Effect of Environmental Temperature on the Insulating Performance of Epoxy/MgO Nanocomposites

This article reports on the development of nano-MgO/epoxy resin composites with various mass ratios via a solution blending method. The influence of MgO nanofillers on the thermal properties and the effect of environmental temperature on the insulating properties of the composite material were analy...

Full description

Bibliographic Details
Main Authors: Guanghui Ge, Yongzhe Tang, Yuxia Li, Liangsong Huang
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/10/20/7018
_version_ 1797551507752615936
author Guanghui Ge
Yongzhe Tang
Yuxia Li
Liangsong Huang
author_facet Guanghui Ge
Yongzhe Tang
Yuxia Li
Liangsong Huang
author_sort Guanghui Ge
collection DOAJ
description This article reports on the development of nano-MgO/epoxy resin composites with various mass ratios via a solution blending method. The influence of MgO nanofillers on the thermal properties and the effect of environmental temperature on the insulating properties of the composite material were analyzed. The results show that the thermal conductivity of the composites increased with an increasing MgO nanofiller content. Compared with the pure epoxy resin, the thermal conductivity increased by 75% when the content of MgO nanoparticles was 7%. The volume resistivity first increased and then decreased with an increasing doping concentration. The volume resistivity increased by 26.8% in comparison with the pure epoxy resin when the content of MgO nanoparticles was 1%, while its dielectric constant and dielectric loss increased with temperature. In addition, the dielectric constant increased and the dielectric loss first decreased and then increased with an increasing MgO nanoparticle content. Moreover, the MgO composites changed from a glassy to a rubbery state, and the breakdown strength was significantly reduced with an increased temperature. When the temperature was higher than the glass transition temperature, the breakdown strength decreased by 51.3% compared with the maximum breakdown strength at 20 °C. As the content of MgO nanoparticles increased, the breakdown strength of the composite first increased and then decreased. The highest breakdown strength was achieved when the content of MgO nanoparticles was 1%, which was 11.1% higher than that of the pure epoxy resin. It was concluded that the MgO nanofillers can significantly improve the thermal properties of epoxy composites and their insulation performance at high temperatures.
first_indexed 2024-03-10T15:46:02Z
format Article
id doaj.art-b770afebf5f4423692ea602cdd0d3e27
institution Directory Open Access Journal
issn 2076-3417
language English
last_indexed 2024-03-10T15:46:02Z
publishDate 2020-10-01
publisher MDPI AG
record_format Article
series Applied Sciences
spelling doaj.art-b770afebf5f4423692ea602cdd0d3e272023-11-20T16:27:09ZengMDPI AGApplied Sciences2076-34172020-10-011020701810.3390/app10207018Effect of Environmental Temperature on the Insulating Performance of Epoxy/MgO NanocompositesGuanghui Ge0Yongzhe Tang1Yuxia Li2Liangsong Huang3Key Laboratory for Robot Intelligent Technology of Shandong Province, Shandong University of Science and Technology, Qingdao 266590, ChinaKey Laboratory for Robot Intelligent Technology of Shandong Province, Shandong University of Science and Technology, Qingdao 266590, ChinaKey Laboratory for Robot Intelligent Technology of Shandong Province, Shandong University of Science and Technology, Qingdao 266590, ChinaKey Laboratory for Robot Intelligent Technology of Shandong Province, Shandong University of Science and Technology, Qingdao 266590, ChinaThis article reports on the development of nano-MgO/epoxy resin composites with various mass ratios via a solution blending method. The influence of MgO nanofillers on the thermal properties and the effect of environmental temperature on the insulating properties of the composite material were analyzed. The results show that the thermal conductivity of the composites increased with an increasing MgO nanofiller content. Compared with the pure epoxy resin, the thermal conductivity increased by 75% when the content of MgO nanoparticles was 7%. The volume resistivity first increased and then decreased with an increasing doping concentration. The volume resistivity increased by 26.8% in comparison with the pure epoxy resin when the content of MgO nanoparticles was 1%, while its dielectric constant and dielectric loss increased with temperature. In addition, the dielectric constant increased and the dielectric loss first decreased and then increased with an increasing MgO nanoparticle content. Moreover, the MgO composites changed from a glassy to a rubbery state, and the breakdown strength was significantly reduced with an increased temperature. When the temperature was higher than the glass transition temperature, the breakdown strength decreased by 51.3% compared with the maximum breakdown strength at 20 °C. As the content of MgO nanoparticles increased, the breakdown strength of the composite first increased and then decreased. The highest breakdown strength was achieved when the content of MgO nanoparticles was 1%, which was 11.1% higher than that of the pure epoxy resin. It was concluded that the MgO nanofillers can significantly improve the thermal properties of epoxy composites and their insulation performance at high temperatures.https://www.mdpi.com/2076-3417/10/20/7018epoxy resinthermal conductivityvolume resistivitydielectric constantdielectric lossbreakdown strength
spellingShingle Guanghui Ge
Yongzhe Tang
Yuxia Li
Liangsong Huang
Effect of Environmental Temperature on the Insulating Performance of Epoxy/MgO Nanocomposites
Applied Sciences
epoxy resin
thermal conductivity
volume resistivity
dielectric constant
dielectric loss
breakdown strength
title Effect of Environmental Temperature on the Insulating Performance of Epoxy/MgO Nanocomposites
title_full Effect of Environmental Temperature on the Insulating Performance of Epoxy/MgO Nanocomposites
title_fullStr Effect of Environmental Temperature on the Insulating Performance of Epoxy/MgO Nanocomposites
title_full_unstemmed Effect of Environmental Temperature on the Insulating Performance of Epoxy/MgO Nanocomposites
title_short Effect of Environmental Temperature on the Insulating Performance of Epoxy/MgO Nanocomposites
title_sort effect of environmental temperature on the insulating performance of epoxy mgo nanocomposites
topic epoxy resin
thermal conductivity
volume resistivity
dielectric constant
dielectric loss
breakdown strength
url https://www.mdpi.com/2076-3417/10/20/7018
work_keys_str_mv AT guanghuige effectofenvironmentaltemperatureontheinsulatingperformanceofepoxymgonanocomposites
AT yongzhetang effectofenvironmentaltemperatureontheinsulatingperformanceofepoxymgonanocomposites
AT yuxiali effectofenvironmentaltemperatureontheinsulatingperformanceofepoxymgonanocomposites
AT liangsonghuang effectofenvironmentaltemperatureontheinsulatingperformanceofepoxymgonanocomposites