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首页> 外文期刊>Materials Science and Engineering >Impact of solution heat treatment on microstructure and creep behavior of a novel cast & wrought FGH4096 turbine disk alloy
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Impact of solution heat treatment on microstructure and creep behavior of a novel cast & wrought FGH4096 turbine disk alloy

机译:固溶热处理对新型铸造锻造FGH4096涡轮盘合金的组织和蠕变行为的影响

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摘要

By means of microstructural observation and creep tests, a study has been made into the effects of solution heat treatments on microstructure and creep resistance of a novel cast & wrought FGH4096 superalloy. The results show that grain size increases and the volume fraction of primary γ' phase decreases with the increase of solution heat treatment temperature. The super-solvus solution heat treatment leads to an increase of the total volume fraction of secondary and tertiary γ' phases, and superior creep property can be obtained. Various cooling rates from sub-solvus solution heat treatment are applied to gain cooling secondary γ' phase with different sizes and morphologies. It is found that the solution cooling rate determines secondary γ' morphology and particle distribution that develops. The alloy samples with fine γ' particles obtained from the fast solution cooling rate possess narrow matrix channels, which can effectively enhance the Orowan resistance and hinder dislocation movement within the matrix and thus improve the creep resistance at 704 ℃/690 MPa. The creep tests for three samples with different distribution of γ' particles are interrupted when entering the third stage to investigate the corresponding dominant deformation mechanisms by transmission electron microscopy. It is indicated that partial dislocations shearing precipitates leaving abundant stacking faults behind is the dominant creep failure mechanisms for samples with coarser secondary γ' particles and wide γ matrix channels. The main creep mechanism for the samples with fine secondary γ' particles is microtwinning shearing both γ' particles and matrix.
机译:通过显微组织观察和蠕变试验,对固溶热处理对新型铸造和锻造FGH4096高温合金的组织和抗蠕变性的影响进行了研究。结果表明,随着固溶热处理温度的升高,晶粒尺寸增大,γ′相的体积分数减小。超溶剂固溶热处理导致第二和第三γ'相的总体积分数增加,并且可以获得优异的蠕变性能。应用来自亚固溶固溶热处理的各种冷却速率来获得具有不同尺寸和形态的二次γ'相冷却。发现溶液冷却速率决定了二次γ'的形貌和所形成的颗粒分布。通过快速的溶液冷却速度获得的具有细γ'颗粒的合金样品具有较窄的基体通道,可以有效增强Orowan抵抗力并阻碍基体内的位错运动,从而提高704℃/ 690 MPa的抗蠕变性。进入第三阶段时,中断了具有不同γ'颗粒分布的三个样品的蠕变测试,以通过透射电子显微镜研究相应的主要变形机制。结果表明,部分位错剪切析出物留下大量堆积断层,是次生γ′粒子较粗且γ基体通道较宽的样品的主要蠕变破坏机理。具有细小的次级γ'颗粒的样品的主要蠕变机理是微缠绕剪切γ'颗粒和基体。

著录项

  • 来源
    《Materials Science and Engineering》 |2017年第1期|273-282|共10页
  • 作者单位

    Department of Superalloy, Central Iron and Steel Research Institute, Beijing China,Western Superconducting Material Technology Co., LTD, Xi'an, China;

    Department of Superalloy, Central Iron and Steel Research Institute, Beijing China;

    Department of Superalloy, Central Iron and Steel Research Institute, Beijing China;

    Department of Superalloy, Central Iron and Steel Research Institute, Beijing China;

    Department of Superalloy, Central Iron and Steel Research Institute, Beijing China;

    Department of Superalloy, Central Iron and Steel Research Institute, Beijing China;

    Western Superconducting Material Technology Co., LTD, Xi'an, China;

    Western Superconducting Material Technology Co., LTD, Xi'an, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solution heat treatment; Cast wrought superalloy; FGH4096; Cooling rates; γ' phase; Creep deformation mechanisms;

    机译:固溶热处理;铸造和锻造超合金;FGH4096;冷却速度;γ'相;蠕变变形机理;

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