Sover Alexandru, Ermolai Vasile, Raichur Ashok M, Ciobanu Romeo, Aradoaei Mihaela, Lucanu Nicolae
Department of Technology, Technical Faculty, Ansbach University of Applied Sciences, 91522 Ansbach, Germany.
Department of Materials Engineering, Indian Institute of Science, Bengaluru 560012, India.
Polymers (Basel). 2021 Dec 4;13(23):4253. doi: 10.3390/polym13234253.
Fused filament fabrication is a technology of additive manufacturing that uses molten thermoplastics for building parts. Due to the convenient shape of the raw material, a simple filament, the market offers a great variety of materials from simple to blends of compatible materials. However, finding a material with the desired properties can be difficult. Making it in-house or using a material manufacturer can be costly and time-consuming, especially when the optimum blend ratios are unknown or new design perspectives are tested. This paper presents an accessible method of producing core-shell filaments using material extrusion 3D printing. The printed filaments are characterised by a polycarbonate (PC) core and acryl butadiene styrene (ABS) shell with three material ratios. Their performance was investigated through printed samples. Additionally, the material mixing degree was studied by varying the extrusion temperature, nozzle feeding geometry, and layer thickness. The influence of all four factors was evaluated using a graphical representation of the main effects. The results showed that a core-shell filament can be processed using a 3D printer with a dual extrusion configuration and that the mechanical properties of the samples can be improved by varying the PC-ABS ratio. This research provides an accessible method for developing new hybrid filaments with a predesigned structure using a 3D printer.
熔融长丝制造是一种增材制造技术,它使用熔融热塑性塑料来制造零件。由于原材料形状方便,即简单的长丝,市场上提供了种类繁多的材料,从简单材料到兼容材料的混合物。然而,找到具有所需性能的材料可能很困难。自行制造或使用材料制造商可能成本高昂且耗时,尤其是在最佳混合比例未知或测试新设计观点时。本文提出了一种使用材料挤出3D打印生产核壳长丝的可行方法。打印的长丝的特点是聚碳酸酯(PC)芯和丙烯腈-丁二烯-苯乙烯共聚物(ABS)壳,有三种材料比例。通过打印样品研究了它们的性能。此外,通过改变挤出温度、喷嘴进料几何形状和层厚来研究材料混合程度。使用主效应的图形表示来评估所有四个因素的影响。结果表明,可以使用具有双挤出配置的3D打印机加工核壳长丝,并且通过改变PC-ABS比例可以改善样品的机械性能。本研究提供了一种使用3D打印机开发具有预先设计结构的新型混合长丝的可行方法。