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Metallurgical influence of multi-beam technology on duplex stainless steel welds

机译:多束技术对双相不锈钢焊缝的冶金影响

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摘要

The main problem of electron beam welding of duplex stainless steels (DSS) is the degradation of the mechanical properties and the corrosion resistance due to an unfavourable ferrite content in the weld metal. This occurs because of the high cooling rate and the effusion of nitrogen from the weld pool, which is characteristic for this welding process. To guarantee the necessary mechanical and technological properties and the corrosion resistance, the DSS are welded with filler material and afterwards undergo a post-weld heat treatment. The present work shows the results of investigations concerning the development of an electron multi-beam technology for welding the thick-walled components of DSS without a filler material and post-weld heat treatment. The electron multi-beam technique allows the formation of many weld pools at the same time, which might achieve slower cooling rates and influence the austenite-ferrite formation of the DSS welds. Based on the results of previous studies, in which the optimum cooling rate and number of weld pools were determined, different electron multi-beam techniques were developed and applied to produce the bead on plates of these steels. The studies were performed on standard duplex stainless steel of type X2CrNiMoN22-5-3 and on lean duplex stainless steel of type X2CrNiN23-4. The resulting austenite formation, mechanical properties and the corrosion resistance of the electron multi-beam welds were investigated and are presented in this work.
机译:双相不锈钢(DSS)的电子束焊接的主要问题是由于焊接金属中铁素体含量不理想而导致机械性能和耐腐蚀性下降。发生这种情况的原因是高冷却速率和焊接池中氮的渗出,这是该焊接过程的特征。为了保证必要的机械和工艺性能以及耐腐蚀性,DSS与填充材料焊接在一起,然后进行焊后热处理。目前的工作表明了有关电子多束技术发展的研究结果,该技术用于在不使用填充材料的情况下焊接DSS厚壁部件并进行焊后热处理。电子多束技术可同时形成许多焊缝,这可能会降低冷却速度并影响DSS焊缝的奥氏体-铁素体形成。根据先前的研究结果,在确定最佳冷却速度和焊缝数量的基础上,开发了不同的电子多束技术,并将其应用于在这些钢的板上生产焊道。该研究在X2CrNiMoN22-5-3型标准双相不锈钢和X2CrNiN23-4型贫双相不锈钢上进行。研究了电子多束焊缝产生的奥氏体形成,机械性能和耐腐蚀性,并在这项工作中进行了介绍。

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