A Review on Fusion Welding of Dissimilar Ferritic/Austenitic Steels: Processing and Weld Zone Metallurgy

IF 3.3 Q2 ENGINEERING, MANUFACTURING
Fabio Giudice, S. Missori, C. Scolaro, Andrea Sili
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引用次数: 0

Abstract

Dissimilar welds between ferritic and austenitic steels represent a good solution for exploiting the best performance of stainless steels at high and low temperatures and in aggressive environments, while minimizing costs. Therefore, they are widely used in nuclear and petrochemical plants; however, due to the different properties of the steels involved, the welding process can be challenging. Fusion welding can be specifically applied to connect low-carbon or low-alloy steels with high-alloy steels, which have similar melting points. The welding of thick plates can be performed with an electric arc in multiple passes or in a single pass by means of laser beam equipment. Since the microstructure and, consequently, the mechanical properties of the weld are closely related to the composition, the choice of the filler metal and processing parameters, which in turn affect the dilution rate, plays a fundamental role. Numerous technical solutions have been proposed for welding dissimilar steels and much research has developed on welding metallurgy; therefore, this article is aimed at a review of the most recent scientific literature on issues relating to the fusion welding of ferritic/austenitic steels. Two specific sections are dedicated, respectively, to electric arc and laser beam welding; finally, metallurgical issues, related to dilution and thermal field are debated in the discussion section.
铁素体/奥氏体异种钢熔焊综述:加工和焊接区冶金学
铁素体钢和奥氏体钢之间的异种焊接是一种很好的解决方案,既能发挥不锈钢在高温、低温和腐蚀性环境下的最佳性能,又能最大限度地降低成本。因此,它们被广泛应用于核电厂和石化厂;然而,由于所涉及的钢材性能不同,焊接过程可能具有挑战性。熔融焊接可专门用于连接低碳或低合金钢与高合金钢(熔点相似)。厚板的焊接可以通过电弧多道焊接或通过激光束设备单道焊接。由于微观结构以及焊缝的机械性能与成分密切相关,因此填充金属和加工参数的选择起着至关重要的作用,而填充金属和加工参数又会影响稀释率。针对焊接异种钢提出了许多技术解决方案,并对焊接冶金学进行了大量研究;因此,本文旨在对有关铁素体/奥氏体钢熔焊问题的最新科学文献进行综述。文章的两个专门部分分别讨论了电弧焊和激光束焊;最后,在讨论部分对与稀释和热场有关的冶金问题进行了辩论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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