Y2O3增强颗粒对激光粉末床熔合IN718复合材料热处理的影响

Duy Nghia Luu, Wei Zhou, S. Nai
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引用次数: 3

摘要

采用激光粉末床熔接技术制备了以铬镍铁合金718为基体,氧化钇(Y2O3)为增强颗粒的金属基复合材料。本文全面研究了Y2O3增强颗粒对热处理印刷复合材料显微组织和力学性能的影响。Y2O3纳米颗粒与碳氮化物之间形成了复杂的析出相。复合析出相经热处理后分离成单独的Y2O3和氮化钛(TiN)纳米颗粒。溶解后,由于金属基体中过饱和Y的释放,形成纳米级Y- ti - o析出物。由于大量的纳米级析出物,热处理后的复合材料晶粒细化。经固溶和时效处理后,y2o3增强试样的晶粒尺寸分别比整体Inconel 718试样小28.2%和33.9%。这有效地减少了nba在晶界上的偏析,从而使γ′和γ”相在金属基体中的分布更加均匀。复合材料的屈服强度和极限抗拉强度分别为1099.3 MPa和1385.5 MPa,高于单片Inconel 718 (1015.5 MPa和1284.3 MPa)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Y2O3 reinforcement particles during heat treatment of IN718 composite produced by laser powder bed fusion
A metal matrix composite with Inconel 718 as the base metal and yttrium oxide (Y2O3) as the reinforcement particles was fabricated by the laser powder bed fusion technology. This paper presents a comprehensive study on the influence of the Y2O3 reinforcement particles on the microstructures and mechanical properties of the heat-treated printed composite. Complex precipitates formation between the Y2O3 nanoparticles and the carbonitride precipitates were shown. The complex precipitates separated into individual Y2O3 and titanium nitride (TiN) nanoparticles after heat treatment. Nano-sized Y-Ti-O precipitates were observed after solutionization due to the release of supersaturated Y in the metal matrix. Grain refinement was also observed in the heat-treated composites due to the high number of nano-sized precipitates. After solutionizing and aging, the grain size of the Y2O3-reinforced sample is 28.2% and 33.9% smaller, respectively, than that of the monolithic Inconel 718 sample. This effectively reduced the segregation of Nbat the grain boundaries and thus, γ′ and γ′′ precipitates were distributed in the metal matrix more homogeneously. Combined with the increased Orowan strengthening from a significantly higher number of nano-sized precipitates and grain boundary strengthening, the composite achieved higher yield strength, and ultimate tensile strength (1099.3 MPa and 1385.5 MPa, respectively) than those of the monolithic Inconel 718 (1015.5 MPa and 1284.3 MPa, respectively).
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