Ability of Joining Composite Structures with Metal by Riveting

Author:

GODZIMIRSKI Jan1,ARKUSZYŃSKA Angelika1

Affiliation:

1. Military University of Technology, Faculty of Mechatronics, Armament and Aerospace, Warsaw, Poland

Abstract

The technology of repairing the composite coverings of the MiG-29 airframe provides for the possibility of repairing with the use of metal battens, connected with the composite cover by riveting, with the use of metal washers protecting the composite against damage during rivet upsetting. Tests were carried out to check the possibility of replacing the composite covering repairs with solid rivets with blind rivets, which would eliminate the necessity for the troublesome disassembly and assembly of the damaged covering. The conducted research shows that the threaded blind titanium rivets meet the requirements to be substitutes for solid rivets. The performed numerical calculations show that in riveted joints, an important role in the load transfer is played by the friction forces between the joined elements, and the value of these forces depends on the pressure of the head and the tab. Titanium blind threaded rivets provide higher pressure than cold-headed ones.

Publisher

Index Copernicus

Subject

General Medicine

Reference9 articles.

1. Jawaid, Mohammad, Mohamed Thariq. 2018. Sustainable Composites for Aerospace Applications. Philadelphia: Woodhead Publishing.

2. Cavalier, Jean Claude, Isabelle Berdoyes, Eric Bouillon. 2006. “Composites in Aerospace Industry”. Advances in Science and Technology 50 : 153–162.

3. Komorek, Andrzej, Paweł Przybyłek. 2012. “Examination of the influence of cross-impact load on bend strength properties of composite materials used in aviation”. Eksploatacja i Niezawodność – Maintenance and Reliability 14 (4) : 265-269.

4. Atas, Cesim, Yalin Akgun, Olgay Dagdelen, Bulent M Icten, Mehmet Sarikanat. 2011. “An experimental investigation on the low velocity impact response of composite plates repaired by VARIM and hand lay-up processes”. Composite Structures. 93 (3) : 1178-1186.

5. Pasiecznik W.A., Stepanienko S.A. 2017. “Quality assurance of drilling in CFRP by combined drills” (in Russian). Technologia i Automatyzacja Montażu 97 (3) : 38-41.

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