Roles of calcium, zinc, copper and titanium compounds on the degradation of polymers
In this article, the influences of the metallic filler content upon the thermal degradability of polymer composites such as initial degradation temperature, maximum degradation temperature and char content have been critically reviewed using thermogravimetric analysis. Besides that, the review on th...
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my.utm.553562017-08-06T08:03:22Z http://eprints.utm.my/id/eprint/55356/ Roles of calcium, zinc, copper and titanium compounds on the degradation of polymers Chee, Tzeming Lee, Tin Sin Bee, Soo Tueen Tee, Tiam Ting Kadhum, Abdul Amir Hassan Rahmat, Abdul Razak TP Chemical technology In this article, the influences of the metallic filler content upon the thermal degradability of polymer composites such as initial degradation temperature, maximum degradation temperature and char content have been critically reviewed using thermogravimetric analysis. Besides that, the review on the relationship between activation energies of polymer/metal composites, which was obtained from various degrade models, and the content of metallic fillers have also been defined. Other thermal properties such as glass transition temperature (Tg) and melting temperature (Tm) have also been reviewed based on the evaluation of differential scanning calorimetry (DSC) analysis. Taylor and Francis Ltd. 2015-03-29 Article PeerReviewed Chee, Tzeming and Lee, Tin Sin and Bee, Soo Tueen and Tee, Tiam Ting and Kadhum, Abdul Amir Hassan and Rahmat, Abdul Razak (2015) Roles of calcium, zinc, copper and titanium compounds on the degradation of polymers. Polymer - Plastics Technology and Engineering, 54 (5). pp. 441-461. ISSN 0360-2559 http://dx.doi.org/10.1080/03602559.2014.955200 DOI:10.1080/03602559.2014.955200 |
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TP Chemical technology Chee, Tzeming Lee, Tin Sin Bee, Soo Tueen Tee, Tiam Ting Kadhum, Abdul Amir Hassan Rahmat, Abdul Razak Roles of calcium, zinc, copper and titanium compounds on the degradation of polymers |
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In this article, the influences of the metallic filler content upon the thermal degradability of polymer composites such as initial degradation temperature, maximum degradation temperature and char content have been critically reviewed using thermogravimetric analysis. Besides that, the review on the relationship between activation energies of polymer/metal composites, which was obtained from various degrade models, and the content of metallic fillers have also been defined. Other thermal properties such as glass transition temperature (Tg) and melting temperature (Tm) have also been reviewed based on the evaluation of differential scanning calorimetry (DSC) analysis. |
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Article |
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Chee, Tzeming Lee, Tin Sin Bee, Soo Tueen Tee, Tiam Ting Kadhum, Abdul Amir Hassan Rahmat, Abdul Razak |
author_facet |
Chee, Tzeming Lee, Tin Sin Bee, Soo Tueen Tee, Tiam Ting Kadhum, Abdul Amir Hassan Rahmat, Abdul Razak |
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Chee, Tzeming |
title |
Roles of calcium, zinc, copper and titanium compounds on the degradation of polymers |
title_short |
Roles of calcium, zinc, copper and titanium compounds on the degradation of polymers |
title_full |
Roles of calcium, zinc, copper and titanium compounds on the degradation of polymers |
title_fullStr |
Roles of calcium, zinc, copper and titanium compounds on the degradation of polymers |
title_full_unstemmed |
Roles of calcium, zinc, copper and titanium compounds on the degradation of polymers |
title_sort |
roles of calcium, zinc, copper and titanium compounds on the degradation of polymers |
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Taylor and Francis Ltd. |
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2015 |
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http://eprints.utm.my/id/eprint/55356/ http://dx.doi.org/10.1080/03602559.2014.955200 |
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