首页> 外文会议>6th International Conference on Trends in Welding Research Apr 15-19, 2002 Phoenix, Arizona USA >Factors Affecting the Hydrogen Embrittlement Resistance of Ni-Cr-Mn-Nb Welds
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Factors Affecting the Hydrogen Embrittlement Resistance of Ni-Cr-Mn-Nb Welds

机译:Ni-Cr-Mn-Nb焊缝耐氢脆性的影响因素

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Nickel based alloys are often welded with argon/hydrogen shielding gas mixtures to minimize oxidation and improve weld quality. However, shielding gas mixtures with ≥1% hydrogen additions can result in hydrogen concentrations greater than 5 wt. ppm in the weld metal and reduce ductility via hydrogen embrittlement. For the conditions investigated, the degree of hydrogen embrittlement is highly variable between 5 and 14 wt. ppm. Investigation of hydrogen embrittlement of EN82H GTAW welds via tensile testing, light microscopy, transmission electron microscopy, orientation imaging microscopy, and thermal desorption spectroscopy shows that this variability is due to the inhomogeneous microstructure of the welds, the presence of recrystallized grains, and complex residual plastic strains. Specifically, research indicates that high residual strains and hydrogen trapping lower the ductility of Ni-Cr-Mn-Nb weld metal when dissolved hydrogen concentrations are greater than 5 wt. ppm. The inhomogeneous microstructure contains columnar dendritic, cellular dendritic, and recrystallized grains. The decreased tensile ductility observed in embrittled samples is recovered by post weld heat treatments that decrease the bulk hydrogen concentration below 5 wt. ppm.
机译:镍基合金通常采用氩/氢保护气体混合物进行焊接,以最大程度地减少氧化并提高焊接质量。但是,添加氢气≥1%的保护性气体混合物会导致氢气浓度大于5 wt%。焊缝金属中的ppm,并通过氢脆降低延展性。对于所研究的条件,氢脆程度在5至14 wt。%之间变化很大。 ppm。通过拉伸试验,光学显微镜,透射电子显微镜,取向成像显微镜和热脱附光谱对EN82H GTAW焊缝的氢脆性研究表明,这种变化是由于焊缝的微观结构不均匀,存在重结晶晶粒以及残留的复合物塑性应变。具体而言,研究表明,当溶解氢浓度大于5 wt%时,高残余应变和氢捕获会降低Ni-Cr-Mn-Nb焊接金属的延展性。 ppm。不均匀的微观结构包含柱状的树枝状,蜂窝状的树枝状和再结晶的晶粒。在脆性样品中观察到的降低的拉伸延展性通过焊后热处理得以恢复,该焊后热处理将整体氢浓度降低至5 wt。%以下。 ppm。

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