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Porosity and Nitrogen Content of Weld Metal in Laser Welding of High Nitrogen Austenitic Stainless Steel

机译:高氮奥氏体不锈钢激光焊接中焊接金属的孔隙率和氮含量

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摘要

Some problems such as nitrogen desorption and pores always occur in the weld metal during welding of high nitrogen steel. In order to study the nitrogen content and porosity of the weld metal of high nitrogen steel 1Cr22Mn16N, the steel was welded by CO_2 laser welding, and the influence of the shielding gas composition and heat input on the nitrogen content and porosity of the weld metal was investigated. The experimental results indicate that the weld nitrogen content increases slightly with the increase of the nitrogen content in shielding gas under the same laser welding conditions. The nitrogen content of the weld metal decreases with the increase of the heat input when pure argon is used as the shielding gas, whereas that of the weld metal is improved with the increase of the heat input when some nitrogen is added to the shielding gas. The higher the heat input, the less the porosity in the weld metal, and the more nitrogen in the shielding gas, the less the porosity becomes.
机译:在高氮钢的焊接过程中,焊缝金属中经常会出现诸如脱氮和气孔之类的问题。为了研究高氮钢1Cr22Mn16N的焊接金属的氮含量和孔隙率,采用CO_2激光焊接对钢进行了焊接,保护气体组成和热量输入对焊接金属的氮含量和孔隙率的影响为:调查。实验结果表明,在相同的激光焊接条件下,焊缝含氮量随保护气体中含氮量的增加而略有增加。当使用纯氩气作为保护气体时,焊接金属的氮含量随着热量输入的增加而降低,而当向保护气体中添加一些氮时,焊接金属的氮含量随着热量输入的增加而提高。输入的热量越高,焊缝金属的孔隙率越小,保护气体中的氮含量越高,孔隙率就越小。

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