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      KCI등재 SCIE SCOPUS

      Electrical and thermal properties of polyamideimidecolloid silica nanohybrid for magnetic enameled wire

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      https://www.riss.kr/link?id=A105238571

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      다국어 초록 (Multilingual Abstract)

      Polyamidimide (PAI)-colloidal silica (CS) nanohybrid films were synthesized by an advanced sol-gel process. The synthesized PAI-CS hybrid films have a uniform and stable chemical bonding and there is no interfacial defects observed by TEM. The thermal degradation ratio of PAI-CS (10 wt%) hybrid films is delayed by 100 ο C compared with pure PAI sample determined by on set temperature range in TGA. The dielectric constant of PAI-CS (10 wt%) hybrid films decreases with increasing CS content up to about 5 wt% but increases at higher CS content, which is not explained simply by effective medium therories (EMT). The duration time of PAI-CS (10 wt%) hybrid coil is 38 sec, which is very longer than that of pure PAI coil sample. The PAI-CS (10 wt%) hybrid film has a higher breakdown voltage resistance than the pure PAI film at surge environment and exhibits superior heat resistance. The PAI-CS (10 wt%) sample shows the advanced and stable thermal emission properties in transformer module compared with the pure PAI sample. This result illustrates that the advanced thermal conductivity and expansion properties of PAI-CS sample in the case of appropriate sol-gel processes brings the stable thermal emission in transformer system. Therefore, new PAI-CS hybrid samples with such stable thermal emission properties are expected to be used as a high functional coating application in ET, IT and electric power products.
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      Polyamidimide (PAI)-colloidal silica (CS) nanohybrid films were synthesized by an advanced sol-gel process. The synthesized PAI-CS hybrid films have a uniform and stable chemical bonding and there is no interfacial defects observed by TEM. The thermal...

      Polyamidimide (PAI)-colloidal silica (CS) nanohybrid films were synthesized by an advanced sol-gel process. The synthesized PAI-CS hybrid films have a uniform and stable chemical bonding and there is no interfacial defects observed by TEM. The thermal degradation ratio of PAI-CS (10 wt%) hybrid films is delayed by 100 ο C compared with pure PAI sample determined by on set temperature range in TGA. The dielectric constant of PAI-CS (10 wt%) hybrid films decreases with increasing CS content up to about 5 wt% but increases at higher CS content, which is not explained simply by effective medium therories (EMT). The duration time of PAI-CS (10 wt%) hybrid coil is 38 sec, which is very longer than that of pure PAI coil sample. The PAI-CS (10 wt%) hybrid film has a higher breakdown voltage resistance than the pure PAI film at surge environment and exhibits superior heat resistance. The PAI-CS (10 wt%) sample shows the advanced and stable thermal emission properties in transformer module compared with the pure PAI sample. This result illustrates that the advanced thermal conductivity and expansion properties of PAI-CS sample in the case of appropriate sol-gel processes brings the stable thermal emission in transformer system. Therefore, new PAI-CS hybrid samples with such stable thermal emission properties are expected to be used as a high functional coating application in ET, IT and electric power products.

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      참고문헌 (Reference)

      1 G. M. Odegard, 46 : 553-, 2005

      2 Z. K. Zhu, 73 : 2977-, 1999

      3 J. Zhang, 40 : 2623-, 2005

      4 S. H. Kim, 86 : 812-, 2002

      5 D. Fragiadakes, 10 : 139-, 2005

      6 T. C. Chang, 8 (8): 157-, 2003

      7 H. Wang, 793-, 2004

      8 T. Tanaka, 11 (11): 763-, 2004

      9 B. Gornicka, 115 : 842-, 2009

      10 A. Morikawa, 24 : 107-, 1992

      1 G. M. Odegard, 46 : 553-, 2005

      2 Z. K. Zhu, 73 : 2977-, 1999

      3 J. Zhang, 40 : 2623-, 2005

      4 S. H. Kim, 86 : 812-, 2002

      5 D. Fragiadakes, 10 : 139-, 2005

      6 T. C. Chang, 8 (8): 157-, 2003

      7 H. Wang, 793-, 2004

      8 T. Tanaka, 11 (11): 763-, 2004

      9 B. Gornicka, 115 : 842-, 2009

      10 A. Morikawa, 24 : 107-, 1992

      11 J. Wu, 41 : 73-, 2005

      12 G. M. Odegard, 46 : 553-, 2005

      13 M. Roy, 12 (12): 629-, 2005

      14 M. Shaikh, 40 : 2175-, 2006

      15 M.K. Gosh, "Polyimide:Fundamentals and Applications" Marcel Ddkker 1999

      16 박재준, "Long-term AC Electrical Treeing Behaviors of Epoxy/ Layered Silicate Nanocomposites Prepared by a 3-Roll Mill" 한국전기전자재료학회 13 (13): 85-88, 2012

      17 E. Cancilleri, "Altana Electrical Insulation GmbH, Wesel, Germany, PCT, WO 2008/125559"

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2022-10-24 학회명변경 한글명 : 세라믹연구소 -> 청정에너지연구소
      영문명 : Ceramic Research Institute -> Clean-Energy Research Institute
      KCI등재
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2019-08-19 학회명변경 한글명 : 세라믹공정연구센터 -> 세라믹연구소
      영문명 : Ceramic Processing Research Center -> Ceramic Research Institute
      KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 SCI 등재 (등재후보1차) KCI등재
      2003-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0 0 0
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