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Development of ECO-UHPC with very-low-C_3A cement and ground granulated blast-furnace slag

机译:用非常低C_3A水泥和地面颗粒状高炉炉渣的生态UHPC的开发

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Substituting cement by supplementary cementitious material (SCM) is the most-practiced approach of reducing CO2 footprint of concrete. However, in case of UHPC, for which ultra-high performance in terms of both strength and durability is of utmost importance, high-volume reduction of cement is often difficult or highly challenging. In this study, the possibility of high-volume incorporation of ground granulated blast-furnace slag (GGBS) in UHPC with very-low-C(3)A Portland cement (having 1.1% tricalcium aluminate or C(3)A) as primary binder has been explored. Benefits of using very-low-C(3)A cement as primary binder in UHPC, over cement with a moderate C(3)A content (9.3%), in terms of strength and workability have also been investigated. Results of the UHPC mixes incorporating GGBS suggest that 60% replacement of very-low-C(3)A cement by GGBS reduces the 28-day compressive strength of UHPC by 16.1% with respect to the strength of UHPC without GGBS. Nevertheless, ultra-high strength (150 MPa) can still be achieved up to 60% replacement of cement by GGBS, without the need for any special curing or fibres. The water absorption and initial rate of absorption of UHPC, and the corrosion risk of rebar embedded in UHPC reduce with the increase of very-low-C(3)A cement replacement by GGBS. Up to 60% replacement of cement by GGBS, UHPC exhibits carbonation resistance similar to that of the UHPC without GGBS. (C) 2021 Elsevier Ltd. All rights reserved.
机译:用补充水泥材料(SCM)来替代水泥是减少混凝土二氧化碳足迹的最实践的方法。然而,在UHPC的情况下,对于强度和耐用性的超高性能至关重要,水泥的高批量减少通常是困难或极具挑战性的。在这项研究中,具有极低C(3)波特兰水泥的UHPC地面粒状高炉炉渣(GGBS)的高批量掺入的可能性探索了活页夹。在UHPC中使用非常低C(3)作为原代粘合剂的益处,在含有中等C(3)含量(9.3%)的水泥上,还研究了强度和可加工性。掺入GGBS的UHPC混合物的结果表明,通过GGB的替代替代物替换为低C(3)水泥,通过GGB的UHPC的强度降低了UHPC的28天压缩强度16.1%。然而,超高强度(& 150MPa)仍然可以通过GGB获得高达60%的水泥,而无需任何特殊的固化或纤维。 UHPC吸收和初始吸收率,以及UHPC嵌入UHPC的螺纹钢的腐蚀风险随着GGB的替代水泥替代的增加而减少。通过GGBS替换水泥60%,UHPC表现出与没有GGB的UHPC的碳化抗性。 (c)2021 elestvier有限公司保留所有权利。

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