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Fe-Cr-Mn-C-N Steels for Down-Hole Application in Sour Environments: Statistical Analysis of Mechanical Properties

机译:在酸性环境中用于下孔的Fe-Cr-Mn-C-N钢:力学性能的统计分析

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摘要

Two types of Fe-Cr-Mn-C-N steels (CN66, CN71) were developed and investigated for down-hole applications. Results of the experiments were used to identify statistically significant metallurgical factors and to predict the mechanical properties of CN66 and CN71. The three factors involved in the study were cooling rate (air or water), carbon and nitrogen content (C+N, 0.66 or 0.71 in wt. %), and heat-treatment holding time (2 or 4 h). The experiments were designed with a three-factor full-factorial design with two replicates for each condition. Cooling rate and C+N content (composition) were significant variables that affected the mechanical properties of CN66 and CN71, and the most favorable mechanical properties of the developed steels were obtained for a fast cooling rate and a high C+N content. The microstructures of the CN66 and CN71 were investigated to understand these strengthening effects, and it was found that the formation of precipitates was controlled by the cooling rate and that fast cooling suppressed precipitate formation. In addition, CN66 showed that a larger amount of ferrite phase in the material than that of CN71. The mechanical properties of CN66 and CN71 were compared to Fe-Cr-Ni based non-magnetic austenitic steel, 316L stainless steel, to evaluate the application possibilities of these alloys for down-hole applications. The superior mechanical properties of CN66 and CN71 show their potential to replace 316L stainless steel in many applications.
机译:开发了两种类型的Fe-Cr-Mn-C-N钢(CN66,CN71),并进行了井下应用研究。实验结果被用于识别统计学上重要的冶金因素并预测CN66和CN71的机械性能。该研究涉及的三个因素是冷却速率(空气或水),碳和氮含量(C + N,0.66或0.71 wt。%)和热处理保持时间(2或4 h)。实验采用三因素全因子设计进行设计,每种条件重复两次。冷却速率和C + N含量(组成)是影响CN66和CN71力学性能的重要变量,对于快速冷却速率和高C + N含量,获得了开发钢的最有利的机械性能。对CN66和CN71的微观结构进行了研究以了解这些强化效果,并且发现沉淀物的形成受到冷却速率的控制,而快速冷却抑制了沉淀物的形成。此外,CN66表明材料中的铁素体相量比CN71大。将CN66和CN71的机械性能与基于Fe-Cr-Ni的非磁性奥氏体钢316L不锈钢进行了比较,以评估这些合金在井下应用中的应用可能性。 CN66和CN71的优异机械性能显示出它们在许多应用中可以替代316L不锈钢。

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