Kuo Chil-Chyuan, Chen Jia-You, Chang Yuan-Hao
Department of Mechanical Engineering, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, Taiwan.
Research Center for Intelligent Medical Devices, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243, Taiwan.
Polymers (Basel). 2021 Apr 9;13(8):1222. doi: 10.3390/polym13081222.
The amount of wasted polylactic acid (PLA) is increasing because 3D printing services are an increasingly popular offering in many fields. The PLA is widely employed in the fused deposition modeling (FDM) since it is an environmentally friendly polymer. However, failed prototypes or physical models can generate substantial waste. In this study, the feasibility of recycling PLA waste plastic and re-extruded it into new PLA filaments was investigated. An automatic PLA filament extruder was first developed for fabricating new PLA filaments. This paper also discusses the process, challenges, and benefits of recycling PLA waste plastic in an effort to fabricate new PLA filaments more sustainable. It was found that it was possible to fabricate PLA filament using recycled PLA waste plastic. The production cost is only 60% of the commercially available PLA filament. The tensile strength of the developed PLA filament is approximately 1.1 times that of the commercially available PLA filament. The design of experiments approach was employed to investigate the optimal process parameters for fabricating PLA filaments. The most important control factor affecting the diameter of PLA filament is the barrel temperature, followed by recycled material addition ratio, extrusion speed, and cooling distance. The optimal process parameters for fabricating PLA filament with a diameter of 1.7 mm include the barrel temperature of 184 °C, extrusion speed of 490 mm/min, cooling distance of 57.5 mm, and recycled material addition ratio of 40%.
由于3D打印服务在许多领域越来越受欢迎,聚乳酸(PLA)的浪费量正在增加。PLA因其是一种环保聚合物而被广泛应用于熔融沉积建模(FDM)。然而,失败的原型或实体模型会产生大量废料。在本研究中,对回收PLA废塑料并将其重新挤出成新的PLA长丝的可行性进行了研究。首先开发了一种自动PLA长丝挤出机来制造新的PLA长丝。本文还讨论了回收PLA废塑料以更可持续地制造新PLA长丝的过程、挑战和益处。结果发现,使用回收的PLA废塑料制造PLA长丝是可行的。生产成本仅为市售PLA长丝的60%。所开发的PLA长丝的拉伸强度约为市售PLA长丝的1.1倍。采用实验设计方法来研究制造PLA长丝的最佳工艺参数。影响PLA长丝直径的最重要控制因素是料筒温度,其次是回收材料添加比例、挤出速度和冷却距离。制造直径为1.7mm的PLA长丝的最佳工艺参数包括料筒温度184℃、挤出速度490mm/min、冷却距离57.5mm和回收材料添加比例40%。