Yang Teng-Chun, Yeh Chin-Hao
Department of Forestry, National Chung Hsing University, Taichung 402, Taiwan.
Polymers (Basel). 2020 Jun 11;12(6):1334. doi: 10.3390/polym12061334.
In this study, a wood fiber/polylactic acid composite (WPC) filament was used as feedstock to print the WPC part by means of fused deposition modeling (FDM). The morphology and mechanical properties of WPC parts printed at different speeds (30, 50, and 70 mm/s) were determined. The results show that the density of the printed WPC part increased as the printing speed decreased, while its surface color became darker than that of parts printed at a high speed. The printing time decreased with an increasing printing speed; however, there was a small difference in the time saving percentage without regard to the dimensions of the printed WPC part at a given printing speed. Additionally, the tensile and flexural properties of the printed WPC part were not significantly influenced by the printing speed, whereas the compressive strength and modulus of the FDM-printed part significantly decreased by 34.3% and 14.6%, respectively, when the printing speed was increased from 30 to 70 mm/s. Furthermore, scanning electronic microscopy (SEM) illustrated that the FDM process at a high printing speed produced an uneven surface of the part with a narrower width of printed layers, and pull-outs of wood fibers were more often observed on the fracture surface of the tensile sample. These results show that FDM manufacturing at different printing speeds has a substantial effect on the surface color, surface roughness, density, and compressive properties of the FDM-printed WPC part.
在本研究中,采用木纤维/聚乳酸复合材料(WPC)长丝作为原料,通过熔融沉积建模(FDM)来打印WPC部件。测定了以不同速度(30、50和70毫米/秒)打印的WPC部件的形态和力学性能。结果表明,打印的WPC部件的密度随着打印速度的降低而增加,而其表面颜色比高速打印的部件更深。打印时间随着打印速度的增加而减少;然而,在给定的打印速度下,无论打印的WPC部件尺寸如何,节省时间的百分比差异很小。此外,打印的WPC部件的拉伸和弯曲性能不受打印速度的显著影响,而当打印速度从30毫米/秒提高到70毫米/秒时,FDM打印部件的抗压强度和模量分别显著降低了34.3%和14.6%。此外,扫描电子显微镜(SEM)表明,在高打印速度下的FDM工艺会使部件表面不均匀,打印层宽度变窄,并且在拉伸样品的断裂表面上更常观察到木纤维的拔出。这些结果表明,不同打印速度下的FDM制造对FDM打印的WPC部件的表面颜色、表面粗糙度、密度和抗压性能有重大影响。