Mechanical and Dielectric Strength of Laminated Epoxy Dielectric Graded Materials

Laminated epoxy dielectric graded material is a commonly used insulating material with broad application prospects in power equipment. The interlaminar interfaces of laminated epoxy dielectric material between different layers form during its lamination process, and these interfaces are the crucial...

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Main Authors: Chuang Wang, Qing Sun, Lang Zhao, Jing Jia, Lixiao Yao, Zongren Peng
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/12/3/622
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spelling doaj-9c97716e66ac45f4a3ebe33ede3c2df82020-11-25T02:56:01ZengMDPI AGPolymers2073-43602020-03-0112362210.3390/polym12030622polym12030622Mechanical and Dielectric Strength of Laminated Epoxy Dielectric Graded MaterialsChuang Wang0Qing Sun1Lang Zhao2Jing Jia3Lixiao Yao4Zongren Peng5School of Electrical Engineering, Xi’an University of Technology, Xi’an 710048, ChinaSchool of Electrical Engineering, Xi’an University of Technology, Xi’an 710048, ChinaSchool of Electrical Engineering, Xi’an University of Technology, Xi’an 710048, ChinaSchool of Electrical Engineering, Xi’an University of Technology, Xi’an 710048, ChinaSchool of Electrical Engineering, Xi’an University of Technology, Xi’an 710048, ChinaState Key Laboratory of Electrical Insulation and Power Equipment, Xi’an Jiaotong University, Xi’an 710049, ChinaLaminated epoxy dielectric graded material is a commonly used insulating material with broad application prospects in power equipment. The interlaminar interfaces of laminated epoxy dielectric material between different layers form during its lamination process, and these interfaces are the crucial characteristic structures determining the mechanical and dielectric properties of laminated materials. Therefore, in order to gain a thorough understanding of physic properties behind a certain structural motif, it is necessary to study how these interfacial structures influence the mechanical and dielectric performances of graded materials. In this study, double-layered epoxy resin samples with an interlaminar interface are prepared to study their mechanical and dielectric strength. More importantly, the formation mechanism of the interface, as well as its influence on the mechanical and dielectric strength of this laminated material, is discussed. We found that a cross-linking reaction may take place between epoxy resins at the interlaminar interface, and the degree of cross-linking at the interface should be less than that in the bulk. The mechanical strength of the interlaminar interface is weaker than that of the bulk, and it is reduced by less than 40%. Moreover, the interlaminar interface is inclined to trap carriers, which improves the breakdown strength and arc ablation resistance of the laminated material. Our study of interlaminar interface properties could help in designing epoxy dielectric graded materials with better mechanical and dielectric properties.https://www.mdpi.com/2073-4360/12/3/622epoxy resinlaminated materialsinterlaminar interfacemechanical propertiesdielectric properties
collection DOAJ
language English
format Article
sources DOAJ
author Chuang Wang
Qing Sun
Lang Zhao
Jing Jia
Lixiao Yao
Zongren Peng
spellingShingle Chuang Wang
Qing Sun
Lang Zhao
Jing Jia
Lixiao Yao
Zongren Peng
Mechanical and Dielectric Strength of Laminated Epoxy Dielectric Graded Materials
Polymers
epoxy resin
laminated materials
interlaminar interface
mechanical properties
dielectric properties
author_facet Chuang Wang
Qing Sun
Lang Zhao
Jing Jia
Lixiao Yao
Zongren Peng
author_sort Chuang Wang
title Mechanical and Dielectric Strength of Laminated Epoxy Dielectric Graded Materials
title_short Mechanical and Dielectric Strength of Laminated Epoxy Dielectric Graded Materials
title_full Mechanical and Dielectric Strength of Laminated Epoxy Dielectric Graded Materials
title_fullStr Mechanical and Dielectric Strength of Laminated Epoxy Dielectric Graded Materials
title_full_unstemmed Mechanical and Dielectric Strength of Laminated Epoxy Dielectric Graded Materials
title_sort mechanical and dielectric strength of laminated epoxy dielectric graded materials
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2020-03-01
description Laminated epoxy dielectric graded material is a commonly used insulating material with broad application prospects in power equipment. The interlaminar interfaces of laminated epoxy dielectric material between different layers form during its lamination process, and these interfaces are the crucial characteristic structures determining the mechanical and dielectric properties of laminated materials. Therefore, in order to gain a thorough understanding of physic properties behind a certain structural motif, it is necessary to study how these interfacial structures influence the mechanical and dielectric performances of graded materials. In this study, double-layered epoxy resin samples with an interlaminar interface are prepared to study their mechanical and dielectric strength. More importantly, the formation mechanism of the interface, as well as its influence on the mechanical and dielectric strength of this laminated material, is discussed. We found that a cross-linking reaction may take place between epoxy resins at the interlaminar interface, and the degree of cross-linking at the interface should be less than that in the bulk. The mechanical strength of the interlaminar interface is weaker than that of the bulk, and it is reduced by less than 40%. Moreover, the interlaminar interface is inclined to trap carriers, which improves the breakdown strength and arc ablation resistance of the laminated material. Our study of interlaminar interface properties could help in designing epoxy dielectric graded materials with better mechanical and dielectric properties.
topic epoxy resin
laminated materials
interlaminar interface
mechanical properties
dielectric properties
url https://www.mdpi.com/2073-4360/12/3/622
work_keys_str_mv AT chuangwang mechanicalanddielectricstrengthoflaminatedepoxydielectricgradedmaterials
AT qingsun mechanicalanddielectricstrengthoflaminatedepoxydielectricgradedmaterials
AT langzhao mechanicalanddielectricstrengthoflaminatedepoxydielectricgradedmaterials
AT jingjia mechanicalanddielectricstrengthoflaminatedepoxydielectricgradedmaterials
AT lixiaoyao mechanicalanddielectricstrengthoflaminatedepoxydielectricgradedmaterials
AT zongrenpeng mechanicalanddielectricstrengthoflaminatedepoxydielectricgradedmaterials
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