Surface Roughness in Metal Material Extrusion 3D Printing: The Influence of Printing Orientation and the Development of a Predictive Model

IF 1.5 0 ENGINEERING, MULTIDISCIPLINARY Engineering, Technology & Applied Science Research Pub Date : 2023-10-13 DOI:10.48084/etasr.6162
Cuong Nguyen Van, Anh Le Hoang, Cao Dang Long, Duy Nguyen Hoang
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Abstract

This study investigates the influence of printing orientation on the surface roughness in metal material extrusion 3D printing of 17-4 PH stainless steel. Experimental tests were conducted on the Markforged Metal X commercial 3D printer at Vinh Long University of Technology Education, Vietnam. The samples were printed in three different orientations: flat, on-edge, and upright. Surface roughness measurements were performed using a handheld Mitutoyo SJ-210 roughness tester. Quantitative analysis of the surface roughness measurements revealed significant variations among the different printing orientations. The upright orientation exhibited the smoothest surface, with an average Ra value of 7.42 μm and Rz value of 40.49 μm. In contrast, the flat orientation showed the highest roughness, with an average Ra value of 82.83 μm and Rz value of 109.32 μm. The on-edge orientation had intermediate roughness values, with an average Ra value of 69.42 μm and Rz value of 92.17 μm. The study also introduces a novel predictive model for surface roughness based on the printing parameters. The model demonstrated accurate estimations for surface roughness values in specific cases, enabling optimization of the printing process for desired surface quality.
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金属材料挤压3D打印中的表面粗糙度:打印方向的影响及预测模型的建立
研究了17-4 PH不锈钢金属材料挤压3D打印中,打印方向对表面粗糙度的影响。实验测试是在越南永隆科技教育大学的Markforged Metal X商用3D打印机上进行的。样品以三种不同的方向印刷:平面,边缘和直立。表面粗糙度测量使用手持式Mitutoyo SJ-210粗糙度测试仪进行。对表面粗糙度测量的定量分析揭示了不同印刷方向之间的显著差异。垂直取向表面最光滑,平均Ra值为7.42 μm, Rz值为40.49 μm。而平取向的粗糙度最高,平均Ra值为82.83 μm, Rz值为109.32 μm。边缘取向具有中等的粗糙度值,平均Ra值为69.42 μm, Rz值为92.17 μm。提出了一种基于打印参数的表面粗糙度预测模型。该模型展示了在特定情况下对表面粗糙度值的准确估计,从而能够优化印刷过程以获得所需的表面质量。
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来源期刊
Engineering, Technology & Applied Science Research
Engineering, Technology & Applied Science Research ENGINEERING, MULTIDISCIPLINARY-
CiteScore
3.00
自引率
46.70%
发文量
222
审稿时长
11 weeks
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