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Evaluation of the Compatibility of Organosolv Lignin-Graphene Nanoplatelets with Photo-Curable Polyurethane in Stereolithography 3D Printing

机译:立体光刻3D打印中有机溶剂木质素-石墨烯纳米片与光固化聚氨酯的相容性评估

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摘要

In this study, lignin has been extracted from oil palm empty fruit bunch (EFB) fibers via an organosolv process. The organosolv lignin obtained was defined by the presence of hydroxyl-containing molecules, such as guaiacyl and syringyl, and by the presence of phenolic molecules in lignin. Subsequently, the extracted organosolv lignin and graphene nanoplatelets (GNP) were utilized as filler and reinforcement in photo-curable polyurethane (PU), which is used in stereolithography 3D printing. The compatibility as well as the characteristic and structural changes of the composite were identified through the mechanical properties of the 3D-printed composites. Furthermore, the tensile strength of the composited lignin and graphene shows significant improvement as high as 27%. The hardness of the photo-curable PU composites measured by nanoindentation exhibited an enormous improvement for 0.6% of lignin-graphene at 92.49 MPa with 238% increment when compared with unmodified PU.
机译:在这项研究中,木质素是通过有机溶剂工艺从油棕空果束(EFB)纤维中提取的。所获得的有机溶剂木质素的定义是:木质素中含羟基的分子,如愈创木脂基和丁香基基团;以及酚类分子。随后,将提取的有机溶剂木质素和石墨烯纳米片(GNP)用作光固化聚氨酯(PU)中的填充剂和增强剂,将其用于立体光刻3D打印中。通过3D打印复合材料的机械性能,可以确定复合材料的相容性以及特征和结构变化。此外,木质素和石墨烯复合材料的拉伸强度显示出高达27%的显着改善。与未改性的PU相比,通过纳米压痕法测得的光固化PU复合材料的硬度在92.49 MPa下对0.6%的木质素-石墨烯表现出极大的改善,增加了238%。

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