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Exploring mechanical properties of fully compostable flax reinforced composite filaments for 3D printing applications

机译:探索3D打印应用完全粘贴亚麻加固复合丝丝的力学性能

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摘要

Plant fibres are increasingly used for composite reinforcement, but valorization of by-products such as flax shives still needs to be developed. Also, additive manufacturing, such as Fused Deposition Modelling (FDM), is strongly progressing and can be of great interest to implement biocomposite solutions. The present work focuses on the development of innovative and fully biodegradable filaments for FDM. Three polymer matrices were tested: PLLA, PLLA/PBS 50/50%-wt and PBAT. A filler content of 30-wt% has been achieved using flax shives with PBAT. Flax fibres and shives reinforced 3D printed parts exhibit promising performances and printability, highlighting their potential to successfully develop fully compostable filaments.
机译:植物纤维越来越多地用于复合增强,但仍需要开发亚麻灯等副产品的估值。 而且,添加剂制造,例如融合沉积建模(FDM),强烈进展,可以极大地利益实现生物复合溶液。 目前的工作侧重于开发FDM的创新和完全可生物降解的长丝。 测试了三种聚合物基质:PLLA,PLLA / PBS 50/50%-WT和PBAT。 使用亚麻炉用PBAT实现了30-Wt%的填料含量。 亚麻纤维和闪闪丰收的3D印刷零件表现出有希望的表现和可印刷性,突出了他们成功开发完全堆肥长丝的潜力。

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