Space Charge Formation in LDPE/MgO Nano-composite Film under Ultra-high DC Electric Stress
スポンサーリンク
概要
- 論文の詳細を見る
Space charge characteristics under high DC electric field of more than 100 kV/mm in a nano-composite film of the low density polyethylene (LDPE) mixed with a nano-size filler of MgO were studied using a pulsed electro-acoustic (PEA) method. To measure the space charge distribution using the PEA system under the high electric field in a thin film, a spatial resolution of the PEA system was improved. Using the improved system, the time dependence of space charge formation in LDPE and LDPE/MgO nano-composite under the high electric field was observed. It is found that a huge amount of packet-like charge generation in LDPE makes a local electric field in the bulk higher. On the other hand, there is almost no such huge packet-like charge observed in LDPE/MgO with MgO content of more than 0.5 phr, while it was observed in that of 0.2 phr. It is found that the generation of the packet-like charge under the high electric field strongly depends on the content of MgO in the LDPE/MgO nano-composite.
- 2006-11-01
著者
-
MURATA Yoshinao
J-Power Systems Corporation
-
Murata Yoshinao
J-power Systems Corp.
-
HAYASE Yuji
Musashi Institute of Technology
-
AOYAMA Hiroyuki
Musashi Institute of Technology
-
MATSUI Kohei
Musashi Institute of Technology
-
TANAKA Yasuhiro
Musashi Institute of Technology
-
TAKADA Tatsuo
Musashi Institute of Technology
関連論文
- Space Charge Formation in LDPE/MgO Nano-composite Film under Ultra-high DC Electric Stress
- Filler-content Dependence of Dielectric Properties of Low-Density Polyethylene/MgO Nanocomposites
- Treeing Breakdown in Inorganic-filler/LDPE Nano-composite Material
- Measurement of Charge Distributions in Organic Photoconductor Using Pulse Ultrasonic Wave : Acoustical Measurements and Instrumentation
- Measurement of Charge Distribution in Coaxial Cable Using the Pulsed Electroacoustic Method : Acoustical Measurements and Instrumentation
- Investigation Committee on 'Evaluation Technology for Interaction between Radiation and Polymeric Materials'