We present a method for reconstructing the shape of buried planar defects supposed to be infinitely thick front optical lock-in thermography phase images. Several image processing algorithms are combined, to extract quantitative defect information from a series of phase images (phasegram) in a semi-automatic way. It is shown, that the depth and the shape of a planar defect can be retrieved
Pulse-transient IR thermography enables detection and quantification of subsurface defects. However,...
It was already demonstrated, that the method of Lock-in Thermography (LIT) enables 3D localization o...
Lock-in thermography (LIT), which is a well established technique for non-destructive evaluation, ca...
Abstract Optically excited Lockin-Thermography is a non-contact NDE-method which found many applicat...
This paper presents a new algorithm for three-dimensional reconstruction of defect shape using pulse...
An algorithm for the defect shape reconstruction from pulsed thermography data was developed. The ai...
Lockin thermography is a well-suited method for the characterization of structures made of both meta...
AbstractThis work is aimed at developing an effective method for defect recognition in thermosonic i...
Results of a defect visualization process based on pulse infrared thermography are presented. Algori...
A typical pulsed thermography procedure results in a sequence of infrared images that reflects the e...
The article deals with the retrieval of the depths and sizes of defects situated in carbon fibers re...
Lock in thermography is an advanced NDE technique that has been successfully applied for a wide vari...
The results of testing of acrylic glass, in which cylindrical defects were simulated at different de...
An investigation into the effect of size on the quantitative estimation of defect depth in a steel s...
International audienceThe Thermographic Signal Reconstruction (TSR) technique, based on the logarith...
Pulse-transient IR thermography enables detection and quantification of subsurface defects. However,...
It was already demonstrated, that the method of Lock-in Thermography (LIT) enables 3D localization o...
Lock-in thermography (LIT), which is a well established technique for non-destructive evaluation, ca...
Abstract Optically excited Lockin-Thermography is a non-contact NDE-method which found many applicat...
This paper presents a new algorithm for three-dimensional reconstruction of defect shape using pulse...
An algorithm for the defect shape reconstruction from pulsed thermography data was developed. The ai...
Lockin thermography is a well-suited method for the characterization of structures made of both meta...
AbstractThis work is aimed at developing an effective method for defect recognition in thermosonic i...
Results of a defect visualization process based on pulse infrared thermography are presented. Algori...
A typical pulsed thermography procedure results in a sequence of infrared images that reflects the e...
The article deals with the retrieval of the depths and sizes of defects situated in carbon fibers re...
Lock in thermography is an advanced NDE technique that has been successfully applied for a wide vari...
The results of testing of acrylic glass, in which cylindrical defects were simulated at different de...
An investigation into the effect of size on the quantitative estimation of defect depth in a steel s...
International audienceThe Thermographic Signal Reconstruction (TSR) technique, based on the logarith...
Pulse-transient IR thermography enables detection and quantification of subsurface defects. However,...
It was already demonstrated, that the method of Lock-in Thermography (LIT) enables 3D localization o...
Lock-in thermography (LIT), which is a well established technique for non-destructive evaluation, ca...