Goro Sawa
Aichi Institute of Technology
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Publication
Featured researches published by Goro Sawa.
ieee international conference on properties and applications of dielectric materials | 2003
Hiroshi Murase; Masayuki Yoda; Goro Sawa; T. Kobayashi; M. Kosakada
Authors once measured time constants of residual dc charge decay in a 500 kV transmission line during five fine and dry days of winter season. The results showed a large scattering without depending on the simultaneously measured weather conditions, such as temperature or humidity. Then the authors have performed an additional experiment in a laboratory to discuss the factors that affect the residual dc charge decay in a dry condition. And it is shown that dusts blown up and transported by wind play an important role for the charge decay.
Proceedings of SPIE | 2002
Yong Long Jin; Qin Jiang; Goro Sawa; Yoshiyuki Uchida; K. Kojima; Asao Ohashi; Shizuyasu Ochiai; Teruyoshi Mizutani
Vanadyl-phthlocyanine (VOPc) thin films were prepared by a molecular beam epitaxy on a polyimide (PI) substrate at 150°C, and then they were exposed to dichloroethane vapor for 25 hours. Their morphologies were investigated with Vis/UV spectra and the surface images observed by an atomic force microscope (AFM). The Vis/UV spectrum of VOPc thin film before the organic gas treatment has a broad absorption shoulder between 640 and 740nm and an absorption peak at 840nm in the Q band region. It has been known so far that VOPc thin film has Phase I ,II and III. Phase I has two absorption peaks at 680 and 740nm. Phase II and Phase III are characterized with absorption peaks at 820 and 830nm, respectively. Therefore, the morphology having an absorption peak at 840nm is different from that of Phase 111 . The Vis/UV spectrum of VOPc thin film after the organic gas treatment has a broad absorption shoulder between 640 and 740nm and an absorption peak at 830nm in the Q band region. The absorption peak at 840nm shifts to 830nm by the organic gas treatment. This means that the phase morphology of VOPc thin film changes into Phase III during the gas treatment. On the other hand, VOPc molecules deposited on P1 substrate before the organic gas treatment form needle crystals. This indicates that VOPc molecules deposited on P1 substrate are perpendicular to PI substrate. The surface image of VOPc thin film after the gas treatment is smooth. This suggests that VOPc molecules are parallel to PI substrate. The third-order optical susceptibilities after and before the gas treatment are 3.75x10-9 and 3.25x10-9 esu, respectively. The molecular orientation of VOPc thin film is improved during the organic gas treatment.
international symposium on electrical insulating materials | 2008
Y. Sakai; T. Ninose; Hiroshi Murase; Masayuki Yoda; Goro Sawa
We investigate surface leakage current on porcelain insulators under dry weather conditions. Clean and polluted insulators are compared. And the relationship between their surface leakage current and weather conditions is studied. As a result, the polluted insulator gives a larger leakage current than the clean insulator. Also, it is shown that the leakage current of the clean insulator is strongly dependent on the absolute humidity.
Shinku | 2007
Qiang Zhang; Shizuyasu Ochiai; Goro Sawa; Asao Ohashi; Kenzo Kojima; Yoshiyuki Uchida; Teruyoshi Mizutani
Shinku | 2003
Qin Jiang; Goro Sawa; Yoshiyuki Uchida; Kenzo Kojima; Asao Ohashi; Shizuyasu Ochiai; Teruyoshi Mizutani
Electrical Engineering in Japan | 2008
Hiroshi Murase; Masayuki Yoda; Goro Sawa; Eiji Kaneko
Shinku | 2006
Qiang Zhang; Shizuyasu Ochiai; Goro Sawa; Asao Ohashi; Kenzo Kojima; Yoshiyuki Uchida; Teruyoshi Mizutani
Shinku | 2004
Yonglong Jin; Goro Sawa; Yoshiyuki Uchida; Kenzo Kojima; Asao Ohashi; Shizuyasu Ochiai; Teruyoshi Mizutani
Chinese Optics Letters | 2005
Suguru Mototani; Shizuyasu Ochiai; Goro Sawa; Yoshiyuki Uchida; Asao Ohashi; Kenzo Kojima; Teruyoshi Mizutani
Shinku | 2004
Yonglong Jin; Goro Sawa; Yoshiyuki Uchida; Kenzo Kojima; Asao Ohashi; Shizuyasu Ochiai; Teruyoshi Mizutani