Chinese, double-effect journal, Chinese excellent scientific journals, 100 outstanding Chinese academic journals, Chinese Association of Science and Technology excellent scientific journals (Category B).
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