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FDM 3D Printing of Polymers Containing Natural Fillers: A Review of their Mechanical Properties

机译:含天然填料的聚合物的FDM 3D打印:其机械性能的综述

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摘要

As biodegradable thermoplastics are more and more penetrating the market of filaments for fused deposition modeling (FDM) 3D printing, fillers in the form of natural fibers are convenient: They have the clear advantage of reducing cost, yet retaining the filament biodegradability characteristics. In plastics that are processed through standard techniques (e.g., extrusion or injection molding), natural fibers have a mild reinforcing function, improving stiffness and strength, it is thus interesting to evaluate whether the same holds true also in the case of FDM produced components. The results analyzed in this review show that the mechanical properties of the most common materials, i.e., acrylonitrile-butadiene-styrene (ABS) and PLA, do not benefit from biofillers, while other less widely used polymers, such as the polyolefins, are found to become more performant. Much research has been devoted to studying the effect of additive formulation and processing parameters on the mechanical properties of biofilled 3D printed specimens. The results look promising due to the relevant number of articles published in this field in the last few years. This notwithstanding, not all aspects have been explored and more could potentially be obtained through modifications of the usual FDM techniques and the devices that have been used so far.
机译:随着可生物降解的热塑性塑料越来越多地渗透到3D打印熔融沉积建模(FDM)的长丝市场中,天然纤维形式的填料很方便:它们具有降低成本的明显优势,同时又保留了长丝的可生物降解性。在通过标准技术(例如挤出或注射成型)加工的塑料中,天然纤维具有适度的增强功能,改善了刚度和强度,因此有趣的是,对于FDM生产的部件,评估其是否同样适用。这篇综述中分析的结果表明,最常见的材料,即丙烯腈-丁二烯-苯乙烯(ABS)和PLA的机械性能无法从生物填料中受益,而发现了其他使用较少的聚合物,例如聚烯烃变得更有表现力。许多研究致力于研究添加剂配方和加工参数对生物填充3D打印标本的机械性能的影响。由于最近几年在该领域发表的相关文章数量众多,因此结果看起来很有希望。尽管如此,尚未对所有方面进行探讨,并且可能通过对常规FDM技术和迄今为止使用的设备的修改而潜在地获得更多方面。

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