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Early hydration of clinker-slag-metakaolin combination in steam curing conditions, relation with mechanical properties

机译:熟料-矿渣-偏高岭土组合在蒸汽养护条件下的早期水化作用及其力学性能

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High strength can be obtained at early ages for precast concrete elements by the use of CEM1 52.5R cement (OPC) and thermal treatment (steam curing). To compensate for the announced withdrawal of CEM I cements because of high CO_2 emissions during their production and the ecotax that this will imply, one attractive alternative is the use of composed cements resulting from the combination of clinker with mineral admixtures. In steam curing conditions, previous studies have shown an increase in the compressive strength at one day of age for mortars incorporating an OPC/blast furnace slag (GGBS)/metakaolin (MK) combination, in comparison with mortars incorporating OPC only. The present study investigates the connection between the compressive strength, at one day of age, of steam cured mortars made with various binders and the hydration of these binders. The progress of the hydration was characterised by means of XRD, thermal and microprobe analyses. The results indicate that the increase in compressive strength when MK is incorporated (OPC/MK or OPC/MK/GGBS) can be explained by an increase in the amount of C-S-H, C-A-H, C-A-S-H phases, a decrease in the amount of CH and a change in the chemical nature of the matrix (decrease in C/S ratio). The decrease in compressive strength of OPC/slag-based material can be explained by a reduction in the amount of hydrated phases (particularly C-S-H) and compactness. These are promising results for precast concrete manufacturers who are concerned about preserving the environment.
机译:通过使用CEM1 52.5R水泥(OPC)和热处理(蒸汽养护),可以在早期获得预制混凝土构件的高强度。为了弥补因生产过程中高CO_2排放而宣布的CEM I水泥停产以及这暗示的生态税,一种有吸引力的替代方法是使用由熟料与矿物掺合料组合而成的复合水泥。在蒸汽固化条件下,先前的研究表明,与仅掺入OPC的砂浆相比,掺入OPC /高炉矿渣(GGBS)/偏高岭土(MK)的砂浆在一天老化时的抗压强度有所提高。本研究调查了由各种粘合剂制成的蒸汽固化砂浆在一天的老化后的抗压强度与这些粘合剂的水合之间的关系。通过XRD,热分析和微探针分析来表征水合过程。结果表明,掺入MK(OPC / MK或OPC / MK / GGBS)时,抗压强度的增加可以通过增加CSH,CAH,CASH相的量,减少CH的量和降低CSH来解释。基质化学性质的变化(C / S比降低)。 OPC /基于炉渣的材料的抗压强度的降低可以通过减少水合相(尤其是C-S-H)和致密性来解释。对于关注环境保护的预制混凝土制造商而言,这些都是令人鼓舞的结果。

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