Results 161 to 170 of about 139,328 (210)
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Thermoluminescence in XLPE cable insulation

IEEE Transactions on Dielectrics and Electrical Insulation, 1996
Crosslinked polyethylene (XLPE) has been employed in underground transmission and distribution cables because of its excellent electrical and mechanical properties, such as low permittivity and dielectric loss, high degree of toughness, and good flexibility.
Bamji, S. S., Bulinski, A. T.
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Evaluation of MV-XLPE cables

Conference Record of the 1996 IEEE International Symposium on Electrical Insulation, 2002
An extensive investigation of the long term wet ageing performance of MV-XLPE power cables was started by Nordic (Norway, Sweden, Denmark and Finland) utilities and cable manufacturers in 1990. Representatives from the manufacturers and utilities were members of the project Steering Committee. The investigations were performed by the Norwegian Electric
J.T. Benjaminsen   +4 more
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Life Prediction of XLPE Cables

Applied Mechanics and Materials, 2014
With the intensive construction and development of the city, especially the increasing demands on power transmission, the application of cross-linked polyethylene (XLPE) material becomes wider, with large-scale application on cable manufacturing. An excellent life prediction system of XLPE cable means a lot to improve power supply reliability, raise ...
Fang Shen, Gang Xu
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An investigation into the morphology of XLPE cable insulation

Conference on Electrical Insulation & Dielectric Phenomena - Annual Report 1981, 1981
Conference on Electrical Insulation and Dielectric Phenomena, October 26-28 1981, Whitehaven ...
Orton, H., Abdolall, K., Bamji, S.
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A contribution to the study of aging of XLPE insulated cables

IEEE Transactions on Power Delivery, 1991
The electrical, thermal, and multiple-stress (thermal and electrical) aging of cross-linked polyethylene (XLPE) cable models has been investigated in order to get information on aging effects and mechanisms. After endurance tests, XLPE cable models have been subjected to chemical, physical, electrical, and microstructural characterization.
A. Motori, F. Sandrolini, G.C. Montanari
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Impurities in XLPE cables

IEEE International Symposium on Electrical Insulation, 2002
Impurity analysis by neutron activation was performed on several unaged and field-aged distribution cables differing in origin and manufacturing process (steam and dry curing). The results show principally that impurities found in the insulation can be attributed primarily to unclean semiconductive shields and to the manufacturing process.
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Water content of XLPE cable insulation

Conference Record of the 1992 IEEE International Symposium on Electrical Insulation, 2003
The authors deal with water absorption and diffusion in various kinds of cross-linked polyethylene (XLPE) cable insulation: steam-cured, dry-cured, and with and without water tree retardant (WTR). Measurements were performed on pieces of insulation directly or on cable specimens immersed in water at different temperatures.
S. Pelissou, H.J. Wintle
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Design of XLPE cables and soundness confirmation methods to extra high voltage XLPE cables

IEEE/PES Transmission and Distribution Conference and Exhibition, 2003
The design of XLPE cables, degradation factors to working XLPE cables, and exclusion methods of the degradation factors are reviewed. In addition, the soundness confirmation methods of extra high voltage XLPE cables are reviewed. As degradation factors of XLPE cables, electric stress degradation, partial discharge degradation, and water treeing ...
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Water Impervious Splices For 6.6kV XLPE Cables

IEEE Transactions on Power Apparatus and Systems, 1984
Corresponding to a crosslinked polyethylene cable with water impervious layer, we have developed a water impervious cover for a straight splice. This cover is composed of both a shrinkable tube comprising a lead-polyethylene laminated sheet and adhesive compound, and attached to the outside of a commonly used splice housing.
Y. Hane   +3 more
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Development of XLPE insulated DC cable

Electrical Engineering in Japan, 1994
AbstractThis paper describes the development of dc XLPE cable. Through a series of material investigations, an XLPE compound containing highly purified special filler was developed.To check the dc insulation performance of the cable insulated with this new material, a prototype cable with 9 mm insulation thickness was manufactured.
Yuichi Maekawa   +3 more
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