IMDEA Materials Institute, C/Eric Kandel 2, 28906 Getafe, Madrid, Spain; Materials Science and Engineering Area, Rey Juan Carlos University, C/Tulipán s/n, 28933, Móstoles, Madrid, Spain.
IMDEA Materials Institute, C/Eric Kandel 2, 28906 Getafe, Madrid, Spain.
J Mech Behav Biomed Mater. 2022 Aug;132:105290. doi: 10.1016/j.jmbbm.2022.105290. Epub 2022 May 28.
The feasibility to manufacture scaffolds of poly-lactic acid reinforced with Zn particles by fused filament fabrication is demonstrated for the first time. Filaments of 2.85 mm in diameter of PLA reinforced with different weight fractions of μm-sized Zn - 1 wt.% Mg alloy particles (in the range 3.5 to 17.5 wt.%) were manufactured by a double extrusion method in which standard extrusion is followed by precision extrusion in a filament-maker machine. Filaments with constant diameter, negligible porosity and a homogeneous reinforcement distribution were obtained for Zn weight fractions of up to 10.5%. It was found that the presence of Zn particles led to limited changes in the physico-chemical properties of the PLA that did not affect the window temperature for 3D printing nor the melt flow index. Thus, porous scaffolds could be manufactured by fused filament fabrication at 190 °C with poly-lactic acid/Zn composites containing 3.5 and 7 wt.% of Zn and at 170 °C when the Zn content was 10.5 wt.% with excellent dimensional accuracy and mechanical properties.
首次证明了通过熔融沉积制造(FFF)技术制造聚乳酸(PLA)增强 Zn 颗粒支架的可行性。采用双挤出法制备了直径为 2.85 毫米的 PLA 纤维,其中包含不同重量分数的 μm 级 Zn-1wt.%Mg 合金颗粒(3.5 至 17.5wt.%)。在纤维制造机中,标准挤出后进行精密挤出,可获得直径恒定、几乎无孔隙且增强剂分布均匀的纤维。结果表明,Zn 颗粒的存在仅导致 PLA 的物理化学性质发生有限变化,这并不影响其 3D 打印的窗口温度或熔体流动指数。因此,可在 190°C 下通过 FFF 技术制造含有 3.5 和 7wt.%Zn 的聚乳酸/Zn 复合材料的多孔支架,当 Zn 含量为 10.5wt.%时,可在 170°C 下制造具有优异尺寸精度和机械性能的支架。