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Microstructural Refinement by Cu Addition and Its Effect on Strengthening and Toughening of Sour Service Line Pipe Steels

机译:添加铜的显微组织细化及其对酸性服务管线管钢的强韧化的影响

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摘要

The Mn content of sour service line pipe steels is desirable to be low because Mn forms the elongated MnS which acts as nucleation sites of hydrogen induced blister cracking, and the segregation streak which provides the propagation path of the cracking. On the other hand, Mn is one of the most effective and economical alloying elements to strengthen and toughen. This study investigates the effect of Cu as an alternative to Mn to strengthen and toughen the line pipe steels containing low Mn. The Cu addition up to 1.7mass% simultaneously increases yield strength and decreases Charpy transition temperature, which effect of Cu is attributable to grain-refinement. However, the Cu addition over 2.0 mass% substantially raises the transition temperature with increasing the yield strength, which adverse effect is attributable to the precipitation of Cu during cooling after hot rolling. Analyzing the results of the isothermal holding after hot deformation and the continuous cooling after hot deformation provides the mechanisms of the grain-refinement by solute Cu as follows. The solute Cu in austenite retards the recrystallization of hot deformed austenite, which retains more non-recrystallized austenite enhancing ferrite nucleation. Moreover, the solute Cu in austenite suppresses the austenite-ferrite transformation, which decreases the transformation temperature and thereby prevents formed ferrite grains from coarsening.
机译:含硫量高的管线钢的Mn含量低是理想的,因为Mn形成了细长的MnS(起氢诱导的水疱裂纹的成核位点),而偏析条纹则提供了裂纹的传播路径。另一方面,Mn是最有效和最经济的合金元素之一,可增强和增韧。这项研究调查了铜作为锰替代品对强化和增韧低锰管线钢的作用。最多添加1.7质量%的Cu同时提高了屈服强度并降低了夏比转变温度,这归因于晶粒细化。然而,超过2.0质量%的Cu添加随着屈服强度的增加而实质上升高了转变温度,这归因于热轧后冷却期间Cu的析出。分析热变形后的等温保持和热变形后的连续冷却的结果提供了固溶Cu细化晶粒的机理,如下。奥氏体中的固溶铜会延迟热形变奥氏体的再结晶,从而保留更多的未再结晶奥氏体,从而增强铁素体的形核。此外,奥氏体中的固溶Cu抑制奥氏体-铁素体相变,降低相变温度,从而防止形成的铁素体晶粒粗大化。

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