Effect of Chemical Treatments on Flax Fibre Reinforced Polypropylene Composites on Tensile and Dome Forming Behaviour

Tensile tests were performed on two different natural fibre composites (same constituent material, similar fibre fraction and thickness but different weave structure) to determine changes in mechanical properties caused by various aqueous chemical treatments and whether any permanent changes remain...

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Main Authors: Wentian Wang, Adrian Lowe, Shankar Kalyanasundaram
Format: Article
Language:English
Published: MDPI AG 2015-03-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:http://www.mdpi.com/1422-0067/16/3/6202
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spelling doaj-eac2c2ce40e940f9bc8832b2d1e7c9a02020-11-24T21:53:02ZengMDPI AGInternational Journal of Molecular Sciences1422-00672015-03-011636202621610.3390/ijms16036202ijms16036202Effect of Chemical Treatments on Flax Fibre Reinforced Polypropylene Composites on Tensile and Dome Forming BehaviourWentian Wang0Adrian Lowe1Shankar Kalyanasundaram2Research School of Engineering, Australian National University, North Road, Canberra 0200, AustraliaResearch School of Engineering, Australian National University, North Road, Canberra 0200, AustraliaResearch School of Engineering, Australian National University, North Road, Canberra 0200, AustraliaTensile tests were performed on two different natural fibre composites (same constituent material, similar fibre fraction and thickness but different weave structure) to determine changes in mechanical properties caused by various aqueous chemical treatments and whether any permanent changes remain on drying. Scanning electronic microscopic examinations suggested that flax fibres and the flax/polypropylene interface were affected by the treatments resulting in tensile property variations. The ductility of natural fibre composites was improved significantly under wet condition and mechanical properties (elongation-to-failure, stiffness and strength) can almost retain back to pre-treated levels when dried from wet condition. Preheating is usually required to improve the formability of material in rapid forming, and the chemical treatments performed in this study were far more effective than preheating. The major breakthrough in improving the formability of natural fibre composites can aid in rapid forming of this class of material system.http://www.mdpi.com/1422-0067/16/3/6202anisotropic materialspolymer-matrix compositesmechanical propertieswettabilitystamp forming
collection DOAJ
language English
format Article
sources DOAJ
author Wentian Wang
Adrian Lowe
Shankar Kalyanasundaram
spellingShingle Wentian Wang
Adrian Lowe
Shankar Kalyanasundaram
Effect of Chemical Treatments on Flax Fibre Reinforced Polypropylene Composites on Tensile and Dome Forming Behaviour
International Journal of Molecular Sciences
anisotropic materials
polymer-matrix composites
mechanical properties
wettability
stamp forming
author_facet Wentian Wang
Adrian Lowe
Shankar Kalyanasundaram
author_sort Wentian Wang
title Effect of Chemical Treatments on Flax Fibre Reinforced Polypropylene Composites on Tensile and Dome Forming Behaviour
title_short Effect of Chemical Treatments on Flax Fibre Reinforced Polypropylene Composites on Tensile and Dome Forming Behaviour
title_full Effect of Chemical Treatments on Flax Fibre Reinforced Polypropylene Composites on Tensile and Dome Forming Behaviour
title_fullStr Effect of Chemical Treatments on Flax Fibre Reinforced Polypropylene Composites on Tensile and Dome Forming Behaviour
title_full_unstemmed Effect of Chemical Treatments on Flax Fibre Reinforced Polypropylene Composites on Tensile and Dome Forming Behaviour
title_sort effect of chemical treatments on flax fibre reinforced polypropylene composites on tensile and dome forming behaviour
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2015-03-01
description Tensile tests were performed on two different natural fibre composites (same constituent material, similar fibre fraction and thickness but different weave structure) to determine changes in mechanical properties caused by various aqueous chemical treatments and whether any permanent changes remain on drying. Scanning electronic microscopic examinations suggested that flax fibres and the flax/polypropylene interface were affected by the treatments resulting in tensile property variations. The ductility of natural fibre composites was improved significantly under wet condition and mechanical properties (elongation-to-failure, stiffness and strength) can almost retain back to pre-treated levels when dried from wet condition. Preheating is usually required to improve the formability of material in rapid forming, and the chemical treatments performed in this study were far more effective than preheating. The major breakthrough in improving the formability of natural fibre composites can aid in rapid forming of this class of material system.
topic anisotropic materials
polymer-matrix composites
mechanical properties
wettability
stamp forming
url http://www.mdpi.com/1422-0067/16/3/6202
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AT shankarkalyanasundaram effectofchemicaltreatmentsonflaxfibrereinforcedpolypropylenecompositesontensileanddomeformingbehaviour
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