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Effects of curing temperature and superplasticizer on workability and compressive strength of self-compacting geopolymer concrete

机译:养护温度和高效减水剂对自密实土工聚合物混凝土可加工性和抗压强度的影响。

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This experimental work focuses on the effects of super plasticizer and curing temperature on the workability and compressive strength of self-compacting geopolymer concrete (SCGC). SCGC is an improved way of concreting execution that does not require compaction and is made by complete elimination of ordinary portland cement content. The parameters investigated were superplasticizer (SP) dosage and curing temperature. SCGC were synthesized from low calcium fly ash, activated by combinations of sodium hydroxide and sodium silicate solutions, and by incorporation of superplasticizer for self compactability. The SP dosages were 3%, 4%, 5%, 6% and 7% and the different curing temperatures were 60°C, 70°C, 80°C and 90°C. The effects of SP dosage on workability properties such as filling ability, passing ability and resistance to segregation were evaluated. The fresh properties were measured using slump flow, T-50 V-funnel, L-Box and J-ring test methods. The essential workability requirements for self compactability according to European Federation of National Associations Representing Producers and Applicators of Specialist Building Products for Concrete (EFNARC) were satisfied. Results showed that the workability and compressive strength improved with the increase in Super plasticizer dosage. An increase in strength was observed with the increase in curing temperature up to 70°C. However, the strength decreased when the curing temperature increased beyond 70°C. The compressive strength of 51.52MPa was obtained for SCGC with SP dosage of 6% and cured at 70°C oven temperature.
机译:这项实验工作的重点是超级增塑剂和固化温度对自密实地质聚合物混凝土(SCGC)的可加工性和抗压强度的影响。 SCGC是一种无需压实的混凝土浇筑改进方法,它是通过完全消除普通硅酸盐水泥的含量而制成的。研究的参数是高效减水剂(SP)的用量和固化温度。 SCGC由低钙粉煤灰合成,并通过氢氧化钠和硅酸钠溶液的组合活化,并加入超塑化剂以实现自密实性。 SP的剂量为3%,4%,5%,6%和7%,并且不同的固化温度为60℃,70℃,80℃和90℃。评估了SP用量对可加工性如填充能力,通过能力和抗偏析性能的影响。使用坍落度流量,T-50 V型漏斗,L形盒和J形环测试方法测量新鲜性能。满足代表混凝土专业建筑产品的生产者和施用者的欧洲国家协会联合会(EFNARC)对自密实性的基本可加工性要求。结果表明,随着超级增塑剂用量的增加,可加工性和抗压强度得到改善。随着固化温度升高至70℃,强度得到提高。然而,当固化温度增加到超过70℃时,强度降低。 SP用量为6%的SCGC的抗压强度为51.52MPa,并在70°C的烘箱温度下固化。

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