首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >High-cycle fatigue behavior of AM3 nickel-base single crystal superalloy at high temperature
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High-cycle fatigue behavior of AM3 nickel-base single crystal superalloy at high temperature

机译:AM3镍基单晶高温合金的高温高周疲劳行为

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摘要

A single crystal nickel-base superalloy with 〈001〉 orientation was subjected to high cycle fatigue loading at temperature of 700°C and 870°C. The tests were performed in ambient atmosphere under load control at a stress ratio R=σ_(min)/σ_(max)=0.1 and a frequency of 83.3 Hz on smooth specimens. In this paper, the premature initiation and rapid propagation of cracks to failure due to high frequency cyclic loading were explored. The dislocation characteristics and fracture surface observation were evaluated through scanning electron microscopy and transmission electron microscopy, respectively. The results showed that the fatigue strength at 700°C was higher than that at 870°C. At 700°C the interaction of cyclic stress with high temperature induced the precipitation of homogeneous hyperfine secondary γ′ particles, that is beneficial to fatigue strength. At 870°C, the cyclic stress led to the formation of persistent slip bands moving through the γ matrix channels and the γ′ precipitates. The morphology change of γ′ phase was not notable during the deformation at high frequency cyclic loading.
机译:取向为<001>的单晶镍基高温合金在700°C和870°C的温度下承受高循环疲劳载荷。在负载控制下在环境大气中以应力比R =σ_(min)/σ_(max)= 0.1和83.3 Hz的频率在光滑样本上进行测试。本文探讨了由于高频循环载荷导致的裂纹的过早萌生和裂纹的快速传播。通过扫描电子显微镜和透射电子显微镜分别评估位错特征和断裂表面观察。结果表明,在700℃下的疲劳强度高于在870℃下的疲劳强度。在700°C时,循环应力与高温的相互作用引起均匀的超细二次γ'颗粒的析出,这有利于疲劳强度。在870°C下,循环应力导致形成穿过γ基质通道的持久滑带,并且γ'析出。高频循环载荷作用下,γ′相的形貌变化不明显。

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