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Characterization of Reverted Austenite during Prolonged Ageing of Maraging Steel CORRAX

机译:马氏体时效钢CORRAX的长时间时效过程中残余奥氏体的表征

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摘要

Microstructure and mechanical properties were studied in CORRAX maraging steel during prolonged ageing up to 300 h at 798 K. Strengthening of maraging steel was caused by the formation of an intermetallic phase enriched in Ni and Al which exhibits an ordered B2 (CsCl) superlattice structure. Precipitation hardening was accompanied by an increase in micro-hardness with peak hardness after about 12 h of ageing. After 300 h of ageing, the micro-hardness value is still high, corresponding to 94 percent of the peak hardness. The reverse transformation of martensite to austenite does not take place during prolonged ageing as shown by X-ray and electron backscatter diffraction analyses. The experimentally determined amount of austenite (1-2 vol. percent) is in good agreement with the calculated value (about 2.5 vol. percent).
机译:研究了CORRAX马氏体时效钢在798 K下长达300 h的长时间时效时的组织和力学性能。马氏体时效钢的强化是由于形成了富集有序B2(CsCl)超晶格结构的Ni和Al的金属间相而引起的。大约12小时后,沉淀硬化伴随着显微硬度的增加和峰值硬度的增加。老化300小时后,显微硬度值仍然很高,相当于峰值硬度的94%。 X射线和电子背散射衍射分析表明,在长时间的老化过程中,马氏体不会转变为奥氏体。实验确定的奥氏体量(1-2%(体积))与计算值(约2.5%(体积))非常吻合。

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