The influence of the ageing-fatigue degradation on the mechanical properties of glass-reinforced composites
References
- 1. Świderski, W. (2003). Lock-in thermography to rapid evaluation of destruction area in composite materials used in military applications.5132, Sixth International Conference on Quality Control by Artificial Vision, 506. DOI: 10.1117/12.515159.
- 2. Kaduna, A. & Gnatowski, A. (2012). Influence of heating rate on evolution of dynamic properties of polymeric laminates.41(6), 233–239. dx.doi.org/10.1179/1743289811Y.0000000037.
- 3. Avdelidis, N.P., Hawtin, B.C. & Almond, D.P. (2003). Transient thermography in the assessment of defects of aircraft composites.Vol. 36, 433–439. dx.doi.org/10.1016/S0963-8695(03)00052-5.
- 4. Avdelidis, N.P., Ibarra-Castanedo, C., Maldague, X., Marioli-Riga, Z.P. & Almond, D.P. (2004). A thermographic comparison study for the assessment of composite patches.Vol. 45, 291–299. DOI: 10.1117/12.771082.
- 5. Bates, D., Smith, G., Lu, D. & Hewitt, J. (2000). Rapid thermal non-destructive testing of aircraft components.Vol. 31, 175–185. DOI: 10.1016/S1359-8368(00)00005-6.
- 6. Maldague, X.P.V. (2007).. London. United Kingdom. Springer-Verlag.
- 7. Ruddock, R.W. (2013).. USA:
- 8. Vollmer, M. & Mollmann, K.P. (2010).. Weinheim, Germany: Wiley-VCH Verlag GmbH&Co.
- 9. Rojek, M., Szymiczek, M. & Wróbel, G. (2011). Nondestructive methods of research on polymer materials.6(144), 507–510 (in Polish).
- 10. Martin, R. (2008)., Cambridge, England: Woodhead Publishing Limited.
- 11. Bogdan-Włodek, A., Kozioł, M. & Myalski, J. (April, 2012). Influence of surface treatment on the wetting process of jute fibres with thermosetting polyester resin.14(1), 21–27. DOI: 10.2478/v10026-012-0054-9.
- 12. Landowski, M., Budzik, M. & Imielińska, K. (March, 2011). On degradation of glass/polyester laminate immersed in water.11(1), 35–39. DOI: 10.2478/v10077-011-004-x.
- 13. Harris, B. (2003)., Cambridge, England: Woodhead Publishing Limited.
- 14. Rojek, M. (2011).. Gliwice, Poland: International OCSCO World Press (in Polish).
- 15. Błażejewski, W. (2009). Methodology of selection of the structure of composite braid carriers with reference to containers made by the winding method.1-M, 9–14. (in Polish).
- 16. Cohen, D. (1997, July). Influence of filament winding parameters on composite vessel quality and strength.28A, 1035–1047. DOI: 10.1016/S1359-835X(97)00073-0.
- 17. Szymiczek, M., Rojek, M. & Wróbel, G. (2011). Test of composite pipe in the aspect of diagnostic of aging – fatigue changes. Proc. Int. Sem. Sci. Educ. 16–23 April 2011 (61–63). Rome, Italy.
- 18. Stabik, J., Szymiczek, M., Wróbel, G. & Rojek, M. (2012).. Proceedings of X International Conference of the Quality. Reliability and Long Usage of Technical Systems and Technological Processes. 20–27 November 2012 (63–66). Eilat, Israel.
- 19. Standards Association of Poland. (2002). Poland standard: Advanced technical ceramics – Monolithic ceramics – Thermo-physical properties – Part 2: Determination of thermal diffusivity by the laser flash (or heat pulse) method. PN-EN 821-2:2002.
- 20. N501 029 32/2474 – Non-destructive method of assessment concerning the degree of thermal and fatigue degradation of construction polymer composites.
- 21. Standards Association of Poland. (1993). Poland standard: Plastics – Determination of flexural properties. PN-EN ISO 178–1993.
DOI: https://doi.org/10.1515/pjct-2016-0017 | Journal eISSN: 3072-0389 (formerly 1899-4741) | Journal ISSN: 1509-8117
Language: English
Page range: 113 - 119
Published on: Apr 4, 2016
Published by: West Pomeranian University of Technology, Szczecin
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Related subjects:
© 2016 Małgorzata Szymiczek, Maciej Rojek, Gabriel Wróbel, published by West Pomeranian University of Technology, Szczecin
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.