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Flow characteristics of carbon fibre moulding compounds

Evans, A.D.; Qian, C.C.; Turner, T.A.; Harper, L.T.; Warrior, N.A.

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Authors

A.D. Evans

C.C. Qian

Dr LEE HARPER LEE.HARPER@NOTTINGHAM.AC.UK
ASSOCIATE PROFESSOR - COMPOSITES MANUFACTURING



Abstract

This paper presents the development of a low-cost carbon fibre moulding compound using an automated spray deposition process. Directed Fibre Compounding (DFC) is used to produce charge packs directly from low cost carbon fibre tows and liquid epoxy resin. A range of material and process related parameters have been studied to understand their influence on the level of macroscopic charge flow, in an attempt to produce a carbon fibre moulding compound with similar flow characteristics to conventional glass fibre SMCs.
Charge packs covering just 40% of the mould can be effectively used to process DFC, without detrimentally affecting void content, fibre distribution and mechanical properties. Tensile stiffness and strength values of 36GPa and 320MPa are reported for isotropic materials (100% charge coverage), which increase to 46GPa and 408MPa with flow induced alignment (50% charge coverage) at 50% fibre volume fraction.

Citation

Evans, A., Qian, C., Turner, T., Harper, L., & Warrior, N. (2016). Flow characteristics of carbon fibre moulding compounds. Composites Part A: Applied Science and Manufacturing, 90, 1-12. https://doi.org/10.1016/j.compositesa.2016.06.020

Journal Article Type Article
Acceptance Date Jun 20, 2016
Online Publication Date Jun 21, 2016
Publication Date 2016-11
Deposit Date Jun 24, 2016
Publicly Available Date Jun 24, 2016
Journal Composites Part A: Applied Science and Manufacturing
Print ISSN 1359-835X
Electronic ISSN 1878-5840
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 90
Pages 1-12
DOI https://doi.org/10.1016/j.compositesa.2016.06.020
Keywords Compression Moulding, SMC, Carbon Fibre
Public URL https://nottingham-repository.worktribe.com/output/974178
Publisher URL http://www.sciencedirect.com/science/article/pii/S1359835X16301993
Contract Date Jun 24, 2016

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