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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Characterization of HAZ of API X70 Microalloyed Steel Welded by Cold-Wire Tandem Submerged Arc Welding
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Characterization of HAZ of API X70 Microalloyed Steel Welded by Cold-Wire Tandem Submerged Arc Welding

机译:冷线串联电弧焊接API X70微合金钢HAZ的特征

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摘要

High-strength low-carbon microalloyed steels may be adversely affected by the high-heat input and thermal cycle that they experience during tandem submerged arc welding. The heat-affected zone (HAZ), particularly the coarse-grained heat-affected zone (CGHAZ), i.e., the region adjacent to the fusion line, has been known to show lower fracture toughness compared with the rest of the steel. The deterioration in toughness of the CGHAZ is attributed to the formation of martensite-austenite (M-A) constituents, local brittle zones, and large prior austenite grains (PAG). In the present work, the influence of the addition of a cold wire at various wire feed rates in cold-wire tandem submerged arc welding, a recently developed welding process for pipeline manufacturing, on the microstructure and mechanical properties of the HAZ of a microalloyed steel has been studied. The cold wire moderates the heat input of welding by consuming the heat of the trail electrode. Macrostructural analysis showed a decrease in the CGHAZ size by addition of a cold wire. Microstructural evaluation, using both tint etching optical microscopy and scanning electron microscopy, indicated the formation of finer PAGs and less fraction of M-A constituents with refined morphology within the CGHAZ when the cold wire was fed at 25.4 cm/min. This resulted in an improvement in the HAZ impact fracture toughness. These improvements are attributed to lower actual heat introduced to the weldment and lower peak temperature in the CGHAZ by cold-wire addition. However, a faster feed rate of the cold wire at 76.2 cm/min adversely affected the toughness due to the formation of slender M-A constituents caused by the relatively faster cooling rate in the CGHAZ.
机译:高强度低碳微合金钢钢可能受到在串联浸没电弧焊接期间经历的高热输入和热循环的不利影响。已经已知已知热影响的区域(HAZ),特别是粗粒热影响区(CGHAZ),即与融合线相邻的区域,与钢的其余部分相比,较低的断裂韧性。 CGHAZ韧性的劣化归因于马氏体 - 奥氏体(M-A)成分,局部脆性区和大先生先前奥氏体晶粒(PAG)的形成。在目前的工作中,在冷线串联浸没电弧焊接中加入冷丝的影响,近最近开发的管道制造焊接过程,对微合金钢的HAZ的微观结构和机械性能已经研究过。冷钢丝通过消耗落后电极的热量来调节焊接的热量输入。通过添加冷丝,宏观结构分析显示CGHAZ尺寸的降低。微观结构评价,使用两个色谱蚀刻光学显微镜和扫描电子显微镜,表明当冷轧丝以25.4cm / min进料时,在CGHAZ中形成细粒的PAG和较少的M-A成分的形成。这导致HAZ冲击破裂韧性的改善。这些改进归因于通过冷丝加成将焊接引入焊接和较低的峰值温度的实际热量。然而,由于在CGHAZ中相对更快的冷却速率引起的细长M-A组分的形成,冷丝的更快进料速率在76.2厘米/分钟内不利影响韧性。

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