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首页> 外文期刊>Journal of Materials Research and Technology >Effects of different cooling rates on the microstructure, crystallographic features, and hydrogen induced cracking of API X80 pipeline steel
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Effects of different cooling rates on the microstructure, crystallographic features, and hydrogen induced cracking of API X80 pipeline steel

机译:不同冷却速率对API X80管线钢微观结构,晶体特征和氢气诱导裂纹的影响

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Hydrogen-Induced Cracking (HIC) is a primary failure mechanism of pipeline-welded joints in the absence of external loading in the oil and gas exploration industries. Three different cooling rates after austenitization were used to simulate in the laboratory different regions of the heat-affected zone (HAZ) formed when welding an API X80 pipeline steel specially designed to enhance the HIC resistance. The samples were characterized with regard to microstructure and crystallography as well as HIC resistance. The HIC resistance test used NACE TM0284-2011 methodology. The microstructure and its homogeneity varied as a function of cooling rates. Samples containing inclusions and segregation zone from the segregation bands of specimens showed reduced HIC resistance, while specimens containing only acicular ferrite and granular bainite coupled with the absence of segregation zone showed significant improvement in HIC resistance. The best HIC resistance results came from samples presenting fine acicular ferrite consisting of fine interlocking plates, with divergent crystallographic orientations, preventing the formation of localized strain distribution inside the grain and at grain boundaries. It was also found that a large proportion of medium-angle boundaries prevent microcrack initiation and the transgranular mode of crack propagation.
机译:氢诱导的裂化(HIC)是管道焊接接头的初级损伤机理,在石油和天然气勘探产业中没有外部载荷的情况下。在焊接API X80管道钢时,使用三种不同的冷却速率在焊接API X80管道钢时形成的抗热影响区(HAZ)的实验室不同区域。在微观结构和晶体表以及HIC抗性方面表征样品。 HIC电阻测试使用NACE TM0284-2011方法。微观结构及其均匀性随着冷却速率的函数而变化。含有夹杂物和分离区的样品从样本的偏析表现出降低的HIC抗性,而仅含有针状铁氧体和粒状贝氏体的样品,含有与不存在分离区的粒状贝氏体表现出显着改善的HIC抗性。最佳的HIC抗性结果来自呈现由微针状铁氧体的样品组成,其由细互锁板组成,具有发散的晶体取向,防止在晶粒和晶界内形成局部应变分布。还发现,大比例的中角边界可以防止微裂纹启动和裂缝繁殖的转晶模式。

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