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Effect of Graphene Oxide Nanosheets dispersion in cement mortar composites incorporating Metakaolin and Silica Fume

机译:氧化石墨烯纳米片在偏高岭土和硅粉掺入水泥砂浆复合物中的分散作用

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In this work, the reinforcing effects of Graphene Oxide Nanosheets dispersions (GOD) on high strength cement mortar are investigated, evaluating possible improvements in mechanical properties, fluidity, Sorptivity and water absorption resistance. Mortar with water/cement ratio of 0.5, GOD dosage varying from 0 to 0.20% by weight of cement and sand at a proportion of 3 x weight of the cement were prepared, in addition to 10% and 20% replacemento replacement with Silica Fume and Metakaolin respectively to improve the GO nanosheets dispersion. The GO used in the matrix forms aggregate due to presence of divalent Calcium ions. Hence to split the particles vigorous mixing was done. The results indicate that the addition of GOD accelerate the cement hydration reactions, increase the compressive strength and tensile strength of the mortar, reduce the pore volume and harden cement properties. However, the fluidity decreased with increasing GOD content. The optimal compressive strength was achieved with samples designed with GOD dosage of 0.05% with replacement, for which the corresponding increases were 72.41%, 84.61% and 90.90%, after 3,7 and 28 days respectively, compared with samples without GOD and replacement. The tensile strength of the cement mortar increased with GOD content to 132%, 178.6% and 181.2% for 3, 7 and 28 days respectively with replacement and GOD dosage of 0.10%. Furthermore, FE-SEM observation indicated that the GOD probably had an effect on the shape of the cement hydration products. It revealed samples containing 0.10 wt% GOD with replacement exhibited good bonding between the GOD and the surrounding cement matrix. The hydration mechanism of cement composites with GOD and replacement of cement with Silica Fume and Metakaolin needs further study. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项工作中,研究了氧化石墨烯纳米片分散体(GOD)对高强度水泥砂浆的增强效果,评估了机械性能,流动性,吸附性和耐吸水性的可能改进。制备了水灰比为0.5,GOD用量为水泥重量的0到0.20%的砂浆和砂的比例为水泥重量的3倍的砂浆,此外还制备了10%和20%的二氧化硅/不使用二氧化硅代替烟气和偏高岭土分别改善了GO纳米片的分散性。由于存在二价钙离子,基质中使用的GO形成聚集体。因此,为了分裂颗粒,进行了剧烈混合。结果表明,GOD的加入促进了水泥的水化反应,提高了砂浆的抗压强度和抗拉强度,减小了孔隙体积,并硬化了水泥性能。然而,流动性随着GOD含量的增加而降低。设计了GOD剂量为0.05%并替换的样品达到了最佳抗压强度,与没有GOD和替换的样品相比,分别在3.7天和28天后分别增加了72.41%,84.61%和90.90%。水泥砂浆的抗拉强度随着GOD含量的增加分别增加了3、7和28天,分别为132%,178.6%和181.2%,GOD用量为0.10%。此外,FE-SEM观察表明,GOD可能对水泥水合产物的形状有影响。结果表明,含有0.10 wt%的GOD的样品经置换后在GOD和周围的水泥基体之间表现出良好的粘结性。具有GOD的水泥复合材料的水合作用以及用硅粉和偏高岭土替代水泥的水化机理有待进一步研究。 (C)2018 Elsevier Ltd.保留所有权利。

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