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In-field CFRP surfaces Contamination Assessment by aRtificial Olfaction tool

Informazioni Generali

Coordinatore:
ENEA (Italia)
Responsabile ENEA:
MIGLIETTA MARIA LUCIA - TERIN-SPV-DIN (PORTICI (NA))
Ruolo ENEA:
COORD
Sito WEB:
Sito WEB non disponibile

Descrizione e Attività

Descrizione Generale

In CFRP bonded repair applications, it is mandatory to ensure surface cleanliness for achieving robustness and reliability of the bonds. Unfortunately, aircrafts surfaces can be affected by several potential contamination sources that may hamper the bond strength; such contaminations have to be detected before a bonded repair takes place. Maintenance and repair operating conditions also requires that any contamination detection technique should be operated on a portable basis and measurement results be readily available to the operator. Artificial olfaction (AO) technologies could represent an optimal framework to develop such a detection tool (i.e. an electronic nose). They are based on the integration of gas sensing devices and pattern recognition (PR) algorithms. Their working principle mimics mammals olfaction systems: a gas sensor array, being exposed to a gas mixture, produces a distinct response pattern that can be interpreted by software components to produce qualitative and quantitative estimation on the mixture composition. Our proposal addresses the investigation of AO technology suitability and the development of an e-nose prototype for surfaces contamination detection to be used in bonded repair of aircraft composite structures. The selection of an ad-hoc sensing array will be carried out, investigating the use of several gas sensors based on different operating principles. Their capability to reliably react to volatiles emitted by potential aeronautics contaminants (e.g. skydrol, fuels, etc.) and to exhibit limited drift behavior will be firstly investigated in controlled environment. Once a response database will be recorded, a PR component will be designed and developed to provide qualitative and quantitative readings. Design and development efforts of a final prototype inspection tool will be focused on portability in order to achieve operative capability.

Attività svolta da ENEA

L'ENEA coordina il progetto ed esegue tutte le attività previste.

Programmi Europei

Programma:
Settimo Programma Quadro R&ST (2007-2013) → JTI - Clean Sky (N/A - Non applicabile)

Dati Finanziari (in euro)

Costo Eleggibile

Progetto:
235.963,00
ENEA:
235.963,00

Contributo

Al progetto:
176.972,00
A ENEA:
176.972,00

Durata del Progetto

Anno di stipula e Durata:
2011 - 20 mesi
Periodo:
01-05-2011 → 31-12-2012

Numero di Partner (1)

Ruolo Tipologia Nome Nazione
COORD Istituti di ricerca ENEA Italia

Keyword associate al progetto dal database di CORDIS (3)

Keyword Argomento Macro
Aeronautical technology Industry and technology AEROSPACE TECHNOLOGY
INDUSTRIAL MANUFACTURE Industry and technology INDUSTRIAL MANUFACTURE
SCIENTIFIC RESEARCH RTD Horizontal Topics SCIENTIFIC RESEARCH

Altre Keyword non presenti nel database di CORDIS (0)

Nessuna altra keyword disponibile per questo progetto