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Improved flaw detection and characterization with difference thermography
Author(s) -
William P. Winfree,
Joseph N. Zalameda,
Patricia A. Howell
Publication year - 2011
Publication title -
proceedings of spie, the international society for optical engineering/proceedings of spie
Language(s) - English
Resource type - Conference proceedings
SCImago Journal Rank - 0.192
H-Index - 176
eISSN - 1996-756X
pISSN - 0277-786X
DOI - 10.1117/12.883472
Subject(s) - thermography , characterization (materials science) , materials science , porosity , thermal , nondestructive testing , noise (video) , composite material , infrared , optics , computer science , meteorology , image (mathematics) , medicine , physics , artificial intelligence , radiology , nanotechnology
Flaw detection and characterization with thermographic techniques in graphite polymer composites is often limited by localized variations in the thermographic response. Variations in properties such as acceptable porosity, variations in fiber volume content and surface polymer thickness result in variations in the thermal response that in general cause significant variations in the initial thermal response. These variations result in a noise floor that increases the difficulty of detecting and characterizing deeper flaws. The paper investigates comparing thermographic responses taken before and after a change in state in a composite to improve the detection of subsurface flaws. A method is presented for registration of the responses before finding the difference. A significant improvement in the detectability is achieved by comparing the differences in response. Examples of changes in state due to application of a load and impact are presented.

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