A decay of electric surface potential on a pre-charged gas-solid interface involves several charge transport processes and each of them may become dominant under certain environmental conditions (temperature, pressure, humidity). In the present paper, surface potential decay on flat samples of different kinds of silicone rubber used in HVDC applications is analyzed at reduced pressures of ambient air that allows for minimizing the involvement of the gas phase, i.e. surface charge neutralization by gas ions. Effects imposed solely by bulk and surface conduction in the solid material are studied experimentally and by means of computer simulations. The results allow for evaluating threshold values of volume and surface electric conductivities ...
Utilization of remotely located sustainable energy resources such as solar, wind and hydro calls for...
The temperature and field dependencies of electric conductivities of two types of silicone rubber-ba...
Use of polymeric materials for high voltage outdoor insulation systems is increasing continuously. I...
A decay of electric surface potential on a pre-charged gas-solid interface involves several charge t...
Accumulation of interfacial charges is an inherent feature of HVDC insulation based on solid and gas...
Surface charging and charge decay on insulating polymers are inherent phenomena in HVDC insulation s...
To meet increasing demands in electric energy, it is essential to enhance production of electricity ...
Surface charge decay on thick flat samples of HTV silicone rubbers charged by impulse corona is stud...
The use of high voltage direct current (HVDC) technology in power transmission systems is continuous...
Surface potential decay characteristics of specimens extracted from in-service aged and reference HV...
Surface charge decay on thick flat samples of high temperature vulcanized silicone rubber is studied...
Surface potential decay characteristics of specimens extracted from in-service aged and reference UH...
AbstractPolymeric materials used in high voltage insulation systems are subjected to electric fields...
Interfaces between materials constituting composite HVDC insulation systems are typically associated...
Under DC voltage, charge accumulates on the break insulation of mechanical DC circuit breakers, dist...
Utilization of remotely located sustainable energy resources such as solar, wind and hydro calls for...
The temperature and field dependencies of electric conductivities of two types of silicone rubber-ba...
Use of polymeric materials for high voltage outdoor insulation systems is increasing continuously. I...
A decay of electric surface potential on a pre-charged gas-solid interface involves several charge t...
Accumulation of interfacial charges is an inherent feature of HVDC insulation based on solid and gas...
Surface charging and charge decay on insulating polymers are inherent phenomena in HVDC insulation s...
To meet increasing demands in electric energy, it is essential to enhance production of electricity ...
Surface charge decay on thick flat samples of HTV silicone rubbers charged by impulse corona is stud...
The use of high voltage direct current (HVDC) technology in power transmission systems is continuous...
Surface potential decay characteristics of specimens extracted from in-service aged and reference HV...
Surface charge decay on thick flat samples of high temperature vulcanized silicone rubber is studied...
Surface potential decay characteristics of specimens extracted from in-service aged and reference UH...
AbstractPolymeric materials used in high voltage insulation systems are subjected to electric fields...
Interfaces between materials constituting composite HVDC insulation systems are typically associated...
Under DC voltage, charge accumulates on the break insulation of mechanical DC circuit breakers, dist...
Utilization of remotely located sustainable energy resources such as solar, wind and hydro calls for...
The temperature and field dependencies of electric conductivities of two types of silicone rubber-ba...
Use of polymeric materials for high voltage outdoor insulation systems is increasing continuously. I...