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Cyclic hardening and dynamic strain aging during low-cycle fatigue of Cr- Mo tempered martensitic steel at elevated temperatures

机译:Cr-Mo回火马氏体钢在高温下低周疲劳过程中的循环硬化和动态应变时效

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摘要

Dynamic strain aging (DSA) has a noticeable impact on low cycle fatigue behavior of Cr-Mo tempered martensitic steel at elevated temperatures. At 350 °C, the stress response presented evidently secondary hardening phenomenon, and the fatigue life is significantly higher than room temperature which is contrary to the usual understanding. The analysis shows that the reason for the secondary hardening is mainly because of DSA which affects the evolution of dislocations. The influence process of the DSA effect on the dislocation evolution in low-cycle fatigue was first observed, which is from lath substructure to a smaller cell substructure at high temperature. Fracture observation indicates that the new dislocation structure promotes the crack propagation resistance of the material. The effect of DSA on the low cycle fatigue properties of high temperature provides a new idea for the study of fatigue resistance of materials.
机译:动态应变时效(DSA)对Cr-Mo回火马氏体钢在高温下的低周疲劳行为具有显着影响。在350°C时,应力响应明显呈现二次硬化现象,疲劳寿命明显高于室温,这与通常的理解相反。分析表明,二次硬化的原因主要是由于DSA影响了位错的发展。首先观察到DSA效应对低周疲劳中位错演化的影响过程,该过程是在高温下从板条亚结构到较小的细胞亚结构。断裂观察表明,新的位错结构提高了材料的抗裂纹扩展性。 DSA对高温低周疲劳性能的影响为材料的抗疲劳性研究提供了新思路。

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