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  4. Inaccuracy compensation in X-ray computed tomography image reconstruction and XCT-based finite element models
 
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2022
Doctoral Thesis
Title

Inaccuracy compensation in X-ray computed tomography image reconstruction and XCT-based finite element models

Abstract
This thesis provides a solution to mitigate the effect of four common imaging artifacts in high-resolution X-ray computed tomography which ultimately reduce the accurateness of the acquired 2D projection images and of the reconstructed 3D data of the materials and objects studied. A novel hybrid tomographic image reconstruction approach was developed and implemented for parallel-beam and cone-beam geometries. The proposed approach has proven to suppress image artefacts effectively as demonstrated in hierarchical MoNi4/MoO2@Ni electrocatalyst system, epoxy molding compound and Didymosphenia geminate frustule. Especially deep learning-based approaches excelled in motion compensation and data recovery while statistical minimization performed adequately for misalignment compensation. Consequently, the reconstructed accurate 3D data converted into FE models to simulate the mechanical behaviours of complex material systems.
Thesis Note
Zugl.: Dresden, TU, Diss., 2021
Author(s)
Topal, Emre
Advisor(s)
Zschech, Ehrenfried
Schneider, G.
Kozak, Karol  
Fraunhofer-Institut für Werkzeugmaschinen und Umformtechnik IWU  
Person Involved
Janschek, K.
Publisher
Fraunhofer Verlag  
Publishing Place
Stuttgart
File(s)
Download (59.83 MB)
Rights
Use according to copyright law
DOI
10.24406/publica-fhg-416671
Language
English
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Keyword(s)
  • electronic devices & materials

  • 3D image reconstuction

  • non-destructive testing

  • X-ray computed tomography

  • finite element analysis

  • mechanical characterization

  • mechanical engineer

  • material scientists

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