Statistical experimental design and modeling of polypropylene–wood fiber composites
The influence of the amount of maleated polypropylene coating of vinyl-tris (2-methoxy ethoxy) silane treated wood-fibers (2 or 10 wt%), type of matrix (polypropylene or maleated polypropylene) and composition (10, 20 or 30 wt%) on the tensile and flexural performance of polypropylene–wood fiber com...
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Veröffentlicht in: | Polymer testing 2000-06, Vol.19 (4), p.419-428 |
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creator | Costa, Thais H.S Carvalho, Daisy L Souza, Denise C.S Coutinho, Fernanda M.B Pinto, José Carlos Kokta, Bohuslav V |
description | The influence of the amount of maleated polypropylene coating of vinyl-tris (2-methoxy ethoxy) silane treated wood-fibers (2 or 10 wt%), type of matrix (polypropylene or maleated polypropylene) and composition (10, 20 or 30 wt%) on the tensile and flexural performance of polypropylene–wood fiber composites was studied. The effect of these variables on tensile strength, Young's modulus, elongation at yield and flexural strength was determined through a 22·31 factorial design. The analysis of variance of the experimental and predicted data shows that the constructed models provide a fair approximation of actual experimental measurements. Finally, experimental details regarding the preparation of optimum composites as predicted by empirical models are discussed. |
doi_str_mv | 10.1016/S0142-9418(99)00014-8 |
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The effect of these variables on tensile strength, Young's modulus, elongation at yield and flexural strength was determined through a 22·31 factorial design. The analysis of variance of the experimental and predicted data shows that the constructed models provide a fair approximation of actual experimental measurements. 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subjects | Applied sciences Composites Exact sciences and technology Forms of application and semi-finished materials Polymer industry, paints, wood Technology of polymers |
title | Statistical experimental design and modeling of polypropylene–wood fiber composites |
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