A newly developed software-based compensation of geometrical misalignments is applied to several computed tomography (CT) instruments. The actual geometry of each CT instrument is measured using a dedicated procedure. Then, given the measured geometries, software-based compensation is applied. Dimensional measurements on a validation object show a consistent reduction in observed errors as a result of the compensation. Robustness of the compensation method is confirmed also on a CT instrument with severe misalignments
Among the influence factors affecting CT measurement chain, the study and analysis of CT system geom...
The application and demands for inspection of advanced manufactured components by X-ray computed tom...
In X-ray computed tomography (CT), measurement accuracy and image quality are strongly affected by t...
X-ray computed tomography (CT) is an imaging technique that allows the reconstruction of an imaged p...
Full geometrical alignment of CT instruments remains a complicated endeavor. This paper therefore pr...
Since the industrial revolution, dimensional metrology has been tasked with meeting the continuously...
A procedure for measuring the geometry of X-ray computed tomography (CT) instruments is applied to a...
This doctoral thesis addresses the issue of geometrical calibration of CT instruments. The term 'cal...
Industrial applications of computed tomography (CT) for dimensional metrology have increased steadil...
A procedure for measuring the geometry of X-ray computed tomography (CT) instruments is applied to a...
X-ray computed tomography (XCT) is increasingly used in dimensional metrology. However, the accuracy...
The X-ray computed tomography (CT) measurement process suffers from a variety of error sources inclu...
X-ray computed tomography (CT) has been recognized as an effective tool for non-destructive testing ...
X-ray Computed Tomography (CT) has become an important technology for quality control of industrial ...
X-ray computed tomography (XCT) is increasingly used in industrial metrology for dimensional measure...
Among the influence factors affecting CT measurement chain, the study and analysis of CT system geom...
The application and demands for inspection of advanced manufactured components by X-ray computed tom...
In X-ray computed tomography (CT), measurement accuracy and image quality are strongly affected by t...
X-ray computed tomography (CT) is an imaging technique that allows the reconstruction of an imaged p...
Full geometrical alignment of CT instruments remains a complicated endeavor. This paper therefore pr...
Since the industrial revolution, dimensional metrology has been tasked with meeting the continuously...
A procedure for measuring the geometry of X-ray computed tomography (CT) instruments is applied to a...
This doctoral thesis addresses the issue of geometrical calibration of CT instruments. The term 'cal...
Industrial applications of computed tomography (CT) for dimensional metrology have increased steadil...
A procedure for measuring the geometry of X-ray computed tomography (CT) instruments is applied to a...
X-ray computed tomography (XCT) is increasingly used in dimensional metrology. However, the accuracy...
The X-ray computed tomography (CT) measurement process suffers from a variety of error sources inclu...
X-ray computed tomography (CT) has been recognized as an effective tool for non-destructive testing ...
X-ray Computed Tomography (CT) has become an important technology for quality control of industrial ...
X-ray computed tomography (XCT) is increasingly used in industrial metrology for dimensional measure...
Among the influence factors affecting CT measurement chain, the study and analysis of CT system geom...
The application and demands for inspection of advanced manufactured components by X-ray computed tom...
In X-ray computed tomography (CT), measurement accuracy and image quality are strongly affected by t...