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Semi-analytical simulation of aligned discontinuous composites

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Title: Semi-analytical simulation of aligned discontinuous composites
Authors: Henry, J
Pimenta, S
Item Type: Journal Article
Abstract: Aligned-discontinuous-fibre reinforced polymers have the potential to combine (i) the high specific stiffness and strength and light weight of conventional continuous-fibre composites with (ii) increased damage tolerance, improved manufacturability, and the ability to close the life-cycle loop of composites by using recycled fibres. However, predicting the mechanical response of discontinuous composites is a challenge for which no universally accepted and computationally-efficient solution exists yet. This paper presents a model for aligned discontinuous-fibre reinforced composites considering (i) a generic constitutive law for the matrix, (ii) stochastic fibre failure under non-uniform stress fields due to the presence of fibre-ends, and (iii) unstable final failure from a critical cluster of damage. Results show good agreement with experiments from the literature, and the model also stresses the importance of considering the stochastic nature of both the fibre-end locations and the fibre-strengths to model aligned discontinuous composites. Parametric studies suggest that failure of aligned discontinuous composites depends on (i) the overlap length between fibres for short-fibre composites, and (ii) the fibre strength for long-fibre composites; intermediate-length fibres would result in discontinuous composites with maximum stiffness, strength, and failure strain simultaneously.
Issue Date: 26-May-2017
Date of Acceptance: 28-Jan-2017
URI: http://hdl.handle.net/10044/1/49149
DOI: 10.1016/j.compscitech.2017.01.027
ISSN: 0266-3538
Publisher: Elsevier
Start Page: 230
End Page: 244
Journal / Book Title: Composites Science and Technology
Volume: 144
Issue: 1
Copyright Statement: © 2017 Elsevier Ltd. All rights reserved. This manuscript is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International http://creativecommons.org/licenses/by-nc-nd/4.0/
Sponsor/Funder: Royal Academy of Engineering
Funder's Grant Number: RF/133
Keywords: Science & Technology
Technology
Materials Science, Composites
Materials Science
Short-fibre composites
Stress/strain curves
Failure criterion
Modelling
Statistics
REINFORCED PLASTIC COMPOSITES
FIBER COMPOSITES
FRACTURE-TOUGHNESS
NUMERICAL-SIMULATION
MICROSCOPIC DAMAGE
TENSILE-STRENGTH
PULL-OUT
FAILURE
MODEL
ARRANGEMENT
09 Engineering
Materials
Publication Status: Published
Online Publication Date: 2017-02-03
Appears in Collections:Mechanical Engineering
Faculty of Engineering