首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence of sub-solvus solution heat treatment on γ' morphological instability in a new Ni-Cr-Co-based powder metallurgy superalloy
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Influence of sub-solvus solution heat treatment on γ' morphological instability in a new Ni-Cr-Co-based powder metallurgy superalloy

机译:亚固溶固溶热处理对新型Ni-Cr-Co基粉末冶金高温合金γ'形貌不稳定性的影响

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摘要

The influence of the sub-solvus solution heat treatment on the microstructure, especially the γ' morphology (γ' fan-type structure), and microhardness of a new Ni-Cr-Co-based powder metallurgy superalloy was studied by means of field emission scanning electron microscopy (FESEM) and microhardness testing. The results show that sub-solvus solution heat treatment changes the microstructure of an as-forged alloy. It makes large primary γ' phases at grain boundaries smaller and the distribution of secondary γ' phases in the interior of the grains more homogeneous. Moreover, the grain boundaries widen because of the supplementary precipitate. The sub-solvus solution heat treatment before the super-solvus solution heat treatment does not change nucleation sites of the γ' fan-type structures which precipitate during the super-solvus solution heat treatment. However, it influences the morphology of γ' fan-type structures. Length distribution of the secondary γ' dendrites in fan-type structures changes from a bimodal to a uni-modal distribution, which means the lengths of the secondary γ' dendrites become more uniform. Applying a sub-solvus solution heat treatment after the super-solvus solution heat treatment causes the secondary γ' dendrites to be broken off in the fan-type structures and a refinement of the γ' phases, and this improves stability of the γ' phases.
机译:通过场发射研究了亚固溶固溶热处理对新型Ni-Cr-Co基粉末冶金高温合金的微观结构,尤其是γ'形貌(γ'扇形结构)和显微硬度的影响。扫描电子显微镜(FESEM)和显微硬度测试。结果表明,亚固溶固溶热处理改变了锻造合金的显微组织。它使晶界处较大的初级γ'相变小,并且晶粒内部的次级γ'相的分布更加均匀。此外,由于补充沉淀,晶界变宽。在超固溶体热处理之前的亚固溶体热处理不会改变在超固溶体热处理期间沉淀的γ'扇形结构的形核部位。但是,它会影响γ'扇形结构的形态。扇形结构中次要γ'树突的长度分布从双峰分布变为单峰分布,这意味着次要γ'树突的长度变得更加均匀。在超固溶体热处理之后进行亚固溶体热处理会导致次级γ'树枝状晶体在扇形结构中破裂并细化γ'相,从而提高了γ'相的稳定性。 。

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