Effects of Oxidation on Electrical Conduction and Breakdown of Low-Density Polyethylene Films with Different Densities
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概要
- 論文の詳細を見る
Oxidation more greatly enhanced the conduction current in low-density polyethylene with a low density of 0.9172 g/cm^3 (ell-LDPE) than that with a high density of 0.9255 g/cm^3 (h-LDPE). This result was attributed to the easier carrier transport in the unoxidized region of ell-LDPE. Both oxidized specimens had almost the same impulse breakdown strength (F_<Bimp>), except when the absorbance of carbonyl groups (A) was higher than 0.6. At 30℃, the increase in the number of injected electrons which initiate an avalanche decreased F_<Bimp> for A < 0.1 but the carrier scattering effect due to carbonyl groups increased F_<Bimp> for A > 0.1. However, a thermal or electromechanical breakdown mechanism would take part in the breakdown process at higher temperatures. The dc breakdown strength (F_<Bdc>) decreased with oxidation, and h-LDPE showed a higher F_<Bdc> than ell-LDPE. These results suggested a contribution of the thermal mechanism to the breakdown. Space charge also seemed to play a role in the breakdown process.
- 社団法人応用物理学会の論文
- 1998-03-15
著者
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MIZUTANI Teruyoshi
Department of Electrical Engineering, Nagoya University
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Muro T
Jasri Spring-8
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Mori Tatsuo
Department Of Electrical Engineering School Of Engineering Nagoya University
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Mizutani Teruyoshi
Department Of Electrical Engineering Aichi Institute Of Technology
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Ishino Iwao
Japan Ethanol Co.
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BANMONGKOL Channarong
Department of Electrical Engineering, Graduate School of Engineering, Nagoya University
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ISHIOKA Mitsugu
Japan Polychem Co.
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Banmongkol Channarong
Department Of Electrical Engineering Graduate School Of Engineering Nagoya University
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Mori Tatsuo
Department Of Electrical Engineering Nagoya University
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Ishioka Mitsugu
Japan Pilychem Co.
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Mori Tatsuo
Department Of Electrical Engineering And Computer Science Graduate School Of Engineering Nagoya University
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Mizutani Teruyoshi
Department of Electrical and Electronic Engineering, Aichi Institute of Technology, Toyota, Aichi 470-0529, Japan
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