In this work the detection of damage, due to impact loading, on CFRPs using Eddy Current technique based on HTS dc-SQUID (Superconductive QUantum Interference Device) magnetometer is presented. The main advantage of HTS SQUID magnetometer is represented by its unrivalled magnetic flux sensitivity, which allows to detect defects in materials with a very low electrical conductivity as CFRPs. The SQUID magnetic flux measurements has been compared with the results obtained using standard Eddy Current induction coil.

NONDESTRUCTIVE EVALUATION USING HTS SQUID MAGNETOMETER TO DETECT IMPACT DAMAGE IN CARBON FIBER REINFORCED POLYMERS WITH DIFFERENT FIBERORIENTATION

C Bonavolontà;M Valentino;
2006

Abstract

In this work the detection of damage, due to impact loading, on CFRPs using Eddy Current technique based on HTS dc-SQUID (Superconductive QUantum Interference Device) magnetometer is presented. The main advantage of HTS SQUID magnetometer is represented by its unrivalled magnetic flux sensitivity, which allows to detect defects in materials with a very low electrical conductivity as CFRPs. The SQUID magnetic flux measurements has been compared with the results obtained using standard Eddy Current induction coil.
2006
Inglese
D.O. Thompson; D.E. Chimenti
Review of Nondestructive Evaluation
QNDE
25
1007
1014
8
0-7354-0312-0
American Institute Of Physics (AIP)
Melville
STATI UNITI D'AMERICA
Sì, ma tipo non specificato
2006
USA
HTS SQUID
Eddy Current
CFRP
3
none
Bonavolontà, C; Valentino, M; Peluso, G
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/223362
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