首页> 外文会议>ASME international pipeline conference >THE EFFECT OF WELD METAL MANGANESE CONTENT ON THE MICROSTRUCTURE, MECHANICAL PROPERTIES AND HOT CRACK SUSCEPTIBILITY OF HELICALLY WELDED LINEPIPES
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THE EFFECT OF WELD METAL MANGANESE CONTENT ON THE MICROSTRUCTURE, MECHANICAL PROPERTIES AND HOT CRACK SUSCEPTIBILITY OF HELICALLY WELDED LINEPIPES

机译:焊接金属锰含量对螺旋焊接线桩微结构,机械性能和热裂纹敏感的影响

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The effect of manganese addition on decreasing hot crack susceptibility of submerged arc welding in microalloyed steels is well understood, but its increment should not cause unsuitable changes in metallurgical and mechanical properties of weld metal. Therefore, since weld metal Mn content in SAW process is mainly controlled by welding wire composition, the aim of this investigation is to study the effect of wire Mn content on the microstructure, mechanical properties and hot crack susceptibility of helical linepipes weld metal. In this regard, three different wires with 0.88, 1.05 and 1.54 wt% of Mn content were selected and welding was performed in both experimental and production process condition of X70 helical linepipes. As a result, 1.26. 1.44 and 1.67 wt% of Mn in weld metal was obtained respectively. Metallographical examinations using optical and scanning electron microscopy showed that, increasing the amount of Mn in weld metal, decrease the grain size of all phases (acicular ferrite, primary ferrite and ferrite with aligned second phase). Moreover, in the expense of increasing acicular ferrite, the volume fraction of primary ferrite (mostly grain boundary ferrite) and ferrite with aligned second phase decreased. Also, the results of mechanical properties indicated that the higher the amount of Mn, the higher the strength and hardness of weld metal, but in the case of impact toughness and tensile elongation, an optimum level was observed and lower toughness in the highest Mn content weld metal is attributed to the increasing hardenability and thus formation of martensite/rctained austenite islands and grain boundary carbides in coincident sites of acicular ferrite grains. Moreover, analyzes in more than 1000m helical linepipes weld metal length showed that increasing weld metal Mn content up to 1.4wt%, reduced the possibility of hot crack formation from total percentage of 0.005 to around 0.001.
机译:锰加入于减少埋弧焊中微合金钢焊接热裂纹敏感性的效果是很好理解的,但是其增量不应导致在焊缝金属的冶金和机械性能不适合改变。因此,由于在SAW过程焊接金属的Mn含量主要由焊丝成分来控制,这个研究的目的是研究的导线Mn含量的微结构,机械性能和螺旋管线管焊接金属的热裂纹敏感性的影响。在这方面,选择具有0.88,1.05和Mn含量为1.54%(重量)三种不同的导线和在X70螺旋管线管的实验和生产过程条件下进行焊接。其结果是,1.26。 1.44和在焊接金属的Mn 1.67%(重量)分别获得的。使用光学显微镜和扫描电子显微镜金相检查显示,在焊接金属增加Mn的量,减少所有阶段的晶粒尺寸(针状铁素体,铁素体主并与其对齐的第二相铁素体)。此外,在增加针状铁素体为代价,一次铁素体(主要是晶界铁素体)的体积分数和铁素体与对准的第二阶段减小。另外,机械物性的结果表明,Mn的更高的量,更高的强度和焊接金属的硬度,但在冲击韧性和拉伸伸长率的情况下,观察到最佳水平,并在最高的Mn含量较低的韧性焊接金属归因于增加淬透性,因此马氏体的形成/ rctained奥氏体岛屿和针状铁素体晶粒的位点一致的晶界碳化物。此外,在分析超过1000m螺旋管线管焊接金属长度表明,增加焊接金属的Mn含量高达1.4wt%,减少从0.005总百分比至0.001围绕热裂纹形成的可能性。

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