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"Electrical breakdown"

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"Electrical breakdown"

Insulation Materials : A Study on Electrical Insulation Breakdown and Tensile Strength for Epoxy/Spherical Silica Composites
Seung Hun Lee
J Korean Inst Electr Electron Mater Eng 2013;26(10):726-730.   Published online October 1, 2013
DOI: https://doi.org/10.4313/JKEM.2013.26.10.726
In order to develop a high voltage insulation material, spherical silicas with two average particle sizes of 5 μm and 20 μm were mixed in different mixing ratios (1:0, 0.7:0.3, 0.5:0.5, 0.3:0.7, 0:1) and their total filling content was fixed at 65 wt%. In order to observe the dispersion of the spherical silicas and the interfacial morphology between silica and epoxy matrix, field emission scanning electron microscope (FE-SEM) was used. The electrical insulation breakdown strength was estimated in sphere-plate electrodes with different insulation thicknesses of 1, 2, and 3 mm. Electrical insulation breakdown strength decreased with increasing mixing ratio of 5/20 μm and the thickness dependence of the breakdown strength was also observed. The tensile strength of the neat epoxy was 82.8 MPa as average value and its increased with decreasing particles size and that of epoxy/silica (2 μm) was 107 MPa, which was 130.8% higher value.
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Electrical Insulation Characteristics of HTS SMES
J Korean Inst Electr Electron Mater Eng 2006;19(6):574-578.   Published online June 1, 2006
DOI: https://doi.org/10.4313/JKEM.2006.19.6.574

Citations

Citations to this article as recorded by  
  • The Electrical Insulation Design of 600 kJ Conduction Cooled HTS SMES
    Jae-Hyeong Choi, Dong-Soon Kwag, Hyeon-Gweon Cheon, Chi-Hyun Min, Hae-Jong Kim, Ki-Chul Seong, Sang-Hyun Kim
    IEEE Transactions on Applied Superconductivity.2008; 18(2): 1394.     CrossRef
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Multi-Layered Effect for the Insulation Design of a HTS Cable
J Korean Inst Electr Electron Mater Eng 2005;18(10):950-955.   Published online October 1, 2005
DOI: https://doi.org/10.4313/JKEM.2005.18.10.950
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