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  4. Imaging of microcrack propagation in 3D nanostructures applying laboratory nano-XCT Abbildung der Mikrorissausbreitung in 3D-Nanostrukturen mittels Labor-Nano-XCT
 
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2024
Journal Article
Title

Imaging of microcrack propagation in 3D nanostructures applying laboratory nano-XCT Abbildung der Mikrorissausbreitung in 3D-Nanostrukturen mittels Labor-Nano-XCT

Abstract
Laboratory X-ray microscopy and nano X-ray computed tomography (nano-XCT) have the unique capability to combine sub-100nm resolution and high object penetration. Therefore, these are appropriate non-destructive inspection techniques for the detection of flaws with a size of 100 nm and below in opaque objects and bulk materials. Another advantage of X-ray microscopy - as opposed to destructive failure analysis methods - is that kinetic processes such as microcrack evolution can be imaged. The unique combination of micromechanics and high-resolution 3D imaging allows to study degradation and failure mechanisms in opaque 3D nanopatterned structures, and it allows to provide essential information for fracture mechanics in small dimensions. The high-resolution in-situ/operando imaging of microcrack propagation in microelectronic products and in battery electrodes is demonstrated.
Author(s)
Zschech, Ehrenfried
Brandenburg University of Technology Cottbus-Senftenberg
Kutukova, Kristina
Fraunhofer-Institut für Zuverlässigkeit und Mikrointegration IZM  
Journal
Practical metallography = Praktische Metallographie : preparation, imaging and analysis of microstructures  
DOI
10.1515/pm-2024-0074
Language
English
Fraunhofer-Institut für Zuverlässigkeit und Mikrointegration IZM  
Keyword(s)
  • failure analysis

  • microcrack

  • Nanostructure

  • X-ray computed tomography

  • X-ray microscopy

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