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Weld metal microstructure analysis of 9-12 percent Cr steels

机译:9-12%Cr钢的焊接金属组织分析

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摘要

High-strength 9-12 percent Cr steels have been developed to meet the demand by power generation companies to increase efficiency by operating at higher temperatures. The 9-12 percent Cr steels used for high-temperature components in power plants are generally required to possess good mechanical properties, corrosion resistance, creep strength and fabricability. Although such steels normally have a fully martensitic microstructure, they are also susceptible to the formation of delta ferrite, mainly during the welding process. Delta ferrite has several detrimental effects on properties such as creep, ductility and toughness. Thus, it is important to avoid its formation. This paper analyses the microstructure in the weld metal of high-strength 9-12 percent Cr steels for several samples with variations of key alloying elements. The results indicate that the most effective way to avoid delta ferrite in the weld metal to obtain a fully martensitic microstructure is to reduce the ferrite former elements as low as possible. The partial substitution of Mo for W favours austenite stability and would be expected to improve the mechanical properties at high temperature.
机译:已经开发出9-12%的高强度Cr钢,以满足发电公司通过在较高温度下运行来提高效率的需求。通常要求用于电厂高温部件的9-12%Cr钢必须具有良好的机械性能,耐腐蚀性,蠕变强度和可加工性。尽管这种钢通常具有完全的马氏体组织,但它们也很容易在焊接过程中形成δ铁素体。 δ铁素体对诸如蠕变,延展性和韧性的性质具有若干有害影响。因此,重要的是避免其形成。本文分析了几种具有关键合金元素变化的样品的高强度9-12%Cr钢的焊接金属的显微组织。结果表明,避免焊缝金属中的δ铁素体以获得完全马氏体组织的最有效方法是尽可能减少铁素体形成元素。 Mo部分替代W部分有利于奥氏体稳定性,并有望改善高温下的机械性能。

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