>The resistance to pitting and intergranular'/> Influence of the welding current intensity and nitrogen content on the corrosion resistance of austenitic stainless steels
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Influence of the welding current intensity and nitrogen content on the corrosion resistance of austenitic stainless steels

机译:焊接电流强度和氮含量对奥氏体不锈钢耐腐蚀性的影响

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>The resistance to pitting and intergranular corrosion of the welded joint of X5CrNi18‐10 austenitic stainless steel is analyzed in this paper. The resistance of the welded joint to intergranular corrosion does not depend on the nitrogen content in the shielding gas. It depends on the heat input into the welded joint, that is, on the welding current intensity. The resistance to pitting corrosion depends on the content of nitrogen in the shielding gas and on the welding current intensity. With the increase in the nitrogen content in the shielding gas, the resistance of the heat affected zone (HAZ) to pitting corrosion increases. The welding current intensity (heat input into the welded joint) shows two opposite effects. On the one hand, the increase of the heat input into the welded joint causes a more intensive precipitation of chromium carbides along the grain boundaries, which then leads to depletion in chromium of the grain boundary areas. The sensitization degree of the HAZ is thus increased and the formation of pits easier. On the other hand, with the increase in the welding current intensity, diffusion of nitrogen from the weld metal into the HAZ is facilitated, which contributes to the increased HAZ resistance to pitting corrosion. Possible mechanisms for increasing the HAZ resistance to pitting corrosion in the presence of nitrogen are also considered.
机译: <第XML:ID =“Maco201810182-SEC-0001”编号=“否”> 本文分析了X5CrNi18-10奥氏体不锈钢焊接接头的耐蚀性和晶间腐蚀的抵抗力。焊接接头与骨间腐蚀的电阻不依赖于屏蔽气体中的氮含量。这取决于热量输入到焊接接头中,即焊接电流强度。蚀刻腐蚀的抵抗取决于屏蔽气体中的氮的含量和焊接电流强度。随着屏蔽气体中的氮含量的增加,热影响区(HAZ)对蚀腐蚀的电阻增加。焊接电流强度(进入焊接接头的热量)显示出两个相反的效果。一方面,进入焊接接头的热量的增加导致沿着晶界碳化铬的碳化铬沉淀,然后在晶界区域的铬中导致耗尽。因此增加了HAZ的敏化度,并且更容易形成凹坑。另一方面,随着焊接电流强度的增加,促进了从焊接金属到HAZ中的氮的扩散,这有助于增加对蚀腐蚀的抗性。还考虑了在存在氮气存在下增加对蚀腐蚀的抗腐蚀的可能机制。

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