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首页> 外文期刊>Journal of Materials Science >The influence of interfacial dislocation arrangements in a fourth generation single crystal TMS-138 superalloy on creep properties
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The influence of interfacial dislocation arrangements in a fourth generation single crystal TMS-138 superalloy on creep properties

机译:第四代单晶TMS-138高温合金中界面位错排列对蠕变性能的影响

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摘要

The morphologies of (001) γ/γ′ interfacial dislocation networks are studied through TEM observations. The lattice misfit has an important relation with creep property for superalloy during high temperature creep deformation. The fourth generation superalloy TMS-138 possesses superior creep properties based on its fine interfacial dislocation networks. The networks have two typical characteristics: closely spaced dislocations and stable square morphology during creep deformation. Such arranged dislocations can effectively prevent the slipping dislocations in the γ phase from moving through the γ/γ′ interface and improve drastically the creep resistance in the fourth generation superalloy TMS-138.
机译:通过TEM观察研究了(001)γ/γ′界面错位网络的形貌。高温蠕变变形过程中,晶格失配与高温合金的蠕变性能有着重要的关系。第四代高温合金TMS-138具有优良的界面错位网络,具有出色的蠕变性能。该网络具有两个典型特征:位错紧密排列和蠕变变形期间稳定的正方形形态。这样排列的位错可以有效地防止在γ相中的滑动位错穿过γ/γ′界面移动,并且大大提高了第四代高温合金TMS-138中的抗蠕变性。

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  • 来源
    《Journal of Materials Science》 |2003年第24期|4883-4888|共6页
  • 作者单位

    National Institute for Materials Science;

    National Institute for Materials Science;

    National Institute for Materials Science;

    National Institute for Materials Science;

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  • 正文语种 eng
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