Electrical treeing and breakdown of mechanically strained XLPE cable insulation
Erling Ildstad, Svein Thore Hagen
Abstract
Erling Ildstad, Svein Thore Hagen
Abstract
The authors describe experiments which have been designed to study the effect of mechanical strain on the short-term AC breakdown strength of cross-linked polyethylene (XLPE) cable insulation. Laboratory experiments were performed on mechanically stressed Rogowski-type test objects and on sharply bent samples of 12-kV XLPE cables. It was verified that introduction of strain significantly reduced the short-term AC breakdown strength of XLPE insulation. By application of 21% strain the breakdown field strength was reduced to 77% of that of nonstrained test objects. In testing 3-m-long cable samples bent to a maximum outer strain of 15%, the 63% breakdown voltage was reduced to 70% of that of an equal length of straight cable.>
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The authors describe experiments which have been designed to study the effect of mechanical strain on the short-term AC breakdown strength of cross-linked polyethylene (XLPE) cable insulation. Laboratory experiments were performed on mechanically stressed Rogowski-type test objects and on sharply bent samples of 12-kV XLPE cables. It was verified that introduction of strain significantly reduced the short-term AC breakdown strength of XLPE insulation. By application of 21% strain the breakdown field strength was reduced to 77% of that of nonstrained test objects. In testing 3-m-long cable samples bent to a maximum outer strain of 15%, the 63% breakdown voltage was reduced to 70% of that of an equal length of straight cable.>
Key concepts: Electrical treeing, Materials science, Electric breakdown, Composite material, Electrical engineering, Engineering physics, Optoelectronics, Partial discharge