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Strength of PLA Components Fabricated with Fused Deposition Technology Using a Desktop 3D Printer as a Function of Geometrical Parameters of the Process

机译:使用台式3D打印机用熔融沉积技术制造的PLA组件的强度与过程几何参数的关系

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摘要

The current paper studies the influence of geometrical parameters of the fused deposition modeling (FDM)—fused filament fabrication (FFF) 3D printing process on printed part strength for open source desktop 3D printers and the most popular material used for that purpose—i.e., polylactic acid (PLA). The study was conducted using a set of different nozzles (0.4, 0.6, and 0.8 mm) and a range of layer heights from the minimum to maximum physical limits of the machine. To assess print strength, a novel assessment method is proposed. A tubular sample is loaded in the weakest direction (across layers) in a three-point bending fixture. Mesostructure evaluation through scanning electronic microscopy (SEM) scans of the samples was used to explain the obtained results. We detected a significant influence of geometric process parameters on sample mesostructure, and consequently, on sample strength.
机译:当前的文章研究了熔融沉积建模(FDM)的几何参数-熔融长丝制造(FFF)3D打印工艺对开源台式机3D打印机以及用于该目的的最流行材料(即聚乳酸)的打印零件强度的影响酸(PLA)。使用一组不同的喷嘴(0.4、0.6和0.8 mm)以及从机器的最小到最大物理极限的层高范围进行了研究。为了评估印刷强度,提出了一种新颖的评估方法。将管状样品沿最弱的方向(跨层)加载到三点弯曲夹具中。通过样品的扫描电子显微镜(SEM)扫描进行介观结构评估可解释所获得的结果。我们检测到几何过程参数对样品介观结构的显着影响,因此对样品强度也有显着影响。

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