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Austenite and precipitation in secondary-hardening ultra-high-strength stainless steel

机译:二次硬化超高强度不锈钢中的奥氏体和沉淀

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摘要

Ferrium S53 is a new secondary-hardening ultra-high-strength stainless steel, with more Cr than other Co-Ni ultra-high-strength steels. Austenite has a great effect on the fracture toughness of this metal, and the carbides that are precipitated are the main strengthening phase of Ferrium S53 steel; in this study, its microstructural changes during heat treatment were observed and analyzed by X-ray diffraction (XRD), Optical microscope (OM), SEM, and transmission electron microscopy (TEM). About 40.85% retained austenite in the quenched sample is decreased to less than 5% after cryogenic treatment and tempering. In the final sample, block austenite is retained austenite, and film austenite around 5 nm in width is reverted austenite. Inside the martensite lath, parallel twin-like structures are actually segregated M2C precipitates, and most of them are smaller than 20 nm. These precipitates can be aggregated into a several-micron-long parallel zonal microstructure.
机译:香味S53是一种新的二次硬化超高强度不锈钢,具有比其他CO-NI超高强度钢更多的CR。 奥氏体对该金属的断裂韧性具有很大的效果,沉淀的碳化物是配铬S53钢的主要强化相; 在该研究中,通过X射线衍射(XRD),光学显微镜(OM),SEM和透射电子显微镜(TEM)观察和分析热处理过程中的微观结构变化。 在低温处理和回火后,约40.85%的保留奥氏体在猝灭样品中降低至小于5%。 在最终样品中,嵌段奥氏体是保留奥氏体的奥氏体,并且厚度约为5nm的膜奥氏体是奥氏体的。 在马氏体板条内部,实际隔离的平行双胞胎状结构实际上是偏析的M2C沉淀物,其中大部分小于20nm。 这些沉淀物可以聚集成几微米长的并联区域微观结构。

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