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Semantic Scholar · Article (Structural Health Monitoring)

Real world application of angular scan pulse-echo ultrasonic propagation imager for damage tolerance evaluation of full-scale composite fuselage

Published 2019-02-24 From Structural Health Monitoring 5 authors

Attribution

This is the abstract and citation. Full text lives at Semantic Scholar — we link out rather than host. All credit to the authors and Structural Health Monitoring.

Abstract

Verbatim from Semantic Scholar. Not paraphrased, not summarized.

Composite structures are assertively used for new airframe designs and manufacturing in military aircrafts because of superior strength-to-weight ratios and fatigue resistance. Because the composites have different fatigue failure characteristics compared with metals, it is necessary to develop different approaches for the composite fatigue design and testing. In this study, we propose an in situ damage evaluation technology with high spatial resolution during full-scale fatigue testing of composite aircraft structures. For real composite structure development considering composite fatigue characteristics, full-scale fatigue and damage tolerance tests of the composite fuselage structure were conducted to evaluate the structural characteristics. In the meantime, the laser ultrasonic nondestructive inspection method, called an angular scan pulse-echo ultrasonic propagation imager, which is fully noncontact, real-time, and portable to position it in between the complex test rigs, is used to observe in situ damage growth of the composite. Finally, the verification procedure assisted by the angular scan pulse-echo ultrasonic propagation imager assures no growth of the initial impact damages after lifetime operation and proves the damage tolerance capability of the developed composite fuselage structure.

Authors

  • Wj Lee
  • Bh Seo
  • Sc Hong
  • M. Won
  • J. Lee

Keywords

  • Materials Science
  • Engineering

Citation: Wj Lee, Bh Seo, Sc Hong , et al. (2019). Real world application of angular scan pulse-echo ultrasonic propagation imager for damage tolerance evaluation of full-scale composite fuselage. Structural Health Monitoring. Semantic Scholar ID 8c6a44840316c95620e356d1dd2579506d28b181. https://doi.org/10.1177/1475921719831370 ↗