353 research outputs found

    New Electromagnetic Sensors for Detection of Subsurface Cracking and Corrosion

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    There have been many improvements in electromagnetic NDE for aging aircraft in the last few years. These improvements include rapid eddy-current scanners [1], magneto-optic imaging [2], pulsed eddy-current methods [3], self-nulling probes [4] and superconductive quantum interference devices (SQUIDs) [5]

    New Capacitive-Array Sensors for Post-Process Cure Verification and NDE of Polymers and Composites

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    A new capacitive array sensor has been developed for process verification and NDE of polymers and composites. Unlike existing dielectrometer technology, the new sensor incorporates several innovations to maximize sensitivity to material properties while minimizing the effects of temperature, humidity and electromagnetic interference. Conventional dielectric measurement systems require sensors to be embedded within a material and discarded after a single use. Furthermore, conventional sensors are so sensitive to environmental variables that cure monitoring is based solely on changes in the material ionic conductivity; no absolute measure of cure state is possible. The configuration of these new sensors greatly reduces sensitivity to environmental variables and permits external, rather than embedded, measurement making both post-process cure verification and NDE possible. Since the sensor is not discarded, the cost per measurement is greatly reduced

    Stationary shapes of deformable particles moving at low Reynolds numbers

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    Lecture Notes of the Summer School ``Microswimmers -- From Single Particle Motion to Collective Behaviour'', organised by the DFG Priority Programme SPP 1726 (Forschungszentrum J{\"{u}}lich, 2015).Comment: Pages C7.1-16 of G. Gompper et al. (ed.), Microswimmers - From Single Particle Motion to Collective Behaviour, Lecture Notes of the DFG SPP 1726 Summer School 2015, Forschungszentrum J\"ulich GmbH, Schriften des Forschungszentrums J\"ulich, Reihe Key Technologies, Vol 110, ISBN 978-3-95806-083-
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