Nowka Maximilian, Hilbig Karl, Schulze Lukas, Heller Timo, Goutier Marijn, Vietor Thomas
Institute for Engineering Design, Technische Universität Braunschweig, Hermann-Blenk-Str. 42, 38108 Brausnchweig, Germany.
Polymers (Basel). 2024 Apr 18;16(8):1134. doi: 10.3390/polym16081134.
The additive manufacturing of components using material extrusion (MEX) enables the integration of several materials into one component, including functional structures such as electrically conductive structures. This study investigated the influence of the selected additive MEX process on the resistivity of MEX structures. Specimens were produced from filaments and granules of an electrically conductive PLA and filled with carbon nanotubes and carbon black. Specimens were produced with a full-factorial variation of the input variables: extrusion temperature, deposition speed, and production process. The resistivity of the specimens was determined by four-wire measurement. Analysis of the obtained data showed that only the extrusion temperature had a significant influence on the resistivity of the MEX specimens. Furthermore, the impact of the nozzle diameter was evaluated by comparing the results of this study with those of a previous study, with an otherwise equal experimental setup. The nozzle diameter had a significant influence on resistivity and a larger nozzle diameter reduced the mean variance by an order of magnitude. The resistivity was lower for most process parameter sets. As the manufacturing process had no significant influence on the resistivity of MEX structures, it can be selected based on other criteria, e.g., the cost of feedstock.
使用材料挤出(MEX)工艺进行部件的增材制造能够将多种材料集成到一个部件中,包括诸如导电结构之类的功能结构。本研究调查了所选的增材MEX工艺对MEX结构电阻率的影响。试样由导电聚乳酸的长丝和颗粒制成,并填充有碳纳米管和炭黑。试样通过输入变量的全因子变化来制备:挤出温度、沉积速度和生产工艺。试样的电阻率通过四线测量来确定。对所得数据的分析表明,只有挤出温度对MEX试样的电阻率有显著影响。此外,通过将本研究的结果与先前一项研究的结果进行比较,在其他实验设置相同的情况下,评估了喷嘴直径的影响。喷嘴直径对电阻率有显著影响,较大的喷嘴直径将平均方差降低了一个数量级。对于大多数工艺参数集,电阻率较低。由于制造工艺对MEX结构的电阻率没有显著影响,因此可以根据其他标准进行选择,例如原料成本。