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Influence of long-term cold climate operation on structure, fatigue durability and impact toughness of 09Mn2Si pipe steel

机译:长期冷气候运行对09mn2SI管钢结构,疲劳耐久性和冲击韧性的影响

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摘要

The microstructure and mechanical properties of 09Mn2Si steel used for the transmission natural gas pipeline "Mastakh-Berge-Yakutsk" have been investigated comprehensively after 37 years of operation. The results obtained for the specimens cut from the pipe were compared to those obtained using the preserved (reference) specimens. It is demonstrated that long-term operation in harsh climate does change the pearlitic microstructure appreciably. The strain aging however can be noticed through precipitation of finely dispersed carbides in the grain interior. The latter causes some embrittlement of the steel measured under impact loading. Revealed microstructural changes are not practically important for "quasi-static" tension or hardness properties. Nonetheless, under cyclic testing the microstructure degradation, which occurred during long-term operation, results in a considerable reduction of fatigue life, which is particularly pronounced during the crack initiation stage. The microstructure degradation is most clearly seen in sharply reduced impact toughness which dropped by a factor of two at temperatures below zero Centigrade. Reasons and mechanisms of the observed phenomena are discussed.
机译:经过37年的操作后,全面调查了用于透射天然气管道“Mastakh-Berge-Yakutsk”的09mn2Si钢的微观结构和机械性能。将从管道切割的样品获得的结果与使用保存(参考)样本获得的结果进行比较。据证明,严酷气候的长期操作确实明显地改变了珠光体微结构。然而,通过在晶粒内部的细散碳化物沉淀可以注意到菌株老化。后者导致在冲击载荷下测量的钢的一些脆化。揭示了微观结构的变化对于“准静态”张力或硬度特性几乎是重要的。尽管如此,在循环测试下,在长期操作期间发生的微观结构降解导致疲劳寿命的显着降低,这在裂纹开始期间特别明显。在急剧降低的冲击韧性中,最清楚地看到微观结构降解,其在零摄氏度以下下降了两个。讨论了观察到的现象的原因和机制。

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