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Influence of lead nitrate on the early hydration of high alumina cement that contains spinel

机译:硝酸铅对含尖晶石的高铝水泥早期水化的影响

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The effect of 0.5wt.% lead nitrate on the early hydration of high alumina cement (HAC) that contains spinel was examined by isothermal calorimetry, XRD, TG-DSC and SEM. Lead nitrate affects the hydration and both the initial setting time and final setting time were extended. Lead nitrate also reduced and delayed the maximum rate peak of hydration of HAC. The pH value of HAC paste was significantly lower in the early stages when compared with the addition of lead nitrate. It was found that an NO_3-hydrate phase (Ca_4Al_2(NO_3)_2(OH)_(12)•4H_2O, NO_3-AFm) was formed at 6h. Although the characteristic value of the hydrated calcium aluminate (CAH_(10)) was decreased, the characteristic values of the hydrated dicalcium aluminate (C_2AH_8) and tricalcium aluminate (C_3AH_6) were increased significantly. That means that lead nitrate promotes the early generation of NO_3-AFm in HAC, which will delay early hydration. However, after 18 h lead nitrate promotes C_2AH_8 or transformation of the metastable needle-shaped or hexagonal CAH_(10) into stable cubic C_3AH_6.
机译:通过等温量热法,XRD,TG-DSC和SEM研究了0.5wt。%的硝酸铅对含尖晶石的高铝水泥(HAC)早期水合的影响。硝酸铅影响水合作用,并且延长了初始凝固时间和最终凝固时间。硝酸铅还减少并延迟了HAC的最大水合速率峰值。与添加硝酸铅相比,HAC糊剂的pH值在早期显着降低。发现在6小时时形成了NO_3-水合物相(Ca_4Al_2(NO_3)_2(OH)_(12)•4H_2O,NO_3-AFm)。尽管水合铝酸钙(CAH_(10))的特征值降低,但水合铝酸二钙(C_2AH_8)和铝酸三钙(C_3AH_6)的特征值显着增加。这意味着硝酸铅可促进HAC中NO_3-AFm的早期生成,这将延迟早期水合作用。但是,在18小时后,硝酸铅促进了C_2AH_8或将亚稳态的针状或六角形CAH_(10)转变为稳定的立方C_3AH_6。

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  • 来源
    《ZKG International》 |2018年第12期|58-63|共6页
  • 作者单位

    The State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan/China,The State Key Laboratory of Silicate Materials for Architecture, Wuhan University of Technology, Wuhan/China;

    The State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan/China;

    The State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan/China;

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  • 入库时间 2022-08-18 04:01:45

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