Antolak-Dudka Anna, Czujko Tomasz, Durejko Tomasz, Stępniowski Wojciech J, Ziętala Michał, Łukasiewicz Justyna
Institute of Materials Science and Engineering, Military University of Technology, Kaliskiego 2, 00-908 Warsaw, Poland.
Multidisciplinary Research Center, Cardinal Stefan Wyszynski University in Warsaw, Marii Konopnickiej 1, 05-092 Dziekanów Leśny, Poland.
Materials (Basel). 2024 Mar 1;17(5):1166. doi: 10.3390/ma17051166.
In this paper, the influences of two post-heat treatments on the structural, mechanical and corrosion resistance properties of additively manufactured Ti6Al4V alloys were discussed in detail. The materials were produced using the laser engineering net shaping (LENS) technique, and they were subjected to annealing without pressure and hot isostatic pressing (HIP) under a pressure of 300 MPa for 30 min at temperatures of 950 °C and 1050 °C. Annealing without pressure led to the formation of a thin plate structure, which was accompanied by decreasing mechanical properties and increasing elongation and corrosion resistance values. For the HIP process, the formation of a thick plate structure could be observed, resulting in the material exhibiting optimal mechanical properties and unusually high elongation. The best mechanical and corrosion resistance properties were obtained for the material subjected to HIP at 950 °C.
本文详细讨论了两种后热处理对增材制造Ti6Al4V合金的结构、力学性能和耐腐蚀性的影响。材料采用激光工程净成形(LENS)技术制备,并在950℃和1050℃的温度下分别进行无压退火和300MPa压力下30分钟的热等静压(HIP)处理。无压退火导致形成薄板结构,同时力学性能下降,伸长率和耐腐蚀性值增加。对于HIP工艺,可以观察到厚板结构的形成,使材料表现出最佳的力学性能和异常高的伸长率。在950℃进行HIP处理的材料获得了最佳的力学性能和耐腐蚀性。