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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >Effect of graphene nanoplatelets on the properties, pore structure and microstructure of cement composites
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Effect of graphene nanoplatelets on the properties, pore structure and microstructure of cement composites

机译:石墨烯纳米孔对水泥复合材料性能,孔隙结构和微观结构的影响

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Graphene nanoplatelets (GNPs) with extraordinary mechanical properties have been extensively applied in various fields as reinforcing materials. However, the mechanism of the GNPs reinforcing effect on cement composites is still under debate. In this research, the GNPs were dispersed in mixing water by means of dispersant combining with ultrasonication. The GNPs cement composites with different GNPs contents were prepared and their mechanical performance were investigated. In addition, the effects of GNPs on the hydration products of cement-based materials were studied by using different analytical techniques. Meanwhile, the pore structure and microstructure of GNP/cement composites were observed with the help of Mercury intrusion porosimeter (MIP) and Scanning electron microscope (SEM/EDS). It is found that the addition of 0.05 wt% GNPs increase the compressive and flexural strengths by about 4.3%, 3.7% and 27.4%, 25.2% in 7 d and 28 d curing ages, respectively. The experimental results suggest that GNPs may contribute to promoting the crystalline of calcium hydroxide (CH) and the formation of silica tetrahedron in calcium silicate hydrate gels (C-S-H) at the early age. The cement composites exhibit a more compact and optimal pore structure through refining pore size and reducing total porosity. And GNPs can enhance cement composites in mechanisms of filling effect, pull-out effect, branching and deflection of cracks.
机译:具有非凡力学性能的石墨烯纳米孔(GNP)已被广泛地应用于各种领域,作为增强材料。然而,对水泥复合材料的GNP增强效应的机制仍在辩论下。在该研究中,通过与超声波结合的分散剂分散在混合水中。制备具有不同GNP含量的GNPS水泥复合材料,并研究了它们的机械性能。此外,通过使用不同的分析技术研究了GNP对水泥基材料水合产物的影响。同时,亚汞侵入孔隙率计(MIP)和扫描电子显微镜(SEM / EDS)的帮助,观察到GNP /水泥复合材料的孔结构和微观结构。发现添加0.05wt%的GNPS将压缩和弯曲强度增加约4.3%,3.7%和27.4%,分别为25.2%和28d固化年龄。实验结果表明,GNP可能有助于促进氢氧化钙(CH)的晶晶晶体中的硅酸钙水合物凝胶(C-S-H)的形成。通过精炼孔径和降低总孔隙度,水泥复合材料具有更紧凑和最佳的孔隙结构。并且GNP可以在填充效果,拉出效果,分支和裂缝的机制中增强水泥复合材料。

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