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通过双喷嘴熔融沉积成型3D打印工艺制造的聚乳酸/低重量聚乳酸复合材料的表征

Characterization of PLA/LW-PLA Composite Materials Manufactured by Dual-Nozzle FDM 3D-Printing Processes.

作者信息

Park Ye-Eun, Lee Sunhee

机构信息

Department of Fashion and Textiles, Dong-A University, Busan 49315, Republic of Korea.

Department of Fashion Design, Dong-A University, Busan 49315, Republic of Korea.

出版信息

Polymers (Basel). 2024 Oct 10;16(20):2852. doi: 10.3390/polym16202852.

Abstract

This study investigates the properties of 3D-printed composite structures made from polylactic acid (PLA) and lightweight-polylactic acid (LW-PLA) filaments using dual-nozzle fused-deposition modeling (FDM) 3D printing. Composite structures were modeled by creating three types of cubes: (i) ST4-built with a total of four alternating layers of the two filaments in the -axis, (ii) ST8-eight alternating layers of the two filaments, and (iii) CH4-a checkered pattern with four alternating divisions along the , , and axes. Each composite structure was analyzed for printing time and weight, morphology, and compressive properties under varying nozzle temperatures and infill densities. Results indicated that higher nozzle temperatures (230 °C and 240 °C) activate foaming, particularly in ST4 and ST8 at 100% infill density. These structures were 103.5% larger on one side than the modeled dimensions and up to 9.25% lighter. The 100% infill density of ST4-Com-PLA/LW-PLA-240 improved toughness by 246.5% due to better pore compression. The ST4 and ST8 cubes exhibited decreased stiffness with increasing temperatures, while CH4 maintained consistent compressive properties across different conditions. This study confirmed that the characteristics of LW-PLA become more pronounced as the material is printed continuously, with ST4 showing the strongest effect, followed by ST8 and CH4. It highlights the importance of adjusting nozzle temperature and infill density to control foaming, density, and mechanical properties. Overall optimal conditions are 230 °C and 50% infill density, which provide a balance of strength and toughness for applications.

摘要

本研究使用双喷嘴熔融沉积建模(FDM)3D打印技术,研究了由聚乳酸(PLA)和轻质聚乳酸(LW-PLA)长丝制成的3D打印复合结构的性能。通过创建三种类型的立方体对复合结构进行建模:(i)ST4——在z轴上由两根长丝共四层交替层构建而成;(ii)ST8——两根长丝共八层交替层;(iii)CH4——沿x、y和z轴有四个交替分区的棋盘图案。对每个复合结构在不同喷嘴温度和填充密度下的打印时间、重量、形态和压缩性能进行了分析。结果表明,较高的喷嘴温度(230°C和240°C)会引发发泡,特别是在填充密度为100%时的ST4和ST8结构中。这些结构的一侧比模型尺寸大103.5%,重量减轻了9.25%。由于更好的孔隙压缩,ST4-Com-PLA/LW-PLA-240的100%填充密度使韧性提高了246.5%。ST4和ST8立方体的刚度随温度升高而降低,而CH4在不同条件下保持一致的压缩性能。本研究证实,随着材料的连续打印,LW-PLA的特性变得更加明显,其中ST4的效果最显著,其次是ST8和CH4。它强调了调整喷嘴温度和填充密度以控制发泡、密度和机械性能的重要性。总体最佳条件是230°C和50%的填充密度,这为应用提供了强度和韧性的平衡。

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