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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Effects of triethanolamine modified graphene oxide on calcium silicate hydrate in synthesized system and cement composite
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Effects of triethanolamine modified graphene oxide on calcium silicate hydrate in synthesized system and cement composite

机译:三乙醇胺改性石墨烯氧化物对合成系统和水泥复合材料硅酸钙水合物的影响

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摘要

Graphene oxide (GO) has been used as an ideal admixture in cement composite because of the remarkable properties. However, the complicated system of cementitious materials limits the investigations on the reinforcing mechanism of GO. As the main hydration product, calcium silicate hydrate (C-S-H) determines the mechanical performance of cement composite, and research on the reaction between GO and C-S-H is of much importance for clarifying the reinforcing mechanism of GO. In this study, triethanolamine-graphene oxide (TEA-GO) was synthesized to improve the dispersion of GO in pore solution. And the impacts of GO and TEA-GO on the properties of C-S-H in the synthesized system and cement were comprehensively investigated by Si-29 MAS-NMR, SEM, FTIR and nano-indentation. In the synthesized C-S-H system, the well-dispersed TEA-GO accelerated the deposition and growth of C-S-H on nano-sheets. The improvement in the polymerization of synthesized C-S-H was also found. When TEA-GO was incorporated in cement, the interfacial bonding strength of TEA-GO with the matrix was enhanced and a large amount of high-density C-S-H formed in TEA-GO/cement composite. The refined microstructure of C-S-H and ameliorated interfacial bonding are promising to improve the mechanical properties of TEA-GO/cement composite because of the efficient cracking-bridging and load transfer.
机译:石墨烯氧化物(GO)已被用作水泥复合材料中的理想混合物,因为具有显着性质。然而,复杂的水泥材料系统限制了对加强机制的研究。作为主要的水化产品,硅酸钙水合物(C-S-H)决定了水泥复合材料的机械性能,研究Go和C-S-H之间的反应的研究对于澄清Go的增强机制非常重要。在该研究中,合成了三乙醇胺 - 石墨烯(TEA-GO)以改善孔隙溶液的分散。通过Si-29MAS-NMR,SEM,FTIR和纳米凹陷,全面研究了Go和Tea-Go对合成系统和水泥中C-S-H性能的影响。在合成的C-S-H系统中,井分散的茶叶加速了纳米片上C-S-H的沉积和生长。还发现了合成的C-S-H的聚合的改善。当茶叶纳入水泥时,提高了茶叶与基质的界面键合强度,并在茶叶/水泥复合材料中形成了大量的高密度C-S-H. C-S-H的精细组织和改善的界面键合是有希望改善茶叶/水泥复合材料的机械性能,因为有效的裂缝桥接和负载转移。

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