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Treeing Breakdown of Micro- and Nano- composite Insulating Materials:
Details
The effects of moisture content and spherical shaped silica filler concentration on the resultant tree growth characteristics are explored using Euclidean and fractal geometries. A nano-composite material of MgO added LDPE was subjected to electrical treeing breakdown investigation, as well. As results, the filler particle would create such an obstruction to the tree propagation even if the specimens were moisturized. Moisture would weaken the dielectric strength of resin and the interface. From fractal dimension analysis, it is shown that the complexity of composite structure is followed by the complexity of tree structure. The complex structure of tree is also heterogeneous as quantified by lacunarity. Filler would act as physical barriers to prevent the extension of trees, resulting in higher tree inception voltage and time to breakdown. The more nano-filler concentrations, the longer time needed to make the tree channel diameter thicker enough for breakdown to occur. However, if the diameter is enlarged until about 250 m, the effect of nano-filler seemed to be weaker, as shown by simulated tree channel.
Autorentext
He received his Dr. Eng. degree from Toyohashi University of Technology, Japan in 2008. He has been working as a lecturer at the Department of Electrical Engineering, Tanjungpura University, Indonesia, since 1995. Currently, he is a head of High Voltage Engineering Laboratory. His research interests are in the area of high voltage engineering.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783639247657
- Anzahl Seiten 76
- Genre Wärme- und Energietechnik
- Herausgeber VDM Verlag Dr. Müller e.K.
- Gewicht 118g
- Größe H4mm x B220mm x T150mm
- Jahr 2010
- EAN 9783639247657
- Format Kartonierter Einband (Kt)
- ISBN 978-3-639-24765-7
- Titel Treeing Breakdown of Micro- and Nano- composite Insulating Materials:
- Autor Rudi Kurnianto
- Untertitel Its Analysis with Image
- Sprache Englisch