Vilanova Mireia, Escribano-García Rubén, Guraya Teresa, San Sebastian Maria
LORTEK Technological Centre, Basque Research and Technology Alliance (BRTA), Arranomendia Kalea 4A, 20240 Ordizia, Spain.
Department of Mining and Metallurgical Engineering and Materials Science, University of the Basque Country UPV/EHU, Rafael Moreno "Pitxitxi", 2, 48013 Bilbao, Spain.
Materials (Basel). 2020 Oct 30;13(21):4879. doi: 10.3390/ma13214879.
A method to find the optimum process parameters for manufacturing nickel-based superalloy Inconel 738LC by laser powder bed fusion (LPBF) technology is presented. This material is known to form cracks during its processing by LPBF technology; thus, process parameters have to be optimized to get a high quality product. In this work, the objective of the optimization was to obtain samples with fewer pores and cracks. A design of experiments (DoE) technique was implemented to define the reduced set of samples. Each sample was manufactured by LPBF with a specific combination of laser power, laser scan speed, hatch distance and scan strategy parameters. Using the porosity and crack density results obtained from the DoE samples, quadratic models were fitted, which allowed identifying the optimal working point by applying the response surface method (RSM). Finally, five samples with the predicted optimal processing parameters were fabricated. The examination of these samples showed that it was possible to manufacture IN738LC samples free of cracks and with a porosity percentage below 0.1%. Therefore, it was demonstrated that RSM is suitable for obtaining optimum process parameters for IN738LC alloy manufacturing by LPBF technology.
提出了一种通过激光粉末床熔融(LPBF)技术来寻找制造镍基高温合金Inconel 738LC的最佳工艺参数的方法。已知这种材料在通过LPBF技术加工过程中会形成裂纹;因此,必须优化工艺参数以获得高质量产品。在这项工作中,优化的目标是获得孔隙和裂纹较少的样品。实施了实验设计(DoE)技术来确定减少的样品集。每个样品通过LPBF以激光功率、激光扫描速度、扫描间距和扫描策略参数的特定组合制造。利用从DoE样品获得的孔隙率和裂纹密度结果,拟合了二次模型,这使得通过应用响应面法(RSM)来确定最佳工作点成为可能。最后,制造了五个具有预测最佳加工参数的样品。对这些样品的检查表明,可以制造出无裂纹且孔隙率百分比低于0.1%的IN738LC样品。因此,证明了响应面法适用于通过LPBF技术获得用于制造IN738LC合金的最佳工艺参数。