Experimental investigation and theoretical prediction of tensile properties of Delonix regia seed particle reinforced polymeric composites

Possibility of using Delonix regia (Dr) seed particles as reinforcement for production of new polymeric composites has been studied. Dried Dr seeds were processed using a disc grinder and then classified. Dr particles of 105 μm average size were incorporated into recycled low density polyethylene (R...

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Main Authors: Johnson Olumuyiwa Agunsoye, Sefiu Adekunle Bello, Lordson Olasubomi Adetola
Format: Article
Language:English
Published: Elsevier 2019-01-01
Series:Journal of King Saud University: Engineering Sciences
Online Access:http://www.sciencedirect.com/science/article/pii/S1018363916300587
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spelling doaj-6f5f441763fc47aaa38675cb356e8b832020-11-25T01:21:23ZengElsevierJournal of King Saud University: Engineering Sciences1018-36392019-01-013117077Experimental investigation and theoretical prediction of tensile properties of Delonix regia seed particle reinforced polymeric compositesJohnson Olumuyiwa Agunsoye0Sefiu Adekunle Bello1Lordson Olasubomi Adetola2Department of Metallurgical and Materials Engineering, University of Lagos, NigeriaDepartment of Metallurgical and Materials Engineering, University of Lagos, Nigeria; Department of Materials Science and Engineering, Kwara State University, Malete, Nigeria; Corresponding author at: Department of Materials Science and Engineering, Kwara State University, Malete, Nigeria.Department of Metallurgical and Materials Engineering, University of Lagos, NigeriaPossibility of using Delonix regia (Dr) seed particles as reinforcement for production of new polymeric composites has been studied. Dried Dr seeds were processed using a disc grinder and then classified. Dr particles of 105 μm average size were incorporated into recycled low density polyethylene (RLDPE) up to 10 wt% and RLDPE/Dr particle composites were produced through compounding and compressive moulding technique. Effects of Dr particle addition on morphology and the tensile properties of the produced composites were investigated. The composite tensile properties were confirmed and validated using mono-variate regression model involving full factorial design of one factor-five levels. Results obtained indicated presence of void within the composite grain which impair the tensile strength and strain of the RLDPE composite at 10 wt% of Dr seed particle addition. About 300% and 41% maximum increments in tensile strength and strain were noticed at 4 wt%. The developed models show that wt% of Dr particles has significantly statistical influences on both tensile strength (P = 0.00827) and strain (P = 0.01756). About 93% and 89% response prediction by the models shows that the models exhibit fit goodness and they are appropriate for confirmation of experimental tensile properties. Therefore, this study has given birth to a new polymeric composite for engineering applications. Keywords: Delonix regia, Composites, Agro wastes, Polymer, Production, Polyethylenehttp://www.sciencedirect.com/science/article/pii/S1018363916300587
collection DOAJ
language English
format Article
sources DOAJ
author Johnson Olumuyiwa Agunsoye
Sefiu Adekunle Bello
Lordson Olasubomi Adetola
spellingShingle Johnson Olumuyiwa Agunsoye
Sefiu Adekunle Bello
Lordson Olasubomi Adetola
Experimental investigation and theoretical prediction of tensile properties of Delonix regia seed particle reinforced polymeric composites
Journal of King Saud University: Engineering Sciences
author_facet Johnson Olumuyiwa Agunsoye
Sefiu Adekunle Bello
Lordson Olasubomi Adetola
author_sort Johnson Olumuyiwa Agunsoye
title Experimental investigation and theoretical prediction of tensile properties of Delonix regia seed particle reinforced polymeric composites
title_short Experimental investigation and theoretical prediction of tensile properties of Delonix regia seed particle reinforced polymeric composites
title_full Experimental investigation and theoretical prediction of tensile properties of Delonix regia seed particle reinforced polymeric composites
title_fullStr Experimental investigation and theoretical prediction of tensile properties of Delonix regia seed particle reinforced polymeric composites
title_full_unstemmed Experimental investigation and theoretical prediction of tensile properties of Delonix regia seed particle reinforced polymeric composites
title_sort experimental investigation and theoretical prediction of tensile properties of delonix regia seed particle reinforced polymeric composites
publisher Elsevier
series Journal of King Saud University: Engineering Sciences
issn 1018-3639
publishDate 2019-01-01
description Possibility of using Delonix regia (Dr) seed particles as reinforcement for production of new polymeric composites has been studied. Dried Dr seeds were processed using a disc grinder and then classified. Dr particles of 105 μm average size were incorporated into recycled low density polyethylene (RLDPE) up to 10 wt% and RLDPE/Dr particle composites were produced through compounding and compressive moulding technique. Effects of Dr particle addition on morphology and the tensile properties of the produced composites were investigated. The composite tensile properties were confirmed and validated using mono-variate regression model involving full factorial design of one factor-five levels. Results obtained indicated presence of void within the composite grain which impair the tensile strength and strain of the RLDPE composite at 10 wt% of Dr seed particle addition. About 300% and 41% maximum increments in tensile strength and strain were noticed at 4 wt%. The developed models show that wt% of Dr particles has significantly statistical influences on both tensile strength (P = 0.00827) and strain (P = 0.01756). About 93% and 89% response prediction by the models shows that the models exhibit fit goodness and they are appropriate for confirmation of experimental tensile properties. Therefore, this study has given birth to a new polymeric composite for engineering applications. Keywords: Delonix regia, Composites, Agro wastes, Polymer, Production, Polyethylene
url http://www.sciencedirect.com/science/article/pii/S1018363916300587
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