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Effect of Re on Long-Term Creep Behavior of Nickel-Based Single-Crystal Superalloys for Industrial Gas Turbine Applications

机译:RE对工业燃气轮机应用镍基单晶高温合金长期蠕变行为的影响

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Understanding the long-term creep behavior (creep lives longer than 5,000 h) of nickel-based single-crystal (SX) superalloys is of great interest for the service safety of industrial gas turbine (IGT) blades. However, understanding the influence of various factors on long-term creep behavior of nickel-based SX superalloys has always been a challenge. In this study, the creep behavior of nickel-based SX superalloys with or without 2 wt.% Re addition were investigated at 900°C and 200 MPa. Microstructural characterization was systematically conducted to elucidate the microstructural evolution of the experimental alloys after creep rupture tests. The results indicated that the creep lifetime was increased significantly by 2 wt.% Re addition, which dramatically reduced the creep strain rate and caused the lattice misfit of γ/γ' phases to inverse from positive to negative, leading to N-type rafting exhibiting a stronger barrier to dislocations during creep. The evolution of lattice misfit of the γ/γ' phases was closely associated with the elemental partitioning behavior between the γ/γ' phases, which was determined as a consequence of "time accumulation effect" and corresponding elemental diffusion special for prolonged time. This study provides a new insight in the effect of Re on the long-term creep life and microstructure evolution of nickel-based SX superalloys. Such knowledge will be helpful to provide the guideline of superalloys design for large-scale IGT blades.
机译:了解基于镍的单晶(SX)高温合金的长期蠕变行为(长于5,000小时)对于工业燃气轮机(IGT)叶片的服务安全性具有很大兴趣。然而,了解各种因素对基于镍的SX超合金的长期蠕变行为的影响一直是一项挑战。在该研究中,在900℃和200MPa下研究了基于镍基SX超合金的镍基SX高温合金的蠕变行为。系统地进行微观结构表征,以阐明蠕变破裂试验后实验合金的微观结构演化。结果表明,蠕变寿命大大增加了2重量%。%重复,这显着降低了蠕变应变率,并导致γ/γ'阶段的晶格错位与阳性相反,导致n型漂流展示在蠕变期间脱臼的势垒更强。 γ/γ'阶段的晶格错位的演变与γ/γ'相之间的元素分配行为密切相关,这是由于“时间累积效应”和长时间的相应元素扩散特殊性确定。本研究提供了对RE对基于镍的SX高温合金的长期蠕变寿命和微观结构演变的影响的新洞察。这些知识将有助于为大型IGT刀片提供高温合金设计的指导。

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