DocumentCode
833199
Title
Aging and polarization phenomena in PE under high electric fields
Author
Crine, Jean-Pierre
Volume
9
Issue
5
fYear
2002
fDate
10/1/2002 12:00:00 AM
Firstpage
697
Lastpage
703
Abstract
The influence of high electrical DC fields (>20 kV/mm) on aging, polarization and on the morphology of polyethylene (PE) is discussed. Infrared and positron annihilation spectroscopy measurements as well as capacitance measurements tend to suggest that the polymer morphology is modified by high fields. The author shows that the accelerated electrical aging characteristics of PE are linked directly to the morphology changes induced by the field. Below a so-called critical field, the activation volume of the aging process is dependent on the field-induced strain. Above the critical field, the amorphous phase is deformed significantly, and weak van der Waals bonds are broken, leading to another, faster, aging regime. There is an excellent agreement between the proposed model and experimental data obtained with various PE samples. The possible relation between the submicrocavity formation proposed in his aging model and various polarization measurements is discussed. It is his contention that strong charge injection occurs only after submicrocavity formation, i.e. after weak bond breakage. As is well known, the polarization currents obtained under high fields are controlled by space charges. It seems that the wave packets and the negative resistance observed at >100 kV/mm in PE are associated with a steady state in field-induced defect formation. This suggests that space charges are related to the formation of submicrocavities and, therefore, are a consequence, not a cause, of high field aging.
Keywords
ageing; electric breakdown; infrared spectroscopy; insulation testing; polyethylene insulation; positron annihilation; space charge; aging phenomena; aging process activation volume; capacitance measurements; charge injection; dielectric polarisation phenomena; field-induced defect formation; field-induced strain; high electrical DC fields; infrared spectroscopy; insulation breakdown testing; morphology; polarization currents; polarization measurements; polyethylene insulation; positron annihilation spectroscopy; space charges; submicrocavity formation; van der Waals bonds; wave packets; Aging; Capacitance measurement; Infrared spectra; Morphology; Polarization; Polyethylene; Polymers; Positrons; Space charge; Spectroscopy;
fLanguage
English
Journal_Title
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher
ieee
ISSN
1070-9878
Type
jour
DOI
10.1109/TDEI.2002.1038657
Filename
1038657
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