Cargando…

Experimental and Computational Study of Mechanical and Thermal Characteristics of h-BN and GNP Infused Polymer Composites for Elevated Temperature Applications

Polymer-based nanocomposites are being considered as replacements for conventional materials in medium to high-temperature applications. This article aims to discover the synergistic effects of reinforcements on the developed polymer-based nanocomposite. An epoxy-based polymer composite was manufact...

Descripción completa

Detalles Bibliográficos
Autores principales: Choukimath, Mantesh C., Banapurmath, Nagaraj R., Riaz, Fahid, Patil, Arun Y., Jalawadi, Arun R., Mujtaba, M. A., Shahapurkar, Kiran, Khan, T. M. Yunus, Alsehli, Mishal, Soudagar, Manzoore Elahi M., Fattah, I. M. R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370023/
https://www.ncbi.nlm.nih.gov/pubmed/35955332
http://dx.doi.org/10.3390/ma15155397
_version_ 1784766661454200832
author Choukimath, Mantesh C.
Banapurmath, Nagaraj R.
Riaz, Fahid
Patil, Arun Y.
Jalawadi, Arun R.
Mujtaba, M. A.
Shahapurkar, Kiran
Khan, T. M. Yunus
Alsehli, Mishal
Soudagar, Manzoore Elahi M.
Fattah, I. M. R.
author_facet Choukimath, Mantesh C.
Banapurmath, Nagaraj R.
Riaz, Fahid
Patil, Arun Y.
Jalawadi, Arun R.
Mujtaba, M. A.
Shahapurkar, Kiran
Khan, T. M. Yunus
Alsehli, Mishal
Soudagar, Manzoore Elahi M.
Fattah, I. M. R.
author_sort Choukimath, Mantesh C.
collection PubMed
description Polymer-based nanocomposites are being considered as replacements for conventional materials in medium to high-temperature applications. This article aims to discover the synergistic effects of reinforcements on the developed polymer-based nanocomposite. An epoxy-based polymer composite was manufactured by reinforcing graphene nanoplatelets (GNP) and h-boron nitride (h-BN) nanofillers. The composites were prepared by varying the reinforcements with the step of 0.1 from 0.1 to 0.6%. Ultrasonication was carried out to ensure the homogenous dispersion of reinforcements. Mechanical, thermal, functional, and scanning electron microscopy (SEM) analysis was carried out on the novel manufactured composites. The evaluation revealed that the polymer composite with GNP 0.2 by wt % has shown an increase in load-bearing capacity by 265% and flexural strength by 165% compared with the pristine form, and the polymer composite with GNP and h-BN 0.6 by wt % showed an increase in load-bearing capacity by 219% and flexural strength by 114% when compared with the pristine form. Furthermore, the evaluation showed that the novel prepared nanocomposite reinforced with GNP and h-BN withstands a higher temperature, around 340 °C, which is validated by thermogravimetric analysis (TGA) trials. The numerical simulation model is implemented to gather the synthesised nanocomposite’s best composition and mechanical properties. The minor error between the simulation and experimental data endorses the model’s validity. To demonstrate the industrial applicability of the presented material, a case study is proposed to predict the temperature range for compressor blades of gas turbine engines containing nanocomposite material as the substrate and graphene/h-BN as reinforcement particles.
format Online
Article
Text
id pubmed-9370023
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93700232022-08-12 Experimental and Computational Study of Mechanical and Thermal Characteristics of h-BN and GNP Infused Polymer Composites for Elevated Temperature Applications Choukimath, Mantesh C. Banapurmath, Nagaraj R. Riaz, Fahid Patil, Arun Y. Jalawadi, Arun R. Mujtaba, M. A. Shahapurkar, Kiran Khan, T. M. Yunus Alsehli, Mishal Soudagar, Manzoore Elahi M. Fattah, I. M. R. Materials (Basel) Article Polymer-based nanocomposites are being considered as replacements for conventional materials in medium to high-temperature applications. This article aims to discover the synergistic effects of reinforcements on the developed polymer-based nanocomposite. An epoxy-based polymer composite was manufactured by reinforcing graphene nanoplatelets (GNP) and h-boron nitride (h-BN) nanofillers. The composites were prepared by varying the reinforcements with the step of 0.1 from 0.1 to 0.6%. Ultrasonication was carried out to ensure the homogenous dispersion of reinforcements. Mechanical, thermal, functional, and scanning electron microscopy (SEM) analysis was carried out on the novel manufactured composites. The evaluation revealed that the polymer composite with GNP 0.2 by wt % has shown an increase in load-bearing capacity by 265% and flexural strength by 165% compared with the pristine form, and the polymer composite with GNP and h-BN 0.6 by wt % showed an increase in load-bearing capacity by 219% and flexural strength by 114% when compared with the pristine form. Furthermore, the evaluation showed that the novel prepared nanocomposite reinforced with GNP and h-BN withstands a higher temperature, around 340 °C, which is validated by thermogravimetric analysis (TGA) trials. The numerical simulation model is implemented to gather the synthesised nanocomposite’s best composition and mechanical properties. The minor error between the simulation and experimental data endorses the model’s validity. To demonstrate the industrial applicability of the presented material, a case study is proposed to predict the temperature range for compressor blades of gas turbine engines containing nanocomposite material as the substrate and graphene/h-BN as reinforcement particles. MDPI 2022-08-05 /pmc/articles/PMC9370023/ /pubmed/35955332 http://dx.doi.org/10.3390/ma15155397 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Choukimath, Mantesh C.
Banapurmath, Nagaraj R.
Riaz, Fahid
Patil, Arun Y.
Jalawadi, Arun R.
Mujtaba, M. A.
Shahapurkar, Kiran
Khan, T. M. Yunus
Alsehli, Mishal
Soudagar, Manzoore Elahi M.
Fattah, I. M. R.
Experimental and Computational Study of Mechanical and Thermal Characteristics of h-BN and GNP Infused Polymer Composites for Elevated Temperature Applications
title Experimental and Computational Study of Mechanical and Thermal Characteristics of h-BN and GNP Infused Polymer Composites for Elevated Temperature Applications
title_full Experimental and Computational Study of Mechanical and Thermal Characteristics of h-BN and GNP Infused Polymer Composites for Elevated Temperature Applications
title_fullStr Experimental and Computational Study of Mechanical and Thermal Characteristics of h-BN and GNP Infused Polymer Composites for Elevated Temperature Applications
title_full_unstemmed Experimental and Computational Study of Mechanical and Thermal Characteristics of h-BN and GNP Infused Polymer Composites for Elevated Temperature Applications
title_short Experimental and Computational Study of Mechanical and Thermal Characteristics of h-BN and GNP Infused Polymer Composites for Elevated Temperature Applications
title_sort experimental and computational study of mechanical and thermal characteristics of h-bn and gnp infused polymer composites for elevated temperature applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9370023/
https://www.ncbi.nlm.nih.gov/pubmed/35955332
http://dx.doi.org/10.3390/ma15155397
work_keys_str_mv AT choukimathmanteshc experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT banapurmathnagarajr experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT riazfahid experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT patilaruny experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT jalawadiarunr experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT mujtabama experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT shahapurkarkiran experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT khantmyunus experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT alsehlimishal experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT soudagarmanzooreelahim experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications
AT fattahimr experimentalandcomputationalstudyofmechanicalandthermalcharacteristicsofhbnandgnpinfusedpolymercompositesforelevatedtemperatureapplications