Empa, Swiss Federal Laboratories for Materials Science and Technology, Dübendorf, Switzerland.
J Microsc. 2011 Mar;241(3):234-42. doi: 10.1111/j.1365-2818.2010.03433.x. Epub 2010 Sep 9.
Due to the development of integrated low-keV back-scattered electron detectors, it has become possible in focussed ion beam nanotomography to segment not only solid matter and porosity of hardened cement paste, but also to distinguish different phases within the solid matter. This paper illustrates a method that combines two different approaches for improving the contrast between different phases in the solid matrix of a cement paste. The first approach is based on the application of a specially developed 3D diffusion filter. The second approach is based on a modified data-acquisition procedure during focussed ion beam nanotomography. A pair of electron images is acquired for each slice in the focussed ion beam nanotomography dataset. The first image is captured immediately after ion beam milling; the second image is taken after a prolonged exposure to electron beam scanning. The acquisition of complementary focussed ion beam nanotomography datasets and processing the images with a 3D anisotropic diffusion filter allows distinguishing different phases within the hydration products.
由于集成的低 keV 背散射电子探测器的发展,在聚焦离子束纳米断层扫描中不仅可以对硬化水泥浆的固体物质和孔隙进行分割,而且还可以区分固体物质内的不同相。本文阐述了一种结合两种不同方法来提高水泥浆固体基质中不同相之间对比度的方法。第一种方法基于特别开发的 3D 扩散滤波器的应用。第二种方法基于聚焦离子束纳米断层扫描过程中修改的数据采集程序。在聚焦离子束纳米断层扫描数据集的每个切片中采集一对电子图像。第一张图像是在离子束铣削后立即捕获的;第二张图像是在长时间暴露于电子束扫描后拍摄的。采集互补的聚焦离子束纳米断层扫描数据集并使用 3D 各向异性扩散滤波器处理图像,可以区分水化产物内的不同相。