Effects of Filament Diameter Tolerances in Fused Filament Fabrication

C. Cardona, Abigail H Curdes, Aaron J Isaacs
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引用次数: 23

Abstract

Fused filament fabrication (FFF) is one of the most popular additive manufacturing (3D printing) technologies due to the growing availability of low-cost desktop 3D printers and the relatively low cost of the thermoplastic filament used in the 3D printing process. Commercial filament suppliers, 3D printer manufacturers, and end-users regard filament diameter tolerance as an important indicator of the 3D printing quality. Irregular filament diameter affects the flow rate during the filament extrusion, which causes poor surface quality, extruder jams, irregular gaps in-between individual extrusions, and/or excessive overlap, which eventually results in failed 3D prints. Despite the important role of the diameter consistency in the FFF process, few studies have addressed the required tolerance level to achieve highest 3D printing quality. The objective of this work is to develop the testing methods to measure the filament tolerance and control the filament fabrication process. A pellet-based extruder is utilized to fabricate acrylonitrile butadiene styrene (ABS) filament using a nozzle of 1.75 mm in diameter. Temperature and extrusion rate are controlled parameters. An optical comparator and an array of digital calipers are used to measure the filament diameter. The results demonstrate that it is possible to achieve high diameter consistency and low tolerances (0.01mm) at low extrusion temperature (180 °C) and low extrusion rate (10 in/min).
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熔丝加工中丝径公差的影响
熔融长丝制造(FFF)是最受欢迎的增材制造(3D打印)技术之一,这是由于低成本台式3D打印机的日益普及,以及3D打印过程中使用的热塑性长丝的成本相对较低。商用长丝供应商、3D打印机制造商和终端用户都将长丝直径公差作为3D打印质量的重要指标。不规则的长丝直径会影响长丝挤出过程中的流速,从而导致表面质量差、挤出机堵塞、单个挤出件之间的不规则间隙和/或过度重叠,最终导致3D打印失败。尽管直径一致性在FFF过程中的重要作用,很少有研究解决了所需的公差水平,以实现最高的3D打印质量。本工作的目的是开发测量长丝公差和控制长丝制造过程的测试方法。使用直径1.75 mm的喷嘴,利用球团挤出机制备丙烯腈-丁二烯-苯乙烯(ABS)长丝。控制温度和挤出速率。使用光学比较器和数字卡尺阵列测量灯丝直径。结果表明,在低挤压温度(180℃)和低挤压速率(10 in/min)下,可以实现高直径一致性和低公差(0.01mm)。
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