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Compositional Variations between Different Generations of γ′ Precipitates Forming during Continuous Cooling of a Commercial Nickel-Base Superalloy

机译:商用镍基高温合金连续冷却过程中不同世代的γ′析出物的组成变化

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摘要

The compositional and microstructural evolution of different generations of precipitates of the ordered γ′ phase during the continuous cooling, followed by isothermal aging, of a commercial nickel-base superalloy, Rene 88DT, has been characterized by three-dimensional atom probe (3DAP) tomography coupled with energy-filtered transmission electron microscopy (EFTEM) studies. After solutionizing in the single γ-phase field, during continuous cooling at a relatively slow rate (~24 °C/min), the first-generation primary γ′ precipitates, forming at relatively higher temperatures, exhibit near-equilibrium compositions, while the smaller-scale secondary γ′ precipitates, forming at lower temperatures, exhibit nonequilibrium compositions often containing an excess of Co and Cr while being depleted in Al and Ti content. The compositions of the γ matrix near these precipitates also exhibit similar trends, with the composition being closer to equilibrium near the primary precipitates as compared to the secondary precipitates. Subsequent isothermal aging at 760 °C leads to coarsening of the primary γ′ precipitates without affecting their composition significantly. In contrast, the composition of the secondary γ′ precipitates is driven toward equilibrium during the isothermal aging process.
机译:通过三维原子探针(3DAP)断层扫描表征了商用镍基高温合金Rene 88DT在连续冷却后等温时效过程中,有序γ'相的不同世代析出物的组成和微观结构演变结合能量过滤透射电子显微镜(EFTEM)研究。固溶在单个γ相场中后,在以相对缓慢的速度(〜24°C / min)连续冷却的过程中,在相对较高的温度下形成的第一代初级γ'沉淀物表现出接近平衡的组成,而较小的次级γ'沉淀物在较低的温度下形成,表现出不平衡成分,该成分通常含有过量的Co和Cr,而Al和Ti含量却不足。这些沉淀物附近的γ基质的组成也表现出相似的趋势,与次要沉淀物相比,主要沉淀物附近的组成更接近平衡。随后在760°C的等温老化导致主要的γ'沉淀变粗,而不会显着影响其组成。相反,在等温时效过程中,次要γ'沉淀物的组成趋于平衡。

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