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Effect of long-term thermal exposures on microstructures and mechanical properties of directionally solidified CM247LC alloy

机译:长期热暴露对定向凝固CM247LC合金组织和力学性能的影响

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摘要

A directionally solidified CM247LC alloy was exposed at 871 °C and 982 °C for 1000 h, 5000 h, and 10000 h under free stress in order to study the effect of microstructural degradation on the creep properties. None of the specimens exposed at temperatures up to 10000 h produced any kind of topologically close-packed phases because of the excellent phase stability of CM247LC alloy. The plate-like M6C carbide was formed only at exposure of 982 °C for 10000 h through a decomposition reaction between γ and MC. Moreover, an M23C6 carbide layer was observed between the M6C and the matrix. The exposure at 982°C for 5000 h and 10000 h had a spontaneous rafting of γ′ under free stress, while the exposure at 871 °C for 1000 h, 5000 h, and 10000 h had a non-rafted structure. The spontaneous rafted structure resulted in a drastic decrease in creep life. A 3-dimensional morphology of γ′ in the as-crept specimens, which were pre-exposed at 982 °C for 5000 h and 10000 h, had a non-rafted structure. This microstructural feature proves that the significant decrease in creep life of the specimen resulted from a loss of coherency between γ and γ′.
机译:为了研究微观结构退化对蠕变性能的影响,将定向凝固的CM247LC合金在871°C和982°C的自由应力下分别暴露1000 h,5000 h和10000 h。由于CM247LC合金具有出色的相稳定性,因此在暴露于10000 h以下的温度下,没有一个样品产生任何拓扑紧密堆积的相。通过γ与MC之间的分解反应,仅在982℃下暴露10000h时形成板状的M6C碳化物。此外,在M6C和基体之间观察到M23C6碳化物层。在982°C下暴露5000 h和10000 h时,γ'在自由应力下自发漂流,而在871°C下暴露1000 h,5000 h和10000 h时则呈非漂流结构。自发的漂流结构导致蠕变寿命急剧下降。在982°C下预暴露5000 h和10000 h的蠕变试样中γ'的3维形态具有非筏结构。这种微观结构特征证明,样品的蠕变寿命显着降低是由于γ和γ'之间的相干性损失所致。

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  • 来源
    《Metals and Materials International》 |2013年第5期|917-925|共9页
  • 作者单位

    Advanced Metallic Materials Division Korea Institute of Materials Science">(1);

    Advanced Metallic Materials Division Korea Institute of Materials Science">(1);

    Advanced Metallic Materials Division Korea Institute of Materials Science">(1);

    Advanced Metallic Materials Division Korea Institute of Materials Science">(1);

    Advanced Metallic Materials Division Korea Institute of Materials Science">(1);

    Department of Metallurgy Advanced Materials Science and Engineering Changwon National University">(2);

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