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Experimental Characterisation of In-plane Shear Behaviour of Uncured Thermoset Prepregs

Research output: Contribution to conferencePaper

Original languageEnglish
DateAccepted/In press - 25 May 2018
DatePublished (current) - 25 Jun 2018
Event18th European Conference on Composite Materials - Athens, Athens, Greece
Duration: 25 Jun 201828 Jun 2018

Conference

Conference18th European Conference on Composite Materials
CountryGreece
CityAthens
Period25/06/1828/06/18

Abstract

The generation of defects (such as wrinkles and tow pull off) in the course of the steering process of automated fibre placement (AFP) is one of the critical limitations of this technique for the manufacturing of composite laminates. The in-and out-of-plane properties of the prepreg materials used have a strong influence on the final quality. In this paper, the in-plane shear behaviour of uncured thermoset prepreg was characterised to analyse the limits of steering and derive material parameters for the model predicting defects. An off-axis tensile test was applied to unidirectional uncured prepregs subjected to different testing rates consistent with the AFP processes. Innitial tests on the influence of temperature were also performed. Test parameters were optimized to minimise earlier buckling of thin samples, non-uniformity of strain distribution. The results show expected strain-rate and less-expected strain dependency of apparent viscosity, as well as common trends in material response at range of temperaures as determinded previously for compaction behaviour of the same material. The data presented in this paper opens the way towards a new material model for predicting the quality of the steering of prepreg tapes in automated deposition processes.

    Research areas

  • Automated Fiber Placement, In-plane shear behaviour, Uncured thermoset prepreg

Event

18th European Conference on Composite Materials

Duration25 Jun 201828 Jun 2018
Location of eventAthens
CityAthens
CountryGreece
Degree of recognitionInternational event

Event: Conference

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  • Full-text PDF (accepted author manuscript)

    Rights statement: This is the accepted author manuscript (AAM). The final published version (version of record) is available online via PCO Convin at https://pcoconvin.eventsair.com/QuickEventWebsitePortal/eccm/program/Agenda/AgendaItemDetail?id=9d6c8cff-d7e9-4362-a28f-2170f745a859 . Please refer to any applicable terms of use of the publisher.

    Accepted author manuscript, 660 KB, PDF document

    Licence: Unspecified

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