Title :
Electrical tree growth retardation and acceleration model
Author :
Ding, H.-Z. ; Varlow, B.R.
Author_Institution :
Sch. of Eng., Manchester Univ., UK
Abstract :
In predicting electrical tree growth behaviour of practical insulation materials under operating alternating voltages, one must consider the effects of compressive and tensile residual stresses to retard and accelerate electrical tree growth. In this study a general model of electrical tree growth retardation and acceleration is firstly proposed. The present model combines both macroscopic and submicroscopic approaches to describe the local damage features around the tree tip and enables the effect of compressive and/or tensile residual stresses on electrical tree growth dynamics to be determined quantitatively. Electrical tree propagation rate equation and a lifetime formula that take into account the effect of the residual stresses have been derived. Taking the example of mechanically pre-stressed fibre-reinforced epoxy resins the application of the proposed model has been addressed.
Keywords :
epoxy insulation; internal stresses; stress effects; trees (electrical); acceleration model; compressive stresses; electrical tree growth dynamics; electrical tree growth retardation; electrical tree propagation; insulation materials; mechanically prestressed fibre-reinforced epoxy resins; tensile residual stresses; Acceleration; Compressive stress; Dielectrics and electrical insulation; Plastic insulation; Polymers; Residual stresses; Stress control; Tensile stress; Thermal stresses; Trees - insulation;
Conference_Titel :
Properties and Applications of Dielectric Materials, 2003. Proceedings of the 7th International Conference on
Print_ISBN :
0-7803-7725-7
DOI :
10.1109/ICPADM.2003.1218441