Cargando…

Investigation of tribo-mechanical performance of alkali treated rice-husk and polypropylene-random-copolymer based biocomposites

This study was based on the experimental performance evaluation of a wood polymer composite (WPC) that was synthesized by incorporating untreated and treated rice husk (RH) fibers into a polypropylene random copolymer matrix. The submicron-scale RH fibers were alkali-treated to modify the surface an...

Descripción completa

Detalles Bibliográficos
Autores principales: Rabbani, Fahad Ali, Sulaiman, Muhammad, Tabasum, Fatima, Yasin, Saima, Iqbal, Tanveer, Shahbaz, Muhammad, Mujtaba, M.A., Bashir, Shahid, Fayaz, H., Saleel, C Ahamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10685183/
https://www.ncbi.nlm.nih.gov/pubmed/38034731
http://dx.doi.org/10.1016/j.heliyon.2023.e22028
_version_ 1785151573063630848
author Rabbani, Fahad Ali
Sulaiman, Muhammad
Tabasum, Fatima
Yasin, Saima
Iqbal, Tanveer
Shahbaz, Muhammad
Mujtaba, M.A.
Bashir, Shahid
Fayaz, H.
Saleel, C Ahamed
author_facet Rabbani, Fahad Ali
Sulaiman, Muhammad
Tabasum, Fatima
Yasin, Saima
Iqbal, Tanveer
Shahbaz, Muhammad
Mujtaba, M.A.
Bashir, Shahid
Fayaz, H.
Saleel, C Ahamed
author_sort Rabbani, Fahad Ali
collection PubMed
description This study was based on the experimental performance evaluation of a wood polymer composite (WPC) that was synthesized by incorporating untreated and treated rice husk (RH) fibers into a polypropylene random copolymer matrix. The submicron-scale RH fibers were alkali-treated to modify the surface and introduce new functional groups in the WPC. A compatibilizer (maleic anhydride) and a thermos-mechanical properties modifier (polypropylene grafted with 30 % glass fiber) were used in the WPC. The effects of untreated and treated RH on the WPC panels were studied using FESEM, FTIR, and microscope images. A pin-on-disk setup was used to investigate the bulk tribological properties of PPRC and WPC. The complex relationship between the friction coefficient of different loading of RH fibers in the WPC, as a function of sliding distance, was analyzed along with the temperature and morphology of the surface. It was observed that untreated RH acted as a friction modifier, while treated RH acted as a solid lubricant. Microhardness was calculated using the QCSM module on nanoindentation. It was found that untreated RH led to an increase in microhardness, while treated RH caused a decrease in hardness compared to PPRC.
format Online
Article
Text
id pubmed-10685183
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-106851832023-11-30 Investigation of tribo-mechanical performance of alkali treated rice-husk and polypropylene-random-copolymer based biocomposites Rabbani, Fahad Ali Sulaiman, Muhammad Tabasum, Fatima Yasin, Saima Iqbal, Tanveer Shahbaz, Muhammad Mujtaba, M.A. Bashir, Shahid Fayaz, H. Saleel, C Ahamed Heliyon Research Article This study was based on the experimental performance evaluation of a wood polymer composite (WPC) that was synthesized by incorporating untreated and treated rice husk (RH) fibers into a polypropylene random copolymer matrix. The submicron-scale RH fibers were alkali-treated to modify the surface and introduce new functional groups in the WPC. A compatibilizer (maleic anhydride) and a thermos-mechanical properties modifier (polypropylene grafted with 30 % glass fiber) were used in the WPC. The effects of untreated and treated RH on the WPC panels were studied using FESEM, FTIR, and microscope images. A pin-on-disk setup was used to investigate the bulk tribological properties of PPRC and WPC. The complex relationship between the friction coefficient of different loading of RH fibers in the WPC, as a function of sliding distance, was analyzed along with the temperature and morphology of the surface. It was observed that untreated RH acted as a friction modifier, while treated RH acted as a solid lubricant. Microhardness was calculated using the QCSM module on nanoindentation. It was found that untreated RH led to an increase in microhardness, while treated RH caused a decrease in hardness compared to PPRC. Elsevier 2023-11-08 /pmc/articles/PMC10685183/ /pubmed/38034731 http://dx.doi.org/10.1016/j.heliyon.2023.e22028 Text en © 2023 The Authors. Published by Elsevier Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Rabbani, Fahad Ali
Sulaiman, Muhammad
Tabasum, Fatima
Yasin, Saima
Iqbal, Tanveer
Shahbaz, Muhammad
Mujtaba, M.A.
Bashir, Shahid
Fayaz, H.
Saleel, C Ahamed
Investigation of tribo-mechanical performance of alkali treated rice-husk and polypropylene-random-copolymer based biocomposites
title Investigation of tribo-mechanical performance of alkali treated rice-husk and polypropylene-random-copolymer based biocomposites
title_full Investigation of tribo-mechanical performance of alkali treated rice-husk and polypropylene-random-copolymer based biocomposites
title_fullStr Investigation of tribo-mechanical performance of alkali treated rice-husk and polypropylene-random-copolymer based biocomposites
title_full_unstemmed Investigation of tribo-mechanical performance of alkali treated rice-husk and polypropylene-random-copolymer based biocomposites
title_short Investigation of tribo-mechanical performance of alkali treated rice-husk and polypropylene-random-copolymer based biocomposites
title_sort investigation of tribo-mechanical performance of alkali treated rice-husk and polypropylene-random-copolymer based biocomposites
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10685183/
https://www.ncbi.nlm.nih.gov/pubmed/38034731
http://dx.doi.org/10.1016/j.heliyon.2023.e22028
work_keys_str_mv AT rabbanifahadali investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites
AT sulaimanmuhammad investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites
AT tabasumfatima investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites
AT yasinsaima investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites
AT iqbaltanveer investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites
AT shahbazmuhammad investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites
AT mujtabama investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites
AT bashirshahid investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites
AT fayazh investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites
AT saleelcahamed investigationoftribomechanicalperformanceofalkalitreatedricehuskandpolypropylenerandomcopolymerbasedbiocomposites