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  4. Volume imaging NDE and serial sectioning of carbon fiber composites
 
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2017
Conference Paper
Title

Volume imaging NDE and serial sectioning of carbon fiber composites

Abstract
composite material is a combination of two or more materials with very different mechanical, thermal and electrical properties. The various forms of composite materials, due to their high material properties, are widely used as structural materials in the aviation, space, marine, automobile, and sports industries. However, some defects like voids, delamination, or inhomogeneous fiber distribution that form during the fabricating processes of composites can seriously affect the mechanical properties of the composite material. In this study, several imaging NDE techniques such as: thermography, high frequency eddy current, ultrasonic, x-ray radiography, x-ray laminography, and high resolution x-ray CT were conducted to characterize the microstructure of carbon fiber composites. Then, a 3D analysis was implemented by the destructive technique of serial sectioning for the same sample tested by the NDE methods. To better analyze the results of this work and extract a clear volume image for all features and defects contained in the composite material, an intensive comparison was conducted among hundreds of 3D-NDE and multi serial sections' scan images showing the microstructure variation.
Author(s)
Hakim, Issa
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Schumacher, David
BAM Berlin
Sundar, Veeraraghavan
UES, Inc.
Donaldson, Steven L.
University of Dayton
Creuz, Aline
Beuth Hochschule für Technik Berlin
Schneider, Rainer
Beuth Hochschule für Technik Berlin
Keller, Juergen
AMIC GmbH
Browning, Charles E.
University of Dayton
May, Daniel
TU Chemnitz
Ras, Mohamad Abo
Berliner Nanotest und Design GmbH
Meyendorf, Norbert G.H.
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Mainwork
44th Annual Review of Progress in Quantitative Nondestructive Evaluation 2017  
Conference
Annual Review of Progress in Quantitative Nondestructive Evaluation 2017  
DOI
10.1063/1.5031590
Language
English
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
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