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一种制造增强型3D打印热塑性长丝的低成本工艺。

A Low-Cost Process for Fabricating Reinforced 3D Printing Thermoplastic Filaments.

作者信息

Hassanien Mohamed, Alkhader Maen, Abu-Nabah Bassam A, Abuzaid Wael

机构信息

Department of Mechanical Engineering, American University of Sharjah, Sharjah P.O. Box 26666, United Arab Emirates.

出版信息

Polymers (Basel). 2023 Jan 7;15(2):315. doi: 10.3390/polym15020315.

Abstract

Low-cost desktop-sized fused deposition modeling (FDM) printers have been widely embraced by small to large-scale institutions and individuals. To further enhance their utility and increase the range of materials that they can process, this work proposes a low-cost solution that adapts to low-cost desktop-sized extruders and enables them to fabricate filaments comprising a wide range of nonorganic reinforcing particles. This solution will fill a gap in the field, as low-cost fabrication techniques for reinforced filaments have been lacking. In the proposed solution, particles are heated and deposited on thermoplastic pellets to form a coating. Coated pellets are subsequently extruded using a low-cost desktop single-screw extruder. The effectiveness of the process is demonstrated by fabricating polylactic acid (PLA) filaments reinforced with two types of reinforcements, namely, dune sand and silicon carbide. Filaments' stiffness and strength were measured, and their microstructure along their lateral and longitudinal directions were investigated. Improvements in tensile strength (up to 8%) and stiffness (up to 4.5%) were observed, but at low reinforcement levels (less than 2 wt%). Results showed that the proposed process could be used to fabricate filaments with multiple types of particles. The produced filaments were successfully used to fabricate 3D parts using a commercial desktop FDM printer.

摘要

低成本的桌面级熔融沉积建模(FDM)打印机已被从小型到大型的机构和个人广泛采用。为了进一步提高其效用并扩大其可处理的材料范围,这项工作提出了一种低成本解决方案,该方案适用于低成本的桌面级挤出机,并使它们能够制造包含多种无机增强颗粒的长丝。由于缺乏用于增强长丝的低成本制造技术,该解决方案将填补该领域的空白。在所提出的解决方案中,颗粒被加热并沉积在热塑性颗粒上以形成涂层。随后使用低成本的桌面单螺杆挤出机挤出涂覆的颗粒。通过制造用两种增强材料(即沙丘砂和碳化硅)增强的聚乳酸(PLA)长丝,证明了该工艺的有效性。测量了长丝的刚度和强度,并研究了它们沿横向和纵向的微观结构。观察到拉伸强度(高达8%)和刚度(高达4.5%)有所提高,但增强水平较低(小于2 wt%)。结果表明,所提出的工艺可用于制造含有多种颗粒的长丝。使用商用桌面FDM打印机成功地将生产出的长丝用于制造3D零件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f15f/9861263/6bacb9d6c916/polymers-15-00315-g001.jpg

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