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Biodegradable polymer composites based on polylactide used in selected 3D technologies (Rapid communication)

机译:基于选定3D技术的聚丙酯的可生物降解的聚合物复合材料(快速通信)

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摘要

As part of the work, new polymer materials were used in 3D printing, which can be used in three technologies depending on the apparatus used: Fused Filament Fabrication (FFF), Melted and Extruded Manufacturing (MEM), Melt Extrusion Polymers (MEP). As part of the work, the properties of obtained polymer composites were examined. Polylactide (PLA) was used as the matrix, and powdered natural ground fillers were used as fillers: bamboo dust (PB), cork dust (PK) and wood dust (PD). In the first part of the work, filaments were received from the tested composites using the filament preparation line made by METACHEM in Torun for use in 3D printers. Samples for mechanical tests were obtained from the filaments thus received by means of an MEP printer and after granulation by injection molding. In the next part of the work, rheological, mechanical and structural properties of obtained composites were examined. It was found that the addition of natural fillers increased the fluidity of the obtained polymeric materials in the case of composite with addition of PK even by 48.73% compared to unfilled PLA. It was also observed that the composites obtained had lower Charpy impact strength, Rockwell hardness and tensile strength. Observation of the microstructure of the composites using SEM confirmed the even distribution of natural fillers in the polymer matrix, which proves well-chosen parameters of their homogenization in the polymer matrix.
机译:作为工作的一部分,新的聚合物材料被用于3D打印,根据所用设备的不同,3D打印可用于三种技术:熔融长丝制造(FFF)、熔融和挤出制造(MEM)、熔融挤出聚合物(MEP)。作为工作的一部分,对所获得的聚合物复合材料的性能进行了检查。以聚乳酸(PLA)为基质,粉末状天然地面填料为填料:竹粉(PB)、软木粉(PK)和木粉(PD)。在工作的第一部分中,使用Torun的METACHEM制造的用于3D打印机的长丝制备线从测试复合材料中接收长丝。通过MEP打印机和注射成型造粒后,从由此接收的长丝中获得用于机械试验的样品。在下一部分的工作中,研究了所得复合材料的流变学、力学和结构性能。结果发现,与未填充的PLA相比,添加天然填料的复合材料的流动性增加了48.73%。还观察到,所获得的复合材料具有较低的夏比冲击强度、洛氏硬度和拉伸强度。利用SEM观察复合材料的微观结构,证实了天然填料在聚合物基体中的均匀分布,这证明了它们在聚合物基体中均匀化的参数选择得当。

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