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Abstrakty
This paper presents the results of tests concerning the value of surface free energy on the basis of measurements of contact angle with measure liquids: distilled water and diiodomethane. The surface of steel-316L samples was modified in an ozone atmosphere, and the concentration of ozone and the conditioning time of the samples in the reaction chamber were changed. The results of tests concerning the measurements of the value of surface free energy were subject to analysis. Also analysed were the components of SFE: the polar and dispersive components. The obtained test results were analysed in statistical terms. The paper ends with conclusions.
Słowa kluczowe
Wydawca
Rocznik
Tom
Strony
66--74
Opis fizyczny
Bibliogr. 16 poz., fig., tab.
Twórcy
autor
- Lublin University of Technology, Faculty of Mechanical Engineering, Department of Production Engineering
autor
- Lublin University of Technology, Faculty of Mechanical Engineering, Department of Production Engineering
Bibliografia
- 1. Chibowski E. and Perea–Carpio R. Problems of contact angle and solid surface free energy determination. Advances in Colloid and Interface Science, 98, 2002, 245–264.
- 2. Ciecińska B. and Perłowski R. Swobodna energia powierzchniowa wybranych materiałów lotniczych po obróbce laserowej. Technologia i Automatyzacja Montażu, 1, 2013, 56–62.
- 3. Dingemans M., Dewulf J., Van Hecke W. and Van Langenhove H. Determination of ozone solubility in polymeric materials. Chemical Engineering Journal, 138, 2008, 172–178.
- 4. Fic S., Kłonica M. and Szewczak A. Adhesive properties of low molecular weight polymer modified with nanosilica and disintegrated ultrasonically for application in waterproofing ceramics. Polimery, 60 (11–12), 2015, 730–734.
- 5. Humienny Z. Specyfikacje Geometrii Wyrobów (GPS) – wykład dla uczelni technicznych. Oficyna wydawnicza PW, 2001.
- 6. Jańczuk B. and Białopiotrowicz T. Swobodna energia powierzchniowa niektórych polimerów. Polimery 32, 1987, 269–271.
- 7. Kamieńska-Krzowska B. and Kłonica M. Rola strategii pomiarów topografii powierzchni w ocenie wybranych parametrów chropowatości. Mechanik, 8–9, 2014, 138–145.
- 8. Kłonica M., Kuczmaszewski J., Kwiatkowski M. and Ozonek J. Polyamide 6 surface layer following ozone treatment. International Journal of Adhesion and Adhesives, 64, 2016, 179–187.
- 9. Kubit A. and Mączka T. Zastosowanie techniki wizyjnej w pomiarze odkształcenia bezwzględnego warstwy kleju w spoinie. Pomiary Automatyka Robotyka, 5, 2012, 91–97.
- 10. Kuczmaszewski J. Fundamentals of metal-metal adhesive joint design. Politechnika Lubelska. Lublin, 2006.
- 11. Kwiatkowski M. P., Kłonica M., Kuczmaszewski J. and Satoh S. Comparative analysis of energetic properties of Ti6Al4V titanium and EN-AW-2017A(PA6) aluminum alloy surface layers for an adhesive bonding application. Ozone: Science&Engineering: The Journal of the International Ozone Association, 35 (3), 2013, 220–228.
- 12. Olewnik-Kruszkowska E., Nowaczyk J. and Kadac K. Effect of ozone exposure on thermal and structural properties of polylactide based composites. Polymer Testing, 56, 2016, 299–307.
- 13. Shalel-Levanon S. and Marmur A. Validity and accuracy in evaluating surface tension of solids by additive approaches. Journal of Colloid and Interface Science, 362, 2003, 489–499.
- 14. Zielecki W., Pawlus P., Perłowski R. and Dzierwa A. Surface topography effect on strength of lap adhesive joints after mechanical pretreatment. Archives of Civil and Mechanical Engineering, 13 (2) 2013, 175–185.
- 15. Żenkiewicz M. New method of analysis of the surface free energy of polymeric materials calculated with Owens-Wendt and Neumann methods. Polimery, 51, 2006, 584–587.
- 16. Żenkiewicz M. Comparative study on the surface free energy of a solid calculated by different methods. Polymer Testing, 26, 2007, 14–19.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-958f0896-0bb8-4a64-bb9d-2712645f4c4e