Investigating the Synergistic Effects of Hybrid Nanofillers in Polymer Matrix Nanocomposites for Superior Mechanical and Electrical Performance
This research examines the synergistic impacts of hybrid nanofillers, particularly silica nanoparticles (SiO2) and multi-walled carbon nanotubes (MWCNTs), in polyethene (PE) network nanocomposites. The nanocomposites are methodically arranged and characterized for predominant mechanical and electric...
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EDP Sciences
2024-01-01
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Series: | E3S Web of Conferences |
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Online Access: | https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/41/e3sconf_amgse2024_01026.pdf |
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author | Bhong Mahesh Nirsanametla Yadaiah Gudainiyan Jitendra Kumar Rahul Patil Pravin P. Yadav Vijay Kumar Sankhyan Akhil |
author_facet | Bhong Mahesh Nirsanametla Yadaiah Gudainiyan Jitendra Kumar Rahul Patil Pravin P. Yadav Vijay Kumar Sankhyan Akhil |
author_sort | Bhong Mahesh |
collection | DOAJ |
description | This research examines the synergistic impacts of hybrid nanofillers, particularly silica nanoparticles (SiO2) and multi-walled carbon nanotubes (MWCNTs), in polyethene (PE) network nanocomposites. The nanocomposites are methodically arranged and characterized for predominant mechanical and electrical execution. Tensile tests uncover a significant upgrade in mechanical properties, with test C showing a tensile quality of 83.2 MPa, flexible modulus of 3.6 GPa, and stretching at a break of 11.8%. Electrical conductivity estimations demonstrate an outstanding change, with test C coming to 1.1×10 −4 S/m Comparative investigation with related works exhibits the competitive points of interest of the crossover nanocomposites, adjusting with later improvements within the field. Morphological examination through checking and transmission electron microscopy affirms the successful scattering and interconnectivity of cross-breed nanofillers inside the polymer network. Affectability examinations emphasize the significance of preparing parameters in fitting nanocomposite properties, whereas recreation studies give hypothetical bits of knowledge into microstructural angles impacting by and large execution. This study contributes to the advancing scene of hybrid nanocomposite materials, advertising a promising road for the improvement of progressed materials with improved multifunctionality. |
first_indexed | 2024-04-24T10:52:47Z |
format | Article |
id | doaj.art-08f4cd31beee45ebb727b171702067cb |
institution | Directory Open Access Journal |
issn | 2267-1242 |
language | English |
last_indexed | 2024-04-24T10:52:47Z |
publishDate | 2024-01-01 |
publisher | EDP Sciences |
record_format | Article |
series | E3S Web of Conferences |
spelling | doaj.art-08f4cd31beee45ebb727b171702067cb2024-04-12T07:41:36ZengEDP SciencesE3S Web of Conferences2267-12422024-01-015110102610.1051/e3sconf/202451101026e3sconf_amgse2024_01026Investigating the Synergistic Effects of Hybrid Nanofillers in Polymer Matrix Nanocomposites for Superior Mechanical and Electrical PerformanceBhong Mahesh0Nirsanametla Yadaiah1Gudainiyan Jitendra2Kumar Rahul3Patil Pravin P.4Yadav Vijay Kumar5Sankhyan Akhil6Mechanical Engineering Department, Indira College of Engineering and ManagementCentre of Research Impact and Outcome, Chitkara UniversityDepartment of Civil Engineering, GLA UniversityChitkara Centre for Research and Development, Chitkara UniversityDepartment of Mechanical Engineering, Graphic Era Deemed to be UniversityLloyd Institute of Engineering & TechnologyLloyd Law CollegeThis research examines the synergistic impacts of hybrid nanofillers, particularly silica nanoparticles (SiO2) and multi-walled carbon nanotubes (MWCNTs), in polyethene (PE) network nanocomposites. The nanocomposites are methodically arranged and characterized for predominant mechanical and electrical execution. Tensile tests uncover a significant upgrade in mechanical properties, with test C showing a tensile quality of 83.2 MPa, flexible modulus of 3.6 GPa, and stretching at a break of 11.8%. Electrical conductivity estimations demonstrate an outstanding change, with test C coming to 1.1×10 −4 S/m Comparative investigation with related works exhibits the competitive points of interest of the crossover nanocomposites, adjusting with later improvements within the field. Morphological examination through checking and transmission electron microscopy affirms the successful scattering and interconnectivity of cross-breed nanofillers inside the polymer network. Affectability examinations emphasize the significance of preparing parameters in fitting nanocomposite properties, whereas recreation studies give hypothetical bits of knowledge into microstructural angles impacting by and large execution. This study contributes to the advancing scene of hybrid nanocomposite materials, advertising a promising road for the improvement of progressed materials with improved multifunctionality.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/41/e3sconf_amgse2024_01026.pdfpolymer matrix nanocompositeshybrid nanofillerselectrical conductivitymechanical propertiessynergistic effects |
spellingShingle | Bhong Mahesh Nirsanametla Yadaiah Gudainiyan Jitendra Kumar Rahul Patil Pravin P. Yadav Vijay Kumar Sankhyan Akhil Investigating the Synergistic Effects of Hybrid Nanofillers in Polymer Matrix Nanocomposites for Superior Mechanical and Electrical Performance E3S Web of Conferences polymer matrix nanocomposites hybrid nanofillers electrical conductivity mechanical properties synergistic effects |
title | Investigating the Synergistic Effects of Hybrid Nanofillers in Polymer Matrix Nanocomposites for Superior Mechanical and Electrical Performance |
title_full | Investigating the Synergistic Effects of Hybrid Nanofillers in Polymer Matrix Nanocomposites for Superior Mechanical and Electrical Performance |
title_fullStr | Investigating the Synergistic Effects of Hybrid Nanofillers in Polymer Matrix Nanocomposites for Superior Mechanical and Electrical Performance |
title_full_unstemmed | Investigating the Synergistic Effects of Hybrid Nanofillers in Polymer Matrix Nanocomposites for Superior Mechanical and Electrical Performance |
title_short | Investigating the Synergistic Effects of Hybrid Nanofillers in Polymer Matrix Nanocomposites for Superior Mechanical and Electrical Performance |
title_sort | investigating the synergistic effects of hybrid nanofillers in polymer matrix nanocomposites for superior mechanical and electrical performance |
topic | polymer matrix nanocomposites hybrid nanofillers electrical conductivity mechanical properties synergistic effects |
url | https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/41/e3sconf_amgse2024_01026.pdf |
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