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Homogeneous distribution of lignin/graphene fillers with enhanced interlayer adhesion for 3D printing filament

机译:木质素/石墨烯填料的均匀分布具有增强的3D印刷长丝夹层粘附性

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The attention to pursuing biodegradable fillers as reinforcement in three-dimensional (3D) printing filament and enhancing interlayer adhesion has led to the exploitation of agricultural biomass. In this study, organosolv lignin fillers can act as the aforementioned twofold purposes in preparing acrylonitrile butadiene styrene (ABS) filament for fused deposition modeling (FDM). In this study, the lignin polymer composites were homogenized with graphene nanoplatelets (GnPs) as a reinforcer. Essentially, ABS 3D printing at 90(o) with the reinforcement fillers shows a significant increment in the mechanical properties owing to better interlayer adhesion. The printed product promotes a substantial improvement on the tensile stress up to 29.1% compared with neat polymers. Furthermore, 3D printing using lignin/GnP composite filaments shows the feasibility of biofillers to be used as filaments for FDM 3D printing of complex geometries even though the surface finish has been affected.
机译:人们开始关注将可生物降解填料用作三维(3D)打印长丝的增强材料,并增强层间粘合力,这导致了农业生物质的开发。在本研究中,有机溶剂木质素填料可作为上述两个目的,用于制备熔融沉积成型(FDM)用丙烯腈-丁二烯-苯乙烯(ABS)长丝。在本研究中,木质素聚合物复合材料以石墨烯纳米片(GnPs)作为增强剂均匀化。基本上,在90(o)下使用增强填料进行ABS 3D打印时,由于层间附着力更好,机械性能显著提高。与纯聚合物相比,印刷产品的拉伸应力显著提高,最高可达29.1%。此外,使用木质素/GnP复合长丝进行3D打印表明,即使表面光洁度受到影响,生物填料也可以用作复杂几何形状FDM 3D打印的长丝。

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