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Facile production of nano-scale metakaolin: An investigation into its effect on compressive strength, pore structure and microstructural characteristics of mortar

机译:纳米偏高岭土的简便生产:其对砂浆抗压强度,孔结构和微观结构特征的影响的研究

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The use of nano materials as partial replacement for cement has been considered all over the world, particularly in the production of high strength and high performance cement based structures. This study aims at facile production of nano-scale metakaolin (NMK) and investigating its influence on the mechanical, pore structure, phase composition and microstructure characteristics of hardened mortar. NMK with superior surface area was effortlessly prepared via exfoliation of thermally activated ordinary kaolin (MK) with the aid of organic ammonium chloride. SEM micrographs confirm the formation of nanoplates of few nanometers in thickness; furthermore, specific surface area was evaluated by the BET analysis. The exfoliated NMK showed greatly enhanced surface area. Two groups of MK-blended mortars were prepared in which cement was partially replaced with 0, 1, 2, 3, 4, and 5 wt% of MK and Exfoliated NMK. Exfoliated NMK was found to be highly effective in enhancing the compressive strength of mortar and an optimum replacement within 3% can be concluded. There were enhancements by about 24% compared with the unexfoliated MK blended mortar and 54% compared with the plain ordinary mortar. The BET analysis confirmed that; NMK provides significant refinement in pore structure of blended mortar. The phase composition analysis by TGA and SEM indicate that NMK acts not only as a filler to improve the packing inside the cementitious matrix, but also as an activator to promote hydration and pozzolanic reactions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:全世界都在考虑使用纳米材料作为水泥的部分替代品,特别是在生产高强度和高性能水泥基结构中。这项研究旨在容易地生产纳米级偏高岭土(NMK),并研究其对硬化砂浆的力学,孔结构,相组成和微观结构特征的影响。通过在有机氯化铵的作用下将热活化的普通高岭土(MK)剥落,可以毫不费力地制备出具有优异表面积的NMK。 SEM显微照片证实了几纳米厚的纳米板的形成。此外,通过BET分析评价比表面积。脱落的NMK显示出大大增加的表面积。制备两组MK掺合砂浆,其中用0、1、2、3、4和5重量%的MK和脱落的NMK部分代替水泥。发现剥落的NMK在增强砂浆的抗压强度方面非常有效,可以得出3%以内的最佳替代量。与未剥落的MK混合砂浆相比,增强了约24%,与普通普通砂浆相比,增强了54%。 BET分析证实: NMK可显着改善混合砂浆的孔结构。通过TGA和SEM的相组成分析表明,NMK不仅充当填充剂以改善水泥基内部的填充,而且充当促进剂以促进水合和火山灰反应。 (C)2018 Elsevier Ltd.保留所有权利。

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