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Hydration Kinetics of Composite Cementitious Materials Containing Copper Tailing Powder and Graphene Oxide

机译:含铜尾粉和石墨烯氧化物复合胶粘材料的水合动力学

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摘要

The hydration heat evolution curves of composite cementitious materials containing copper tailing powder (CT) and graphene oxide (GO) with different contents are measured and analyzed in this paper. The hydration rate and total hydration heat of the composite cementitious materials decrease with the increase of CT dosage, but improve with the increase of CT fineness and GO dosage. The hydration process of the cementitious systems undergoes three periods, namely nucleation and crystal growth (NG), phase boundary reaction (I), and diffusion (D), which can be simulated well using the Krstulovic⁻Dabic model. The hydration rates of the three controlling processes of the composite cementitious system decrease with the increase of CT content, but improve slightly with the increase of CT fineness. GO enhances the controlling effect of the NG process of the cementitious systems with or without CT, thus promotes the early hydration as a whole.
机译:在本文中测量并分析了含有铜拖尾粉末(CT)和氧化石墨烯(GO)的复合水泥材料和石墨烯(GO)的水合热进化曲线。复合材料水泥质材料的水合速率和总水合热随着CT剂量的增加而降低,但随着CT细度的增加而改善。水泥系统的水合过程经历了三个时期,即成核和晶体生长(Ng),相边界反应(I)和扩散(D),其可以使用Krstulovic⁻dabic模型来模拟很好。复合水泥系统三种控制过程的水合速率随CT含量的增加而降低,但随着CT细度的增加而略微改善。 Go提高了在没有CT的情况下使用CT的水泥系统的NG过程的控制效果,从而促进了整体的早期水合。

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