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Control of nitrogen content and porosity in gas tungsten arc welding of high nitrogen steel

机译:高氮钢气钨极电弧焊中氮含量和孔隙率的控制

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摘要

In welding of high nitrogen steel (HNS), it is essential to control the nitrogen content and porosity in the weld metal. In this paper, the influence of shielding gas composition and heat input on the nitrogen content and porosity in the weld metal of HNS was investigated by gas tungsten arc welding. The experimental results indicate that the weld nitrogen content increases as N2 in the shielding gas is increased in the same heat input of welding. The weld nitrogen content decreases with increasing the heat input for pure argon used as a shielding gas, whereas it increases with increasing the heat input for the shielding gas including some nitrogen. The nitrogen pore can be avoided when the nitrogen content in the shielding gas is <4% in the heat input range of 528-2340 J mm-1.
机译:在高氮钢(HNS)的焊接中,必须控制焊接金属中的氮含量和孔隙率。本文通过气体钨极电弧焊研究了保护气体成分和热量输入对HNS焊接金属中氮含量和孔隙率的影响。实验结果表明,在相同的焊接热量输入下,随着保护气体中N2含量的增加,焊缝中的氮含量也随之增加。对于用作保护气体的纯氩气,焊接氮含量随输入热量的增加而降低,而对于包含一些氮气的保护气体,其焊接氮含量随输入热量的增加而增加。当在528-2340 J mm-1的热量输入范围内,保护气体中的氮含量<4%时,可以避免出现氮孔。

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