Local Repair of Parts from Polymer Composite Material with the Use of Portable Hot Bonder Control Systems

Article Preview

Abstract:

The object of research is the repair processes of parts made of polymer composite materials using a local heating element. The goal is the development of technology, the selection of equipment for repair of parts and assemblies from polymer composite materials using a local heating element and a vacuum source outside the production area, as part of the aircraft. In the process of performing the work, an analysis and review of the existing equipment for local repair of parts from polymer composite materials was carried out. Equipment for local repair of own and imported production was tested. Based on the results of testing and market analysis, equipment was selected that meets the requirements of ND for the manufacture of parts from polymer composite materials. A technical process for repairing parts using a local heating element and a device for hot gluing has been developed.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

347-352

Citation:

Online since:

May 2020

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2020 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] D.L. Deborah, Chung, Composite Materials: Science and Applications, Engineering Materials and Processes, Springer Science & Business Media, (2010).

Google Scholar

[2] Sohel Rana, Raul Fangueiro, Advanced Composite Materials for Aerospace Engineering: Processing, Properties and Applications, Woodhead Publishing, (2016).

Google Scholar

[3] Luigi Nicolais, Michele Meo, Eva Milella, Composite Materials: A Vision for the Future, Springer Science & Business Media, (2011).

Google Scholar

[4] V. Suong Hoa, Principles of the Manufacturing of Composite Materials, DEStech Publications, Inc, (2009).

Google Scholar

[5] L. Tong, A.P. Mouritz, M. Bannister, 3D Fibre Reinforced Polymer Composites, Elsevier, (2002).

DOI: 10.1016/b978-008043938-9/50012-0

Google Scholar

[6] Adrian P. Mouritz, Introduction to Aerospace Materials, Woodhead Publishing Limited, (2012).

Google Scholar

[7] N.M. Bulanov, V.V. Vorobey, Technology of rocket and aerospace structures from composite materials, Moscow: MSTU, (1998).

Google Scholar

[8] P.P. Babaevsky, S.G. Kulik, Crack resistance of cured polymer compositions, Moscow: Chemistry, (1991).

Google Scholar

[9] Yu.A. Mikhailin, Requirements for structural PCM matrices, Ufa: USATU, (1996).

Google Scholar

[10] N.N. Trofimov, M.Z. Kanovich, Fundamentals of the creation of polymer composites, Moscow: Nauka, (1999).

Google Scholar

[11] E.B. Trostyanskiy, Plastics for structural purposes (thermosets), Moscow: Chemistry, (1974).

Google Scholar

[12] G.S. Golovkina, I.S. Semenova, Reinforced plastics, Moscow: MAI, (1997).

Google Scholar

[13] V.M. Vinogradov, Production technology of prepregs for PCM, Ufa: USATU, (1995).

Google Scholar