Cargando…

Multi-Stressed Nano and Micro-Silica/Silicone Rubber Composites with Improved Dielectric and High-Voltage Insulation Properties

The scope of silicone rubber (SiR) is confined due to the deprivation of its dielectric propertiesupon exposure to various ambient stresses. The aim of this research is to develop silicone rubber-based composites by employing inorganic oxide fillers for improved dielectric and high voltage insulatio...

Descripción completa

Detalles Bibliográficos
Autores principales: , Faiza, Khattak, Abraiz, Rehman, Aqeel Ur, Ali, Asghar, Mahmood, Azhar, Imran, Kashif, Ulasyar, Abasin, Sheh Zad, Haris, Ullah, Nasim, Khan, Adam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8123569/
https://www.ncbi.nlm.nih.gov/pubmed/33926003
http://dx.doi.org/10.3390/polym13091400
_version_ 1783692945743937536
author , Faiza
Khattak, Abraiz
Rehman, Aqeel Ur
Ali, Asghar
Mahmood, Azhar
Imran, Kashif
Ulasyar, Abasin
Sheh Zad, Haris
Ullah, Nasim
Khan, Adam
author_facet , Faiza
Khattak, Abraiz
Rehman, Aqeel Ur
Ali, Asghar
Mahmood, Azhar
Imran, Kashif
Ulasyar, Abasin
Sheh Zad, Haris
Ullah, Nasim
Khan, Adam
author_sort , Faiza
collection PubMed
description The scope of silicone rubber (SiR) is confined due to the deprivation of its dielectric propertiesupon exposure to various ambient stresses. The aim of this research is to develop silicone rubber-based composites by employing inorganic oxide fillers for improved dielectric and high voltage insulation properties for widening its scope in the field of electrical appliances. This study reports the preparation of different composites of silicone rubber with varying concentrations of micro and nano-silica fillers. The dielectric propertytrends of these as-prepared neat and impregnated samples were examined via an indigenously developed weathering chamber capable of applying multiple stresses of acid rain, heat, humidity, UVA radiation, and salt fog. Dielectric constant values were measured before and after applying stresses. Upon applying stresses, a periodic decline in dielectric constant was observed. Improved dielectric properties were obtained by adding micro and nano-silica as fillers. A nano silica-incorporated silicone rubber product exhibited good potential for dual applications as dielectric and high voltage insulation.
format Online
Article
Text
id pubmed-8123569
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-81235692021-05-16 Multi-Stressed Nano and Micro-Silica/Silicone Rubber Composites with Improved Dielectric and High-Voltage Insulation Properties , Faiza Khattak, Abraiz Rehman, Aqeel Ur Ali, Asghar Mahmood, Azhar Imran, Kashif Ulasyar, Abasin Sheh Zad, Haris Ullah, Nasim Khan, Adam Polymers (Basel) Article The scope of silicone rubber (SiR) is confined due to the deprivation of its dielectric propertiesupon exposure to various ambient stresses. The aim of this research is to develop silicone rubber-based composites by employing inorganic oxide fillers for improved dielectric and high voltage insulation properties for widening its scope in the field of electrical appliances. This study reports the preparation of different composites of silicone rubber with varying concentrations of micro and nano-silica fillers. The dielectric propertytrends of these as-prepared neat and impregnated samples were examined via an indigenously developed weathering chamber capable of applying multiple stresses of acid rain, heat, humidity, UVA radiation, and salt fog. Dielectric constant values were measured before and after applying stresses. Upon applying stresses, a periodic decline in dielectric constant was observed. Improved dielectric properties were obtained by adding micro and nano-silica as fillers. A nano silica-incorporated silicone rubber product exhibited good potential for dual applications as dielectric and high voltage insulation. MDPI 2021-04-26 /pmc/articles/PMC8123569/ /pubmed/33926003 http://dx.doi.org/10.3390/polym13091400 Text en © 2021 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
, Faiza
Khattak, Abraiz
Rehman, Aqeel Ur
Ali, Asghar
Mahmood, Azhar
Imran, Kashif
Ulasyar, Abasin
Sheh Zad, Haris
Ullah, Nasim
Khan, Adam
Multi-Stressed Nano and Micro-Silica/Silicone Rubber Composites with Improved Dielectric and High-Voltage Insulation Properties
title Multi-Stressed Nano and Micro-Silica/Silicone Rubber Composites with Improved Dielectric and High-Voltage Insulation Properties
title_full Multi-Stressed Nano and Micro-Silica/Silicone Rubber Composites with Improved Dielectric and High-Voltage Insulation Properties
title_fullStr Multi-Stressed Nano and Micro-Silica/Silicone Rubber Composites with Improved Dielectric and High-Voltage Insulation Properties
title_full_unstemmed Multi-Stressed Nano and Micro-Silica/Silicone Rubber Composites with Improved Dielectric and High-Voltage Insulation Properties
title_short Multi-Stressed Nano and Micro-Silica/Silicone Rubber Composites with Improved Dielectric and High-Voltage Insulation Properties
title_sort multi-stressed nano and micro-silica/silicone rubber composites with improved dielectric and high-voltage insulation properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8123569/
https://www.ncbi.nlm.nih.gov/pubmed/33926003
http://dx.doi.org/10.3390/polym13091400
work_keys_str_mv AT faiza multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties
AT khattakabraiz multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties
AT rehmanaqeelur multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties
AT aliasghar multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties
AT mahmoodazhar multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties
AT imrankashif multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties
AT ulasyarabasin multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties
AT shehzadharis multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties
AT ullahnasim multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties
AT khanadam multistressednanoandmicrosilicasiliconerubbercompositeswithimproveddielectricandhighvoltageinsulationproperties