Title :
Prebreakdown current and DC breakdown strength of alumina-filled poly(ethylene-co-butyl acrylate) nanocomposites: Part II - prebreakdown currents
Author :
Jaeverberg, N. ; Venkatesulu, B. ; Edin, Hans ; Hillborg, Henrik
Author_Institution :
Sch. of Electr. Eng., KTH R. Inst. of Technol., Stockholm, Sweden
Abstract :
Pre-breakdown currents through the poly (ethylene-co-butyl acrylate) (EBA) nanocomposites filled with spherical alumina particles were studied as a function of particle coating and moisture content. The nanocomposites were prepared from a mixture of EBA formulations (13 wt% butyl acrylate groups content) and alumina powder. Two kinds of alumina nanoparticles were used: NA (25 nm in diameter) and ND (45 nm in diameter). The particles were either unmodified or surface-treated with aminopropyltriethoxy silane or octyltriethoxy silane. Two different relative humidities of air were used for conditioning the samples prior to testing: 0 % RH (dry case) and 86 % RH (samples were saturated with moisture). The pre-breakdown current measurements were performed with a DC ramp of 1.2 kV/s. Twenty samples were tested for each material formulation - ten of which were tested in dry conditions and ten were tested after conditioning in humid environment. Results were compared to the reference unfilled EBA samples. The measured currents were analyzed under the assumption of space charge limited conduction. As expected, conditioning materials in humid environment caused an increase in pre-breakdown currents. This effect was more pronounced for nanocomposite materials, while the reference unfilled material was least affected.
Keywords :
alumina; electric breakdown; electric current measurement; humidity; moisture; nanocomposites; polymers; DC breakdown strength; DC ramp; EBA; NA; ND; RH; alumina powder; alumina-filled poly(ethylene-co-butyl acrylate) nanocomposites; aminopropyltriethoxy silane; butyl acrylate groups content; conditioning materials; moisture content; octyltriethoxy silane; particle coating; prebreakdown current measurement; relative humidities; space charge limited conduction; surface-treatment; unfilled EBA samples; Current density; Electric breakdown; Market research; Nanocomposites; Nanoparticles; Prebreakdown current; absorbed water; alumina; dielectric breakdown strength; nanocomposites; nanofillers; poly(ethylene-co-butyl acrylate);
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
DOI :
10.1109/TDEI.2014.003857