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Microstructure and Retained Austenite Characteristics of Ultra High-strength TRIP-aided Martensitic Steels

机译:超高强度TRIP辅助马氏体钢的组织和残余奥氏体特性

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摘要

A new type of 0.2%C-1.5%Si-1.5%Mn ultra high-strength low alloy TRIP-aided steel consisting of lath martensite structure matrix and metastable retained austenite films, "TRIP-aided martensitic steel; TM steel", was developed by means of quenching and partitioning process. In addition, effects of partitioning temperature and time on the microstructure and retained austenite characteristics were investigated. The matrix structure was composed of two kinds of lath martensite structures, or wide and narrow lath mar tensite structures. Most of the retained austenite of about 3 vol% was located along the narrow marten site lath boundary. On the other hand, a small amount of fine and needle-like carbides precipitated only in wider lath martensite structure. Partitioning at temperatures lower than 250℃ for 1 000 s after quenching in oil or ice brine considerably increased carbon concentration of the retained austenite phase to about 1.0 mass%, maintaining volume fractions of retained austenite and carbide. Also, the carbon-enrichment mechanism in the retained austenite was proposed through TEM observation, as well as the carbide pre cipitation and coarsening mechanisms.
机译:开发了由板条马氏体组织基体和亚稳态残留奥氏体膜组成的新型0.2%C-1.5%Si-1.5%Mn超高强度低合金TRIP辅助钢“ TRIP辅助马氏体钢; TM钢”。通过淬火和分配过程。此外,研究了分配温度和时间对显微组织和残余奥氏体特性的影响。基体结构由两种板条马氏体结构或宽和窄板条马氏体结构组成。大约3%(体积)的残留奥氏体大部分位于狭窄的貂场板条边界。另一方面,仅在较宽的板条马氏体组织中析出少量细小且呈针状的碳化物。在油或冰盐水中淬火后,在低于250℃的温度下进行1000 s的分区,可将残余奥氏体相的碳浓度显着提高至约1.0质量%,从而保持残余奥氏体和碳化物的体积分数。此外,通过TEM观察,提出了残留奥氏体中的碳富集机理,以及碳化物的析出和粗化机理。

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