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@article{baa0f29c3a6044578097b078d84ef2dc,
title = "Rolling droplets and partial discharges in AC electric field",
abstract = "High-voltage silicone insulators can be used in climatic conditions such as rain or fog since they are hydrophobic. However, water droplets lead to discharges, which reduces hydrophobicity of the silicone rubber which is, in turn, is a first step to failure of an insulator. To increase the resistance of the rubber to the discharges, it is necessary to study the discharges between droplets in detail. The present work is devoted to the study of the loss of hydrophobicity of silicone rubber due to rolling droplets and discharges between them on the inclined silicone rubber sample under AC voltage of 35 kV. An experimental setup used in the work has been developed based on Dynamic Drop Test (DDT) and makes it possible to study discharges only between droplets, and avoid contact of droplets with the electrodes. Simultaneous observation of droplets and discharges made it possible to distinguish characteristic events and to divide the loss of hydrophobicity into stages. Experiments showed that the behavior of the droplets changed gradually, while the discharges were observed only at the last stage. Presumably, the resistance of rubber to discharges is not the only factor that determines the time of loss of hydrophobicity. The very beginning of the process of loss of hydrophobicity should be investigated further.",
keywords = "Degradation, High voltage insulator, Hydrophobicity, Rolling droplets, Salt fog, Silicone rubber",
author = "Полуэктова, {Карина Дмитриевна} and Васильков, {Сергей Андреевич} and Слесаренко, {Анастасия Витальевна} and Самусенко, {Андрей Викторович}",
year = "2024",
month = mar,
doi = "10.1016/j.elstat.2023.103882",
language = "English",
volume = "128",
journal = "Journal of Electrostatics",
issn = "0304-3886",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Rolling droplets and partial discharges in AC electric field

AU - Полуэктова, Карина Дмитриевна

AU - Васильков, Сергей Андреевич

AU - Слесаренко, Анастасия Витальевна

AU - Самусенко, Андрей Викторович

PY - 2024/3

Y1 - 2024/3

N2 - High-voltage silicone insulators can be used in climatic conditions such as rain or fog since they are hydrophobic. However, water droplets lead to discharges, which reduces hydrophobicity of the silicone rubber which is, in turn, is a first step to failure of an insulator. To increase the resistance of the rubber to the discharges, it is necessary to study the discharges between droplets in detail. The present work is devoted to the study of the loss of hydrophobicity of silicone rubber due to rolling droplets and discharges between them on the inclined silicone rubber sample under AC voltage of 35 kV. An experimental setup used in the work has been developed based on Dynamic Drop Test (DDT) and makes it possible to study discharges only between droplets, and avoid contact of droplets with the electrodes. Simultaneous observation of droplets and discharges made it possible to distinguish characteristic events and to divide the loss of hydrophobicity into stages. Experiments showed that the behavior of the droplets changed gradually, while the discharges were observed only at the last stage. Presumably, the resistance of rubber to discharges is not the only factor that determines the time of loss of hydrophobicity. The very beginning of the process of loss of hydrophobicity should be investigated further.

AB - High-voltage silicone insulators can be used in climatic conditions such as rain or fog since they are hydrophobic. However, water droplets lead to discharges, which reduces hydrophobicity of the silicone rubber which is, in turn, is a first step to failure of an insulator. To increase the resistance of the rubber to the discharges, it is necessary to study the discharges between droplets in detail. The present work is devoted to the study of the loss of hydrophobicity of silicone rubber due to rolling droplets and discharges between them on the inclined silicone rubber sample under AC voltage of 35 kV. An experimental setup used in the work has been developed based on Dynamic Drop Test (DDT) and makes it possible to study discharges only between droplets, and avoid contact of droplets with the electrodes. Simultaneous observation of droplets and discharges made it possible to distinguish characteristic events and to divide the loss of hydrophobicity into stages. Experiments showed that the behavior of the droplets changed gradually, while the discharges were observed only at the last stage. Presumably, the resistance of rubber to discharges is not the only factor that determines the time of loss of hydrophobicity. The very beginning of the process of loss of hydrophobicity should be investigated further.

KW - Degradation

KW - High voltage insulator

KW - Hydrophobicity

KW - Rolling droplets

KW - Salt fog

KW - Silicone rubber

UR - https://www.mendeley.com/catalogue/d10d18ca-50e5-3194-af66-466b2ac47b9b/

U2 - 10.1016/j.elstat.2023.103882

DO - 10.1016/j.elstat.2023.103882

M3 - Article

VL - 128

JO - Journal of Electrostatics

JF - Journal of Electrostatics

SN - 0304-3886

M1 - 103882

ER -

ID: 115683133