Biocomposites based on olive pruning fibers for industrial applications: Automobile and furniture
Olive fiber-reinforced polymer biocomposites were designed and produced within the framework of the LIFE-COMP0LIVE project (co-financed by the European Commission). These were designed according to a mathematical modelling previously developed based on the Design of Experiment methodology. The produ...
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creator | Ferrer-Rodríguez, Juan P. Cano-Galey, Manuela Navas-Martos, Francisco J. Jurado-Contreras, Sofía Rubia, M. Dolores La Mateo, Soledad Moya, Alberto Sánchez, Sebastián Baranowski, Thomas Wehemeyer, Inga Peña-Moraga, Javier Peña-Moraga, Francisco Metenier, Pascal Capiscol, Carmen |
description | Olive fiber-reinforced polymer biocomposites were designed and produced within the framework of the LIFE-COMP0LIVE project (co-financed by the European Commission). These were designed according to a mathematical modelling previously developed based on the Design of Experiment methodology. The production and subsequent characterization of such biocomposites, either with recycled polypropylene or polylactic acid polymer matrices, demonstrated their suitability for some industrial applications (automotive and furniture). The results of the mechanical characterization showed that these materials meet the requirements of industrial applications. Moreover, these biocomposites were significantly improved in terms of some mechanical properties. |
doi_str_mv | 10.1063/5.0168835 |
format | Conference Proceeding |
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language | eng |
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subjects | Biomedical materials Composite materials Fiber reinforced polymers Industrial applications Mathematical analysis Mechanical properties Polylactic acid |
title | Biocomposites based on olive pruning fibers for industrial applications: Automobile and furniture |
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