Cieślik Mateusz, Rodak Agata, Susik Agnieszka, Wójcik Natalia, Szociński Michał, Ryl Jacek, Formela Krzysztof
Advanced Materials Center, Gdańsk University of Technology, Gabriela Narutowicza 11/12, 80-233 Gdańsk, Poland.
Institute of Nanotechnology and Materials Engineering, Faculty of Applied Physics and Mathematics, Gdańsk University of Technology, Gabriela Narutowicza 11/12, 80-233 Gdańsk, Poland.
Materials (Basel). 2023 Feb 3;16(3):1307. doi: 10.3390/ma16031307.
Additive manufacturing technologies are gaining more and more attention, resulting in the development or modification of 3D printing techniques and dedicated materials. On the other hand, economic and ecological aspects force the industry to develop material recycling strategies. In this work, the multiple reprocessing of a commercially available PLA conductive composite with carbon black filler, dedicated to 3D printing, was investigated. The effects of extrusion temperature (190 °C and 200 °C) and reprocessing steps (1-5 steps) on the rheology, morphology, thermal and electrochemical properties of the conductive PLA 3D-printing filament were evaluated. The results showed deterioration of the thermal stability and material strength, as well as the influence of reprocessing on the melting point, which increases after initial melting. The electronic conduction mechanism of the composite depends on the percolation paths and it is also affected by the multiple processing. The reversibility of the [Fe(CN)] redox process diminishes with a higher degradation level of the conductive PLA. Importantly, the material fluidity was too high after the multiple reprocessing, which should be considered and suitably corrected during CB-PLA application as a 3D-printed electrode material.
增材制造技术越来越受到关注,这导致了3D打印技术和专用材料的发展或改进。另一方面,经济和生态因素迫使该行业制定材料回收策略。在这项工作中,研究了一种市售的含炭黑填料的聚乳酸(PLA)导电复合材料(专用于3D打印)的多次再加工。评估了挤出温度(190℃和200℃)和再加工步骤(1-5步)对导电PLA 3D打印长丝的流变学、形态、热学和电化学性能的影响。结果表明,热稳定性和材料强度下降,以及再加工对熔点的影响,初始熔化后熔点升高。复合材料的电子传导机制取决于渗流路径,并且也受到多次加工的影响。随着导电PLA降解程度的提高,[Fe(CN)]氧化还原过程的可逆性降低。重要的是,多次再加工后材料流动性过高,在将炭黑-聚乳酸(CB-PLA)用作3D打印电极材料的应用过程中应予以考虑并适当校正。