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Experimental research on seawater erosion resistance of magnesium potassium phosphate cement pastes

机译:磷酸镁钾水泥浆抗海水侵蚀的试验研究

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摘要

This paper aims to study the resistance of magnesium potassium phosphate cement (MKPC) paste to seawater erosion. MKPC paste specimens were prepared and their compressive strength, mass change, hydration temperature and water absorption were measured. The phase composition and microstructure were also analyzed. The results show that the initial hydration age of the reference sample M1 under natural curing condition has a significant effect on its compressive strength development in seawater. The residual ratios of the compressive strengths of M1 (3d) and M1(28d), hydrated for 3 and 28 days, respectively, under natural curing condition, are 76.6% and 91.1% at 360-day seawater immersion age, respectively. This also indicates that early-age M1 has poor resistance to seawater erosion. Adding some limestone (LS) powders and silica fume (SF) can significantly improve the strength of early-age MKPC paste. The 3-day compressive strength of M2 with LS and SF is about 50% higher than that of M1. After immersion for 360 days in seawater, the residual ratios of the compressive strength of M2(3d) and M2 (28d) are both close to 93%. This implies that initial hydration age of M2 under natural curing condition has almost no effect on its compressive strength development in seawater. Compared with M1, M2 has higher resistance to seawater erosion, which is attributed to the higher hydration degree and more compact structure of M2. This paper might be useful for preparing MKPC-based materials that can meet the requirements of marine concrete. (C) 2018 Published by Elsevier Ltd.
机译:本文旨在研究磷酸镁钾水泥胶(MKPC)对海水侵蚀的抵抗力。制备MKPC糊状样品,并测量其抗压强度,质量变化,水合温度和吸水率。还分析了相组成和微观结构。结果表明,在自然固化条件下,参考样品M1的初始水合年龄对其在海水中的抗压强度发展有重要影响。在自然固化条件下水化3天和28天的M1(3d)和M1(28d)的抗压强度的剩余比率在360天海水浸泡年龄下分别为76.6%和91.1%。这也表明,早期M1对海水侵蚀的抵抗力较差。添加一些石灰石(LS)粉和硅粉(SF)可以显着提高早期MKPC糊的强度。具有LS和SF的M2的3天抗压强度比M1高3天。在海水中浸泡360天后,M2(3d)和M2(28d)的抗压强度的剩余比率都接近93%。这意味着在自然固化条件下M2的初始水合年龄对其海水中抗压强度的发展几乎没有影响。与M1相比,M2具有更高的抗海水侵蚀能力,这归因于M2的高水合度和更紧凑的结构。本文对于制备可以满足海洋混凝土要求的基于MKPC的材料可能有用。 (C)2018由Elsevier Ltd.发布

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