The Novo Nordisk Foundation Center For Biosustainability
The 3D Imaging Industry Portal at DTU assists companies in using and implementing 3D imaging in research, development, and production. It is part of the 3D Imaging Center and provides services such as non-destructive 3D component investigation, internal structure visualization, and dynamic process imaging using advanced X-ray and neutron techniques. The portal collaborates with industry partners to develop tailored imaging solutions, enabling better product design, quality control, and research insights.
Industries
Nr. of Employees
small (1-50)
The Novo Nordisk Foundation Center For Biosustainability
Fysikvej, Building 310, Ground Floor, DK-2800 Kongens Lyngby
Services
Laboratory micro-CT scanning to produce high-resolution 3D volumes of materials and components for internal inspection and analysis.
Execution of sub-second tomographic acquisitions at synchrotron radiation facilities to capture fast-moving processes and transient behavior.
Imaging under applied loads, thermal or electrical operation to quantify geometry changes and behavior during real operating conditions using custom fixtures.
Extraction of quantitative metrics from 3D volumes including porosity, pore-size distributions, pore connectivity, and fiber statistics for material characterization and simulation input.
Development and application of neural-network-based segmentation pipelines to separate phases and features in volumetric data and compute population statistics across samples.
Reconstruction of projection data using optimized algorithms, correction of ring and motion artifacts, and filtering to improve image usability for downstream analysis.
Laboratory micro-CT scanning to produce high-resolution 3D volumes of materials and components for internal inspection and analysis.
Execution of sub-second tomographic acquisitions at synchrotron radiation facilities to capture fast-moving processes and transient behavior.
Imaging under applied loads, thermal or electrical operation to quantify geometry changes and behavior during real operating conditions using custom fixtures.
Extraction of quantitative metrics from 3D volumes including porosity, pore-size distributions, pore connectivity, and fiber statistics for material characterization and simulation input.
Development and application of neural-network-based segmentation pipelines to separate phases and features in volumetric data and compute population statistics across samples.
Reconstruction of projection data using optimized algorithms, correction of ring and motion artifacts, and filtering to improve image usability for downstream analysis.
Expertise Areas
- X-ray computed tomography (micro-CT)
- Time-resolved and high-speed tomography
- In situ and operando imaging
- 3D image reconstruction and artifact correction
Key Technologies
- X-ray micro-computed tomography
- Synchrotron radiation tomography
- Iterative reconstruction algorithms
- Filtered back-projection reconstruction
News & Updates
The Villum Foundation grants 30 million DKK for research in mechanical properties of metals due to defects.
Research published in Scientific Reports on 3D imaging of dislocation cell formation during plastic deformation.
Massive digitization of museum artifacts using 3D imaging, funded by The Augustinus Foundation.
Johann Haack's thesis on mapping microstructure of deformed metals using 3D imaging.
The Villum Foundation grants 30 million DKK for research in mechanical properties of metals due to defects.
Research published in Scientific Reports on 3D imaging of dislocation cell formation during plastic deformation.
The Villum Foundation grants 30 million DKK for research in mechanical properties of metals due to defects.
Research published in Scientific Reports on 3D imaging of dislocation cell formation during plastic deformation.
Massive digitization of museum artifacts using 3D imaging, funded by The Augustinus Foundation.
Johann Haack's thesis on mapping microstructure of deformed metals using 3D imaging.
The Villum Foundation grants 30 million DKK for research in mechanical properties of metals due to defects.
Research published in Scientific Reports on 3D imaging of dislocation cell formation during plastic deformation.