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Effect of Cellulose Microfibers from Sugar Beet Pulp By-product on the Reinforcement of HDPE Composites Prepared by Twin-screw Extrusion and Injection Molding

摘要The aims of this work turn towards the valorization of the underutilized Raw Sugar Beet Pulp by-product to produce white Cellulose Microfibers(CMFs),and its potential effect as a reinforcement for the development of High-Density Polyethylene(HDPE)composites.Pure CMFs were first obtained by subjecting raw SBP to alkali and bleaching treatments.Several char-acterization techniques were performed to confirm the successful removal of the amorphous compounds from the surface of individual fibers,including SEM,XRD,TGA,and FT-IR analysis.Various CMF loadings(5-10 wt%)were incorporated as bio-fillers into HDPE polymer to evaluate their reinforcing ability in comparison to raw and alkali-treated SBP using twin-screw extrusion followed by injection molding.Styrene-(Ethylene-Butene)-Styrene Three-Block Co-Polymer Grafted with Maleic Anhydride was used as a compatibilizer to improve the interfacial adhesion between fibers and the matrix.Thermal,mechanical,and rheological properties of the produced composite samples were investigated.It was found that the Young's modulus were gradually increased with increasing of fibers loadings,with a maximum increase of 30%and 26%observed for composite containing 10 wt%of CMFs and raw SBP,respectively,over neat HDPE.While,the use of coupling agent enhances the ductile behavior of the composites.It was also found that all fiber improves the hardness and toughness behavior of all reinforced composites as well as the complex modulus particularly at 10 wt%.The thermal stability slightly increases with the addition of fibers.This study demonstrates a new route for the valorization of SBP by-products.These fibers can be considered as a valuable bio-fillers candidate for the development of composite materials with enhanced properties.

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作者 Abdelghani Boussetta [1] Anass Ait Benhamou [2] Francisco J.Barba [3] Nabil Grimi [4] Mario J.Simirgiotis [5] Amine Moubarik [1] 学术成果认领
作者单位 Laboratory of Chemical Processes and Applied Materials,Poly Disciplinary Faculty,Sultan Moulay Slimane University,BP 592,Beni-Mellal,Morocco [1] Laboratory of Chemical Processes and Applied Materials,Poly Disciplinary Faculty,Sultan Moulay Slimane University,BP 592,Beni-Mellal,Morocco;Materials Science,Energy and Nanoengineering(MSN)Department,Mohammed Ⅵ Polytechnic University,Lot 660-Hay Moulay Rachid,43150 Ben Guerir,Morocco;Materials Science and Process Optimization Laboratory,Faculty of Science Semlalia,Cadi Ayyad University,40000 Marrakech,Morocco [2] Nutrition and Food Science Area,Preventive Medicine and Public Health,Food Science,Toxicology and Forensic Medicine Department,Faculty of Pharmacy,Universitat de València,Avda.Vicent Andrés Estellés,s/n,46100 Burjassot,València,Spain [3] Sorbonne Université,Université de Technologie de CompiègneLaboratoire Transformations Intégrées de La Matière Renouvelable(UTC/ESCOM,EA 4297 TIMR),Centre de recherches Royallieu,CS 60 319,60 203 Compiègne Cedex,France [4] Campus Isla Teja,Institute of Pharmacy,Faculty of Sciencs,Universidad Austral de Chile,5090000 Valdivia,Chile [5]
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发布时间 2023-04-11(万方平台首次上网日期,不代表论文的发表时间)
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仿生工程学报(英文版)

仿生工程学报(英文版)

2023年20卷1期

349-365页

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