Mechanical and thermal properties of ABS/PVC composites: effect of particles size and surface treatment of ground calcium carbonate
The objectives of this study are to determine the effects of particles size and surface treatment of ground calcium carbonate (GCC) on the mechanical and thermal properties of acrylonitrile butadiene styrene/poly(vinyl chloride) (ABS/PVC) (80:20) blends. The results showed GCC increased flexural mod...
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my.utm.471912019-03-31T08:34:40Z http://eprints.utm.my/id/eprint/47191/ Mechanical and thermal properties of ABS/PVC composites: effect of particles size and surface treatment of ground calcium carbonate Hassan, Azman Ratnam, Chantara Thevy Akbari, Abozar Ngoo, Kea Hing TA Engineering (General). Civil engineering (General) The objectives of this study are to determine the effects of particles size and surface treatment of ground calcium carbonate (GCC) on the mechanical and thermal properties of acrylonitrile butadiene styrene/poly(vinyl chloride) (ABS/PVC) (80:20) blends. The results showed GCC increased flexural modulus but decreased flexural and impact strength of the blend. Sample S2 containing stearate surface treated GCC showed the highest flexural modulus value while S1 with the smallest particles size was the highest for impact strength. GCC increased the thermal stability of ABS/PVC composites with S1 being the most effective, as indicated from the thermogravimetric analysis. Taylor and Francis Group 2012 Article PeerReviewed Hassan, Azman and Ratnam, Chantara Thevy and Akbari, Abozar and Ngoo, Kea Hing (2012) Mechanical and thermal properties of ABS/PVC composites: effect of particles size and surface treatment of ground calcium carbonate. Polymer - Plastics Technology And Engineering, 51 (5). pp. 473-479. ISSN 0360-2559 http://dx.doi.org/10.1080/03602559.2011.651242 DOI:10.1080/03602559.2011.651242 |
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TA Engineering (General). Civil engineering (General) Hassan, Azman Ratnam, Chantara Thevy Akbari, Abozar Ngoo, Kea Hing Mechanical and thermal properties of ABS/PVC composites: effect of particles size and surface treatment of ground calcium carbonate |
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The objectives of this study are to determine the effects of particles size and surface treatment of ground calcium carbonate (GCC) on the mechanical and thermal properties of acrylonitrile butadiene styrene/poly(vinyl chloride) (ABS/PVC) (80:20) blends. The results showed GCC increased flexural modulus but decreased flexural and impact strength of the blend. Sample S2 containing stearate surface treated GCC showed the highest flexural modulus value while S1 with the smallest particles size was the highest for impact strength. GCC increased the thermal stability of ABS/PVC composites with S1 being the most effective, as indicated from the thermogravimetric analysis. |
format |
Article |
author |
Hassan, Azman Ratnam, Chantara Thevy Akbari, Abozar Ngoo, Kea Hing |
author_facet |
Hassan, Azman Ratnam, Chantara Thevy Akbari, Abozar Ngoo, Kea Hing |
author_sort |
Hassan, Azman |
title |
Mechanical and thermal properties of ABS/PVC composites: effect of particles size and surface treatment of ground calcium carbonate |
title_short |
Mechanical and thermal properties of ABS/PVC composites: effect of particles size and surface treatment of ground calcium carbonate |
title_full |
Mechanical and thermal properties of ABS/PVC composites: effect of particles size and surface treatment of ground calcium carbonate |
title_fullStr |
Mechanical and thermal properties of ABS/PVC composites: effect of particles size and surface treatment of ground calcium carbonate |
title_full_unstemmed |
Mechanical and thermal properties of ABS/PVC composites: effect of particles size and surface treatment of ground calcium carbonate |
title_sort |
mechanical and thermal properties of abs/pvc composites: effect of particles size and surface treatment of ground calcium carbonate |
publisher |
Taylor and Francis Group |
publishDate |
2012 |
url |
http://eprints.utm.my/id/eprint/47191/ http://dx.doi.org/10.1080/03602559.2011.651242 |
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