Have a personal or library account? Click to login
Mechanical Tests Applied to Structural Health Monitoring: An Overview of Previous Experience Cover

Mechanical Tests Applied to Structural Health Monitoring: An Overview of Previous Experience

Open Access
|Jul 2021

References

  1. [1] Dragan, K., Dziendzikowski, M., Kurnyta, A. and Kowalczyk, K. (2020). Perspective of Structural Health Monitoring for Military Aviation in Poland. ICAF 2019, Lecture Notes in Mechanical Engineering, Niepokolczycki A. and Komorowski J. (Eds.), pp. 1065-1081.10.1007/978-3-030-21503-3_84
  2. [2] Dziendzikowski, M., Niedbala, P., Kurnyta, A., Kowalczyk, K. and Dragan, K. (2018). Structural Health Monitoring of a Composite Panel Based on PZT Sensors and a Transfer Impedance Framework. Sensors, 18(5), 1521. https://doi.org/10.3390/s1805152110.3390/s18051521598166029751664
  3. [3] Kowalczyk, K., Dziendzikowski, M., Kurnyta, A., Niedbala, P. and Dragan, K. (2020). Application of RLC Filters and Analog Circuits for Increasing Information Bandwidth of Channels of Data Acquisition Units. ICAF 2019, Lecture Notes in Mechanical Engineering, Niepokolczycki A. and Komorowski J. (Eds.), pp. 956-965.10.1007/978-3-030-21503-3_75
  4. [4] Kurnyta, A., Dziendzikowski, M., Dragan, K. and Leski, A. (2014). Approach to Health Monitoring of an Aircraft Structure with Resistive Ladder Sensors During Full Scale Fatigue Test. 7th European Workshop on Structural Health Monitoring, July 8-11, 2014. La Cité, Nantes, France.
  5. [5] ASTM E647-15: Standard Test Method for Measurement of Fatigue Crack Growth Rates.
  6. [6] ISO 12108:2018 Metallic materials — Fatigue testing — Fatigue crack growth method.
  7. [7] PN-84/H-04333: Metoda badania wzrostu pęknięcia zmęczeniowego przy stałej amplitudzie obciążenia.
  8. [8] Wronkowicz-Katunin, A., Katunin, A. and Dragan, K. (2019). Reconstruction of Barely Visible Impact Damage in Composite Structures Based on Non-Destructive Evaluation Results. Sensors, 19(21), 4629. https://doi.org/10.3390/s19214629.10.3390/s19214629686520931653063
  9. [9] Wyrzykowski, J., Pleszakow, E. and Sieniawski, J. (1999). Odkształcanie i pękanie metali. WNT, Warszawa. ISBN: 83-204-2341-4.
  10. [10] ASTM D7136/D7136M-15. Standard Test Method for Measuring the Damage Resistance of a Fiber-Reinforced Polymer Matrix Composite to a Drop-Weight Impact Event.
  11. [11] Baran, M. and Synaszko, P. (2018). Compression After Impact Research, Laboratory for Materials Strength Testing Report No. SP-88/31/2018. AFIT Library.
DOI: https://doi.org/10.2478/fas-2020-0012 | Journal eISSN: 2300-7591 | Journal ISSN: 2081-7738
Language: English
Page range: 123 - 135
Published on: Jul 23, 2021
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2021 Marta Baran, Dominik Nowakowski, Janusz Lisiecki, Sylwester Kłysz, published by ŁUKASIEWICZ RESEARCH NETWORK – INSTITUTE OF AVIATION
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.