Title: The Influence of ZnO nanoparticles in the epoxy resin on the complex permittivity and dissipation factor
Authors: Hardoň, Štefan
Kúdelčík, Jozef
Hornak, Jaroslav
Michal, Ondřej
Totzauer, Pavel
Trnka, Pavel
Citation: HARDOŇ, Š., KÚDELČÍK, J., HORNAK, J., MICHAL, O., TOTZAUER, P., TRNKA, P. The Influence of ZnO nanoparticles in the epoxy resin on the complex permittivity and dissipation factor. In: 13th International Scientific Conference on Sustainable, Modern and Safe Transport (TRANSCOM 2019) (Transportation Research Procedia; Vol. 40). Amsterdam: Elsevier, 2019. s. 30-33. ISSN 2352-1457.
Issue Date: 2019
Publisher: Elsevier
Document type: konferenční příspěvek
conferenceObject
URI: 2-s2.0-85070900647
http://hdl.handle.net/11025/36775
ISSN: 2352-1457
Keywords in different language: epoxy resin;nanoparticles;permittivity
Abstract: Epoxy resins are used as electro-insulating materials because they have great electro-insulation properties, adhesion, chemical resistance, and minimal shrinkage during curing. Epoxy nanocomposites have gained much interest in the area of nanotechnology, because of the ease of manufacture and the significant gain in properties. The influence of the various concentration of ZnO nanoparticles in epoxy resin Vukol 022 on the changes of the complex permittivity and dissipation factor has been measured at the temperature range from 20 °C to 120 °C. Frequency dependences of these parameters were measured within the frequency ranges from 1 mHz to 1 MHz by a capacitance method. The 0,5 wt.% nanoparticles caused a decrease of the real part of the complex relative permittivity. The higher concentration of nanoparticles for frequencies above 10 Hz had higher real relative permittivity as pure epoxy resin. At the study of the influence of temperature on dissipation factor, α-relaxation process and its shift to lower frequencies with ZnO fillers were observed.
Rights: © Elsevier
Appears in Collections:Konferenční příspěvky / Conference papers (KET)
Konferenční příspěvky / Conference papers (RICE)
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Please use this identifier to cite or link to this item: http://hdl.handle.net/11025/36775

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