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Hydration of C3S, C2S and their Blends. Micro- and Nanoscale Characterization

机译:C3S,C2S及其混合物的水合。微米和纳米级表征

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This study forms part of wider research conducted under a EU 7 th Framework Programme (COmputationally Driven design of Innovative CEment-based materials or CODICE). The ultimate aim is the multi-scale modelling of the variations in mechanical performance in degraded and non-degraded cementitious matrices. The model is being experimentally validated by hydrating the main tri-calcium silicate (T1-C3S) and bi-calcium silicate (β-C2S), phases present in Portland cement and their blends. The present paper discusses micro- and nanoscale studies of the cementitious skeletons forming during the hydration of C3S, C2S and 70 % / 30 % blends of both C3S/C2S and C2S/C3S with a water/cement ratio of 0.4. The hydrated pastes were characterized at different curing ages with 29 Si NMR, SEM/TEM/EDS, BET, and nanoindentation. The findings served as a basis for the micro- and nanoscale characterization of the hydration products formed, especially C-S-H gels. Differences were identified in composition, structure and mechanical behaviour (nanoindentation), depending on whether the gels formed in C3S or C2S pastes. The C3S gels had more compact morphologies, smaller BET-N2 specific surface area and lesser porosity than the gels from C2S-rich pastes. The results of nanoindentation tests appear to indicate that the various C-S-H phases formed in hydrated C3S and C2S have the same mechanical properties as those formed in Portland cement paste. Compared to the C3S sample, the hydrated C2S specimen was dominated by the loose-packed (LP) and the low-density (LD) C-S-H phases, and had a much lower content of the high density (HD) C-S-H phase
机译:这项研究是在欧盟第七框架计划(创新驱动的基于CEment的材料或CODICE的计算机驱动设计)下进行的更广泛研究的一部分。最终目的是对退化和未退化的水泥基体的机械性能变化进行多尺度建模。该模型通过水合主要硅酸三钙(T1-C3S)和硅酸双钙(β-C2S),硅酸盐水泥及其混合物中存在的相进行实验验证。本文讨论了水和水泥比为0.4的C3S,C2S和70%/ 30%C3S / C2S和C2S / C3S混合物水合过程中形成的胶结骨架的微观和纳米尺度研究。通过29 Si NMR,SEM / TEM / EDS,BET和纳米压痕,在不同的固化年龄下对水合糊剂进行表征。这些发现为所形成的水合产物,特别是C-S-H凝胶的微观和纳米表征提供了基础。确定了成分,结构和机械行为(纳米压痕)方面的差异,具体取决于在C3S或C2S糊剂中形成的凝胶。与来自富含C2S的糊剂的凝胶相比,C3S的凝胶具有更紧密的形态,更小的BET-N2比表面积和更小的孔隙率。纳米压痕测试的结果似乎表明,在水合C3S和C2S中形成的各种C-S-H相具有与在硅酸盐水泥浆中形成的相同的机械性能。与C3S样品相比,水合C2S标本以疏松(LP)和低密度(LD)C-S-H相为主,而高密度(HD)C-S-H相的含量低得多

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