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Initial Intergranular Cracking of Ni-Base Superalloys Due to the Degradation of the Crystallinity of Grain Boundaries Under Creep-Fatigue Loading

机译:由于蠕变 - 疲劳负载下晶界结晶度的降解导致Ni碱基超合金的初始晶间裂化

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The mechanism of the drastic decrease in the lifetime of Ni-base superalloy,Alloy 617 under creep-fatigue loading at elevated temperatures was clarified by using EBSD(Electron Back-Scatter Diffraction)analysis.The degradation process was monitored by using an intermittent creep-fatigue test and EBSD analysis.The change of the crystallinity of grains and grain boundaries was quantitatively analyzed by using the image quality(IQ)value obtained from the EBSD analysis.The IQ value indicated the density of defects such as vacancies,dislocations,local strain,and so on.The decrease in the IQ value corresponded to the decrease in the crystallinity of the observed area.The accumulation of fine voids was found to be accelerated under the creep-fatigue loading,and it caused the drastic decrease of not only the IQ value,but also the strength of the grain boundaries.Intergranular cracking started to occur when the crystallinity of grain boundaries decreased to the critical value due to the degradation of the crystallinity caused by the local accumulation of dislocations and voids around the grain boundaries.
机译:通过使用EBSD(电子背散射衍射)分析,阐明了Ni-Base超合金的寿命的寿命的寿命的终用机制,合金617在升高的温度下澄清。通过使用间歇性蠕变监测降解过程 - 疲劳试验和EBSD分析。通过使用从EBSD分析中获得的图像质量(IQ)值定量分析晶粒和晶界的变化。智商值表明了缺陷的密度,如空位,脱位,局部应变等等。IQ值的降低对应于观察到的区域的结晶度降低。发现细空隙的积累在蠕变 - 疲劳负载下加速,而且它不仅引起了急剧下降IQ值,但也是晶粒边界的强度。当晶界的结晶度降低到由于降级导致的晶粒边界的结晶度降低时,开始发生互动裂缝由晶界局部积聚和空隙引起的结晶性的离子。

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