Cone Beam X-Ray Microtomography – A New Facility For 3d Analysis Of Multiphase Materials

Society for Mining, Metallurgy & Exploration
C. L. Lin J. D. Miller
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
13
File Size:
3118 KB
Publication Date:
Jan 1, 2001

Abstract

As the techniques and resolution for 3-D spatial analysis have advanced in the last decade, it is now possible to map in detail the microstructure of multiphase materials in three-dimensional digital space. In this regard, three-dimensional x-ray microtomography offers a unique imaging capability. Spatial resolution on the order of ten microns can be achieved with the use of microfocus x-ray generators. Recently, a state-of-the-art cone beam x-ray microtomography system has been installed at the University of Utah for the quantitative analysis of multiphase materials in three dimensions. This facility has been designed to obtain 2048 x 2048 pixel reconstruction over a 10-mm diameter, while also allowing for the imaging of somewhat larger (40-mm) objects. The system is capable of handling high-density materials, even materials having a density as high as 8.0 g/cm3. This unique, one-of-a-kind, instrument will be used to obtain three-dimensional spatial reconstruction for such applications as specific examples 3D liberation analysis, pore structure analysis of particle beds during filtration and air-void system of concrete structures. The utilization of x-ray microtomography not only will allow for quantitative analysis of multiphase systems but also allow for textural characterization and the determination of phase continuity. In this paper, we present information regarding the current use of this new facility and reviewed potential applications for the advanced analytical system.
Citation

APA: C. L. Lin J. D. Miller  (2001)  Cone Beam X-Ray Microtomography – A New Facility For 3d Analysis Of Multiphase Materials

MLA: C. L. Lin J. D. Miller Cone Beam X-Ray Microtomography – A New Facility For 3d Analysis Of Multiphase Materials. Society for Mining, Metallurgy & Exploration, 2001.

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