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An evaluation of weld metal nitrogen retention and properties in 316LN austenitic stainless steel

机译:316LN奥氏体不锈钢中焊缝金属固氮和性能的评估

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A series of tests were conducted using varying levels of nitrogen and helium in a conventional argon shielding gas when welding 316LN austenitic stainless steel. The outcome was that a 15 per cent nitrogen addition to the argon shielding gas had the most significant effect on increasing the weld metal nitrogen. Subsequent additions of helium to the argon 15 per cent nitrogen shielding gas had very little overall benefit. Increasing the nitrogen content of the weld metal had the consequential effects of decreasing the ferrite content and the hardness. As a result of solid solution strengthening, the yield strength increased with increase in nitrogen content. There was an increase in impact toughness as the nitrogen content increased. This was related to the decreased ferrite content associated with the strong austenetizing potential of nitrogen. It was also shown that an almost fully austenitic weld metal could still have very good toughness. In combination with these effects there was no loss in corrosion resistance. The addition of nitrogen to a conventional argon shielding gas presents attractive cost and quality benefits over the established requirement to over alloy the weld filler material with expensive alloys such as nickel.
机译:在焊接316LN奥氏体不锈钢时,在常规氩气保护气体中使用不同含量的氮气和氦气进行了一系列测试。结果表明,向氩气保护气体中添加15%的氮对增加焊接金属的氮影响最大。随后将氩气中的氦气添加到15%的氮气保护气体中,几乎没有任何整体收益。增加焊接金属的氮含量具有降低铁素体含量和硬度的结果。固溶强化的结果是,屈服强度随着氮含量的增加而增加。随着氮含量的增加,冲击韧性增加。这与降低的铁素体含量有关,这与氮的强奥氏体化潜力有关。还显示出,几乎完全奥氏体的焊接金属仍可具有非常好的韧性。结合这些效果,不会降低耐腐蚀性。与将焊接填充材料与昂贵的合金(例如镍)过度合金化的既定要求相比,向常规的氩气保护气体中添加氮气具有诱人的成本和质量优势。

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