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首页> 外文期刊>Tribology International >In-situ SEM observation and crystal plasticity finite element simulation of fretting fatigue crack formation in Ni-base single-crystal superalloys
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In-situ SEM observation and crystal plasticity finite element simulation of fretting fatigue crack formation in Ni-base single-crystal superalloys

机译:Ni基单晶高温合金微动疲劳裂纹形成的原位SEM观察和晶体塑性有限元模拟

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摘要

Fretting fatigue behavior of Ni-base single crystal (NBSX) superalloys was investigated based on in-situ scanning electron microscope (SEM) observations. Evolutions of slip lines and initiations of cracks were observed. Slip lines were found on specimen free surface along three typical directions. Short cracks were observed to initiate along the slip line. Crystal plasticity constitutive model considering cyclic hardening effect was employed. Crystal plasticity finite element method (CPFEM) simulation showed the activations of crystallographic slip systems at contact region. The slip plane with the maximum plastic slip was determined as dominate slip plane. Equivalent plastic strain was proved effective to predict crack initiation. The simulation results including predicted slip lines, crack initiation locations and orientations were in good agreements with observations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:基于原位扫描电子显微镜(SEM)观察,研究了镍基单晶(NBSX)高温合金的微动疲劳行为。观察到滑移线的演变和裂纹的产生。在试样自由表面上沿三个典型方向发现了滑移线。观察到沿滑移线产生了短裂纹。采用考虑了循环硬化效应的晶体塑性本构模型。晶体可塑性有限元方法(CPFEM)模拟显示了在接触区域的晶体滑移系统的激活。具有最大塑性滑动的滑动平面被确定为主要滑动平面。等效塑性应变被证明可有效预测裂纹萌生。模拟结果包括预测的滑移线,裂纹萌生的位置和方向与观察结果吻合良好。 (C)2016 Elsevier Ltd.保留所有权利。

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