A General Approach to the Endurance of Electrical Insulation under Temperature and Voltage
- 1 August 1981
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Electrical Insulation
- Vol. EI-16 (4) , 277-289
- https://doi.org/10.1109/tei.1981.298361
Abstract
The paper deals with the models for estimating the life of electrical insulation under multiple stress conditions. In a first approach, simple models, the inverse-power law and the exponential, are considered for electrical aging; they are combined with the Arrhenius model to find the life equation of insulating materials under temperature and voltage. This equation is discussed and the corresponding surface studied and drawn. Since experimental results often disagree with these models in the low-stress range, an improved electrical model is proposed in which a threshold electrical gradient is introduced. This also involves the introduction of a threshold temperature, variable with electrical stress. Using some simple assumptions about the thresholds, it is possible to attain a new model for insulation life under combined stresses, perfectly symmetrical in thermal and electrical stress. The results of both voltage endurance tests on various insulating materials and multiple stress tests on a composite material agree with the proposed model and show its capability by accurately predicting the longtermerm behavior of insulation.Keywords
This publication has 7 references indexed in Scilit:
- A New Research into the Voltage Endurance of Solid DielectricsIEEE Transactions on Electrical Insulation, 1975
- A New Approach to the Voltage-Endurance Test on Electrical InsulationIEEE Transactions on Electrical Insulation, 1973
- A Statistical Approach to the Discussion of the Dielectric Strength in Electric CablesIEEE Transactions on Power Apparatus and Systems, 1971
- Application of Cumulative Degradation Model to Acceleration Life TestIEEE Transactions on Reliability, 1968
- Application of the Eyring Model to Capacitor Aging DataIEEE Transactions on Component Parts, 1965
- Electrical Insulation Deterioration Treated as a Chemical Rate PhenomenonTransactions of the American Institute of Electrical Engineers, 1948
- Loading Transformers By TemperatureTransactions of the American Institute of Electrical Engineers, 1930