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- W2511011498 abstract "By utilizing the laser-induced-pressure-pulse (LIPP) technique, we quantitatively studied the behavior of space charge in low-density polyethylene (LDPE) and crosslinked polyethylene (XLPE) films in contact with metal or carbon-loaded semiconducting layers so as to clarify the space-charge characteristics in power cables.Negative hetero space charge near the anode and positive space charge in the bulk were observed in unoxidized LDPE under the fields above 120kV/mm. The amount of negative space charge increased with applied field, while positive space charge in the bulk disappeared with increasing applied field. These indicate that electron injection and ionization are enhanced by applied field.Prominent negative homo space charge was formed near the cathode in oxidized LDPE, indicating that oxidation enhanced electron injection. The depth of charge centroid from the cathodebecame larger with increasing temperature. This indicates that the effective electron mobility increases with temperature.Negative space charge was also formed in the bulk in XLPE films with metal electrodes, indicating that crosslinking enhanced electron injection. XLPE films with a carbon-loaded semiconducting layer showed both negative and positive homo space charges near the semiconducting layers, indicating that both electrons and holes were injected from the semiconducting layer." @default.
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- W2511011498 date "1991-01-01" @default.
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- W2511011498 title "Study of Space-Charge Characteristics in Polyethylene for Power Cable Insulation by Laser-Induced-Pressure-Pulse Technique" @default.
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- W2511011498 doi "https://doi.org/10.1541/ieejfms1990.111.12_1091" @default.
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