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Applications

Overview

  • Non-destructive Microwave Testing
  • Magnetic Remanence Method (MRM) for the detection of ferromagnetic inclusions
  • Low frequency eddy current technology (LFEC) to detect deep lying cracks and nonconducting inclusions
  • Thermoelectric method with magnetic readout (TEM) to detect conductive inhomogeneities such as segregations, overheating zones and material fatigue zones
  • Non-destructive Measurement of Paint Thickness on Carbon Composites (CFRP)

Non-destructive Microwave Testing

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Microwave Testing (µT) - An Overview

N37e
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Hand-Held Scanner for Non-destructive Microwave Testing

N31e
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Vermessung von Faserwellen in GFK-Gelegen mittels Mikrowellen

N30d
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Direkt bildgebendes Mikrowellenverfahren für die ZfP von Faserverbundbauteilen

N29d
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Microwave Testing of GFRP Pipes with Sand

N28e
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Application note: Investigation of dry glass fibre fabrics for folds

N27d
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Application note: Installation check of parts after assemblage

N25d
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Application note: NDT of debonds in GFRP pipe couplers

N24e
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Application note: Microwave system for the production oriented Non-Destructive Testing of Leaf Springs made from Glass Fibre Reinforces Plastic

N23e
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Application note: Microwave-Based Non-Destructive Testing of GRP Components

N22e
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Hochauflösende Mikrowellen-Defektoskopie von Thomas Beller, Johann Hinken und Matthias Voigt

N21
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Einführung in die Mikrowellenbasierte Zerstörungsfreie Prüfung

N19d
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Contactless Thickness Measurement of Glass Walls by Using Microwave Reflections

N18
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Microwave-NDT: Example applications for defectoscopy and material testing on components made from plastics and fibre reinforced plastics

N17d
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Magnetic Remanence Method (MRM) for the detection of ferromagnetic inclusions

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Fluxgate gradiometer for high-resolution magnetometry

N12e
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Detection and Characterization of Ferromagnetic Inclusions in Non-Ferromagnetic Alloys

N14e
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High-Resolution Magnetometry based on Unshielded SQUID System

N1e
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Low frequency eddy current technology (LFEC) to detect deep lying cracks and nonconducting inclusions

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Detection of deep-lying subsurface cracks by SQUID-based low frequency eddy current technique

N11e
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Thermoelectric method with magnetic readout (TEM) to detect conductive inhomogeneities such as segregations, overheating zones and material fatigue zones

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Inhomogeneities in pure metals and alloys: detected with the TEM method

N26d
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Thermoelectric Detection of Spherical Tin Inclusions in Copper by Magnetic Sensing

N10e
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First Detection of an Overheating Zone by the Thermoelectric SQUID Method

N8e
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Basics of the Thermoelectric Effect with Magnetic Readout

N6e
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On the Thermoelectric Magnetic Field of Spherical and Cylindrical Inclusions

N5e
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Detection of Fatigue in Aluminum with the Thermoelectric SQUID Method: A First Attempt

N4e
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Detection of Segregations in Aero Engine Turbine Discs with the Thermoelectric SQUID Method

N3e
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Detection of Segregations in Aero Engine Turbine Discs

N2e
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Non-destructive Measurement of Paint Thickness on Carbon Composites (CFRP)

The business section thickness gauge FSC has been transferred to Micro-Epsilon Messtechnik GmbH & Co. KG.

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Use of the FSC to measure paint thicknesses on curved surfaces

N36e
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Calibration on Metal and Differential Measurement on CFRP

N35e
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Paint Thickness Measurements on CFRP Automobile Parts

N34e
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Simplified Balancing of Composite Flight Control Surfaces after Repainting

N33e
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Paint thickness measurement on CFRP and similar substrates

N32e
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