Fatigue Crack Growth Behavior of Nickel-base Superalloy Haynes 282 at 550-750 °C

被引:0
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作者
K. A. Rozman
J. J. Kruzic
J. A. Hawk
机构
[1] ORISE,Department of Materials Science, School of Mechanical, Industrial, and Manufacturing Engineering
[2] National Energy Technology Laboratory,undefined
[3] Oregon State University,undefined
[4] National Energy Technology Laboratory,undefined
关键词
electron microscopy; fatigue crack growth rate; mechanical characterization; nickel-based superalloys;
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摘要
The fatigue crack growth rates for nickel-based superalloy Haynes 282 were measured at temperatures of 550, 650, and 750 °C using compact tension specimens with a load ratio of 0.1 and cyclic loading frequencies of 25 Hz and 0.25 Hz. Increasing the temperature from 550 to 750 °C caused the fatigue crack growth rates to increase from ~20 to 60% depending upon the applied stress intensity level. The effect of reducing the applied loading frequency increased the fatigue crack growth rates from ~20 to 70%, also depending upon the applied stress intensity range. The crack path was observed to be transgranular for the temperatures and frequencies used during fatigue crack growth rate testing. At 750 °C, there were some indications of limited intergranular cracking excursions at both loading frequencies; however, the extent of intergranular crack growth was limited and the cause is not understood at this time.
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页码:2841 / 2846
页数:5
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