Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties
The design development and construction of outdoor insulator are based on the requirement to prevent completely-wetted zones. However, insulating materials such as polymer that used in high voltage technology usually exposed to corona discharge. Long term of corona discharge reduce the hydrophobicit...
Published in: | Proceedings - 2013 IEEE Conference on Systems, Process and Control, ICSPC 2013 |
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2-s2.0-84897782739 Ibrahim W.S.W.; Majid M.A.; Mohamad S. Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties 2013 Proceedings - 2013 IEEE Conference on Systems, Process and Control, ICSPC 2013 10.1109/SPC.2013.6735107 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84897782739&doi=10.1109%2fSPC.2013.6735107&partnerID=40&md5=5dce6b65c85826b420768042fafce590 The design development and construction of outdoor insulator are based on the requirement to prevent completely-wetted zones. However, insulating materials such as polymer that used in high voltage technology usually exposed to corona discharge. Long term of corona discharge reduce the hydrophobicity and cause the degradation of the insulators. It may increase the leakage current over insulators which may lead to increasingly severe arcing activity and proceed to flashover. Thermoplastic Elastomer (TPE), a type of rubber-like material is believed to surpass other materials like Silicon Rubber (SIR) and Ethylene Propylene (EP) due to its excellent hydrophobicity characteristic which account for a wide range of insulation applications. This paper presents the experimental results of corona aging studies on hydrophobic properties for different type of TPE nanocomposites. Three nanofillers, i.e. Montmorillonites (MMT), Silicon Dioxide (SiD), and Aluminum Oxide (AO) were used to study the effects. Pointed-plane electrode geometry has been used to create the corona on the samples. The changes of hydrophobic properties of these materials were determined by the contact angle measurement technique. Results attained confirm that the existence of nanofillers in TPE nanocomposite materials affect the hydrophobic characteristic of these insulators before and after the corona discharge exposure in different prospective. © 2013 IEEE. IEEE Computer Society English Conference paper |
author |
Ibrahim W.S.W.; Majid M.A.; Mohamad S. |
spellingShingle |
Ibrahim W.S.W.; Majid M.A.; Mohamad S. Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties |
author_facet |
Ibrahim W.S.W.; Majid M.A.; Mohamad S. |
author_sort |
Ibrahim W.S.W.; Majid M.A.; Mohamad S. |
title |
Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties |
title_short |
Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties |
title_full |
Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties |
title_fullStr |
Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties |
title_full_unstemmed |
Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties |
title_sort |
Degradation of thermoplastic elastomeric nanocomposite materials exposed to corona discharge and impact on hydrophobic properties |
publishDate |
2013 |
container_title |
Proceedings - 2013 IEEE Conference on Systems, Process and Control, ICSPC 2013 |
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container_issue |
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doi_str_mv |
10.1109/SPC.2013.6735107 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84897782739&doi=10.1109%2fSPC.2013.6735107&partnerID=40&md5=5dce6b65c85826b420768042fafce590 |
description |
The design development and construction of outdoor insulator are based on the requirement to prevent completely-wetted zones. However, insulating materials such as polymer that used in high voltage technology usually exposed to corona discharge. Long term of corona discharge reduce the hydrophobicity and cause the degradation of the insulators. It may increase the leakage current over insulators which may lead to increasingly severe arcing activity and proceed to flashover. Thermoplastic Elastomer (TPE), a type of rubber-like material is believed to surpass other materials like Silicon Rubber (SIR) and Ethylene Propylene (EP) due to its excellent hydrophobicity characteristic which account for a wide range of insulation applications. This paper presents the experimental results of corona aging studies on hydrophobic properties for different type of TPE nanocomposites. Three nanofillers, i.e. Montmorillonites (MMT), Silicon Dioxide (SiD), and Aluminum Oxide (AO) were used to study the effects. Pointed-plane electrode geometry has been used to create the corona on the samples. The changes of hydrophobic properties of these materials were determined by the contact angle measurement technique. Results attained confirm that the existence of nanofillers in TPE nanocomposite materials affect the hydrophobic characteristic of these insulators before and after the corona discharge exposure in different prospective. © 2013 IEEE. |
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IEEE Computer Society |
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English |
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1809678488060297216 |