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首页> 外文期刊>Materials Characterization >Microstructural analysis of a single pass 2.25 percent Cr-1.0 percent Mo steel weld metal with different manganese contents
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Microstructural analysis of a single pass 2.25 percent Cr-1.0 percent Mo steel weld metal with different manganese contents

机译:不同锰含量的单道次2.25%Cr-1.0%Mo钢焊缝金属的组织分析

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摘要

Weld metals of the 2.25 percent Cr-1.0 percent Mo type with 0.84 percent, 1.21 percent and 2.3 percent Mn produced by submerged-arc welding were analyzed in the as-welded (AW), post weld heat treatment (PWHT) and PWHT followed by step-cooling (SC) heat treatment conditions. Fracture surface analysis revealed an evolution in the mode of fracture due to Mn content variations and heat treatment conditions, the occurrence of intergranular fracture being observed in welds with 2.30 percent Mn that were step-cooled. Transmission electron microscopy revealed that the microstructure was predominantly composed of bainite, although martensite was also observed for high Mn contents. A marked carbide precipitation was observed, preferentially at grain boundaries. This could be attributed to the SC heat treatment and associated with the embrittlement. However, the application of a de-embrittlement heat treatment to this step cooled weld metal has proved efficient, because the impact energy levels after this heat treatment surpassed those obtained in the stress relieved condition. This indicates that segregation of impurities to grain boundaries was responsible for the low impact energy levels observed after SC of weld metal containing >0.84 percent Mn.
机译:在焊后(AW),焊后热处理(PWHT)和PWHT中分析了由埋弧焊产生的2.25%Cr-1.0%Mo型,Mn分别为0.84%,1.21%和2.3%的焊接金属分步冷却(SC)热处理条件。断裂表面分析表明,由于Mn含量变化和热处理条件而导致的断裂方式有所发展,在2.30%的Mn逐步冷却的焊缝中观察到晶间断裂的发生。透射电子显微镜显示该组织主要由贝氏体组成,尽管也观察到高锰含量的马氏体。观察到明显的碳化物沉淀,优选在晶界处。这可以归因于SC热处理并与脆化有关。但是,事实证明,对这一步冷却的焊缝金属采用去卷边热处理是有效的,因为该热处理后的冲击能级超过了在应力消除条件下获得的能级。这表明,杂质含量偏高到晶界是锰含量> 0.84%的焊缝金属在SC后观察到的低冲击能级的原因。

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