TY - JOUR
T1 - A manual operated and eco-friendly plasma-assisted polymerization method for enhancing surface weather resistance of insulation
AU - Zhu, Xi
AU - Dai, Luyi
AU - Guan, Xiuhan
AU - Shen, Zhangliang
AU - Wu, Zexuan
AU - Cheng, Hongtu
AU - Fan, Jiajie
AU - Cui, Xinglei
AU - Fang, Zhi
N1 - Publisher Copyright:
© 2024 Elsevier B.V.
PY - 2024/11/30
Y1 - 2024/11/30
N2 - With the increasing demand for high-voltage long-distance power transmission, insulation as the first protection of power system, faces serious challenges from material degradation caused by moisture invading, surface contamination and pollution flashover. Addressing the issue requires significant effort and may cause harmful by-product emission from large-scale wet type material processing. In this work, a novel eco-friendly dry treatment method based on manual operated Air/Alkoxysilane(PMDMS)/plasma is developed to enhance weather resistance and electrical performances of contaminated insulation. Tiny amounts of harmless reaction medium are transmitted to plasma through controllable air bubbling, and it implements precise dry type processing on material surface. Plasma pulverizes pre-existing contamination and synchronously activates hydrolysis-polymerization of PMDMS to deposit Si-containing protection layer (Si-O2, Si-CH3) on surface. It is demonstrated that the plasma treatment inhibits dirt pollution and electrical erosion of on-site 110 kV silicone rubber (SIR), and the electrical and hydrophobicity properties are both promoted. Flashover voltage increases from 4.65 to 8.71 kV, and water contact angle increases from 138.27° to 146.41°. Overall, this newly-developed dry portable plasma treatment strategy for insulation enhancement avoids environment pollution and economic losses, and provides a scalable avenue for on-site insulation recovery and service life prolonging.
AB - With the increasing demand for high-voltage long-distance power transmission, insulation as the first protection of power system, faces serious challenges from material degradation caused by moisture invading, surface contamination and pollution flashover. Addressing the issue requires significant effort and may cause harmful by-product emission from large-scale wet type material processing. In this work, a novel eco-friendly dry treatment method based on manual operated Air/Alkoxysilane(PMDMS)/plasma is developed to enhance weather resistance and electrical performances of contaminated insulation. Tiny amounts of harmless reaction medium are transmitted to plasma through controllable air bubbling, and it implements precise dry type processing on material surface. Plasma pulverizes pre-existing contamination and synchronously activates hydrolysis-polymerization of PMDMS to deposit Si-containing protection layer (Si-O2, Si-CH3) on surface. It is demonstrated that the plasma treatment inhibits dirt pollution and electrical erosion of on-site 110 kV silicone rubber (SIR), and the electrical and hydrophobicity properties are both promoted. Flashover voltage increases from 4.65 to 8.71 kV, and water contact angle increases from 138.27° to 146.41°. Overall, this newly-developed dry portable plasma treatment strategy for insulation enhancement avoids environment pollution and economic losses, and provides a scalable avenue for on-site insulation recovery and service life prolonging.
KW - Eco-friendly plasma
KW - Electrical performance
KW - Insulation
KW - Manual operated treatment
KW - Weather resistance
UR - http://www.scopus.com/inward/record.url?scp=85201467409&partnerID=8YFLogxK
U2 - 10.1016/j.apsusc.2024.160970
DO - 10.1016/j.apsusc.2024.160970
M3 - 文章
AN - SCOPUS:85201467409
SN - 0169-4332
VL - 675
JO - Applied Surface Science
JF - Applied Surface Science
M1 - 160970
ER -