Proceedings of 2005 International Symposium on Electrical Insulating Materials, 2005. (ISEIM 2005). 2005
DOI: 10.1109/iseim.2005.193453 View full text |Buy / Rent full text
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“…The TSC results also indicate that the trap density increases firstly and then decreased with the increase of the nanoparticle loadings [8]. Murata et al [21] measured volume conductivities of LDPE/MgO nanodielectrics as a function of electric field and temperature, from which activation energies and hopping distances were calculated. It was found that the activation energies of nanodielectrics were a little larger than that of pure LDPE sample, and the hopping distances increase with increasing nanoparticle loadings, implying that trap densities decrease with increasing nanoparticle loadings.…”
Section: Model Parametersmentioning
“…In this research, we measured the permittivity, conduction current, and space charge profile of NCs with low-density polyethylene (LDPE) and MgO. EXPERIMENTAL The samples tested are 100-ptm thick sheets of LDPE/MgO NCs, which contain 1, 5, and 10 phr (parts per hundred parts of resin by weight) MgO particles with average and max diameters of 50 and 200 nm, respectively [5]. As a reference, LDPE without MgO particles was also used.…”
Section: Introductionmentioning
“…[7] V. CONCLUSION Nano-zinc oxide different content in XLPE was added seven specimens produced and dielectric properties, the effect of space charge were investigated.…”
Section: B Polarity Reversal Breakdown Strength Resultsmentioning
“…LDPE without the MgO nano-filler, corresponding to 0 phr, was also prepared. From transmission electron microscope (TEM) photographs and energy dispersive X-ray fluorescence analyzer (EDX) spectrum, it is observed that MgO particles are dispersed almost homogeneously in the LDPE matrix [3].…”
Section: Sample Preparation and Experime-ntalprocedures Nanocompositesmentioning
“…The conductivity models were derived from experimental data presented in [7]. The mathematical model is based on analytical solutions to the steady-state temperature field and the electric field assuming constant thermal conductivity and an exponential field dependence of the electrical conductivity, see also [8].…”
Section: Introductionmentioning