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首页> 外文期刊>Transactions of the Indian Institute of Metals >Dissimilar Welding of Maraging Steel (250) and 13-8 Mo Stainless Steel by GTCAW, LBW and EBW Processes
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Dissimilar Welding of Maraging Steel (250) and 13-8 Mo Stainless Steel by GTCAW, LBW and EBW Processes

机译:通过GTCAW,LBW和EBW工艺进行钢制钢(250)和13-8莫不锈钢的不同焊接

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摘要

The frequently used aerospace materials, i.e., ultra-high-strength maraging steel (250) and corrosion-resistant 13-8 Mo stainless steel in the solution-annealed and cold-worked condition, have been joined by three fusion welding processes, namely interpulse TIG welding, and high energy density fusion processes like electron beam welding (EBW) and laser beam welding (LBW). The interpulse TIG welding process was carried out by using W2 grade maraging steel filler wire. The dissimilar joints were welded by EBW and LBW processes without any filler wire. All the dissimilar welded joints were characterized by microstructural observations and validated by mechanical properties in the as-welded as well as precipitation-hardened conditions after welding. The weld microstructures and microhardness profiles were correlated to the tensile strength of weld. Electron beam welded joint with precipitation hardening after welding, i.e., soaking at 510 degrees C and subsequent air cooling, demonstrated the superior mechanical properties among all the welds.
机译:常用的航空航天材料,即超高强度的航空钢(250)和耐腐蚀的13-8 Mo不锈钢在溶液 - 退火和冷加工条件下,已经通过三种融合焊接工艺加入,即渗透TIG焊接,以及电子束焊接(EBW)和激光束焊(LBW)等高能密度融合工艺。通过使用W2级马钢填充线进行脉冲TIG焊接过程。不同的接头通过ebw和lbw工艺焊接而没有任何填料。所有不同的焊接接头的特征在于微观结构观察,并通过焊接后的机械性能验证以及焊接后的沉淀硬化条件。焊接微结构和微硬度曲线与焊缝的拉伸强度相关。电子束焊接接头具有焊接后的沉淀硬化,即在510℃下浸泡并随后的空气冷却,在所有焊缝中均显示出优异的机械性能。

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