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The Evolution of Precipitates in a Novel Heat-Resistant Martensitic Steel During Creep

机译:蠕变期间新型耐热马氏钢中沉淀物的演变

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In the past decades, several 9-12 wt% Cr-containing martensitic steels have been researched for the application in ultra-supercritical power plants at 650 °C, which is still a worldwide challenge. Among them, G115 martensitic steel, which was developed in China, is one of promising candidates. It has the basic composition of 9% Cr-3% W-3% Co and contains 1% Cu (all in wt%) and the optimized contents of B and N, leading to much better creep strength and creep ductility than P92 steel. Both M_(23)C_6 carbides and e-Cu particles were found during the tempering of G115 steel, and the former have finer size than those in P92 steel, which results in Laves phase to form with the refined size too during the latter creep stage. All these formed precipitates shall contribute to improved creep rupture strength of G115 steel.
机译:在过去的几十年中,已经研究了含有含9-12wt%的马氏体钢,用于650°C的超超临界发电厂的应用,这仍然是全球挑战。其中,在中国开发的G115马氏体钢是承诺的候选人之一。它具有9%Cr-3%W-3%Co的基本组合物,含有1%Cu(全部为Wt%)和B和N的优化内容,导致比P92钢更好的蠕变强度和蠕变延展性。在G115钢的回火期间发现M_(23)C_6碳化物和E-Cu颗粒,前者具有比P92钢的更细的尺寸,这导致Laves阶段在后面的蠕变阶段中形成精制尺寸。 。所有这些形成的沉淀物应有助于改善G115钢的蠕变破裂强度。

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