Imaging defects in austenitic welds presents a significant challenge for the ultrasonic non-destructive testing community. Due to the heating process during their manufacture, a dendritic structure develops, exhibiting large grains with locally anisotropic properties which cause the ultrasonic waves to scatter and refract. When basic imaging algorithms, which typically make constant wave speed assumptions, are applied to datasets arising from the inspection of these welds, the resulting defect reconstructions are often distorted and difficult to interpret correctly. However, knowledge of the underlying spatially varying material properties allows correction of the expected wave travel times and thus results in more reliable defect reconstru...
Traditional ultrasonic imaging methods have a low accuracy in the localization of defects in austeni...
Ultrasonic testing requires materials that are acoustically isotropic. The sound propagation is assu...
The initial step towards a nondestructive technique that estimates grain orientation in an anisotrop...
Imaging defects in austenitic welds presents a significant challenge for the ultrasonic non-destruct...
The initial step towards a nondestructive technique that estimates grain orientation in an anisotrop...
Traditional imaging algorithms within the ultrasonic NDE community typically assume that the materia...
Traditional imaging algorithms within the ultrasonic NDE community typically assume that the materia...
The ability to reliably detect and characterise defects embedded in austenitic steel welds depends o...
The ability to reliably detect and characterise defects embedded in austenitic steel welds depends o...
The initial step towards a non-destructive technique that estimates grain orientation in an anisotro...
The initial step towards a non-destructive technique that estimates grain orientation in an anisotro...
The initial step towards a non-destructive technique that estimates grain orientation in an anisotro...
The initial step towards a non-destructive technique that estimates grain orientation in an anisotro...
International audienceThe complex structure of inhomogeneous welds poses a long-standing challenge i...
The quality of an ultrasonic array image, especially for anisotropic material, depends on accurate i...
Traditional ultrasonic imaging methods have a low accuracy in the localization of defects in austeni...
Ultrasonic testing requires materials that are acoustically isotropic. The sound propagation is assu...
The initial step towards a nondestructive technique that estimates grain orientation in an anisotrop...
Imaging defects in austenitic welds presents a significant challenge for the ultrasonic non-destruct...
The initial step towards a nondestructive technique that estimates grain orientation in an anisotrop...
Traditional imaging algorithms within the ultrasonic NDE community typically assume that the materia...
Traditional imaging algorithms within the ultrasonic NDE community typically assume that the materia...
The ability to reliably detect and characterise defects embedded in austenitic steel welds depends o...
The ability to reliably detect and characterise defects embedded in austenitic steel welds depends o...
The initial step towards a non-destructive technique that estimates grain orientation in an anisotro...
The initial step towards a non-destructive technique that estimates grain orientation in an anisotro...
The initial step towards a non-destructive technique that estimates grain orientation in an anisotro...
The initial step towards a non-destructive technique that estimates grain orientation in an anisotro...
International audienceThe complex structure of inhomogeneous welds poses a long-standing challenge i...
The quality of an ultrasonic array image, especially for anisotropic material, depends on accurate i...
Traditional ultrasonic imaging methods have a low accuracy in the localization of defects in austeni...
Ultrasonic testing requires materials that are acoustically isotropic. The sound propagation is assu...
The initial step towards a nondestructive technique that estimates grain orientation in an anisotrop...