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综述了纳米填料在改善聚乙烯高压直流电缆绝缘材料的空间电荷、电荷捕获、介电常数以及提高其耐电压能力和电气强度方面的最新国内外研究进展,并讨论了不同填料的加入、纳米粒子表面处理和水分对纳米复合材料电绝缘性能的影响及其机理,并展望了今后的研究重点。

The latest research progress of nano-filler in improving the space charge, charge trapping, di-electric constant, voltage endurance and breakdown strength of polyethylene high voltage direct current (HVDC) cable insulation at home and aboard was reviewed. The effects of various kinds of nano-fillers, surface treatment of nano particle and moisture on the electrical insulating properties and the mechanism were discussed, and the future research emphasis was prospected.

参考文献

[1] 吴锴,陈曦,王霞,屠德民.高压直流电缆用纳米复合聚乙烯的研究[J].绝缘材料,2010(04):1-2,10.
[2] Jeong I;Kim J;Lee J et al.Electrical Insulation Properties of Nanocomposites with SiO2 and MgO Filler[J].Transac-tions on Electrical and Electronic Materials,2010,11(06):261-265.
[3] Roy M;Nelson JK;MacCrone RK;Schadler LS .Candidate mechanisms controlling the electrical characteristics of silica/XLPE nanodielectrics[J].Journal of Materials Science,2007(11):3789-3799.
[4] T. J. Lewis .Interfaces are the Dominant Feature of Dielectrics at the Nanometric Level[J].IEEE transactions on dielectrics and electrical insulation: A publication of the IEEE Dielectrics and Electrical Insulation Society,2004(5):739-753.
[5] Murata Y;Kanaoka M.Development History of HVDC Ex-truded Cable with Nanocomposite Material[A].Indonesia,Bali,2006:460-463.
[6] Hui L;Smith R;Nelson J K.Electrochemical Treeing in XLPE/Silica Nanocomposites[A].USA,Virginia Beach,2009:511-514.
[7] Smith R C;Liang C;Landry M.Studies to Unravel Some Underlying Mechanisms in Nanodielectrics[A].Canada,Vancouver,2007:286-289.
[8] Nagao M;Watanabe S;Murakami Y.Water Tree Re-tardation of MgO/LDPE and MgO/XLPE Nanocomposites[A].Japan,Yokkaichi,2008:483-486.
[9] Danikas, M.;Tanaka, T. .Nanocomposites-a review of electrical treeing and breakdown[J].IEEE Electrical Insulation Magazine,2009(4):19-25.
[10] D. Fabiani;G. C. Montanari;C. Laurent;G. Teyssedre;P. H. F. Morshuis;R. Bodega;L. A. Dissado;A. Campus;U. H. Nilsson .Polymeric HVDC Cable Design and Space Charge Accumulation. Part 1: Insulation/Semicon Interface[J].IEEE Electrical Insulation Magazine,2007(6):11-19.
[11] 王雅群,尹毅,李旭光,蔡川.纳米MgO掺杂聚乙烯中空间电荷行为的研究[J].电线电缆,2009(03):20-23.
[12] Ch. Chakradhar Reddy;T. S. Ramu .Polymer Nanocomposites as Insulation for HV DC Cables -Investigations on the Thermal Breakdown[J].IEEE transactions on dielectrics and electrical insulation: A publication of the IEEE Dielectrics and Electrical Insulation Society,2008(1):221-227.
[13] Reddy C C;Gosyowaki M;Murata Y.Superior Ther-mal Breakdown Performance of MgO/LDPE Nanocompos-ite Materials for HVDC Insulation[A].Japan,Yokkaichi,2008:661-664.
[14] 成霞,陈少卿,王霞,屠德民.纳米ZnO对聚乙烯电老化过程中空间电荷及击穿特性的影响[J].绝缘材料,2008(01):44-48,52.
[15] Huang XY;Kim CN;Ma ZS;Jiang PK;Yin Y;Li Z .Correlation Between Rheological, Electrical, and Microstructure Characteristics in Polyethylene/Aluminum Nanocomposites[J].Journal of Polymer Science, Part B. Polymer Physics,2008(20):2143-2154.
[16] Preparation, microstructure and properties of polyethylene aluminum nanocomposite dielectrics[J].Composites science and technology,2008(9):p.2134.
[17] Mohamed A;Mobarak Y.Novel Nanocomposite Insulation Materials for the Enhancing Performance of Power Cables[A].France,Frankfurt,2011
[18] Huang, X.,Liu, F.,Jiang, P. .Effect of nanoparticle surface treatment on morphology, electrical and water treeing behavior of LLDPE composites[J].IEEE transactions on dielectrics and electrical insulation: A publication of the IEEE Dielectrics and Electrical Insulation Society,2010(6):1697-1704.
[19] M. Roy;J. K. Nelson;R. K. MacCrone;L. S. Schadler;C. W. Reed;R. Keefe;W. Zenger .Polymer Nanocomposite Dielectrics - The Role of the Interface[J].IEEE transactions on dielectrics and electrical insulation: A publication of the IEEE Dielectrics and Electrical Insulation Society,2005(4):629-643.
[20] Xingyi Huang;Chonung Kim;Pingkai Jiang;Yi Yin;Zhe Li .Influence of aluminum nanoparticle surface treatment on the electrical properties of polyethylene composites[J].Journal of Applied Physics,2009(1):014105-1-014105-10-0.
[21] D Ma;T A Hugener;R W Siegel .Influence of nanoparticle surface modification on the electrical behaviour of polyethylene nanocomposites[J].Nanotechnology,2005(6):724-731.
[22] Hui L;Nelson J K;Schadler L S.The Influence of Mois-ture on the Electrical Performance of XLPE/Silica Nano-composites[A].Germany,Potsdam,2010:1-4.
[23] Calebrese C;Hui L;Schadler L S.Fundamentals for the Compounding of Nanocomposites to Enhance Electrical Insulation Performance[A].USA,Atlanta,2010:38-41.
[24] Roy M .An Examination of the Potential for Nanocompos-ites in the Formulation of HV Cable Insulation[D].New York:Rensselaer Polytechnic Institute,2009.
[25] Dongling Ma;Richard W. Siegel;Jung-Il Hong .Influence of nanoparticle surfaces on the electrical breakdown strength of nanoparticle-filled low-density polyethylene[J].Journal of Materials Research,2004(3):857-863.
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