The Influence of Network Density and Physics of Crosslinked Polyethylene on Water Treeing
Susanna Nilsson, Thomas Hjertberg, A. Lundgren, A. Smedberg
Abstract
Susanna Nilsson, Thomas Hjertberg, A. Lundgren, A. Smedberg
Abstract
Three low density polyethylene (LDPE) grades with varying vinyl content were crosslinked using different mechanisms. One target was to identify whether there were any differences in water treeing properties for the three LDPE grades that had similar network density, although the network was obtained in different ways. The second target was to observe the behaviour of water treeing in a crosslinked LDPE with increasing amounts of dicumyl peroxide. It was found that the way the network was formed is not important for the water treeing properties. The water trees grew with increasing dicumyl peroxide content, possibly depending on the simultaneous decrease in crystallinity.
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Three low density polyethylene (LDPE) grades with varying vinyl content were crosslinked using different mechanisms. One target was to identify whether there were any differences in water treeing properties for the three LDPE grades that had similar network density, although the network was obtained in different ways. The second target was to observe the behaviour of water treeing in a crosslinked LDPE with increasing amounts of dicumyl peroxide. It was found that the way the network was formed is not important for the water treeing properties. The water trees grew with increasing dicumyl peroxide content, possibly depending on the simultaneous decrease in crystallinity.
Key concepts: Low-density polyethylene, Electrical treeing, Crystallinity, Polyethylene, Materials science, Composite material, Polymer chemistry, Electrical engineering