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首页> 外文期刊>International Journal of Fatigue >Creep-fatigue-oxidation interactions in a 9Cr-1Mo martensitic steel. Part III: Lifetime prediction
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Creep-fatigue-oxidation interactions in a 9Cr-1Mo martensitic steel. Part III: Lifetime prediction

机译:9Cr-1Mo马氏体钢中的蠕变-疲劳-氧化相互作用。第三部分:寿命预测

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摘要

A model devoted to the prediction of the high temperature creep-fatigue lifetime of modified 9Cr-lMo martensitic steels is proposed. This model is built on the basis of the physical mechanisms responsible for damage due to the interaction of creep, fatigue and oxidation. These mechanisms were identified thanks to detailed observations previously reported in part I and part II of this study. These observations led to the distinction of two main domains, corresponding to two distinct types of interaction between creep, fatigue and oxidation. As no intergranular creep damage can be observed in the tested loading range, the proposed modelling consists in the prediction of the number of cycles necessary for the initiation and the propagation of transgranular fatigue cracks. Propagation rate measurements under high stress low-cycle fatigue conditions were carried out to calibrate the Tomkins model used to predict the life spent in crack propagation, whereas the initiation stage is predicted using the model proposed by Tanaka and Mura. The predictions obtained compare very favorably with the experimental creep-fatigue lifetimes. Finally the extrapolations and limits of the model are discussed.
机译:提出了一种用于预测9Cr-1Mo马氏体改性钢高温蠕变疲劳寿命的模型。该模型基于负责蠕变,疲劳和氧化相互作用的物理机制建立。由于先前在本研究的第一部分和第二部分中报告了详细的观察结果,因此确定了这些机制。这些发现导致了两个主要领域的区别,分别对应于蠕变,疲劳和氧化之间两种不同类型的相互作用。由于在测试的载荷范围内未观察到晶间蠕变损伤,因此所提出的模型在于预测跨晶疲劳裂纹的萌生和扩展所必需的循环次数。在高应力低周疲劳条件下进行了传播速率测量,以校准用于预测裂纹扩展所用寿命的Tomkins模型,而使用Tanaka和Mura提出的模型来预测初始阶段。获得的预测与实验蠕变疲劳寿命相比非常有利。最后讨论了模型的外推法和极限法。

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