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Effect of Weld Metal Microstructure on Cold Crack Susceptibility of High Strength Weld

机译:焊接金属微观结构对高强度焊接冷裂纹易感性的影响

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Facing the practical difficulties in reducing the diffusible hydrogen content of flux-containing welding consumables like flux-cored arc welding (FCAW) wires, the present study investigated the microstructural aspect to improve the hydrogen-induced cold crack (HICC) resistance of multipass weld metal of 600MPa strength. Two FCA welding wires were prepared by controlling the Ni content to give different weld microstructure, but to have similar levels of hardness and diffusible hydrogen content. HICC susceptibility of those two consumables was evaluated by 'G-BOP test' and also by 'multi-pass weld metal cold cracking test'. As a result of this study, it was demonstrated that microstructural modification with decreased proportion of grain boundary ferrite (GF) improved cold crack resistance of weld metal. The detrimental effect of GF against HICC has also been addressed based on the characteristics of weld metal cold cracking.
机译:本研究研究了减少含焊剂焊接耗材的扩散型碳粉耗材的实际困难,如磁芯弧焊(Fcaw)电线,调查了微观结构方面以改善多脂焊接金属的氢诱导的冷裂纹(HICC)电阻600MPA强度。通过控制Ni含量来制备两个FCA焊接线以产生不同的焊接微观结构,但具有相似的硬度和可扩散氢含量。通过“G-BOP测试”和“多遍焊接金属冷裂解试验”评估这两种消耗品的HICC易感性。作为本研究的结果,据证明了晶界铁氧体(GF)比例下降的微观结构改性改善了焊缝金属的冷裂性。基于焊接金属冷裂纹的特点,还针对HICC对HICC的不利影响。

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