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QUICOM

Title
Quantitative inspection of complex composite aeronautic parts using advanced X-ray techniques
Funding
EC | FP7 | SP1 | TPT
Call
FP7-AAT-2012-RTD-1
Contract (GA) number
314562
Start Date
2012/10/01
End Date
2015/09/30
Open Access mandate
no
Special Clause 39
no
Organizations
KULeuven, CEA, LAC, EASN TIS, Πανεπιστήμιο Πατρών, AIRBUS, Fraunhofer, VG, EADS DEUTSCHLAND GMBH, FACC, CVUT, FHOO
More information
Detailed project information (CORDIS)

 

  • Advanced Visualization and Exploration Techniques for Fiber Reinforced Polymers

    Johannes WEISSENBÖCK; Andreas REH; Dietmar SALABERGER; Christoph HEINZL; Johann KASTNER (2014)
    Projects: EC | QUICOM (314562)
    For the development of fiber reinforced polymers (FRPs) properties such as fiber content, fiber length, fiber orientation or weaving patterns play a crucial role. To non-destructively analyze these material characteristics 3D X-Ray Computed Tomography (XCT) is currently the method of choice to provide high detailed data of the internal structures. In [1] we have introduced the FiberScout system, a novel tool for interactive exploration and visual analysis of fiber characteristics in XCT data....

    Quantitative Messung und Visualisierung von Faserorientierungs- und Faserlängenverteilung von Glas-, Kohle- und Zellulosefaserverstärkten Kunststoffen mittels µ-Röntgen-Computertomografie

    Johannes WEISSENBÖCK; Mustafa ARIKAN; Dietmar SALABERGER; Christoph HEINZL; Johann KASTNER; FH OÖ Forschungs & Entwicklungs GmbH, Wels, Österreich (2014)
    Projects: EC | QUICOM (314562)
    Faserverstärkte Kunststoffe haben wegen ihrer spezifischen Eigenschaften und ihrer vielseitigen Verarbeitungs- und Anwendungsmöglichkeiten eine sehr große praktische Bedeutung erlangt. Für die Qualitätskontrolle dieser Materialien sind hochgenaue und robuste 3D-Verfahren der zerstörungsfreien Werkstoffprüfung wesentlich. Insbesondere ist es wichtig zu erfassen, wie die Fasern in realen Bauteilen verteilt sind und wie lange jede einzelne Faser im Bauteil tatsächlich ist. In dieser Arbeit wurde...

    Characterization of Porous CFRP Laminates by Mechanical Testing and X-ray Computed Tomography

    Antonios G. STAMOPOULOS; Konstantinos I. TSERPES; Petr PRUCHA; Daniel VAVRIK (2014)
    Projects: EC | QUICOM (314562)
    In the present work, the effects of porosity on matrix-dominated mechanical properties of unidirectional carbon fiber reinforced plastic (CFRP) composites were evaluated by mechanical testing and X-ray computed tomography (CT). Four different levels of porosity in the CFRP material were achieved by implementing different manufacturing parameters. Samples taken from the plates, from which specimens were cut, were tested using X-ray CT to detect porosity. The quantification of porosity from the...

    Software tools for robust extraction, analysis and visualization of porosities in XCT scans of fiber-reinforced polymers

    Christoph HEINZL; Johannes WEISSENBÖCK; Andreas REH; Johann KASTNER; Tobias DIERIG; Thomas GÜNTHER; Denis KIEFEL; Rainer STÖSSEL (2014)
    Projects: EC | QUICOM (314562)
    Advanced composite materials such as carbon fiber reinforced polymers (CFRPs) play an increasingly important role in aeronautics with regard to efficiency and economy but also with regard to function integration and flexibility. In order to non-destructively characterize CFRP materials and components, 3D X-ray computed tomography (XCT) is increasingly used as a reference and escalation method. In this work we are targeting XCT data evaluation for one of the main challenges regarding quality c...

    MObjects-A Novel Method for the Visualization and Interactive Exploration of Defects in Industrial XCT Data

    Reh, Andreas; Gusenbauer, Christian; Kastner, Johann; Groeller, Eduard; Heinzl, Christoph (2013)
    Projects: EC | QUICOM (314562)
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