Optimal formulation of recycled polypropylene/rubberwood flour composites on hardness property
Mixture experimental design was applied to determine the optimal mixture for composites between rubberwood flour (RWF) and recycled polypropylene (rPP). Experiments were conducted based on a D-optimal mixture design and analyzed using response surface methodology. Analysis of variance revealed tha...
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th-psu.2010-89892019-02-16T20:05:30Z Optimal formulation of recycled polypropylene/rubberwood flour composites on hardness property Ratanawilai, Thanate wood-plastic composites mixture experimental design rubberwood flour hardness Mixture experimental design was applied to determine the optimal mixture for composites between rubberwood flour (RWF) and recycled polypropylene (rPP). Experiments were conducted based on a D-optimal mixture design and analyzed using response surface methodology. Analysis of variance revealed that compositions including rPP, RWF, maleic anhydride grafted polypropylene (MAPP), and ultraviolet (UV) stabilizer significantly affected hardness property. Contour plots of the response surface demonstrated that an increase of RWF content steadily enhanced hardness value, but hardness property sharply decreased with an increase of rPP loading. An addition of the UV stabilizer in the composites showed a slight decrease of the hardness value. This result recommends that amount of UV stabilizer used should be minimized. With this experimental design, the optimal formulation of rPP/RWF composites found was 50.0 wt% rPP,45.0 wt% RWF, 3.9 wt% MAPP, 0.1 wt% UV stabilizer, and 1.0 wt% Lubricant. Prince of Songkla Graduate Studies Grant, the Government budget Fund (Code: 2555A11502062), and Rubberwood Technology and Management Research Group (ENG-54-27-11-0137-S) of Faculty of Engineering,Prince of Songkla University 2013-10-01T04:11:31Z 2013-10-01T04:11:31Z 2013-08-30 Article http://kb.psu.ac.th/psukb/handle/2010/8989 en_US application/pdf Applied Mechanics and Materials |
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wood-plastic composites mixture experimental design rubberwood flour hardness Ratanawilai, Thanate Optimal formulation of recycled polypropylene/rubberwood flour composites on hardness property |
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Mixture experimental design was applied to determine the optimal mixture for
composites between rubberwood flour (RWF) and recycled polypropylene (rPP). Experiments were conducted based on a D-optimal mixture design and analyzed using response surface methodology.
Analysis of variance revealed that compositions including rPP, RWF, maleic anhydride grafted polypropylene (MAPP), and ultraviolet (UV) stabilizer significantly affected hardness property.
Contour plots of the response surface demonstrated that an increase of RWF content steadily enhanced hardness value, but hardness property sharply decreased with an increase of rPP loading.
An addition of the UV stabilizer in the composites showed a slight decrease of the hardness value.
This result recommends that amount of UV stabilizer used should be minimized. With this experimental design, the optimal formulation of rPP/RWF composites found was 50.0 wt% rPP,45.0 wt% RWF, 3.9 wt% MAPP, 0.1 wt% UV stabilizer, and 1.0 wt% Lubricant. |
format |
Article |
author |
Ratanawilai, Thanate |
author_facet |
Ratanawilai, Thanate |
author_sort |
Ratanawilai, Thanate |
title |
Optimal formulation of recycled polypropylene/rubberwood flour composites on hardness property |
title_short |
Optimal formulation of recycled polypropylene/rubberwood flour composites on hardness property |
title_full |
Optimal formulation of recycled polypropylene/rubberwood flour composites on hardness property |
title_fullStr |
Optimal formulation of recycled polypropylene/rubberwood flour composites on hardness property |
title_full_unstemmed |
Optimal formulation of recycled polypropylene/rubberwood flour composites on hardness property |
title_sort |
optimal formulation of recycled polypropylene/rubberwood flour composites on hardness property |
publisher |
Applied Mechanics and Materials |
publishDate |
2013 |
url |
http://kb.psu.ac.th/psukb/handle/2010/8989 |
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1681754241403715584 |