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Influence of superabsorbent polymer on shrinkage properties of reactive powder concrete blended with granulated blast furnace slag

机译:高吸水剂对高炉矿渣活性粉末混凝土收缩性能的影响。

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摘要

This study involved investigating the contributions of granulated blast furnace slag (GBFS) and internal curing (IC) by means of superabsorbent polymer (SAP) on shrinkage behaviour, hydration heat, and mechanical strength of reactive powder concrete (RPC). The results indicated that autogenous shrinkage decreased with an increase in GBFS content, and a combination with IC completely mitigated autogenous shrinkage and even led to a net expansion. The mechanical strength decreased with the addition of GBFS. However, compressive strength still exceeded 100 MPa even when the replacement level of GBFS corresponded to a maximum of 50%. Although IC by means of SAP slightly reduced the strength, this reduction was acceptable given the important role that it played on mitigating autogenous shrinkage. The drying shrinkage and mass loss increased significantly with an increase in the GBFS content. The IC did not exhibit an obvious effect on drying shrinkage and mass loss. However, it counteracted high drying shrinkage by significantly reducing autogenous shrinkage. The total shrinkage of RPC with IC and GBFS was significantly lower than that without IC and GBFS. The combination of GBFS and IC can adequately solve serious shrinkage deformation and provide an environmental friendly and low cost method to produce RPC. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究涉及研究粒状高炉矿渣(GBFS)和内部固化(IC)借助超吸收性聚合物(SAP)对活性粉末混凝土(RPC)的收缩行为,水化热和机械强度的影响。结果表明,自收缩率随GBFS含量的增加而降低,与IC的结合完全缓解了自收缩率,甚至导致净膨胀。机械强度随GBFS的增加而降低。但是,即使GBFS的置换量最大为50%,抗压强度仍超过100 MPa。尽管通过SAP的IC强度略有降低,但是考虑到它在减轻自发收缩方面所起的重要作用,这种降低是可以接受的。随着GBFS含量的增加,干燥收缩率和质量损失显着增加。 IC对干燥收缩率和质量损失没有明显的影响。但是,它通过显着降低自发收缩来抵消高干燥收缩。有IC和GBFS的RPC的总收缩率明显低于没有IC和GBFS的RPC。 GBFS和IC的结合可以充分解决严重的收缩变形,并提供一种环保且低成本的生产RPC的方法。 (C)2017 Elsevier Ltd.保留所有权利。

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