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Properties of the Cement-Based Composites with Hig Content of Metakaolin

机译:甲状腺素含量高的水泥基复合材料的性质

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Environmental concerns and sustainable development require increased replacement of cement. Most of previous studies have shown that the compressive strength of cement-based composites is maximized with a 20% content of metakaolin. We investigated composites prepared by replacing ordinary Portland Cement (OPC) with 30 to 50% of metakaolin (MK) and addition of appropriate amount of hydrated lime, which were ordinary cured for 2, 28 or 90 days. Hydration products and microstructure of the pastes were determined by X-ray diffraction (XRD), differential thermal analysis/thermal gravimetry (DTA/ TG) and mercury intrusion porosimetry (MIP). MK was produced by calcination of kaolin from a Serbian deposit, which contained a high level of impurities. Replacement of OPC with 30% of MK achieved 28 days compressive strength equivalent to that of the control mix. Higher replacement levels, 40% and 50%, combined with the addition of hydrated lime, achieved satisfactory relative strengths of 94% and 87%, respectively. The positive contribution was particularly pronounced after 90 days for a composite containing 50% of MK. The results clearly showed a possibility of obtaining composites having acceptable compressive strength with reduced cement content in accordance with environmental and sustained development requirements.
机译:环境问题和可持续发展需要增加水泥的更换。以前的大多数研究表明,基于水泥基复合材料的抗压强度最大化为20%的MetaKaolin含量。我们调查了通过用30至50%的Metakaolin(MK)替换普通植物水泥(OPC)制备的复合材料,并加入适量的水合石灰,其普通固化2,28或90天。通过X射线衍射(XRD),差分热分析/热重量(DTA / TG)和汞侵入孔辛仪(MIP)测定水合产物和糊状物的微观结构。 MK是通过来自塞尔维亚矿床的高岭土煅烧生产的,含有高水平的杂质。用30%的MK替代OPC实现了28天的压缩强度,其相当于控制混合物的压缩强度。更高的更换水平,40%和50%,加入水性石灰结合,令人满意的相对强度为94%和87%。含有50%MK的复合材料后90天后,阳性贡献特别明显。结果清楚地显示了获得具有可接受的抗压强度的复合材料,根据环境和持续的开发要求,水泥含量降低。

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