The investigation of influence of surface activation of aluminum 7075 on strength of bonded joint
Main Article Content
Abstract
The paper presents the results of the static strength test on shear adhesion bonded joints made of aluminum alloy 7075. The tests were of a comparative nature and examined the effect of surface activation using low temperature plasma with non-activated samples. Three types of adhesives were used. Based on the studies, the increase of free sur- face energy for low temperature plasma samples and for 2 of the 3 tested adhesives increased the strength of the joint were observed.
Downloads
Article Details
Creative Commons CC BY 4.0 https://creativecommons.org/licenses/by/4.0/
Welding Technology Review (WTR) articles are published open access under a CC BY licence (Creative Commons Attribution 4.0 International licence). The CC BY licence is the most open licence available and considered the industry 'gold standard' for open access; it is also preferred by many funders. This licence allows readers to copy and redistribute the material in any medium or format, and to alter, transform, or build upon the material, including for commercial use, providing the original author is credited.
References
Anagreha N., Dorn L.: In uence of low-pressure plasma treatment on adhesive bonding between polybutylene terephthalat (PBT) and aluminum, International Journal of Adhesion & Adhesives, 25, 2005, pp. 165-172.
Baldan A.: Adhesion phenomena in bonded joints, Intern. Journal of Adhesion & Adhesives, 38, 2012.
Bárdos L., Baránková H.: Cold atmospheric plasma: sources, processes, and applications, Thin Solid Films, 2010, 518, pp. 6705-6713.
Gao Z., Sun J., Peng S., Yao L., Qiu Y.: Surface modi cation of a polyamide 6 lm by He/CF4 plasma using atmospheric pressure plasma jet, Appl. Surf. Sci., 256, 2009, pp. 1496-1501.
Godzimirski J.: Wytrzymałość doraźna konstrukcyjnych połączeń klejowych, WNT, Warszawa, 2002.
Kłonica M., Kuczmaszewski J.: Badania porównawcze wytrzymałości na ścinanie klejowych połączeń zakładkowych stali 316L po szokach termicznych, Przetwórstwo Tworzyw Sztucznych, 2 (164) 2015, s. 125-130.
Mandol no C., Lertora E., Gambaro C.: In uence of cold plasma treatment parameters on the mechanical properties of polyamide homogeneous bonded joints, Surface & Coatings Technology, 313, 2017, pp. 222-229.
Mirski Z., Wróblewski R., Gołembiewski A.: Odporność połączeń klejowych na oddziaływanie wysokiej temperatury, Przegląd Spawalnictwa, nr 10/87, 2015, s. 108-114.
Rudawska A., Danczak I., Müller M., Valasek P.: The effect of sand blasting on Surface properties for adhesion, Intern. Journal of Adhesion & Adhesives, 70, 2016, pp. 176-190.
Stryczewska H.D.: Technologie zimnej plazmy. Wytwarzanie, modelowanie, zastosowania, Elektryka, Zeszyt 1, 2011, s. 41-61.
Vendemiatti C., Hosokawa R.S., Rangel R.C.C., Bortoleto J.R.R., Cruz N.C., Rangel E.C.: Wettability and surface microstructure of polyamide 6 coated with SiOXCYHZ lms, Surf. Coat. Technol., 275, 2015, pp. 32-40.
Zhu L., Teng W., Xu H., Liu Y., Jiang Q., Wang C., Qiu Y.: Effect of absorbed- moisture on the atmospheric plasma etching of polyamide bers, Surf. Coat. Technol., 202, 2008, pp.1966-1974.
Żenkiewicz M.: Adhezja i mody kowanie warstwy wierzchniej tworzyw wielkocząsteczkowych, WNT, Warszawa 2000.
Karta technologiczna produktu Agomet F330.
Dokumentacja goniometru rmy Krüss, Hamburg, 2009.