The present study compares the effects of two different material processing techniques on modifying hydrophilic SiO2 nanoparticles. In one method, the nanoparticles undergo plasma treatment by using a custom-developed atmospheric-pressure non-equilibrium plasma reactor. With the other method, they undergo chemical treatment which grafts silane groups onto their surface and turns them into hydrophobic. The treated nanoparticles are then used to synthesize epoxy resin-based nanocomposites for electrical insulation applications. Their characteristics are investigated and compared with the pure epoxy resin and nanocomposite fabricated with unmodified nanofillers counterparts. The dispersion features of the nanoparticles in the epoxy resin matri...
This study presents an investigation of electrical tree performance as well as the effect of filler ...
Polymeric nanocomposites have been shown to possess superior electrical insulation properties compar...
In organic-inorganic nanocomposites, interfacial regions are primarily influenced by the dispersion ...
The present study compares the effects of two different material processing techniques on modifying ...
Favourable insulation properties can be obtained by the incorporation of nano-dimension particles in...
Nanocomposite dielectrics hold a promising future for the next generation of insulation materials be...
In this study, we improve the insulation performance of polymeric nano-dielectrics by using plasma p...
This paper reports the electrical discharge resistant characteristics of epoxy nanocomposite systems...
This paper reports the electrical discharge resistant characteristics of epoxy nanocomposite systems...
In this study, atmospheric-pressure plasmas were applied to modify the surface of silane-coated sili...
Among various types of materials for electrical insulation in power system equipment, polymers have ...
Nanocomposites have been recognized to possess favorable dielectric and electrical insulation proper...
Epoxy resin is one of the most commonly used thermosetting macromolecular synthetic materials, and i...
Nanocomposites have gained interest as insulating materials due to their excellent ability to resist...
This study presents an investigation of electrical tree performance as well as the effect of filler ...
This study presents an investigation of electrical tree performance as well as the effect of filler ...
Polymeric nanocomposites have been shown to possess superior electrical insulation properties compar...
In organic-inorganic nanocomposites, interfacial regions are primarily influenced by the dispersion ...
The present study compares the effects of two different material processing techniques on modifying ...
Favourable insulation properties can be obtained by the incorporation of nano-dimension particles in...
Nanocomposite dielectrics hold a promising future for the next generation of insulation materials be...
In this study, we improve the insulation performance of polymeric nano-dielectrics by using plasma p...
This paper reports the electrical discharge resistant characteristics of epoxy nanocomposite systems...
This paper reports the electrical discharge resistant characteristics of epoxy nanocomposite systems...
In this study, atmospheric-pressure plasmas were applied to modify the surface of silane-coated sili...
Among various types of materials for electrical insulation in power system equipment, polymers have ...
Nanocomposites have been recognized to possess favorable dielectric and electrical insulation proper...
Epoxy resin is one of the most commonly used thermosetting macromolecular synthetic materials, and i...
Nanocomposites have gained interest as insulating materials due to their excellent ability to resist...
This study presents an investigation of electrical tree performance as well as the effect of filler ...
This study presents an investigation of electrical tree performance as well as the effect of filler ...
Polymeric nanocomposites have been shown to possess superior electrical insulation properties compar...
In organic-inorganic nanocomposites, interfacial regions are primarily influenced by the dispersion ...