• Journal of Inorganic Materials
  • Vol. 38, Issue 2, 155 (2023)
Lei CHEN* and Hailong HU
DOI: 10.15541/jim20220326 Cite this Article
Lei CHEN, Hailong HU. Evolution of Electric Field and Breakdown Damage Morphology for Flexible PDMS Based Dielectric Composites[J]. Journal of Inorganic Materials, 2023, 38(2): 155 Copy Citation Text show less
Distribution of fillers in matrix
. Distribution of fillers in matrix
Model of square dielectric composite with size of 2 mm×2 mm
. Model of square dielectric composite with size of 2 mm×2 mm
Calculation method of DBM model
. Calculation method of DBM model
Electrical displacement evolution of dielectric composite material with varied ratio n between fillers and matrix dielectric constant
. Electrical displacement evolution of dielectric composite material with varied ratio n between fillers and matrix dielectric constant
Dendritic damage channels with different growth coefficients(η)
. Dendritic damage channels with different growth coefficients(η)
Fractal dimension of electrical branche with growth coefficient η being altered
. Fractal dimension of electrical branche with growth coefficient η being altered
Analysis of electric field distribution
. Analysis of electric field distribution
Electric field and displacement field distribution with different dielectric constant
. Electric field and displacement field distribution with different dielectric constant
Breakdown damage morphologies of dielectric composites with different contents of inorganic fillers
. Breakdown damage morphologies of dielectric composites with different contents of inorganic fillers
Quantitative analysis of breakdown damage morphology between dielectric composite with different contents of filler particles and pure polymer matrix
. Quantitative analysis of breakdown damage morphology between dielectric composite with different contents of filler particles and pure polymer matrix
Lei CHEN, Hailong HU. Evolution of Electric Field and Breakdown Damage Morphology for Flexible PDMS Based Dielectric Composites[J]. Journal of Inorganic Materials, 2023, 38(2): 155
Download Citation