Dielectric energy storage capacitors have advantages such as ultra-high power density, extremely fast charge and discharge speed, long service lifespan and are significant for pulsed power system, smart power grid, and power electronics. Polypropylene (PP) is one of the most widely used dielectric materials for dielectric energy storage capacitors. It is of interest to investigate how to improve its electrical breakdown strength by nanodoping and the influencing mechanism of nanodoping on the electrical breakdown properties of polymer nanocomposites. PP/Al2O3 nanocomposite dielectric materials with various weight fraction of nanoparticles are fabricated by melt-blending and hot-pressing methods. Thermally stimulated current, surface potenti...
In this study, large-area dielectric breakdown performances of various bi-axially oriented polypropy...
Space charge and DC conductivity evolution with DC poling of two types of polypropylene-based nanoco...
Various dielectric nanocomposite materials are studied in the frame of the European Commission funde...
Polymer nanocomposites can change the density and/or energy of traps, suppress the accumulation of s...
The development of direct current high-voltage power cables requires insulating materials having exc...
This paper presents a preliminary feasibility investigation, in the framework of a recent European p...
The dynamic mechanism of breakdown in polypropylene (PP) were represented based on the discharge-ava...
Many researchers are investigating the feasibility of using polypropylene in HVDC cables. To underst...
Polypropylene (PP), with high breakdown strength, low dissipation and good processibility, is one of...
The effect of voltage ramp rate on the short-term dielectric breakdown strength of polymer nanocompo...
This work was performed to investigate the effects of different nanofillers on the structure and die...
New insulation materials can be tailored by compounding nanofillers and polymer materials. The advan...
During the last two decades, when compared with pure polymers, nanocomposites have exhibited improve...
Dielectric polymer nanocomposites are considered as one of the most promising insulation material ca...
This work was performed to investigate the effects of different nanofillers on the structure and die...
In this study, large-area dielectric breakdown performances of various bi-axially oriented polypropy...
Space charge and DC conductivity evolution with DC poling of two types of polypropylene-based nanoco...
Various dielectric nanocomposite materials are studied in the frame of the European Commission funde...
Polymer nanocomposites can change the density and/or energy of traps, suppress the accumulation of s...
The development of direct current high-voltage power cables requires insulating materials having exc...
This paper presents a preliminary feasibility investigation, in the framework of a recent European p...
The dynamic mechanism of breakdown in polypropylene (PP) were represented based on the discharge-ava...
Many researchers are investigating the feasibility of using polypropylene in HVDC cables. To underst...
Polypropylene (PP), with high breakdown strength, low dissipation and good processibility, is one of...
The effect of voltage ramp rate on the short-term dielectric breakdown strength of polymer nanocompo...
This work was performed to investigate the effects of different nanofillers on the structure and die...
New insulation materials can be tailored by compounding nanofillers and polymer materials. The advan...
During the last two decades, when compared with pure polymers, nanocomposites have exhibited improve...
Dielectric polymer nanocomposites are considered as one of the most promising insulation material ca...
This work was performed to investigate the effects of different nanofillers on the structure and die...
In this study, large-area dielectric breakdown performances of various bi-axially oriented polypropy...
Space charge and DC conductivity evolution with DC poling of two types of polypropylene-based nanoco...
Various dielectric nanocomposite materials are studied in the frame of the European Commission funde...