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首页> 外文期刊>International Journal of Plasticity >High temperature in-situ SEM observation and crystal plasticity simulation on fretting fatigue of Ni-based single crystal superalloys
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High temperature in-situ SEM observation and crystal plasticity simulation on fretting fatigue of Ni-based single crystal superalloys

机译:高温原位SEM观测和晶体塑性模拟对Ni基单晶高温合金的烦恼疲劳

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摘要

The fretting fatigue behavior of Ni-based single crystal (NBSX) superalloy specimens with different crystal orientations ([110] and [010]) was investigated by in-situ scanning electron microscopy at 400 degrees C. The slip lines on the surface of the specimens were captured during the test, and crack paths were recorded. These results show that the dominant deformation mode of fretting fatigue at 400 degrees C is the crystallographic slip. Fretting contact conditions were simulated by the crystal plasticity finite element (CPFE) method. It was found that the activated slip systems and planes in the numerical results are correlated to crystal orientations. The predicted slip lines corresponding to the dominant slip planes obtained by the simulations are in good agreement with the experimental observations. And the crack initiation sites in the experiment coincide with the equivalent plastic strain in the simulation.
机译:通过原位扫描电子显微镜在400℃下,研究了Ni的单晶(NBSX)高温合金样品的掺晶([110]和[010])的荧光疲劳行为([110]和[010])。 在测试期间捕获标本,并记录裂缝路径。 这些结果表明,400摄氏度在400摄氏度下疲劳的主导变形模式是晶体滑动。 通过晶体塑性有限元(CPFE)方法模拟微射触点条件。 发现,数值结果中的活化滑动系统和平面与晶体取向相关。 对应于通过模拟获得的主要滑移平面的预测的滑动线与实验观察结果良好。 实验中的裂纹启动位点与模拟中的等同塑性应变一致。

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