Surface potential decay of DC-corona-charged PET films on humid electrodes

Surface potential decay measurement is a widely used tool to test the electrical properties of insulation materials. The aim of the present paper is to evaluate the effect of a humid electrode on the surface potential decay process. The experiments are performed on 1-mm thick samples of PET films (50...

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Published inJournal of electrostatics Vol. 78; pp. 17 - 21
Main Authors Rouagdia, Karim, Nemamcha, Mohamed, Herous, Lazhar, Dascalescu, Lucian, Mellouki, Hamza
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.12.2015
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Abstract Surface potential decay measurement is a widely used tool to test the electrical properties of insulation materials. The aim of the present paper is to evaluate the effect of a humid electrode on the surface potential decay process. The experiments are performed on 1-mm thick samples of PET films (50 mm × 50 mm) in ambient air (temperature: 25 °C–29 °C; relative humidity: 42%–48%). The samples are placed on a grounded humid electrode (aluminum plate covered by a humid textile: 52 mm × 52 mm), and are charged by exposing them for 10 s to the negative DC corona discharge generated by a high-voltage wire-type dual electrode. The results show that the humid electrode has a significant influence on the surface potential evolution during the first moments after corona charging. Bipolar charge injection is the main physical mechanism that explains this potential decay. •Aim: evaluate the effect of humid electrode on surface potential decay of PET films.•Experiments performed on 1-mm thick samples of PET films in ambient air.•Samples placed on a grounded humid electrode and charged by negative DC corona.•The humid electrode influences surface potential evolution after corona charging.•Charge injection is the main physical mechanism that explains this potential decay.
AbstractList Surface potential decay measurement is a widely used tool to test the electrical properties of insulation materials. The aim of the present paper is to evaluate the effect of a humid electrode on the surface potential decay process. The experiments are performed on 1-mm thick samples of PET films (50 mm × 50 mm) in ambient air (temperature: 25 °C–29 °C; relative humidity: 42%–48%). The samples are placed on a grounded humid electrode (aluminum plate covered by a humid textile: 52 mm × 52 mm), and are charged by exposing them for 10 s to the negative DC corona discharge generated by a high-voltage wire-type dual electrode. The results show that the humid electrode has a significant influence on the surface potential evolution during the first moments after corona charging. Bipolar charge injection is the main physical mechanism that explains this potential decay. •Aim: evaluate the effect of humid electrode on surface potential decay of PET films.•Experiments performed on 1-mm thick samples of PET films in ambient air.•Samples placed on a grounded humid electrode and charged by negative DC corona.•The humid electrode influences surface potential evolution after corona charging.•Charge injection is the main physical mechanism that explains this potential decay.
Author Dascalescu, Lucian
Herous, Lazhar
Rouagdia, Karim
Mellouki, Hamza
Nemamcha, Mohamed
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Keywords Polyethylene terephthalate film
Humid electrodes
Corona-charging
Surface potential decay (SPD)
Language English
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  publication-title: J. Electrostat.
  doi: 10.1016/S0304-3886(98)00053-9
  contributor:
    fullname: Molinié
– volume: 43
  start-page: 55405
  year: 2010
  ident: 10.1016/j.elstat.2015.09.004_bib17
  article-title: A new model for surface potential decay of corona-charged polymer
  publication-title: J. Phys. D Appl. Phys.
  doi: 10.1088/0022-3727/43/5/055405
  contributor:
    fullname: Chen
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Snippet Surface potential decay measurement is a widely used tool to test the electrical properties of insulation materials. The aim of the present paper is to...
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SubjectTerms Corona-charging
Humid electrodes
Polyethylene terephthalate film
Surface potential decay (SPD)
Title Surface potential decay of DC-corona-charged PET films on humid electrodes
URI https://dx.doi.org/10.1016/j.elstat.2015.09.004
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