Depending on the morphology of the material and applied voltage frequency, three kinds of electrical trees can exist in cross-linked polyethylene (XLPE) cable insulation, which are conducting, non-conducting, and mixed trees with different growth mechanisms. It is suggested that when the needle is inserted into large spherulites, conducting trees will form in those spherulites; when it is inserted among spherulites, non-conducting trees will appear along the boundaries of spherulites. Frequency will accelerate the growth of non-conducting trees but have little influence on the initiation and growth processes of conducting trees. If the initiation process of non-conducting trees is too difficult, they will grow into mixed trees. Finally, it ...
Electrical tree growth is a well-documented process leading to failure of high voltage polymeric ins...
This paper presents the experimental results on effect of applied voltage stress frequency to the oc...
Based on the slice materials of 35 kV and 110 kV XLPE cables, an experimental platform is built to s...
This paper presents our experiments and analysis of the electrical tree growing characteristics. The...
The statistical initiation and propagation characteristics of electrical trees in cross-linked polye...
The conducting characteristics of two typical electrical trees in cross-linked polyethylene (XLPE) c...
The growth mechanism of electrical tree in high voltage and extra high voltage dielectric system is ...
To understand the non-breakdown phenomenon during the accelerating electrical tree ageing in cross-l...
Using a computer-aided image recording monitoring system, extensive measurements have been performed...
This paper reviews the factors that influence the electrical stress required for initiation of elect...
This paper reports on investigations aiming to understand the behavior of electrical trees formed in...
The conducting and non-conducting properties of electrical trees in cross-linked polyethylene (XLPE)...
Electrical treeing in high voltage cable insulation has been studied for a number of years and today...
In this paper, combined with the methods of real-time microscopic digital imaging and partial discha...
Electrical treeing is one of the main reasons for long term degradation of polymeric materials used ...
Electrical tree growth is a well-documented process leading to failure of high voltage polymeric ins...
This paper presents the experimental results on effect of applied voltage stress frequency to the oc...
Based on the slice materials of 35 kV and 110 kV XLPE cables, an experimental platform is built to s...
This paper presents our experiments and analysis of the electrical tree growing characteristics. The...
The statistical initiation and propagation characteristics of electrical trees in cross-linked polye...
The conducting characteristics of two typical electrical trees in cross-linked polyethylene (XLPE) c...
The growth mechanism of electrical tree in high voltage and extra high voltage dielectric system is ...
To understand the non-breakdown phenomenon during the accelerating electrical tree ageing in cross-l...
Using a computer-aided image recording monitoring system, extensive measurements have been performed...
This paper reviews the factors that influence the electrical stress required for initiation of elect...
This paper reports on investigations aiming to understand the behavior of electrical trees formed in...
The conducting and non-conducting properties of electrical trees in cross-linked polyethylene (XLPE)...
Electrical treeing in high voltage cable insulation has been studied for a number of years and today...
In this paper, combined with the methods of real-time microscopic digital imaging and partial discha...
Electrical treeing is one of the main reasons for long term degradation of polymeric materials used ...
Electrical tree growth is a well-documented process leading to failure of high voltage polymeric ins...
This paper presents the experimental results on effect of applied voltage stress frequency to the oc...
Based on the slice materials of 35 kV and 110 kV XLPE cables, an experimental platform is built to s...