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首页> 外文期刊>Rivista Italiana della Saldatura >Corrosion performance of welds in duplex, superduplex and lean duplex stainless steels
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Corrosion performance of welds in duplex, superduplex and lean duplex stainless steels

机译:双相,超双相和贫双相不锈钢焊缝的腐蚀性能

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摘要

To achieve good corrosion resistance in a weld is much more challenging than for plate or sheet material, which has undergone controlled rolling, heat treatment and pickling processes in the steel mill. The choice of weld procedure and parameters, filler metal and shielding gas all play important roles. For duplex and lean duplex grades it is essential to ensure that an adequate amount of austenite is formed in the weld metal and heat affected zone, in order to fulfil requirements in terms of austeniteferrite phase balance, but also to avoid the precipitation of detrimental phases such as intermetallics and nitrides. In addition, the importance of good post-weld cleaning to ensure good corrosion properties cannot be overemphasised. This paper focuses on a number of different examples of pitting corrosion of welds in the duplex grades UNS S32101, S32304, S32205, SS2441 and S32750. These illustrate the role of microstructure control to attain good corrosion performance. The effect of residual weld oxides or heat tint in degrading the corrosion performance is also explored, together with evaluation of the degree to which the corrosion resistance can be restored by the use of appropriate pickling processes.
机译:与在钢板轧机中经过受控轧制,热处理和酸洗工艺的板材相比,在焊缝中获得良好的耐腐蚀性要更具挑战性。焊接工艺和参数,填充金属和保护气体的选择都起着重要的作用。对于双相和贫双相不锈钢,必须确保在焊缝金属和热影响区中形成足够量的奥氏体,以便满足奥氏体铁素体相平衡方面的要求,而且还可以避免有害相的析出。作为金属间化合物和氮化物。另外,良好的焊接后清洁对于确保良好的腐蚀性能的重要性也不能过分强调。本文着重介绍了双相钢UNS S32101,S32304,S32205,SS2441和S32750的焊缝点蚀的许多不同示例。这些说明了微结构控制在获得良好腐蚀性能方面的作用。还探讨了残留的焊接氧化物或热着色剂对降低腐蚀性能的影响,并评估了通过使用适当的酸洗工艺可以恢复到何种程度的耐蚀性。

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