The Influence of Fused Deposition Modeling Parameters on the Properties of PA6/PA66 Composite Specimens by the Taguchi Method and Analysis of Variance.

IF 2.3 4区 工程技术 Q3 ENGINEERING, MANUFACTURING
3D Printing and Additive Manufacturing Pub Date : 2024-04-01 Epub Date: 2024-04-16 DOI:10.1089/3dp.2022.0306
Zhongbei Li, Youcai Liu, Zihai Liang, Yaochi Liu
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引用次数: 0

Abstract

Fused deposition modeling (FDM) is widely used in the rapid prototyping of polymers. Polyamide (PA) has excellent mechanical properties, but its application in FDM is limited due to its high water absorption, warpage, and forming shrinkage. The material of the filament and the printing parameters of the printer are two critical aspects that affect the performance of a component. The prepared PA6/PA66 (composite polyamide [COPA], PA6:PA66 = 85:15) composite (COPA: acrylonitrile butadiene styrene [ABS]: maleic anhydride grafted acrylonitrile butadiene styrene [ABS-g-MAH]: polyethylene = 800:133:67:100) has low water absorption (0.39%) and high dimensional stability, which has a good application prospect in FDM. The influence of eight FDM parameters, including three rarely reported, on the properties of PA6/PA66 composite specimens was investigated by the Taguchi method. The significance of influencing factors was evaluated by analysis of variance (ANOVA) and the stability by signal-noise ratio. When the layer thickness was 0.15 mm, the infill pattern was zigzags, the build plate adhesion type was brim, and the distance from the nozzle to the printing platform and the layer thickness (ΔL) was 0.05 mm; the specimens' dimensional accuracy, surface quality, and mechanical properties were better than other levels. The layer thickness and infill pattern were the two most important factors. The switch of the cooling fan and the temperature printing platform played a significant role in the specimens' dimensional accuracy and surface quality. ΔL tremendously influenced the thickness and warping degree of the specimens. The preparation of high-performance PA composites and the investigation of multiparameters by the Taguchi method provide a possible solution for applying polyamide in FDM.

基于田口法和方差分析的熔融沉积建模参数对PA6/PA66复合材料性能的影响
熔融沉积成型(FDM)被广泛应用于聚合物的快速成型。聚酰胺(PA)具有优异的机械性能,但由于其吸水性强、翘曲和成型收缩率高,在 FDM 中的应用受到限制。长丝材料和打印机的打印参数是影响部件性能的两个关键方面。制备的 PA6/PA66(复合聚酰胺 [COPA],PA6:PA66 = 85:15)复合材料(COPA:丙烯腈-丁二烯-苯乙烯 [ABS]:马来酸酐接枝丙烯腈-丁二烯-苯乙烯 [ABS-g-MAH]:聚乙烯 = 800:133:67:100)吸水率低(0.39%),尺寸稳定性高,在 FDM 中具有良好的应用前景。采用田口方法研究了 8 个 FDM 参数(包括 3 个鲜有报道的参数)对 PA6/PA66 复合材料试样性能的影响。通过方差分析(ANOVA)评估了影响因素的显著性,通过信噪比评估了影响因素的稳定性。当层厚为 0.15 毫米、填充模式为人字形、构建板粘合类型为帽檐形、喷嘴到印刷平台的距离和层厚(ΔL)为 0.05 毫米时,试样的尺寸精度、表面质量和机械性能均优于其他水平。层厚和填充图案是两个最重要的因素。冷却风扇和温度打印平台的开关对试样的尺寸精度和表面质量起着重要作用。ΔL对试样的厚度和翘曲程度有很大影响。高性能聚酰胺复合材料的制备以及田口方法对多参数的研究为聚酰胺在 FDM 中的应用提供了可能的解决方案。
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来源期刊
3D Printing and Additive Manufacturing
3D Printing and Additive Manufacturing Materials Science-Materials Science (miscellaneous)
CiteScore
6.00
自引率
6.50%
发文量
126
期刊介绍: 3D Printing and Additive Manufacturing is a peer-reviewed journal that provides a forum for world-class research in additive manufacturing and related technologies. The Journal explores emerging challenges and opportunities ranging from new developments of processes and materials, to new simulation and design tools, and informative applications and case studies. Novel applications in new areas, such as medicine, education, bio-printing, food printing, art and architecture, are also encouraged. The Journal addresses the important questions surrounding this powerful and growing field, including issues in policy and law, intellectual property, data standards, safety and liability, environmental impact, social, economic, and humanitarian implications, and emerging business models at the industrial and consumer scales.
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