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  • The paper describes a non-destructive eddy current technique for testing and experimental evaluation of material thickness and conductivity. The developed technique has been implemented to a real measuring system to verify the theoretical supposition. A pulsed feeding of the excitation coil has been applied. The pulsed eddy current responses are sensed with an inductive probe as well as a giant magnetoresistive sensor based (GMR) probe. The use of GMRs for this type of application is innovative as well as the post processing method. The particular values of the material properties are computed from integration of the measured signals.
  • The paper describes a non-destructive eddy current technique for testing and experimental evaluation of material thickness and conductivity. The developed technique has been implemented to a real measuring system to verify the theoretical supposition. A pulsed feeding of the excitation coil has been applied. The pulsed eddy current responses are sensed with an inductive probe as well as a giant magnetoresistive sensor based (GMR) probe. The use of GMRs for this type of application is innovative as well as the post processing method. The particular values of the material properties are computed from integration of the measured signals. (en)
Title
  • Measuring of Material Properties Using Pulsed Eddy Current Techniques
  • Measuring of Material Properties Using Pulsed Eddy Current Techniques (en)
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  • Measuring of Material Properties Using Pulsed Eddy Current Techniques
  • Measuring of Material Properties Using Pulsed Eddy Current Techniques (en)
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  • RIV/68407700:21230/11:00180453!RIV12-MSM-21230___
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  • S
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  • 211201
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  • RIV/68407700:21230/11:00180453
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  • NDT; Pulsed Eddy Current; GMR; FEM; thickness (en)
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  • [3BD0505C7F1F]
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  • Prague
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  • Praha
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  • POSTER 2011 - 15th International Student Conference on Electrical Engineering
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  • Král, Jakub
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  • České vysoké učení technické v Praze. Fakulta elektrotechnická
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  • 978-80-01-04806-1
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  • 21230
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