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首页> 外文期刊>Crystal growth & design >Direct Imaging of Nucleation Mechanisms by Synchrotron Diffraction Micro-Tomography: Superplasticizer-Induced Change of C-S-H Nucleation in Cement
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Direct Imaging of Nucleation Mechanisms by Synchrotron Diffraction Micro-Tomography: Superplasticizer-Induced Change of C-S-H Nucleation in Cement

机译:同步辐射衍射层析成像对成核机理的直接成像:水泥中超塑化剂引起的C-S-H成核变化

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摘要

The properties of cementitious materials are related to the microstructure of their binder matrix, which develops, during cement hydration, by a sequence of dissolution-precipitation reactions. Here, microstructural development is monitored during hydration by synchrotron X-ray diffraction-enhanced computed microtomography (XRD-CT). This innovative, noninvasive technique yields images of the crystallographic phases present in the hydrating cement paste at different stages, which are combined to map the sites where dissolution and precipitation occur. The results indicate that the nucleation mechanism of the main hydration product (a calcium-silicate hydrate commonly referred to as C-S-H) changes in the presence of polycarboxylate ether (PCE) superplasticizers. The observed change is essential to understand the development of the cement microstructure and to provide a direct link between the reaction kinetics and the physicomechanical properties of the system.
机译:胶结材料的性质与它们的粘合剂基质的微观结构有关,该粘合剂基质在水泥水化过程中通过一系列的溶解-沉淀反应形成。在这里,水化过程中通过同步加速器X射线衍射增强计算机显微断层扫描(XRD-CT)来监测微结构的发展。这项创新的非侵入性技术可生成水化水泥浆中不同阶段存在的结晶相图像,将其组合以绘制溶解和沉淀发生的位置。结果表明,在聚羧酸醚(PCE)高效减水剂的存在下,主要水合产物(通常称为C-S-H的硅酸钙水合物)的成核机理发生了变化。观察到的变化对于理解水泥微结构的发展以及在反应动力学和系统的物理力学性能之间提供直接联系至关重要。

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