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Strain aging behaviour of Cu-containing microalloyed low carbon seamless pipeline steel

机译:含Cu的微合金低碳无碳无缝管线钢的应变老化行为

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The effect of strain aging on the microstructure, including copper precipitation, and mechanical properties of an industrially produced Cu-containing microalloyed low carbon pipeline steel has been investigated. The precipitation of round bcc-Cu particles with diameters of similar to 7nm has been clearly observed in the microstructure after strain aging. The strength of pipeline steel significantly increased while the elongation and impact toughness did not apparently decrease. Unlike welded pipe, few carbon atoms in supersaturated solid solution diffuse to the mobile dislocations, forming Cottrell atmospheres and producing strain aging phenomenon in seamless pipe. This difference is attributed to the different pipe making technique: thermo mechanically controlled processed for welded pipe and traditional heat-treatment for seamless pipe.
机译:研究了应变老化对工业生产的含Cu的微合金低碳钢的微观结构的微观结构,包括铜沉淀和力学性能。 在菌株老化后的微观结构中,清楚地观察到直径与7nm相似的圆形BCC-Cu颗粒的沉淀。 管道钢的强度显着增加,而伸长率和冲击韧性并没有显然降低。 与焊接管不同,在超饱和固溶下的少量碳原子扩散到移动脱位,形成Cottrell大气和在无缝管中产生应变老化现象。 这种差异归因于不同的管道制造技术:用于焊接管道的热机械控制和无缝管的传统热处理。

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