The effect of morphology on the development of electrical trees in semicrystalline polymers has been investigated using a blend of high and low density polyethylene and, for comparison, a low density polyethylene. In the blend system, which contained 20% high density polyethylene and 80% of the above low density polyethylene, thermal processing was used to generate a variety of morphologies. Quenching directly from the melt gave a fine-scale banded spherulitic morphology, isothermal crystallization at 115 deg.C gave a continuous, coarse banded spherulitic morphology, whereas crystallization at 124 deg.C, and above, produced discrete and relatively compact lamellar aggregates of high density polyethylene within a low density matrix. The morp...
Electrical trees are one reason for the breakdown of insulating materials in electrical power system...
Electrical treeing has been widely studied in a range of polymeric materials. In these investigation...
Crosslinked polyethylene (XLPE) is used as underground cable insulation due to its outstanding elect...
Morphology, dielectric breakdown and mechanical properties have been studied in a number of model po...
Structure-property relationships in binary polyethylene blends, and how they relate to electrical st...
Influence of polymer morphology on the inception and the growth of electrical trees in unfilled low ...
To investigate the characteristic of electrical tree propagation in semi-crystalline polymers, the l...
This paper reported the growth of electrical tree in low density polyethylene under AC voltage. Spec...
Treeing in polyethylene based nanocomposite samples as well as unfilled polyethylene samples were st...
This paper presents electrical treeing behavior in low density polyethylene (LDPE) and cross-linked ...
Electrical trees are one reason for the breakdown of insulating materials in electrical power system...
This study elucidates the influence of differences in crosslink structure and crosslink density on w...
Treeing in low density polyethylene (LDPE) filled with alumina nanocomposite as well as unfilled LDP...
Electrical treeing in high voltage cable insulation has been studied for a number of years and today...
Electrical tree growth is a well-documented process leading to failure of high voltage polymeric ins...
Electrical trees are one reason for the breakdown of insulating materials in electrical power system...
Electrical treeing has been widely studied in a range of polymeric materials. In these investigation...
Crosslinked polyethylene (XLPE) is used as underground cable insulation due to its outstanding elect...
Morphology, dielectric breakdown and mechanical properties have been studied in a number of model po...
Structure-property relationships in binary polyethylene blends, and how they relate to electrical st...
Influence of polymer morphology on the inception and the growth of electrical trees in unfilled low ...
To investigate the characteristic of electrical tree propagation in semi-crystalline polymers, the l...
This paper reported the growth of electrical tree in low density polyethylene under AC voltage. Spec...
Treeing in polyethylene based nanocomposite samples as well as unfilled polyethylene samples were st...
This paper presents electrical treeing behavior in low density polyethylene (LDPE) and cross-linked ...
Electrical trees are one reason for the breakdown of insulating materials in electrical power system...
This study elucidates the influence of differences in crosslink structure and crosslink density on w...
Treeing in low density polyethylene (LDPE) filled with alumina nanocomposite as well as unfilled LDP...
Electrical treeing in high voltage cable insulation has been studied for a number of years and today...
Electrical tree growth is a well-documented process leading to failure of high voltage polymeric ins...
Electrical trees are one reason for the breakdown of insulating materials in electrical power system...
Electrical treeing has been widely studied in a range of polymeric materials. In these investigation...
Crosslinked polyethylene (XLPE) is used as underground cable insulation due to its outstanding elect...