Influence of humidity on the electrical charging properties of cork agglomerates

Cork is a natural cellular and electrically insulating material which may have the capacity to store electric charges on or in its cell walls. Since natural cork has many voids, it is difficult to obtain uniform samples with the required dimensions. Therefore, a more uniform material, namely commerc...

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Published in:Journal of non-crystalline solids Vol. 353; no. 47-51; pp. 4501 - 4505
Main Authors: Lança, M.C., Wirges, W., Neagu, E.R., Gerhard, R., Marat-Mendes, J.
Format: Journal Article Conference Proceeding
Language:English
Published: Amsterdam Elsevier B.V 01-12-2007
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Abstract Cork is a natural cellular and electrically insulating material which may have the capacity to store electric charges on or in its cell walls. Since natural cork has many voids, it is difficult to obtain uniform samples with the required dimensions. Therefore, a more uniform material, namely commercial cork agglomerate, usually used for floor and wall coverings, is employed in the present study. Since we know from our previous work that the electrical properties of cork are drastically affected by absorbed and adsorbed water, samples were protected by means of different polymer coatings (applied by spin-coating or soaking). Corona charging and isothermal charging and discharging currents were used to study the electrical trapping and detrapping capabilities of the samples. A comparison of the results leads to the conclusion that the most promising method for storing electric charges in this cellular material consists of drying and coating or soaking with a hydrophobic, electrically insulating polymer such as polytetraflouroethylene (Teflon®).
AbstractList Cork is a natural cellular and electrically insulating material which may have the capacity to store electric charges on or in its cell walls. Since natural cork has many voids, it is difficult to obtain uniform samples with the required dimensions. Therefore, a more uniform material, namely commercial cork agglomerate, usually used for floor and wall coverings, is employed in the present study. Since we know from our previous work that the electrical properties of cork are drastically affected by absorbed and adsorbed water, samples were protected by means of different polymer coatings (applied by spin-coating or soaking). Corona charging and isothermal charging and discharging currents were used to study the electrical trapping and detrapping capabilities of the samples. A comparison of the results leads to the conclusion that the most promising method for storing electric charges in this cellular material consists of drying and coating or soaking with a hydrophobic, electrically insulating polymer such as polytetraflouroethylene (Teflon®).
Author Marat-Mendes, J.
Wirges, W.
Neagu, E.R.
Gerhard, R.
Lança, M.C.
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Cites_doi 10.1063/1.1688068
10.1007/BF00361523
10.4028/www.scientific.net/MSF.514-516.940
10.4028/www.scientific.net/MSF.455-456.446
10.1179/174328005X41168
10.1007/BF00353030
10.1080/00150190390238757
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Issue 47-51
Keywords 77.22.−d
81.05.Rm
77.84.−s
Electrical and electronic properties
Biomaterials
Cell structure
Charge carrier trapping
Electric charge
Cork
Tetrafluoroethylene polymer
Humidity
Polymer
Spin-on coating
Biomaterials; Electrical and electronic properties
Agglomerate material
Coatings
77.22.-d; 77.84.-s; 81.05.Rm
Language English
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MeetingName Dielectric relaxation and related phenomena: proceedings of the 4th Conference of the International Dielectric Society and the 9th International Conference on Dielectric and Related Phenomena (IDS & DRP 2006), Poznan, Poland, 3-7 September 2006
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Snippet Cork is a natural cellular and electrically insulating material which may have the capacity to store electric charges on or in its cell walls. Since natural...
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SubjectTerms 77.22.−d
77.84.−s
81.05.Rm
Applied sciences
Biomaterials
Electrical and electronic properties
Exact sciences and technology
Paper, paperboard, non wovens
Polymer industry, paints, wood
Properties and testing
Wood. Paper. Non wovens
Title Influence of humidity on the electrical charging properties of cork agglomerates
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