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首页> 外文期刊>Magazine of Concrete Research >Mechanical, durability and fracture properties of nano-modified FA/GGBS geopolymer mortar
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Mechanical, durability and fracture properties of nano-modified FA/GGBS geopolymer mortar

机译:纳米改性FA / GGBS地缘砂浆的机械,耐久性和断裂性能

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摘要

Fly ash (FA)-based geopolymer mortar is known to exhibit less strength development at ambient temperature due to slow progress in the polymerisation reaction. In this paper, studies are reported on geopolymer mortar made of FA, ground-granulated blast-furnace slag (GGBS) and nano silica at ambient temperature. The investigations on mechanical and durability properties of FA/GGBS-based geopolymer mortar were carried out by adding nano silica at 1% and 2% weight of FA into the mixture. For all the mixtures, the concentration of sodium hydroxide (NaOH) was maintained as 3M and the sodium silicate (Na2SiO3)/sodium hydroxide weight ratio was 2.06. The alkaline liquid/binder ratio of 0.3 and ambient curing temperature (28 degrees C) was maintained for all the mixtures. Geopolymer mortar with an addition of 2% nano silica showed significant improvement in compressive strength, split tensile strength, flexural strength and fracture properties. The water absorption, rapid chloride penetration test and sorptivity showed better resistance in mixtures with a 2% addition of nano silica. The improved properties could have been due to an enhancement of geopolymeric reaction by the addition of amorphous nano silica, which formed additional sodium aluminosilicate hydrate (Al2H2Na2O7Si) or geopolymer gel while ultrafine particles of nano silica reduced the size of empty space in the geopolymer matrix.
机译:众所周知,粉煤灰(Fa)基础的地缘砂浆在环境温度下表现出较小的强度显影,因为聚合反应缓慢进展缓慢。在本文中,在环境温度下对由FA,地粒砂炉炉渣(GGB)和纳米二氧化硅制成的地质聚合物砂浆进行研究。通过向混合物中加入1%和2%重量的Fa中加入纳米二氧化硅的基于FA / GGBS的地质聚合物研钵机械和耐久性性能的研究。对于所有混合物,将氢氧化钠(NaOH)的浓度保持为3M,硅酸钠(Na 2 SiO 3)/氢氧化钠重量比为2.06。为所有混合物保持0.3和环境固化温度(28℃)的碱性液体/粘合剂比。加入2%纳米二氧化硅的地质聚合物砂浆显示出抗压强度,分裂拉伸强度,弯曲强度和裂缝性能显着提高。吸水,快速氯化物渗透试验和吸附性在混合物中表现出更好的抗性,其中2%加入纳米二氧化硅。通过加入无定形纳米二氧化硅来增强产物纳米二氧化硅(Al 2 H 2 -2O7Si)或地质聚合物凝胶的添加,而改善的性质可能是由于聚酰胺纳米二氧化硅的增强。纳米二氧化硅的超细颗粒在地质聚合物基质中降低了空间的尺寸。

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