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Effect of Internal Curing by Super Absorbent Polymer on the Autogenous Shrinkage of Alkali-Activated Slag Mortars

机译:超强吸收聚合物在碱活性炉渣砂浆自体收缩中的影响效果

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摘要

Alkali activated slag (AAS) mortar is becoming an increasingly popular green building material because of its excellent engineering properties and low CO2 emissions, promising to replace ordinary Portland cement (OPC) mortar. However, AAS’s high shrinkage and short setting time are the important reasons to limit its wide application in engineering. This paper was conducted to investigate the effect of internal curing(IC) by super absorbent polymer (SAP) on the autogenous shrinkage of AAS mortars. For this, an experimental study was carried out to evaluate the effect of SAP dosage on the setting time, autogenous shrinkage, compressive strength, microstructure, and pore structure. The SAP were incorporated at different dosage of 0, 0.05, 0.1, 0.2, 0.3, 0.4, and 0.5 percent by weight of slag. The workability, physical (porosity), mechanical, and shrinkage properties of the mortars were evaluated, and a complementary study on microstructure was made. The results indicated that the setting time increased with an increase of SAP dosage due to the additional activator released by SAP. Autogenous shrinkage decreased with an increase of SAP dosage, and was mitigated completely when the dosage of SAP ≥ 0.2% wt of slag. Although IC by means of SAP reduced the compressive strength, this reduction (23% at 56 days for 0.2% SAP) was acceptable given the important role that it played on mitigating autogenous shrinkage. In the research, the 0.2% SAP dosage was the optimal content. The results can provide data and basis for practical application of AAS mortar.
机译:碱活性渣(AAS)砂浆正在成为一种越来越流行的绿色建筑材料,因为其优良的工程性能和低二氧化碳排放,有希望取代普通波特兰水泥(OPC)砂浆。然而,AAS的高收缩和短设置时间是限制其在工程中广泛应用的重要原因。本文进行了通过超吸收性聚合物(SAP)对AAS砂浆的自体收缩来研究内固化(IC)的影响。为此,进行了实验研究以评估SAP剂量对凝固时间,自生收缩,抗压强度,微观结构和孔结构的影响。 SAP以0,0.05,0.1,0.2,0.3,0.4和0.5重量%的渣掺入0,0.05,0.1,0.2,0.3,0.5%的不同剂量。评价迫击炮的可加工性,物理(孔隙率),机械和收缩性能,并制备了微观结构的互补研究。结果表明,由于SAP释放的附加激活剂,凝固时间随着SAP剂量的增加而增加。随着SAP剂量的增加,自生收缩减少,并且当SAP≥0.2%wt的渣的剂量时完全减轻。虽然IC通过SAP降低抗压强度,但是,鉴于它在减轻自身收缩的重要作用,这种减少(0.2%SAP为0.2%SAP的56天)。在研究中,0.2%SAP剂量是最佳含量。结果可以为AAS砂浆进行实际应用提供数据和基础。

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