论文标题
镍碱超合金粉中的旋缺链分解与经典伽马 - 蛋白核定粉:原位中子衍射和原子尺度分析
Spinodal decomposition versus classical gamma-prime nucleation in a nickel-base superalloy powder: An in-situ neutron diffraction and atomic-scale analysis
论文作者
论文摘要
当代粉末基晶镍碱基超合金继承了在加工过程中由热机械处理的大量确定的微观结构和特性。在这里,研究了热暴露于合金粉末的影响,以阐明使用原子探针断层扫描和原位中性中子衍射的组合,阐明强化沉淀的控制形成机理。初始粉末仅包含单相过饱和伽玛。由此,评估了伽马弹量分数和晶格失误的演变。最初的粉末特别具有Cr和Co的元素分离,以及与Cr的Ni,Al和Ti之间的元素排斥;在这里,建议是随后伽玛到伽马 - p-Prime相变的先驱。亚铁热处理产生了在加热过程中形成的单峰γ-弹药分布,并有证据支持其形成是通过旋转分解。 Supersolvus热处理导致在加热过程中形成相同的伽马杆人群,但随着温度进一步升高而溶解。然后,伽马弹药在冷却过程中作为多模式种群重新沉降,在这里通过经典的成核和生长形成。原子探针表征提供了有趣的沉淀特征,包括化学和微观结构的明显差异,具体取决于在加热或冷却过程中形成的伽马弹药。
Contemporary powder-based polycrystalline nickel-base superalloys inherit microstructures and properties that are heavily determined by the thermo-mechanical treatments during processing. Here, the influence of a thermal exposure alone to an alloy powder is studied to elucidate the controlling formation mechanisms of the strengthening precipitates using a combination of atom probe tomography and in-situ neutron diffraction. The initial powder comprised a single-phase supersaturated gamma only; from this, the evolution of gamma-prime volume fraction and lattice misfit was assessed. The initial powder notably possessed elemental segregation of Cr and Co and elemental repulsion between Ni, Al and Ti with Cr; here proposed to be a precursor for subsequent gamma to gamma-prime phase transformations. Subsolvus heat treatments yielded a unimodal gamma-prime distribution, formed during heating, with evidence supporting its formation to be via spinodal decomposition. A supersolvus heat treatment led to the formation of this same gamma-prime population during heating, but dissolves as the temperature increases further. The gamma-prime then reprecipitates as a multimodal population during cooling, here forming by classical nucleation and growth. Atom probe characterisation provided intriguing precipitate characteristics, including clear differences in chemistry and microstructure, depending on whether the gamma-prime formed during heating or cooling.