AbstractDetecting and analyzing SF6 decomposition products under partial discharge (PD) is an effective way of diagnosing the internal operating status of gas insulated switchgear (GIS). In this text, three different gas sensors are developed, whose gas-sensing materials are pure MWNTs, MWNTs modified by mixed acid and NiCl2-doped MWNTs respectively. The gas sensing response for SF6 PD decomposition products based on three MWNTs sensors is tested. The results show the mixed acid modifying could improve the sensitivity of MWNTs to detect SF6 PD decomposition products and the doping NiCl2 further improves the gas sensitivity of MWNTs, which makes MWNTs have better sensitivity and fast response characteristic
This innovation is a lightweight, small sensor for inert gases that consumes a relatively small amou...
Detecting SF6 decomposed species by chemical gas sensors has been accepted as a workable method to e...
Four typical types of artificial defects are designed in conducting the decomposition experiments of...
AbstractDetecting and analyzing SF6 decomposition products under partial discharge (PD) is an effect...
The detection and analysis of SF6 decomposition components are of great significance in online condi...
Sulfur hexafluoride (SF6) gas decomposition results from the energy produced by partial discharge (P...
Sulfur hexafluoride (SF6) is widely utilized in gas-insulated switchgear (GIS). However, part of SF6...
The insulating medium used in gas-insulated switchgear is SF6 gas, which has been widely used in sub...
SF6 decomposition components detection is a key technology to evaluate and diagnose the insulation s...
Sulphur hexafluoride, SF₆ gas has excellent physical and chemical properties and insulation arc exti...
In order to judge the inside insulation fault of SF6 insulated equipment, the gas-sensing properties...
The detection of partial discharge and analysis of SF6 gas components in gas-insulated switchgear (G...
Gas detection and monitoring are important aspect since it creates an immediate and long term health...
Accurate detection of the internal decomposition components of SF6 electrical equipment plays an imp...
The analysis to SF6 decomposed component gases is an efficient diagnostic approach to detect the par...
This innovation is a lightweight, small sensor for inert gases that consumes a relatively small amou...
Detecting SF6 decomposed species by chemical gas sensors has been accepted as a workable method to e...
Four typical types of artificial defects are designed in conducting the decomposition experiments of...
AbstractDetecting and analyzing SF6 decomposition products under partial discharge (PD) is an effect...
The detection and analysis of SF6 decomposition components are of great significance in online condi...
Sulfur hexafluoride (SF6) gas decomposition results from the energy produced by partial discharge (P...
Sulfur hexafluoride (SF6) is widely utilized in gas-insulated switchgear (GIS). However, part of SF6...
The insulating medium used in gas-insulated switchgear is SF6 gas, which has been widely used in sub...
SF6 decomposition components detection is a key technology to evaluate and diagnose the insulation s...
Sulphur hexafluoride, SF₆ gas has excellent physical and chemical properties and insulation arc exti...
In order to judge the inside insulation fault of SF6 insulated equipment, the gas-sensing properties...
The detection of partial discharge and analysis of SF6 gas components in gas-insulated switchgear (G...
Gas detection and monitoring are important aspect since it creates an immediate and long term health...
Accurate detection of the internal decomposition components of SF6 electrical equipment plays an imp...
The analysis to SF6 decomposed component gases is an efficient diagnostic approach to detect the par...
This innovation is a lightweight, small sensor for inert gases that consumes a relatively small amou...
Detecting SF6 decomposed species by chemical gas sensors has been accepted as a workable method to e...
Four typical types of artificial defects are designed in conducting the decomposition experiments of...