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Electrical tree degradation of MgO/epoxy resin composites at different voltage frequencies
by
Teng, Chenyuan
, Xing, Weiwei
, Cheng, Jiayu
, Zhang, Yunxiao
, Zhou, Yuanxiang
, Lin, Wenxin
in
Composite materials
/ Curing
/ Degradation
/ Electric potential
/ Epoxy resins
/ Frequency ranges
/ Insulation
/ Magnesium oxide
/ Polymers
/ Power supply
/ Voltage
2024
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Electrical tree degradation of MgO/epoxy resin composites at different voltage frequencies
by
Teng, Chenyuan
, Xing, Weiwei
, Cheng, Jiayu
, Zhang, Yunxiao
, Zhou, Yuanxiang
, Lin, Wenxin
in
Composite materials
/ Curing
/ Degradation
/ Electric potential
/ Epoxy resins
/ Frequency ranges
/ Insulation
/ Magnesium oxide
/ Polymers
/ Power supply
/ Voltage
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Electrical tree degradation of MgO/epoxy resin composites at different voltage frequencies
by
Teng, Chenyuan
, Xing, Weiwei
, Cheng, Jiayu
, Zhang, Yunxiao
, Zhou, Yuanxiang
, Lin, Wenxin
in
Composite materials
/ Curing
/ Degradation
/ Electric potential
/ Epoxy resins
/ Frequency ranges
/ Insulation
/ Magnesium oxide
/ Polymers
/ Power supply
/ Voltage
2024
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Electrical tree degradation of MgO/epoxy resin composites at different voltage frequencies
Journal Article
Electrical tree degradation of MgO/epoxy resin composites at different voltage frequencies
2024
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Overview
Electrical tree degradation is one of the main causes of insulation failure in high‐frequency transformers. Electrical tree degradation is studied on pure epoxy resin (EP) and MgO/EP composites at frequencies ranging from 50 Hz to 130 kHz. The results show that the tree initiation voltage of EP decreases, while the growth rate and the expansion coefficient increase with frequency. Moreover, the bubble phenomenon at high frequencies in EP composites is discussed. Combined with trap distribution characteristics within the material, the intrinsic mechanism of epoxy composites to inhibit the growth of the electrical tree at different frequencies is discussed. It can be concluded that more deep traps and blocking effect are introduced by doping nano‐MgO into EP bulks, which can improve the electrical tree resistance performance of EP composites in a wide frequency range.
Publisher
John Wiley & Sons, Inc,Wiley
Subject
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