Estimation of airframe weight reduction by integration of piezoelectric and guided wave–based structural health monitoring

Author:

Dienel Christoph P1,Meyer Hendrik2,Werwer Malte3,Willberg Christian1ORCID

Affiliation:

1. Institute of Composite Structures and Adaptive Systems, German Aerospace Center, Braunschweig, Germany

2. Institute of Maintenance, Repair and Overhaul, German Aerospace Center, Hamburg, Germany

3. Airbus Operations GmbH, Hamburg, Germany

Abstract

Current design rules are analyzed and challenged by considering better damage-detection capabilities offered by structure health monitoring systems. The weight-saving potential associated to the integration of such sensing systems is discussed with regards to structural and structure health monitoring system design. Three prospective scenarios are analyzed and considered in a specific use case. According to the most promising scenario (i.e. robust detectability of damages larger than 300 mm2), structural weight reductions of approximately 9% can be achieved. Considering the weight added by the structure health monitoring system, effective weight savings in the order of 5% are achievable. Although this potential is rather modest, applying structure health monitoring systems on structures mainly driven by the damage tolerance criterion is expected to provide reductions far beyond 5%.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Biophysics

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