718合金激光粉末床熔合过程中的氧平衡

C. Pauzon, A. Raza, Eduard Hryha, P. Forêt
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引用次数: 26

摘要

摘要在718合金激光粉末床熔合过程中,飞溅物的产生对原料粉末的再利用和最终产品的质量都是不利的。在本研究中,在构建室和粉床的不同位置进行了专门的粉末取样。结果清楚地表明,构建组件的表面体积比对粉末降解的重要性,正如使用填充密集晶格结构的胶囊的粉末分析所证明的那样。在沉积在气体入口和出口的夹带粉末上发现了大量富铝和富铬氧化物的形成。与原始粉末相比,测量了飞溅颗粒对氧气的显著吸收(>300 ppm O2);而成品材料则经历了轻微的损失(~30 ppm O2)。与原始粉末相比,飞溅颗粒微观结构的变化,即初生枝晶臂间距,表明飞溅凝固过程中的冷却速度明显更高,估计约为108 K/s,而原始粉末的冷却速度约为106 K/s, L-PBF成分的冷却速度为107 K/s。这些发现可以评估L-PBF过程中粉末降解的程度,并建立该过程的氧平衡。
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Oxygen Balance During Laser Powder Bed Fusion of Alloy 718
Abstract The generation of spatters during laser powder bed fusion (L-PBF) of Alloy 718 is known to be detrimental for the re-use of the feedstock powder and the quality of the final product. In this study, dedicated powder sampling from different positions within the build chamber and powder bed was performed. The results clearly indicate the importance of the surface-to-volume ratio of the built components on powder degradation, as demonstrated by the analysis of the powder using capsules filled with dense lattice structures. Extensive formation of Al- and Cr-rich oxides on the entrained powder deposited on the gas inlet and outlet was detected. Significant oxygen pick-up by spatter particles compared to the virgin powder was measured (>300 ppm O2); while the as-built material experienced a slight loss (~30 ppm O2). The change in the microstructure of spatter particles in comparison to the virgin powder, namely the primary dendrite arm spacing, indicates significantly higher cooling rate during spatter solidification, estimated to be of about 108 K/s, compared to around 106 K/s for the virgin powder and 107 K/s for the L-PBF component. These findings allows to evaluate the extent of powder degradation during L-PBF and establish the oxygen balance of the process.
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