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Effect of Weld Metal Microstructures on Cold Crack Susceptibility of FCAW Weld Metal

机译:焊接金属组织对FCAW焊接金属冷裂纹敏感性的影响

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The effect of microstructures on weld metal cold cracking has been studied using flux-cored arc welding (FCAW) wires with a 600 MPa strength level. Two FCAW wires were prepared by controlling the Ni content to allow a sufficient variation in weld microstructures, but with little change in the weld metal strength. The microstructural analysis showed that there was a significant difference in the proportions of the microstructural constituents of the weld microstructure. The 1.5 percentNi wire resulted in a weld microstructure with a lower grain boundary ferrite (GF) content associated with an increased proportion of acicular ferrite (AF) than the 0 percent Ni wire. The GF contents of 0 percentNi and 1.5 percentNi weld metal were measured to be 19 percent and 6 percent, respectively. The cold crack susceptibility of these two FCAW wires was evaluated using the gapped bead-on-plate (G-BOP) test at the two different levels of diffusible hydrogen content. As a result of the G-BOP tests, it was demonstrated that the 1.5 percentNi wire had better resistance to cold cracking than the 0 percent Ni wire because its weld deposit had a lower GF phase content. This implies that, in addition to the hydrogen control approach, microstructural modification can be pursued to develop new welding consumables with an improved resistance to cold cracking. In the discussion, the detrimental effect of GF against cold cracking is addressed based on the microstructural characteristics of cold cracks in ferritic weld metal.
机译:已经使用强度水平为600 MPa的药芯焊丝(FCAW)研究了微结构对焊缝金属冷裂纹的影响。通过控制Ni含量来制备两根FCAW焊丝,以允许焊缝微观结构有足够的变化,但焊缝金属强度几乎没有变化。显微组织分析表明,焊缝显微组织中显微组织成分的比例存在显着差异。 Ni含量为1.5%的焊缝组织比0%Ni含量的焊缝具有更低的晶界铁素体(GF)含量和更高比例的针状铁素体(AF)。测得的0%Ni和1.5%Ni焊接金属的GF含量分别为19%和6%。这两种FCAW焊丝的冷裂纹敏感性在两个不同水平的可扩散氢含量下使用带缝隙的板对焊(G-BOP)测试进行了评估。 G-BOP测试的结果表明,1.5%的镍丝比0%的镍丝具有更好的抗冷裂性,因为其焊缝的GF相含量更低。这意味着,除了氢控制方法之外,还可以进行微结构修改以开发具有改进的抗冷裂性的新焊接材料。在讨论中,基于铁素体焊缝金属中冷裂纹的微观结构特征,研究了GF对冷裂纹的不利影响。

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