Han Pu, Zhang Sihan, Yang Zhong, Riyad M Faisal, Popa Dan O, Hsu Keng
Ira A Fulton Schools of Engineering, Arizona State University, Tempe, AZ 85212, USA.
J. B. Speed School of Engineering, University of Louisville, Louisville, KY 40292, USA.
Polymers (Basel). 2023 May 8;15(9):2221. doi: 10.3390/polym15092221.
Material extrusion-based polymer 3D printing, one of the most commonly used additive manufacturing processes for thermoplastics and composites, has drawn extensive attention due to its capability and cost effectiveness. However, the low surface finish quality of the printed parts remains a drawback due to the nature of stacking successive layers along one direction and the nature of rastering of the extruded tracks of material. In this work, an in-process thermal radiation-assisted, surface reflow method is demonstrated that significantly improves the surface finish of the sidewalls of printed parts. It is observed that the surface finish of the printed part is drastically improved for both flat and curved surfaces. The effect of surface reflow on roughness reduction was characterized using optical profilometry and scanning electron microscopy (SEM), while the local heated spot temperature was quantified using a thermal camera.
基于材料挤出的聚合物3D打印是热塑性塑料和复合材料最常用的增材制造工艺之一,因其能力和成本效益而受到广泛关注。然而,由于沿一个方向连续堆叠层的性质以及材料挤出轨迹的光栅化性质,打印部件的表面光洁度质量较低仍然是一个缺点。在这项工作中,展示了一种过程中热辐射辅助的表面回流方法,该方法显著提高了打印部件侧壁的表面光洁度。观察到,对于平面和曲面,打印部件的表面光洁度都有显著改善。使用光学轮廓仪和扫描电子显微镜(SEM)表征了表面回流对粗糙度降低的影响,同时使用热像仪对局部加热点温度进行了量化。