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首页> 外文期刊>Metals and Materials International >Characterization of gamma and gamma ' Phases in 2nd and 4th Generation Single Crystal Nickel-Base Superalloys
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Characterization of gamma and gamma ' Phases in 2nd and 4th Generation Single Crystal Nickel-Base Superalloys

机译:γ和γ'阶段在第4代单晶镍基超合金中表征

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摘要

A Ni based single crystal superalloy from the 2Ith generation, PWA 1484, and one from the 4th generation, PWA 1497, were comparatively studied by scanning electron microscopy, energy dispersive X-ray spectroscopy and nanoindentation technique in an atomic force microscope (NI-AFM) after high temperature creep deformation. During primary creep of both generations of superalloys, gamma' precipitates start to coalesce and grow directionally. Further creep deformation leads to the topological inversion and coarsening of the rafted microstructure. The NI-AFM technique was used for measurements of the hardness of the gamma and gamma' phases in as-received and creep deformed samples in various conditions. The g matrix of the PWA 1497 superalloy is on average 0.8 GPa harder than that of PWA 1484 that can be explained by higher content of Re and Ru, since they partition predominantly to the matrix phase.
机译:通过扫描电子显微镜,能量分散性X射线光谱和原子力显微镜(Ni-AFM)的纳米狭窄技术(Ni-AFM)通过扫描电子显微镜(Ni-AFM )高温蠕变变形后。 在两代高温合金的初级蠕变期间,γ'沉淀物开始聚结并定向成长。 进一步的蠕变变形导致圆形微观结构的拓扑反演和粗化。 Ni-AFM技术用于在各种条件下接收和蠕变变形样品中γ和γ'相的硬度的测量。 PWA 1497高温合金的G矩阵平均比PWA 1484更难于Re和Ru的含量来解释的,因为它们主要分配给矩阵阶段。

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