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Maximization of FDM-3D-Objects Gonio-Appearance Effects Using PLA and ABS Filaments and Combining Several Printing Parameters: A Case Study

机译:使用PLA和ABS细丝并结合多个打印参数来最大化FDM-3D对象的外观效果:一个案例研究

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摘要

In order to consider 3D objects from suitable Fused Deposition Modelling (FDM) printers as prototypes for the automotive sector, this sample must be able to reproduce textural effects (sparkle or graininess) or metallic or gonio-appearance to reinforce the attractive appeal of these materials. This study worked with two different commercial filaments: grey metallic PLA (poly(lactic acid)) and ABS (acrylonitrile-butadiene-styrene copolymer) with diffractive pigments. For both materials, a statistical design of experiments (DoE) was carried out to find the printing parameters effect on the final 3D-objects gonio-appearance. The selected printing parameters were printing speed (2 levels), layer height (2 levels) and sample thickness (3 levels). Twelve smooth square objects were printed from each material. The ABS-diffractive filaments achieved the most significant flop and higher sparkle values than metallic PLA. Graininess was high when working with PLA filaments instead of ABS. Layer height was the most significant parameter to maximize PLA objects’ flop or sparkle effects. The best result was found when printing at 0.1 mm. For the ABS samples, the stronger flop and sparkle effects were achieved with the 50 mm/s printing speed, the 0.1 mm layer height and the lowest thickness level. This study shows the methodology to study the printing parameters effects and interactions to maximize the FDM-3D-objects gonio-appearance.
机译:为了将合适的熔融沉积建模(FDM)打印机中的3D对象考虑为汽车领域的原型,此样本必须能够再现质感效果(闪烁或粒状)或金属或多边形外观,以增强这些材料的吸引力。这项研究使用了两种不同的商用长丝:带有衍射颜料的灰色金属PLA(聚乳酸)和ABS(丙烯腈-丁二烯-苯乙烯共聚物)。对于这两种材料,都进行了统计实验设计(DoE),以发现打印参数对最终3D对象的几何外观的影响。选择的打印参数为打印速度(2个级别),层高(2个级别)和样品厚度(3个级别)。从每种材料打印十二个光滑的方形物体。与金属PLA相比,ABS衍射灯丝具有最显着的随角异色和更高的闪光值。使用PLA细丝代替ABS时,颗粒度很高。层高是使PLA对象的随角异色或闪光效果最大化的最重要参数。以0.1毫米打印时发现了最佳结果。对于ABS样品,以50 mm / s的打印速度,0.1 mm的层高和最低的厚度水平可获得更强的随角异色和闪光效果。这项研究显示了研究印刷参数效果和相互作用以最大化FDM-3D对象物外观的方法。

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