Rövidített megjelenítés

Havran, Peter
Cimbala, Roman
Bucko, Samuel
Kurimský, Juraj
Dolník, Bystrík
Rajňák, Michal
Király, Jozef
Paulovičová, Katarína
2025-10-20T07:20:50Z
2025-10-20T07:20:50Z
2023
1785-8860hu_HU
http://hdl.handle.net/20.500.14044/34888
The constant optimization of the properties of insulating materials, is currently highly topical, at a global scale, as it directly concerns the efficiency of the operation of electrical equipment. This study includes research on modern insulation systems based on hybrid and non-hybrid nanofluid-paper. Cellulose insulation is impregnated with Shell Diala S4 ZX-1 transformer oil, enriched with two types of Fe3O4 and C60 nanoparticles, with varying nanoparticle concentrations. Samples of insulating materials are subjected to analysis using the method of dielectric relaxation spectroscopy in the frequency domain. The results point to electrophysical processes, of a conductive and polarizing nature. The increasing concentration of Fullerene nanoparticles, causes a decrease in dielectric losses and reduces the influence of interfacial polarization and electric double layer polarization in the hybrid nanofluid-paper system. The loss spectra of the complex electric modulus are the same as the spectra of the complex permittivity in the liquid-paper system. The Havriliak-Negami function reveals the dominance of polarization losses over conduction losses in the studied frequency spectrum and their origin when an external alternating electric field is applied.hu_HU
dc.formatPDFhu_HU
enhu_HU
Dielectric Relaxation Spectroscopy of Modern Hybrid Insulation Systemshu_HU
Open accesshu_HU
Óbudai Egyetemhu_HU
Budapesthu_HU
Óbudai Egyetemhu_HU
Műszaki tudományok - anyagtudományok és technológiákhu_HU
frequency domainhu_HU
magnetic nanoparticlehu_HU
fullerene nanoparticlehu_HU
fluid-paperhu_HU
Tudományos cikkhu_HU
Acta Polytechnica Hungaricahu_HU
local.tempfieldCollectionsFolyóiratcikkekhu_HU
Kiadói változathu_HU
20 p.hu_HU
11. sz.hu_HU
20. évf.hu_HU
2023hu_HU
Óbudai Egyetemhu_HU


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