Chien Yu-Chen, Yang Teng-Chun
Department of Forestry, National Chung Hsing University, Taichung 402, Taiwan.
Polymers (Basel). 2024 Jan 22;16(2):302. doi: 10.3390/polym16020302.
Wood fibers (WFs) were treated at a fixed heat temperature (180 °C) for 2-6 h and added to a polylactic acid (PLA) matrix to produce wood-PLA composite (WPC) filaments. Additionally, the effects of the heat-treated WFs on the physicomechanical properties and impact strength of the WPC filaments and 3D-printed WPC parts using fused filament fabrication (FFF) were examined. The results revealed that heat-treated WFs caused an increase in crystallinity and a significant reduction in the number of pores on the failure cross section of the WPC filament, resulting in a higher tensile modulus and lower elongation at break. Additionally, the printed WPC parts with heat-treated WFs had higher tensile strength and lower water absorption compared to untreated WPC parts. However, most of the mechanical properties and impact strength of 3D-printed WPC parts were not significantly influenced by adding heat-treated WFs. As described above, at the fixed fiber addition amount, adding heat-treated WFs improved the dimensional stability of the WPC parts and it enabled a high retention ratio of mechanical properties and impact strength of the WPC parts.
将木纤维(WFs)在固定加热温度(180℃)下处理2 - 6小时,然后添加到聚乳酸(PLA)基体中,以制备木塑复合(WPC)长丝。此外,还研究了热处理后的木纤维对WPC长丝以及使用熔丝制造(FFF)的3D打印WPC部件的物理机械性能和冲击强度的影响。结果表明,热处理后的木纤维导致WPC长丝的结晶度增加,并且在其失效横截面上的孔隙数量显著减少,从而使拉伸模量更高,断裂伸长率更低。此外,与未处理的WPC部件相比,含有热处理木纤维的3D打印WPC部件具有更高的拉伸强度和更低的吸水率。然而,添加热处理木纤维对3D打印WPC部件的大多数机械性能和冲击强度没有显著影响。如上所述,在固定的纤维添加量下,添加热处理木纤维提高了WPC部件的尺寸稳定性,并使其机械性能和冲击强度保持较高的保留率。