Effect of filling surface-treated pyrolytic char on resistivity of rubber films
In this research, natural rubber (NR) films filled with pyrolytic tire char, carbon black N234 and N330 were compared for their electrical resistivity. The filler loading was varied to be 5, 10, 15, 20 and 25% of dry rubber content. The effect of surfactant which is 2 %w/v sodium dodecyl sulfate (SD...
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Khon Kaen University
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doaj-7d5c9247e13442bfa9d136f95795a9ef2020-11-24T21:53:40ZengKhon Kaen UniversityKKU Engineering Journal0125-82732286-94332015-03-01421919910.14456/kkuenj.2015.4Effect of filling surface-treated pyrolytic char on resistivity of rubber filmsPattraporn YamkayaDuangkamol DanwanichakulPanu DanwanichakulIn this research, natural rubber (NR) films filled with pyrolytic tire char, carbon black N234 and N330 were compared for their electrical resistivity. The filler loading was varied to be 5, 10, 15, 20 and 25% of dry rubber content. The effect of surfactant which is 2 %w/v sodium dodecyl sulfate (SDS) was also investigated. In the experiments, it was necessary to disperse the pyrolytic char in ethyl alcohol while disperse carbon black (CB) in ammonium hydroxide solution prior to mixing with the rubber latex and the filled NR film was prepared by casting the mixture on a plate. It was found that increasing the amount of pyrolytic char in the NR film could lower its resistivity. The surfactant, SDS, could help better dispersion of both CB and pyrolytic char, thereby decreasing the resistivity. In a separate experiment where hexane vapor was absorbed in NR film without surfactant, in the first 30 seconds, the rate of increasing resistivity of the CB-filled film was not seen as clearly as that of pyrolytic-char-filled film. For the films with surfactant, the slow increase in resistivity of the NR films filled with N330 and pyrolytic char during adsorbing hexane vapor was observed. https://www.tci-thaijo.org/index.php/kkuenj/article/download/32585/28227Natural rubberPyrolytic charCarbon blackVolatile organic matterSensor |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pattraporn Yamkaya Duangkamol Danwanichakul Panu Danwanichakul |
spellingShingle |
Pattraporn Yamkaya Duangkamol Danwanichakul Panu Danwanichakul Effect of filling surface-treated pyrolytic char on resistivity of rubber films KKU Engineering Journal Natural rubber Pyrolytic char Carbon black Volatile organic matter Sensor |
author_facet |
Pattraporn Yamkaya Duangkamol Danwanichakul Panu Danwanichakul |
author_sort |
Pattraporn Yamkaya |
title |
Effect of filling surface-treated pyrolytic char on resistivity of rubber films |
title_short |
Effect of filling surface-treated pyrolytic char on resistivity of rubber films |
title_full |
Effect of filling surface-treated pyrolytic char on resistivity of rubber films |
title_fullStr |
Effect of filling surface-treated pyrolytic char on resistivity of rubber films |
title_full_unstemmed |
Effect of filling surface-treated pyrolytic char on resistivity of rubber films |
title_sort |
effect of filling surface-treated pyrolytic char on resistivity of rubber films |
publisher |
Khon Kaen University |
series |
KKU Engineering Journal |
issn |
0125-8273 2286-9433 |
publishDate |
2015-03-01 |
description |
In this research, natural rubber (NR) films filled with pyrolytic tire char, carbon black N234 and N330 were compared for their electrical resistivity. The filler loading was varied to be 5, 10, 15, 20 and 25% of dry rubber content. The effect of surfactant which is 2 %w/v sodium dodecyl sulfate (SDS) was also investigated. In the experiments, it was necessary to disperse the pyrolytic char in ethyl alcohol while disperse carbon black (CB) in ammonium hydroxide solution prior to mixing with the rubber latex and the filled NR film was prepared by casting the mixture on a plate. It was found that increasing the amount of pyrolytic char in the NR film could lower its resistivity. The surfactant, SDS, could help better dispersion of both CB and pyrolytic char, thereby decreasing the resistivity. In a separate experiment where hexane vapor was absorbed in NR film without surfactant, in the first 30 seconds, the rate of increasing resistivity of the CB-filled film was not seen as clearly as that of pyrolytic-char-filled film. For the films with surfactant, the slow increase in resistivity of the NR films filled with N330 and pyrolytic char during adsorbing hexane vapor was observed.
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topic |
Natural rubber Pyrolytic char Carbon black Volatile organic matter Sensor |
url |
https://www.tci-thaijo.org/index.php/kkuenj/article/download/32585/28227 |
work_keys_str_mv |
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_version_ |
1725870699760844800 |