Electrical and mechanical behaviour of copper tufted CFRP composite joints

Date

2021-09-29

Supervisor/s

Journal Title

Journal ISSN

Volume Title

Publisher

SAMPE

Department

Type

Conference paper

ISSN

Format

Free to read from

Citation

Asareh M, Pouchias A, Zitoun A, Yasaee M, Kazilas M & Skordos AA (2021) Electrical and mechanical behaviour of copper tufted CFRP composite joints. In: SAMPE Europe Conference 2021, 29-30 September 2021, Baden/Zürich, Switzerland

Abstract

Electrical continuity of dissimilar joints controls the current and thermal pathways during lightning strike. Tufting using carbon, glass or Kevlar fibres is a primary to introduce through thickness reinforcement for composite structures and assemblies. Replacing the conventional tuft thread material with metallic conductive wire presents an opportunity for enhancing current dissipation and deal with electrical bottlenecks across dissimilar joints. Simulation of the electro-thermo-mechanical behaviour of joints was carried out to assess the influence of metallic tufting. The finite element solver MSC.Marc was utilised. Mechanical models incorporate continuum damage mechanics (CDM) to capture progressive damage in both composite and aluminium components of the joint. The mechanical models were coupled with electrical and thermal simulations of reference and copper tufted carbon fibre epoxy composite joints to assess both the lightning strike response and mechanical robustness of the assembly as well as the improvements offered by tufting. Validation of the model is based on electrical conduction and temperature measurements alongside delamination tests.

Description

Software Description

Software Language

Github

Keywords

Composites, manufacturing, tufting, simulation

DOI

Rights

Attribution 4.0 International

Relationships

Relationships

Supplements

Funder/s

European Union funding: 887042