X-ray microtomography of materials

Рентгеновская микротомография материалов
Stuart R. Stock
1999-04-01

X-ray attenuation imagingX-ray microtomographycomputed tomographyinorganic matrix compositestransport in porous media
X-ray microtomography allows imaging of the interior microstructure of materials non- destructively and with spatial resolution which can approach that of optical microscopy (typically, no better than 1 μm in samples whose cross-sectional diameter is on the order of 1 mm, and 10 &µm for 10 mm specimens). First, X-ray microtomography's origin in medical imaging and the physics behind computed tomography are reviewed. Summaries of apparatus, radiation sources, data collection schemes, and of materials applications follow. To date, most materials applications fall into one of four areas: inorganic matrix composites, transport in porous media, calcified tissue, and fatigue crack closure. Details of studies in each area highlight the advantages X-ray microtomography brings, and the final section focuses on future directions suggested by recent work using imaging modalities other than X-ray attenuation.
1
Future directions include combining X-ray attenuation imaging with other imaging modalities suggested by recent work.
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Most materials applications to date concentrate on four areas: inorganic matrix composites, transport in porous media, calcified tissue, and fatigue crack closure.
3
Studies demonstrate X-ray microtomography's specific advantages for characterizing microstructure and processes in those four application areas.
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The technique originates from medical imaging and relies on computed tomography physics, with summaries provided for apparatus, radiation sources, and data collection schemes.
5
X-ray microtomography images interior microstructure non-destructively with spatial resolution approaching optical microscopy (typically ≤1 μm for ~1 mm samples, ~10 μm for 10 mm specimens).

X-ray microtomography imaging of materials' interior microstructure

Non-destructive imaging performance and applications of X-ray microtomography (spatial resolution limits, apparatus and data-collection schemes, and use cases in inorganic matrix composites, porous media transport, calcified tissue, and fatigue crack closure)

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1999-04-01
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Stuart R. Stock
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