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The Effect of the Laser Incidence Angle in the Surface of L-PBF Processed Parts

机译:L-PBF加工部件表面激光入射角的影响

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The manufacture of multiple parts on the same platform is a common procedure in the Laser Powder Bed Fusion (L-PBF) process. The main advantage is that the entire working volume of the machine is used and a greater number of parts are obtained, thus reducing inert gas volume, raw powder consumption, and manufacturing time. However, one of the main disadvantages of this method is the possible differences in quality and surface finish of the different parts manufactured on the same platform depending on their orientation and location, even if they are manufactured with the same process parameters and raw powder material. Throughout this study, these surface quality differences were studied, focusing on the variation of the surface roughness with the angle of incidence of the laser with respect to the platform. First, a characterization test was carried out to understand the behavior of the laser in the different areas of the platform. Then, the surface roughness, microstructure, and minimum thickness of vertical walls were analyzed in the different areas of the platform. These results were related to the angle of incidence of the laser. As it was observed, the laser is completely perpendicular only in the center of the platform, whilst at the border of the platform, due to the incidence angle, it melts an elliptical area, which affects the roughness and thickness of the manufactured part. The roughness increases from values of Sa = 5.489 μm in the central part of the platform to 27.473 μm at the outer borders while the thickness of the manufactured thin walls increases around 40 μm.
机译:同一平台上多个部件的制造是激光粉床融合(L-PBF)工艺中的常见步骤。主要优点是使用机器的整个工作体积,并获得更大量的部件,从而减少惰性气体体积,原始粉末消耗和制造时间。然而,该方法的主要缺点之一是在与定向和位置相同的平台上制造的不同部件的质量和表面光洁度的可能差异,即使它们用相同的工艺参数和原料粉末材料制造。在本研究中,研究了这些表面质量差异,重点关注表面粗糙度与激光器相对于平台的发生率的变化。首先,进行表征测试以了解平台不同区域中的激光的行为。然后,在平台的不同区域分析了垂直壁的表面粗糙度,微观结构和最小厚度。这些结果与激光的发生率有关。在观察到的时,激光器仅在平台的中心完全垂直,而在平台的边界处,由于入射角,它熔化椭圆区域,这影响制造部件的粗糙度和厚度。粗糙度从平台中央部分的SA =5.489μm的值增加到外边界处的27.473μm,而制造的薄壁的厚度增加约40μm。

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