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Finite element study of the microdroplet test for interfacial shear strength: Effects of geometric parameters for a carbon fibre/epoxy system

Zhao, Q; Qian, CC; Harper, LT; Warrior, NA

Authors

Q Zhao

CC Qian

LEE HARPER LEE.HARPER@NOTTINGHAM.AC.UK
Associate Professor - Composites Manufacturing

NA Warrior



Abstract

A 3D finite element model has been developed to identify the main causes of variability in the microdroplet test, which is commonly used to characterise the interfacial shear strength between polymer matrices and single filaments. A more realistic droplet shape and test configuration, including meniscus details and prismatic shear blades, have been modelled for a carbon fibre/epoxy system to simulate a more representative set up than is commonly used in the literature. The interfacial behaviour has been modelled using a cohesive surface contact and fibre breakage has been captured using a maximum stress criterion. A statistical study has been performed to systematically evaluate the influence of key geometrical test parameters on the variability in the measured interfacial shear strength values and the likelihood of fibre breakage. Parameters studied are fibre embedded length, fibre diameter, shear blade radial opening distance and shear blade axial misalignment.

Results of the studied carbon fibre /epoxy system suggest that fibre embedded length and the combined effects of the shear blade radial distance and the shear blade axial misalignment are the most significant sources of variability for the measured interfacial shear strength. However, fibre embedded length and the shear blade radial distance are the most significant variables contributing to fibre breakage.

Citation

Zhao, Q., Qian, C., Harper, L., & Warrior, N. (2018). Finite element study of the microdroplet test for interfacial shear strength: Effects of geometric parameters for a carbon fibre/epoxy system. Journal of Composite Materials, 52(16), 2163-2177. https://doi.org/10.1177/0021998317740943

Journal Article Type Article
Acceptance Date Nov 14, 2017
Online Publication Date Nov 14, 2017
Publication Date 2018-07
Deposit Date Apr 30, 2019
Journal Journal of Composite Materials
Print ISSN 0021-9983
Electronic ISSN 1530-793X
Publisher SAGE Publications
Peer Reviewed Peer Reviewed
Volume 52
Issue 16
Pages 2163-2177
DOI https://doi.org/10.1177/0021998317740943
Keywords Interfacial shear strength, interface, cohesive zone, microdroplet test
Public URL https://nottingham-repository.worktribe.com/output/1855293
Publisher URL https://journals.sagepub.com/doi/10.1177/0021998317740943