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2020 | OriginalPaper | Chapter

A Statistical Analysis of Size, Shape and Tensile Properties of Fibres Extracted from Date Palm (Phoenix Dactylifera L.) Rachis

Authors : H. Boumediri, A. Bezazi, G. Garcia del Pino, B. Bezzazi, A. Toufik Moussai, F. Scarpa, A. Dufresne

Published in: Proceedings of the 4th International Symposium on Materials and Sustainable Development

Publisher: Springer International Publishing

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Abstract

Algeria is the largest country in Africa by in terms of land area, which makes it contain large quantities of agricultural residues. The aim of this study is the valorisation of the huge amount of agricultural residue of date palm rachis available in Algeria to be used as reinforcement in bio-composite materials for various industrial applications. The analysis of the morphology of the of the date palm rachis cross-section allowed us to identify two main types of fibres according to their microstructure: vascular bundles and fibre strands. The chemical and molecular structure analysis of the date palm rachis fibres was examined by Fourier transform infrared spectroscopy (FTIR). The tensile properties of the fibre extracted were investigated under tensile loading test. The experimental results obtained for the tensile strength, Young’s modulus and strain at break of the fibres have been analysed, because of their dispersion, using three-parameter and two-parameter Weibull statistical laws. The tensile strength and Young’s modulus of the fibre strand were found to be about than four times higher than for the vascular bundle and their predicted model was determined. The tensile properties obtained for the investigated fibre were compared with other lignocelluloses fibres, existing in the literature, and it shows its great potential for use as reinforcement in bio-composite materials.

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Metadata
Title
A Statistical Analysis of Size, Shape and Tensile Properties of Fibres Extracted from Date Palm (Phoenix Dactylifera L.) Rachis
Authors
H. Boumediri
A. Bezazi
G. Garcia del Pino
B. Bezzazi
A. Toufik Moussai
F. Scarpa
A. Dufresne
Copyright Year
2020
DOI
https://doi.org/10.1007/978-3-030-43211-9_6

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