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Effect of nano-silica on the chemical durability and mechanical performance of fly ash based geopolymer concrete

机译:纳米二氧化硅对粉煤灰基质混凝土化学耐久性和力学性能的影响

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In this study, the effect of nano silica on the short term severe durability performance of fly ash based geopolymer concrete (GPC) specimens was investigated. Four types of GPC were produced with two types of low calcium fly ashes (FAI and FAII) with and without nano silica, and ordinary Portland cement concrete (OPC) concrete was also cast for reference. For the geopolymerization process, the alkaline activator has selected a mixture of sodium silicate solution (Na2SiO3) and sodium hydroxide solution (NaOH) with a ratio (Na2SiO3/NaOH) of 2.5. Main objectives of the study were to investigate the effect of usability or replaceability of nano silica-based low calcium fly ash based geopolymer concretes instead of OPC concrete in structural applications and make a contribution to standardization process of the fly ash based geopolymer concrete. To achieve the goals, four types of geopolymer and OPC concretes were subjected to sulfuric acid (H2SO4), magnesium sulfate (MgSO4) and seawater (NaCI) solutions with concentrations of 5%, 5%, and 3.5%, respectively. Visual appearances and weight changes of the concretes under chemical environments were utilized for durability aspects. Compressive, splitting tensile and flexural strength tests were also performed on specimens to evaluate the mechanical performance under chemical environments. Results indicated that FAGPC concretes showed superior performance than OPC concrete under chemical attacks due to low calcium content. Amongst the chemical environments, sulfuric acid (H2SO4) was found to be the most dangerous environment for all concrete types. In addition, nano silica (NS) addition to FAGPC specimens improved both durability and residual mechanical strength due to the lower porosity and more dense structure. The FAIIGPC specimens including nano silica showed the superior mechanical performance under chemical environment.
机译:在该研究中,研究了纳米二氧化硅对粉煤灰基缘聚合物混凝土(GPC)标本的短期严重耐久性的影响。用两种类型的低钙飞灰(Fai和Faii)生产了四种类型的GPC,没有纳米二氧化硅,普通的波特兰水泥混凝土(OPC)混凝土也被铸造供参考。对于地缘聚合物化方法,碱化活化剂选择了硅酸钠溶液(Na 2 SiO 3)和氢氧化钠溶液(NaOH)的混合物,其比例(Na 2 SiO 3 / NaOH)为2.5。该研究的主要目标是探讨纳米二氧化硅的低钙粉煤灰基缘合物混凝土混凝土的可用性或可替换性的影响,而不是结构应用中的OPC混凝土,并对粉煤灰基地缘聚合物混凝土的标准化过程做出贡献。为了实现目标,将四种类型的地质聚合物和OPC混凝土经受硫酸(H 2 SO 4),硫酸镁(MgSO 4)和海水(NaCl)溶液,分别为5%,5%和3.5%。在化学环境下,使用化学环境下的混凝土的视野和重量变化进行耐久性方面。还在试样上进行压缩,分裂拉伸和弯曲强度试验,以评估化学环境下的机械性能。结果表明,由于低钙含量,FAGPC混凝土表现出比OPC混凝土的性能优异。在化学环境中,发现硫酸(H2SO4)是所有混凝土类型的最危险的环境。另外,由于孔隙率和更致密的结构,纳米二氧化硅(NS)除了耐久性和残留的机械强度增加。包括纳米二氧化硅的Faiigpc标本在化学环境下显示出优异的机械性能。

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