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High-temperature creep-deformation behavior of the Ni-based superalloy M963

机译:Ni基高温合金M963的高温蠕变变形行为

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摘要

The high-temperature creep-deformation behavior of a Ni-based M963 superalloy has been investigated over a broad stress range of 80 to 600 MPa at high temperatures (800 °C to 975 °C). The detailed dislocation configurations at different creep stages are examined through transmission electron microscopy (TEM). The results show that the deformation mechanism is stress and temperature dependent and mainly consists of three dislocation-controlling mechanisms: stacking faults and dislocation-pair shearing, dislocation bowing and Orowan looping, and dislocation climb.
机译:在高温(800°C至975°C)的80至600 MPa的宽应力范围内,已经研究了Ni基M963高温合金的高温蠕变变形行为。通过透射电子显微镜(TEM)检查在不同蠕变阶段的详细位错构型。结果表明,变形机制受应力和温度的影响,主要由位错控制机制三层组成:堆垛层错和位错对剪切,位错弯曲和Orowan环回,位错爬升。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2005年第9期|2385-2391|共7页
  • 作者单位

    Mechanical Engineering Department University of Wollongong NSW2522 Wollongong Australia;

    the Institute of Metal Research Chinese Academy of Sciences 110016 Shenyang People’s Republic of China;

    the Institute of Metal Research Chinese Academy of Sciences 110016 Shenyang People’s Republic of China;

    the Institute of Metal Research Chinese Academy of Sciences 110016 Shenyang People’s Republic of China;

    the Institute of Metal Research Chinese Academy of Sciences 110016 Shenyang People’s Republic of China;

    Mechanical Engineering Department University of Wollongong NSW2522 Wollongong Australia;

    Mechanical Engineering Department University of Wollongong NSW2522 Wollongong Australia;

    Mechanical Engineering Department University of Wollongong NSW2522 Wollongong Australia;

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