Derimow Nicholas, Gorham Justin M, Martin May L, Benzing Jake T, White Ryan M, Hrabe Nikolas
Applied Chemicals and Materials Division, NIST, 325 Broadway, Boulder, CO 80305, USA.
Materials Measurement Science Division, NIST, 100 Bureau Dr., Gaithersburg, MD 20899, USA.
Appl Surf Sci. 2022 Nov;602. doi: 10.1016/j.apsusc.2022.154280.
X-ray photoelectron spectroscopy (XPS) as well as scanning and transmission electron microscopy (SEM/TEM) analysis was carried out on four Ti-6Al-4V powders used in electron beam powder-bed fusion (PBF-EB) production environments: virgin low oxygen (0.080 wt% O), reused medium oxygen (0.140 wt% O), reused high oxygen (0.186 wt% O), and virgin high oxygen (0.180 wt% O). The two objectives of this comparative analyses were to (1) investigate high oxygen containing Grade 23 Ti-6Al-4V powders which were further oxidized as a function of reuse and (2) comparing the two virgin Grade 23 and Grade 5 powders of similar oxygen content. The microstructure of the low oxygen virgin Grade 23 powder was consistent with martensitic ' microstructure, whereas the reused powder displayed tempered / Widmänstatten microstructure. XPS revealed a decrease in TiO at the surface of the reused powders with an increase in AlO. This trend is energetically favorable at the temperatures and pressures in PBF-EB machines, and it is consistent with the thermodynamics of AlO vs. TiO reactions. An unexpected amount of nitrogen was measured on the titanium powder, with a general increase in nitride on the surface of the particles as a function of reuse in the Grade 23 powder.
对电子束粉末床熔融(PBF-EB)生产环境中使用的四种Ti-6Al-4V粉末进行了X射线光电子能谱(XPS)以及扫描和透射电子显微镜(SEM/TEM)分析:原始低氧(0.080 wt% O)、再利用中氧(0.140 wt% O)、再利用高氧(0.186 wt% O)和原始高氧(0.180 wt% O)。这项对比分析的两个目的是:(1)研究随着再利用而进一步氧化的含高氧的23级Ti-6Al-4V粉末;(2)比较两种氧含量相似的原始23级和5级粉末。低氧原始23级粉末的微观结构与马氏体微观结构一致,而再利用粉末则呈现回火/魏氏组织微观结构。XPS显示,再利用粉末表面的TiO减少,而AlO增加。在PBF-EB机器的温度和压力条件下,这种趋势在能量上是有利的,并且与AlO与TiO反应的热力学一致。在钛粉上检测到了意外含量的氮,随着23级粉末再利用次数的增加,颗粒表面的氮化物总体上有所增加。