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Sensitization to Corrosion as Initiator of Fatigue Fracture in Compressor Blades

机译:压缩机叶片疲劳骨折引发剂的敏感性

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Certain failures of stainless steels interpreted purely in terms of fracture mechanisms may in fact be closely associated with previous damage caused by localized corrosion. The closeness of the link between fatigue and corrosion is documented by the case history of compressor blades made of grade 14Cr17Ni2 stainless steel. Fatigue fracturing observed in areas near the blade root tended to follow intergranular pathways, indicating that some additional mechanism other than fatigue might be involved. This suspicion was confirmed by electrochemical potentiokinetic reactivation (EPR) measurements in situ, which revealed sensitization to intergranular corrosion. It has been found that at the transition between the blade root and the blade proper the surfaces had been ground and polished too vigorously, heating the subcutaneous layers to within the danger zone of 400-600°C. Preferential integranular attack in these locations was the initiation mechanism that provoked a subsequent failure of the blades by fatigue fracture.
机译:不锈钢的某些故障纯粹在骨折机制方面可以与局部腐蚀引起的先前损伤密切相关。疲劳和腐蚀之间的联系的近距离通过级别14Cr17Ni2不锈钢制成的压缩机叶片的情况进行了记录。在叶片根系附近观察到疲劳压裂倾向于遵循晶状体途径,表明可能涉及除疲劳之外的一些额外机制。通过原位的电化学型电涌再激活(EPR)测量证实了这种怀疑,这揭示了对晶间腐蚀的敏化。已经发现,在叶片根和刀片之间的过渡处,表面已经研磨并过于剧烈抛光,将皮下层加热到400-600℃的危险区域内。这些位置的优先积分攻击是引起疲劳骨折引起后续叶片的失效机制。

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