Chen Bo, Zhang Yongming, Chen Qing, Yang Fei, Liu Xianping, Wu Jianguo, Wang Peiming
School of Materials Science and Engineering, Tongji University, Shanghai 201804, China.
Key Laboratory of Advanced Civil Engineering Materials, Tongji University, Ministry of Education, Shanghai 201804, China.
Materials (Basel). 2020 Nov 4;13(21):4963. doi: 10.3390/ma13214963.
AFt is one of the major products at the early stage of cement hydration. It is an important product that influences the performance of the fresh and hardened cement pastes such as the setting time. However, there is a lack of detailed investigation on the growth of AFt in the cement pastes with a long-time scale. In this work, we reported a detailed analysis by using in-situ powder X-ray diffraction (XRD) on the growth of AFt in the cement pastes during hydration. Samples of the hydrated ordinary Portland cement (OPC) and another locally produced Portland cement with very high tricalcium silicate (CS) content with different water-cement (w/c) ratios were investigated continually till they were hydrated for about 270 days by powder XRD. The work shows that during Portland cement hydration, the AFt reaches its maximum content with very high speed within about 24 h, which is influenced by the content of CS in the raw cement samples and the w/c ratios of the cement pastes. Once the maximum content of AFt was reached, it decreases very fast within the following couple of days, and then decreases slowly and finally reaches a stable level at the late stage of hydration. The results also present that a lower w/c ratio is beneficial to the formation of AFt and the conversion of AFt to AFm as well. While higher w/c ratios are favorable for the AFt to remain stable in the hardened cement pastes.
钙矾石是水泥水化早期的主要产物之一。它是一种影响新拌水泥浆体和硬化水泥浆体性能(如凝结时间)的重要产物。然而,对于水泥浆体中钙矾石在长时间尺度下的生长情况缺乏详细研究。在这项工作中,我们报道了通过原位粉末X射线衍射(XRD)对水泥浆体水化过程中钙矾石生长情况的详细分析。通过粉末XRD对不同水灰比(w/c)的水化普通硅酸盐水泥(OPC)样品以及另一种本地生产的硅酸三钙(C₃S)含量非常高的波特兰水泥样品进行持续研究,直至它们水化约270天。研究表明,在波特兰水泥水化过程中,钙矾石在约24小时内以非常快的速度达到其最大含量,这受原始水泥样品中C₃S含量和水泥浆体水灰比的影响。一旦达到钙矾石的最大含量,在随后的几天内它会迅速下降,然后缓慢下降,最终在水化后期达到稳定水平。结果还表明,较低的水灰比对钙矾石的形成以及钙矾石向单硫型水化硫铝酸钙(AFm)的转化都有利。而较高的水灰比有利于钙矾石在硬化水泥浆体中保持稳定。