Abrasive Wear Resistance, Mechanical Behaviour, Water Transport Phenomena and Biocorrosion of Epoxy/Femora Biocomposites
Of late, some biological wastes have proven to be reliable candidates in promoting the economic viability of developing polymeric composites. However, the field-proven reliability prediction of such materials during service life requires extensive characterization. In this research, the influence of...
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University of Kragujevac
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doaj-6a33265c04ff4fd29acf362ff87025f02020-11-24T23:56:33ZengUniversity of KragujevacTribology in Industry0354-89962217-79652017-09-0139340041410.24874/ti.2017.39.03.15Abrasive Wear Resistance, Mechanical Behaviour, Water Transport Phenomena and Biocorrosion of Epoxy/Femora BiocompositesJ.L. Olajide0I.O. Oladele1O.J. Odeyemi2S.O. Babarinsa3Department of Metallurgical and Materials Engineering, Federal University of Technology, Akure, Nigeria; Division of Computational Materials Science and Prototype Engineering Development, Quantum Simutech EnterpriseDepartment of Metallurgical and Materials Engineering, Federal University of Technology, Akure, Nigeria; African Materials Science and Engineering Network (AMSEN), A Carnegie-IAS (RISE) Network, FUTA Node, NigeriaDepartment of Metallurgical and Materials Engineering, Federal University of Technology, Akure, NigeriaDepartment of Metallurgical and Materials Engineering, Federal University of Technology, Akure, Nigeria; Department of Mechanical Engineering, Nigerian Defence Academy, Kaduna, NigeriaOf late, some biological wastes have proven to be reliable candidates in promoting the economic viability of developing polymeric composites. However, the field-proven reliability prediction of such materials during service life requires extensive characterization. In this research, the influence of 75 µm bovine femur ash subjected to two-step calcination process on spectroscopic, wear, mechanical, water absorbent and biocorrosive properties of epoxy/femur waste biocomposites was investigated. The test materials were developed via open mould casting and subjected to preferred characterizations apropos of the abovementioned properties. Elemental constituents of the biocomposites and the ash were determined by energy dispersive x-ray spectroscopy with scanning electron microscopy and x-ray fluorescence spectroscopy, respectively. The investigated properties were studied dependent on predetermined volume fractions of the ash in epoxy matrix. Observations from the experimental results revealed that properties’ enhancement was not specific to either low or high volume fraction of the ash in epoxy. Different properties were enhanced at different volume fractions of the ash. Nonetheless, one biocomposite approaching intermediate volume faction of the ash used, exhibited optimum combination of the investigated properties. This is a clear indication that bovine femur waste can be successfully exploited for engineering applications, especially in the areas of materials development.http://www.tribology.fink.rs/journals/2017/2017-3/15.pdfPolymer tribologyPolymer degradationMechanical characterizationIndustrial applications |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
J.L. Olajide I.O. Oladele O.J. Odeyemi S.O. Babarinsa |
spellingShingle |
J.L. Olajide I.O. Oladele O.J. Odeyemi S.O. Babarinsa Abrasive Wear Resistance, Mechanical Behaviour, Water Transport Phenomena and Biocorrosion of Epoxy/Femora Biocomposites Tribology in Industry Polymer tribology Polymer degradation Mechanical characterization Industrial applications |
author_facet |
J.L. Olajide I.O. Oladele O.J. Odeyemi S.O. Babarinsa |
author_sort |
J.L. Olajide |
title |
Abrasive Wear Resistance, Mechanical Behaviour, Water Transport Phenomena and Biocorrosion of Epoxy/Femora Biocomposites |
title_short |
Abrasive Wear Resistance, Mechanical Behaviour, Water Transport Phenomena and Biocorrosion of Epoxy/Femora Biocomposites |
title_full |
Abrasive Wear Resistance, Mechanical Behaviour, Water Transport Phenomena and Biocorrosion of Epoxy/Femora Biocomposites |
title_fullStr |
Abrasive Wear Resistance, Mechanical Behaviour, Water Transport Phenomena and Biocorrosion of Epoxy/Femora Biocomposites |
title_full_unstemmed |
Abrasive Wear Resistance, Mechanical Behaviour, Water Transport Phenomena and Biocorrosion of Epoxy/Femora Biocomposites |
title_sort |
abrasive wear resistance, mechanical behaviour, water transport phenomena and biocorrosion of epoxy/femora biocomposites |
publisher |
University of Kragujevac |
series |
Tribology in Industry |
issn |
0354-8996 2217-7965 |
publishDate |
2017-09-01 |
description |
Of late, some biological wastes have proven to be reliable candidates in promoting the economic viability of developing polymeric composites. However, the field-proven reliability prediction of such materials during service life requires extensive characterization. In this research, the influence of 75 µm bovine femur ash subjected to two-step calcination process on spectroscopic, wear, mechanical, water absorbent and biocorrosive properties of epoxy/femur waste biocomposites was investigated. The test materials were developed via open mould casting and subjected to preferred characterizations apropos of the abovementioned properties. Elemental constituents of the biocomposites and the ash were determined by energy dispersive x-ray spectroscopy with scanning electron microscopy and x-ray fluorescence spectroscopy, respectively. The investigated properties were studied dependent on predetermined volume fractions of the ash in epoxy matrix. Observations from the experimental results revealed that properties’ enhancement was not specific to either low or high volume fraction of the ash in epoxy. Different properties were enhanced at different volume fractions of the ash. Nonetheless, one biocomposite approaching intermediate volume faction of the ash used, exhibited optimum combination of the investigated properties. This is a clear indication that bovine femur waste can be successfully exploited for engineering applications, especially in the areas of materials development. |
topic |
Polymer tribology Polymer degradation Mechanical characterization Industrial applications |
url |
http://www.tribology.fink.rs/journals/2017/2017-3/15.pdf |
work_keys_str_mv |
AT jlolajide abrasivewearresistancemechanicalbehaviourwatertransportphenomenaandbiocorrosionofepoxyfemorabiocomposites AT iooladele abrasivewearresistancemechanicalbehaviourwatertransportphenomenaandbiocorrosionofepoxyfemorabiocomposites AT ojodeyemi abrasivewearresistancemechanicalbehaviourwatertransportphenomenaandbiocorrosionofepoxyfemorabiocomposites AT sobabarinsa abrasivewearresistancemechanicalbehaviourwatertransportphenomenaandbiocorrosionofepoxyfemorabiocomposites |
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