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Oxide Nanostructured Coating for Power Lines with Anti-Icing Effect
被引:4
作者:
Blinov, Andrey Vladimirovcih
[1
]
Kostyukov, Dmitry Aleksandrovich
[1
]
Yasnaya, Maria Anatolevna
[1
]
Zvada, Pavel Aleksandrovich
[1
]
Arefeva, Lyudmila Pavlovna
[2
]
Varavka, Valery Nikolaevich
[2
]
Zvezdilin, Roman Aleksandrovich
[1
]
Kravtsov, Alexander Aleksandrovich
[1
,3
]
Maglakelidze, David Guramievich
[1
]
Golik, Alexey Borisovich
[1
]
Gvozdenko, Alexey Alekseevich
[1
]
Lazareva, Natalia Viatcheslavovna
[4
]
Kushch, Elena Nikolaevna
[4
]
Goncharov, Vadim Nikolaevich
[5
]
Kolodkin, Maxim Andreevich
[1
]
Shariati, Mohammad Ali
[6
]
Nagdalian, Andrey Ashotovich
[1
,7
]
机构:
[1] North Caucasus Fed Univ, Dept Phys & Technol Nanostruct & Mat, Stavropol 355017, Russia
[2] Don State Tech Univ, Rostov Na Donu 344000, Russia
[3] Russian Acad Sci, Fed Res Ctr, Southern Sci Ctr, Chehova St 41, Rostov Na Donu 344006, Russia
[4] North Caucasus Fed Univ, Econ Secur & Auditing Dept, Stavropol 355017, Russia
[5] Technol Inst Serv, Dept Sci Res, Stavropol 355000, Russia
[6] KG Razumovsky Moscow State Univ Technol & Managem, Dept Sci Res, Cossack Univ 1, Moscow 109004, Russia
[7] St Petersburg State Agr Univ, St Petersburg 196601, Russia
来源:
关键词:
LabVIEW;
nanostructured coating;
overhead wires;
superhydrophobic properties;
SUPERHYDROPHOBIC COATINGS;
FABRICATION;
D O I:
10.3390/coatings12091346
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
This paper presents the results of the development of a technology to obtain a nanostructured coating for the protection of overhead wires and the possibility of their application in the electric power industry. The paper provides an analysis of available data on methods of combating ice in different countries, ways to protect the surface of metals from environmental influences, and new materials used for protection. We studied the possibility of using a protective nanostructured coating to protect overhead wires. A technology for obtaining a protective nanostructured coating based on silicon oxide and methods for applying it to the wire of overhead lines are proposed. The analysis of the elemental composition and surface morphology of overhead line wires with protective coating is carried out by scanning electron microscopy. The influence of the nanostructured coating on the high-frequency signal bandwidth and wire resistance using a PCIe-6351 data acquisition board, equipped with a BNC-2120 terminal module generating a frequency signal were determined using the National Instruments LabVIEW software package. The subject of the study was a 110 kV overhead power line with a protective coating developed in this work. By analyzing the calculation, we obtained the operating requirements of the developed nanostructured coating. As a result, we developed a protective coating satisfying the working conditions and investigated its properties. In the final phase of the experiment, we tested the electrical characteristics of overhead wires with the developed protective coating.
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页数:25
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