Have a personal or library account? Click to login
Lightning Strike Protection of Aircraft Composite Structures: Analysis and Comparative Study Cover

Lightning Strike Protection of Aircraft Composite Structures: Analysis and Comparative Study

By: Andrzej Katunin  
Open Access
|Jul 2017

References

  1. [1] Forget F., Ground lightning protection. An adapter for Ground Power Units, Airbus Technical Magazine, 53, 4-9, 2014.
  2. [2] Mall S., Ouper B.L., Fielding J.C., Compression strength degradation of nanocomposites after lightning strike, Journal of Composite Materials, 43, 2987-3001, 2009.10.1177/0021998309345337
  3. [3] Gou J., Tang Y., Liang F., Zhao Z., Firsich D., Fielding J., Carbon nanofiber paper for lightning strike protection of composite materials, Composites Part B: Engineering, 41(2), 192-198, 2010.10.1016/j.compositesb.2009.06.009
  4. [4] Abdeal G., Murphy A., Nonlinear numerical modelling of lightning strike effect on composite panels with temperature dependent materials properties, Composite Structures, 109, 268-278, 2014.10.1016/j.compstruct.2013.11.007
  5. [5] Katunin A., Krukiewicz K., Preliminary analysis of thermal response of dielectric and conducting composite structures during lightning strike, Composites Theory and Practice, 16(1), 8-14, 2016.10.1515/adms-2016-0007
  6. [6] Sweers G., Birch B., Gokcen J., Lightning strikes: protection, inspection and repair, Aero Magazine, 4, 19-28, 2012.
  7. [7] Chemartin L., Lalande P., Peyrou B., Chazottes A., Elias P.Q., Delalondre C., Cheron B.G., Lago F., Direct effects of lightning on aircraft structures: analysis of the thermal, electrical and mechanical constraints, Journal of Aerospace Lab, 5, AL05-09, 1-15, 2012.
  8. [8] Rupke E.J., Lightning direct effects handbook, Lightning Technologies Inc., Pittsfield, MA, 2002.
  9. [9] Gagné M., Therriault D., Lightning strike protection of composites, Progress in Aerospace Sciences, 64, 1-16, 2014.10.1016/j.paerosci.2013.07.002
  10. [10] Katunin A., Krukiewicz K., Herega A., Catalanotti G., Concept of a conducting composite material for lightning strike protection, Advances in Materials Science, 16(2), 32-46, 2016.10.1515/adms-2016-0007
  11. [11] Krukiewicz K., Katunin A., The effect of reaction medium on the conductivity and morphology of polyaniline doped with camphorsulfonic acid, Synthetic Metals, 214, 45-49, 2016.10.1016/j.synthmet.2016.01.017
  12. [12] Katunin A., Krukiewicz K., Turczyn R., Sul P., Łasica A., Bilewicz M., Synthesis and characterization of the electrically conductive polymeric composite for lightning strike protection of aircraft structures, Composite Structures, 159, 773-783, 2017.10.1016/j.compstruct.2016.10.028
  13. [13] Katunin A., Percolation thresholds of 3D all-sided percolation clusters in non-cubic domains, Journal of Applied Mathematics and Computational Mechanics, 15(4), 63-69, 2016.10.17512/jamcm.2016.4.07
  14. [14] Society of Automotive Engineers. Aerospace recommended practice – 5412 Rev A: Aircraft Lightning Environment and Related Test Waveforms, SAE International Edition, 2005.
  15. [15] Society of Automotive Engineers. Aerospace recommended practice – 5414 Rev A: Aircraft Lightning Zoning, SAE International Edition, 2005.
  16. [16] Society of Automotive Engineers. Aerospace recommended practice – 5413: Certification of Aircraft Electrical/Electronic Systems for the Indirect Effects of Lightning, SAE International Edition, 1999.
  17. [17] Society of Automotive Engineers. Aerospace recommended practice – 5577: Aircraft Lightning Direct Effects Certification, SAE International Edition, 2002.
  18. [18] Society of Automotive Engineers. Aerospace recommended practice – 5416: Aircraft Lightning Test Methods, SAE International Edition, 2005.
  19. [19] Fisher F.A., Plumer J.A., Lightning protection of aircraft, NASA Reference Publication 1008, General Electric Company, Pittsfield, MA, 1977.
  20. [20] Morgan D., Hardwick C.J., Haigh S.J., Meakins A.J., The interation of lightning with aircraft and challenges of lightning testing, Journal of Aerospace Lab, 5, AL05-11, 1-10, 2012.
  21. [21] Feraboli P., Miller M., Damage resistance and tolerance of carbon/epoxy composite coupons subjected to simulated lightning strike, Composites Part A: Applied Science and Manufacturing, 40(6-7), 954-967, 2009.10.1016/j.compositesa.2009.04.025
  22. [22] Ranjith R., Myong R.S., Lee S., Computational investigation of lightning strike effects on aircraft components, International Journal of Aeronautical & Space Sciences, 15, 44-53, 2014.10.5139/IJASS.2014.15.1.44
  23. [23] Wang Z., Ciselli P., Peijs T., The extraordinary reinforcing efficiency of single-walled carbon nanotubes in oriented poly(vinyl alcohol) tapes, Nanotechnology, 18, 455709, 2007.10.1088/0957-4484/18/45/455709
  24. [24] Wang S., Liang R., Wang B., Zhang C., Dispersion and thermal conductivity of carbon nanotube composites, Carbon, 47(1), 53-57, 2009.10.1016/j.carbon.2008.08.024
  25. [25] Huang C.Y., Mo W.W., Roan M.L., Studies on the influence of double-layer electroless metal deposition on the electromagnetic interference shielding effectiveness of carbon fiber/ABS composites, Surface and Coatings Technology, 184(2-3), 163-169, 2004.10.1016/j.surfcoat.2003.11.010
  26. [26] Tao Z., Guo Q., Gao X., Liu L., Graphite fiber/copper composites with near-zero thermal expansion, Materials and Design, 33, 372-375, 2012.10.1016/j.matdes.2011.03.035
DOI: https://doi.org/10.1515/fas-2016-0002 | Journal eISSN: 2300-7591 | Journal ISSN: 2081-7738
Language: English
Page range: 49 - 54
Published on: Jul 22, 2017
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2017 Andrzej Katunin, published by ŁUKASIEWICZ RESEARCH NETWORK – INSTITUTE OF AVIATION
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.