测定了[001]取向单晶镍基合金的蠕变曲线,并利用SEM和TEM对蠕变后期的微观组织结构进行了观察结果表明:蠕变第三阶段结构特征是大量位错切入筏状γ'相.降低了台金的蠕变抗力两个滑移系统交割产生滑移台阶,连续的交替滑移使筏状γ'相发生扭曲、并产生微裂纹是蠕变断裂的直接原因
The microstructures in the late stage of the creep have been observed by means of SEM and TEM. The results show that the microstructure corresponding to the macro-slip in the third stage of the creep is that a large number of dislocations shear into the rafted γ' phases,decreasing creep resistance of superalloy. The slip steps are produced on the slip lines by the interaction of the multi-slip. The direct reason of the creep fracture is that the rafted γ'phase is twisted and the micro-cracks are emerged in alloy due to the continuous cross-slips.
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