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Advanced Nanoscale Characterization of Cement Based Materials Using X-Ray Synchrotron Radiation: A Review

机译:使用X射线同步加速器辐射对水泥基材料进行高级纳米级表征:综述

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Abstract We report various synchrotron radiation laboratory based techniques used to characterize cement based materials in nanometer scale. High resolution X-ray transmission imaging combined with a rotational axis allows for rendering of samples in three dimensions revealing volumetric details. Scanning transmission X-ray microscope combines high spatial resolution imaging with high spectral resolution of the incident beam to reveal X-ray absorption near edge structure variations in the material nanostructure. Microdiffraction scans the surface of a sample to map its high order reflection or crystallographic variations with a micron-sized incident beam. High pressure X-ray diffraction measures compressibility of pure phase materials. Unique results of studies using the above tools are discussed—a study of pores, connectivity, and morphology of a 2,000?year old concrete using nanotomography; detection of localized and varying silicate chain depolymerization in Al-substituted tobermorite, and quantification of monosulfate distribution in tricalcium aluminate hydration using scanning transmission X-ray microscopy; detection and mapping of hydration products in high volume fly ash paste using microdiffraction; and determination of mechanical properties of various AFm phases using high pressure X-ray diffraction.
机译:摘要我们报道了各种基于同步辐射实验室的技术,用于表征纳米级水泥基材料。高分辨率X射线透射成像与旋转轴相结合,可在三个维度上渲染样品,从而揭示体积细节。扫描透射X射线显微镜将高空间分辨率成像与入射光束的高光谱分辨率结合在一起,以揭示材料纳米结构中边缘结构变化附近的X射线吸收。微衍射扫描样品表面,以微米级入射光束绘制其高阶反射或晶体学变化图。高压X射线衍射测量纯相材料的可压缩性。讨论了使用上述工具进行研究的独特结果,即使用纳米断层扫描技术研究了2000年历史的混凝土的孔隙,连通性和形态。使用扫描透射X射线显微镜检测铝取代的霞石中的局部和变化的硅酸盐链解聚,并定量铝酸三钙水合中的单硫酸盐分布;使用微衍射检测和绘制大体积粉煤灰糊中的水合产物;高压X射线衍射确定各种AFm相的机械性能。

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