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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of slow cooling treatment on microstructure of difficult deformation GH4742 superalloy
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Effect of slow cooling treatment on microstructure of difficult deformation GH4742 superalloy

机译:缓冷处理对难变形GH4742高温合金组织的影响

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摘要

For the difficult deformation of GH4742 superalloy, hot working of the gamma + gamma' two phases region is inevitable. The dispersed small size gamma' phase markedly increases hot deformation flow stress and at the same time decreases the plasticity. In this paper, the effect of slow cooling treatment in gamma + gamma' two phases region after homogenization on precipitation behavior of gamma' phase was evaluated. The relationships between grain boundary morphology, the size, morphology and distribution of gamma' phase and cooling rate were also investigated. The results showed that the little dendritic-type gamma' phase, gamma matrix of lower solution strengthening effect and tortuous grain boundary after slow cooling treatment decreased the hot deformation flow stress of the GH4742 superalloy and increased hot deformation plasticity obviously.
机译:由于GH4742高温合金难以变形,因此不可避免地要进行伽马+伽马'两相区的热加工。分散的小尺寸γ相明显增加了热变形流动应力,同时降低了可塑性。本文对均质后γ+γ′两相区进行慢冷处理对γ′相析出行为的影响进行了评价。研究了晶界形态,γ相的大小,形态和分布与冷却速率之间的关系。结果表明,缓慢冷却处理后的小树枝状γ相,固溶强化效果较低的γ基体和曲折晶界减小了GH4742高温合金的热变形流应力,明显提高了热变形塑性。

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