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Effect of superplasticiser on workability enhancement of Class F and Class C fly ash-based geopolymers

机译:高效减水剂对提高F级和C级粉煤灰基地质聚合物的可加工性的影响

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摘要

Workability could be a serious drawback for a fresh fly ash-based geopolymer due to its high viscosity. To deal with this problem, the possible benefits of using a superplasticiser are investigated. This research investigates the function of two types of superplasticisers, namely the naphthalene-based and the polycarboxylate-based, in fresh geopolymers made from either Class F or Class C fly ash. The workability was measured by slump and mini-flow tests. Results showed that both tripes of superplasticisers were considerably less effective with geopolymers, compared to their effectiveness with Portland cement paste. However, their effects were different for the different fly ash classes. Polycarboxylate-based super plasticiser was more effective with Class C than with Class F fly ash. It lowered the stress and viscosity as seen from rheology testing and thus enhanced the fluidity of fresh geopolymer. This is attributed to the high calcium ion content present in Class C fly ash, which can lead to better superplasticiser dispersion. The naphthalene-based superplasticiser did not show much difference in its effect with the two fly ash types. However, a slightly better plasticising effect compared to the polycarboxylate-based was observed when the effect on Class F fly ash was investigated. (C) 2016 Published by Elsevier Ltd.
机译:对于新鲜的飞灰基地质聚合物,由于其高粘度,可加工性可能是一个严重的缺点。为了解决这个问题,研究了使用高效减水剂的可能益处。这项研究调查了两种类型的高效减水剂在由F级或C级粉煤灰制成的新鲜地质聚合物中的功能,即萘基和聚羧酸盐基。通过坍落度和小流量测试来测量可加工性。结果表明,与波特兰水泥浆相比,两类高效减水剂对地聚合物的有效性均明显较低。但是,对于不同的粉煤灰类别,它们的影响是不同的。 C级聚羧酸盐基超级增塑剂比F级粉煤灰更有效。从流变学测试中可以降低应力和粘度,从而提高了新鲜地质聚合物的流动性。这归因于C类粉煤灰中存在的高钙离子含量,这可以导致更好的高效减水剂分散。萘基高效减水剂与两种粉煤灰的作用没有太大差异。但是,当研究对F级粉煤灰的影响时,观察到与聚羧酸盐基塑料相比,塑化效果略好。 (C)2016由Elsevier Ltd.出版

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