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Fretting fatigue failure behavior of Nickel-based single crystal superalloy dovetail specimen in contact with powder metallurgy pads at high temperature

机译:高温粉末冶金垫接触镍基单晶高温合金燕尾榫样品的疲劳疲劳性能

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摘要

Fretting fatigue failure behavior of DD6 Nickel-based single crystal superalloy dovetail attachment at 600 degrees C has been investigated. The contact surface material is oxidized at high temperature and the oxides are compacted on the contact surface. The contact surface is delaminated and many pits are formed, which result in stress concentration near the wear pits and promote crack initiation. All the dovetail specimens fail at the contact leading edge area and along (111) [1 (1) over bar0] and ((1) over bar1 (1) over bar) [110] slip systems, which are resulted from the large resolved shear stress at the contact edge. Crystallographic plasticity finite element method is used to obtain the contact stress and strain, and the calculated maximum damage area agrees well with the experimental results.
机译:研究了DD6基于镍的单晶超合金燕尾榫附件的微动疲劳性能已经研究过600℃。 接触表面材料在高温下氧化,氧化物压实在接触表面上。 接触表面被分层并形成许多凹坑,这导致磨损坑附近的应力浓度并促进裂纹引发。 所有燕尾标本都在接触前沿区域和(111)[1(1)上方的(1))和((1)上方的杆(1))[110]滑动系统,这是由大分辨的 剪切应力在接触边缘。 结晶塑性有限元方法用于获得接触应力和应变,并且计算的最大损伤区域与实验结果很好。

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