• Deutsch

Universitätsbibliothek
Weimar
Open Access

  • Home
  • Search
  • Browse
  • Publish
  • FAQ

Refine

Has Fulltext

  • yes (10)
  • no (1)

Document Type

  • Article (8)
  • Conference Proceeding (3)

Author

  • Osburg, Andrea (11) (remove)

Institute

  • Professur Bauchemie und Polymere Werkstoffe (6)
  • F. A. Finger-Institut für Baustoffkunde (2)
  • Graduiertenkolleg 1462 (1)
  • Institut für Strukturmechanik (1)
  • Juniorprofessur Stochastik und Optimierung (1)
  • Juniorprofessur Urban Energy Systems (1)
  • Professur Stahl- und Hybridbau (1)

Keywords

  • Angewandte Mathematik (2)
  • Geopolymere (2)
  • Mörtel (2)
  • Air tightness (1)
  • Angewandte Informatik (1)
  • Bauchemie (1)
  • Bildanalyse (1)
  • Bildsegmentierung (1)
  • Bonding Methods (1)
  • Building Information Modeling (1)
+ more

Year of publication

  • 2017 (3)
  • 2020 (3)
  • 2021 (2)
  • 2015 (1)
  • 2018 (1)
  • 2019 (1)

11 search hits

  • 11 to 11
  • BibTeX
  • CSV
  • RIS
  • 10
  • 20
  • 50
  • 100
Reconstruction of calcium silicate hydrates using multiple 2D and 3D imaging techniques: Light microscopy, μ-CT, SEM, FIB-nT combined with EDX (2021)
Kleiner, Florian ; Rößler, Christiane ; Vogt, Franziska ; Osburg, Andrea ; Ludwig, Horst-Michael
This study demonstrates the application and combination of multiple imaging techniques [light microscopy, micro-X-ray computer tomography (μ-CT), scanning electron microscopy (SEM) and focussed ion beam – nano-tomography (FIB-nT)] to the analysis of the microstructure of hydrated alite across multiple scales. However, by comparing findings with mercury intrusion porosimetry (MIP), it becomes obvious that the imaged 3D volumes and 2D images do not sufficiently overlap at certain scales to allow a continuous quantification of the pore size distribution (PSD). This can be overcome by improving the resolution and increasing the measured volume. Furthermore, results show that the fibrous morphology of calcium-silicate-hydrates (C-S-H) phases is preserved during FIB-nT. This is a requirement for characterisation of nano-scale porosity. Finally, it was proven that the combination of FIB-nT with energy-dispersive X-ray spectroscopy (EDX) data facilitates the phase segmentation of a 11 × 11 × 7.7 μm3 volume of hydrated alite.
  • 11 to 11
  • Contact
  • Imprint
  • OAI
  • Sitelinks
  • Login

© KOBV OPUS4 2010-2018