Wadowski Antoni, Wróbel Jan S, Koralnik Milena, Sitek Ryszard
Faculty of Materials Science and Engineering, Warsaw University of Technology, Wołoska 141, 02-507 Warsaw, Poland.
Materials (Basel). 2023 Jun 15;16(12):4419. doi: 10.3390/ma16124419.
Interactions in a multicomponent Ni-Cr-Mo-Al-Re model alloy were determined by ab initio calculations in order to investigate the Re doping effect on Haynes 282 alloys. Simulation results provided an understanding of short-range interactions in the alloy and successfully predicted the formation of a Cr and Re-rich phase. The Haynes 282 + 3 wt% Re alloy was manufactured using the additive manufacturing direct metal laser sintering (DMLS) technique, in which the presence of the (CrRe)C carbide was confirmed by an XRD study. The results provide useful information about the interactions between Ni, Cr, Mo, Al, and Re as a function of temperature. The designed five-element model can lead to a better understanding of phenomena that occur during the manufacture or heat treatment of modern, complex, multicomponent Ni-based superalloys.
为了研究铼(Re)掺杂对Haynes 282合金的影响,通过从头算计算确定了多组分Ni-Cr-Mo-Al-Re模型合金中的相互作用。模拟结果有助于理解该合金中的短程相互作用,并成功预测了富Cr和Re相的形成。采用增材制造直接金属激光烧结(DMLS)技术制备了含3 wt% Re的Haynes 282合金,通过X射线衍射(XRD)研究证实了其中存在(CrRe)C碳化物。研究结果提供了关于Ni、Cr、Mo、Al和Re之间相互作用随温度变化的有用信息。所设计的五元模型有助于更好地理解现代复杂多组分镍基高温合金制造或热处理过程中发生的现象。